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Haption is the leader.","url":"https://franka.de/hubfs/Datasheet%20Franka%20Research%203_R02212_2.4_EN.pdf","st":"maker"},{"a":"widowx_leader","b":"trossen_viperx","status":"native","reason":"The WidowX leader pairs with the ViperX follower.","url":"https://www.trossenrobotics.com/widowx-aloha-set","st":"maker"},{"a":"allegro_v4","b":"ufactory_lite6","status":"incompatible","reason":"The Lite 6 is rated for 600 g and the hand alone weighs 1.08 kg.","url":"https://www.allegrohand.com/sub/product/p.php?idx=1","st":"maker"},{"a":"allegro_v4","b":"ufactory_xarm5","status":"integration","reason":"Needs an adapter plate to the ISO 9409 flange, and the hand runs on its own CAN link.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"allegro_v4","b":"ufactory_xarm6","status":"integration","reason":"Adapter plate to the ISO 9409 flange, and the hand keeps its own CAN link to your PC.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"allegro_v4","b":"ufactory_xarm7","status":"integration","reason":"Adapter plate to the ISO 9409 flange. 3.5 kg payload carries the 1.08 kg hand easily.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"allegro_v4","b":"ufactory_850","status":"integration","reason":"The 850 has an ISO 9409-1-50-4-M6 flange and 5 kg payload, so the 1.08 kg hand needs an adapter plate plus its own 24 V supply and CAN link.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"allegro_v4","b":"franka_fr3","status":"integration","reason":"Plates onto the DIN ISO 9409-1-A50 flange, with its own 24 V power and CAN wiring.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf?hsLang=en","st":"maker"},{"a":"allegro_v4","b":"trossen_viperx","status":"incompatible","reason":"The follower ends in its own gripper, and 750 g payload is under the hand's 1.08 kg.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"allegro_v4","b":"limx_tron2_dualarm","status":"integration","reason":"LimX has tested BrainCo hands only, so the wrist mount and CAN wiring are scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"allegro_v4","b":"limx_tron2_mobile","status":"integration","reason":"LimX has tested BrainCo hands only, so the wrist mount and CAN wiring are scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"allegro_v4","b":"limx_tron2_suite","status":"integration","reason":"LimX names a gripper or dexterous hand at the wrist, but an Allegro fit needs custom engineering.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"allegro_v4","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers only its own grippers, an Inspire gripper and BrainCo Revo hands, so an Allegro needs a custom wrist mount, its own 24 V supply and CAN work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"contactglove3","b":"tesollo_m","status":"integration","reason":"DG-5F-M runs on Modbus or ROS 2, and this glove has no way to output data on a generic port. Custom integration, scoped with us.","url":"https://www.tesollo.com/en/products/grippers/dg-5f-m","st":"maker"},{"a":"contactglove3","b":"tesollo_s","status":"integration","reason":"DG-5F-S is commanded over Ethernet or Modbus TCP, unreachable from this glove's software. Custom integration, scoped with us.","url":"https://www.tesollo.com/en/products/grippers/dg-5f-s","st":"maker"},{"a":"contactglove3","b":"inspire_rh56dfx","status":"integration","reason":"RH56DFX takes RS485 or CAN commands, and this glove ships no SDK to send them. Custom integration, scoped with us.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"contactglove3","b":"inspire_rh56bfx","status":"integration","reason":"RH56BFX takes RS485 or CAN commands. ContactGlove3 only feeds SteamVR apps on Windows; the SDK comes with ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://en.inspire-robots.com/product/rh56bfx/","st":"maker"},{"a":"contactglove3","b":"inspire_rh56h1","status":"integration","reason":"RH56H1 takes MANUS gloves as teleop input, and this glove ships no ROS 2 SDK to reach it. Custom integration, scoped with us.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"contactglove3","b":"inspire_rh56f1","status":"integration","reason":"RH56F1 takes RS485, CAN FD or EtherCAT. ContactGlove3 only feeds SteamVR apps on Windows; the SDK comes with ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://melt-interface-technologies.com/en/products/contactglove3","st":"maker"},{"a":"contactglove3","b":"inspire_rh56e2","status":"integration","reason":"RH56E2 is driven over RS485, CAN or ModbusTCP, none reachable from this glove's software. Custom integration, scoped with us.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"contactglove3","b":"inspire_rh5dg2","status":"integration","reason":"RH5DG2 takes EtherCAT plus RS485 or CAN FD. ContactGlove3 only feeds SteamVR apps on Windows; the SDK comes with ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://en.inspire-robots.com/product/rh5dg2/","st":"maker"},{"a":"contactglove3","b":"seed_rh8d","status":"integration","reason":"RH8D is commanded over RS-485 Dynamixel or ROS, and this glove has no port output. Custom integration, scoped with us.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"contactglove3","b":"seed_rh8d_fs","status":"integration","reason":"The force-sensing RH8D takes Dynamixel RS-485 or ROS commands. ContactGlove3 only feeds SteamVR apps on Windows; the SDK comes with ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://www.knoxlabs.com/products/seed-robotics-rh8d-adult-dexterous-robot-hand-with-fingertip-force-sensors","st":"knoxlabs-listing"},{"a":"contactglove3","b":"seed_rh6d","status":"integration","reason":"RH6D takes RS-485 Dynamixel commands, and this glove provides no SDK to generate them. Custom integration, scoped with us.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"contactglove3","b":"seed_rh4d","status":"integration","reason":"RH4D is driven over RS-485 UART, which this glove's Windows-only software cannot address. Custom integration, scoped with us.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"contactglove3","b":"allegro_v4","status":"integration","reason":"Allegro V4 is driven over CAN, and this glove ships no way to output data to it. Custom integration, scoped with us.","url":"https://github.com/Wonikrobotics-git/allegro_hand_linux_v4","st":"maker"},{"a":"contactglove3","b":"psyonic_ability","status":"integration","reason":"The Ability Hand takes finger targets through PSYONIC's ROS 2 wrapper. ContactGlove3 only feeds SteamVR apps on Windows; the SDK comes with ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://github.com/psyonicinc/ability-hand-ros2","st":"maker"},{"a":"contactglove3","b":"inspire_eg2_4b2","status":"integration","reason":"EG2-4B2 opens and closes over RS485. ContactGlove3 only feeds SteamVR apps on Windows; the SDK comes with ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://en.inspire-robots.com/product/eg2-4b/","st":"maker"},{"a":"contactglove3","b":"inspire_eg2_4c2","status":"integration","reason":"EG2-4C2 takes RS485 commands, and this glove has no generic port output. Custom integration, scoped with us.","url":"https://en.inspire-robots.com/product/eg2-4c/","st":"maker"},{"a":"contactglove3","b":"ufactory_gripper_g2","status":"integration","reason":"The G2 gripper is commanded over RS485 Modbus RTU through the xArm controller. ContactGlove3 only feeds SteamVR apps on Windows; the SDK comes with ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://docs.accessories.ufactory.cc/xArm_Gripper_G2/1.Introduction.html","st":"maker"},{"a":"contactglove3","b":"ufactory_bio_gripper","status":"integration","reason":"BIO Gripper G2 is commanded over Modbus from the arm, not from this glove's software. Custom integration, scoped with us.","url":"https://docs.accessories.ufactory.cc/Bio_Gripper_G2/1.introduction.html","st":"maker"},{"a":"contactglove3","b":"ufactory_vacuum","status":"integration","reason":"The vacuum gripper is switched on and off by xArm tool digital I/O. ContactGlove3 only feeds SteamVR apps on Windows; the SDK comes with ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://docs.accessories.ufactory.cc/xArm_Vacuum_Gripper/1.Introduction.html","st":"maker"},{"a":"contactglove3","b":"tesollo_dg2f","status":"integration","reason":"DG-2F takes Modbus or Ethernet commands, and this glove provides no SDK to send them. Custom integration, scoped with us.","url":"https://www.tesollo.com/en/products/grippers/dg-2f","st":"maker"},{"a":"contactglove3","b":"tesollo_dg3f","status":"integration","reason":"DG-3F-M is driven over Modbus or Ethernet, and this glove has no port output. Custom integration, scoped with us.","url":"https://www.tesollo.com/en/products/grippers/dg-3f-m","st":"maker"},{"a":"contactglove3","b":"tesollo_dg4f","status":"integration","reason":"DG-4F is commanded over Modbus or Ethernet, unreachable from this glove's Windows-only software. Custom integration, scoped with us.","url":"https://www.tesollo.com/en/products/grippers/dg-4f","st":"maker"},{"a":"contactglove3","b":"robotiq_2f85","status":"integration","reason":"The 2F-85 takes Modbus RTU from a robot controller or a PC running Robotiq's SDK. ContactGlove3 has no SDK; that needs ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"contactglove3","b":"robotiq_2f140","status":"integration","reason":"The 2F-140 takes Modbus RTU from a robot controller or a PC running Robotiq's SDK. ContactGlove3 has no SDK; that needs ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"contactglove3","b":"robotiq_hande","status":"integration","reason":"The Hand-E takes Modbus RTU from a robot controller or a PC running Robotiq's SDK. ContactGlove3 has no SDK; that needs ContactGlove3 Pro. Custom integration, scoped with us.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"haption_leader","b":"ufactory_lite6","status":"integration","reason":"We bridge the Virtuose's ROS 2 driver to the xArm SDK. No force sensor option, so motion only.","url":"https://www.haption.com/product/virtuose6d","st":"maker"},{"a":"haption_leader","b":"ufactory_xarm5","status":"integration","reason":"xArm 5 moves in x, y, z and yaw only, so the leader's roll and pitch are dropped in the mapping. Pose streams in over the UFACTORY SDK.","url":"http://docs.supportarticle.ufactory.cc/support_articles/hardware/the-difference-between-ufactory-xarm5-xarm6-and-xarm7.html","st":"maker"},{"a":"haption_leader","b":"ufactory_xarm6","status":"integration","reason":"Six axes map one to one, and UFACTORY's 6-axis force sensor can carry the contact feedback.","url":"https://www.haption.com/product/virtuose6d","st":"maker"},{"a":"haption_leader","b":"ufactory_xarm7","status":"integration","reason":"The seventh joint has no leader equivalent, so we fix the elbow pose when scoping the bridge.","url":"https://www.haption.com/product/virtuose6d","st":"maker"},{"a":"haption_leader","b":"ufactory_850","status":"integration","reason":"Cartesian pose streams in over the xArm SDK. UFACTORY's 6-axis force sensor is the feedback option.","url":"http://docs.supportarticle.ufactory.cc/support_articles/developer/ufactory-servo-mode-guide.html","st":"maker"},{"a":"haption_leader","b":"trossen_viperx","status":"integration","reason":"We bridge the leader into the Interbotix ROS 2 driver. Trossen's own leader is the WidowX arm.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"haption_leader","b":"limx_tron2_dualarm","status":"integration","reason":"One leader drives one arm, streaming pose into the TRON 2 SDK's servoP command.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"haption_leader","b":"limx_tron2_mobile","status":"integration","reason":"Same servoP arm interface as the fixed version. The mobile base keeps its own controls.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"haption_leader","b":"limx_tron2_suite","status":"integration","reason":"The dual-arm torso takes leader poses through servoP. The leg forms are driven separately.","url":"https://www.limxdynamics.com/en/documents/852949782845591552","st":"maker"},{"a":"haption_leader","b":"limx_oli","status":"integration","reason":"Oli's servoP interface takes arm poses at 500 Hz. Walking and balance stay with LimX.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"inspire_data_glove","b":"tesollo_m","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"tesollo_s","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"inspire_rh5dg2","status":"native","reason":"Knoxlabs names the RH5DG2 among the five hands this glove drives with no controller.","url":"https://en.inspire-robots.com/news/august-2026-from-wrc-exhibition-hall-to-opening-ceremony-stage-the-dexterous-hand-poised-for-action/","st":"maker"},{"a":"inspire_data_glove","b":"seed_rh8d","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"seed_rh8d_fs","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"seed_rh6d","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"seed_rh4d","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"allegro_v4","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"psyonic_ability","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"ufactory_gripper_g2","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"ufactory_bio_gripper","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"ufactory_vacuum","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"tesollo_dg2f","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"tesollo_dg3f","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"tesollo_dg4f","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"robotiq_2f85","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"robotiq_2f140","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_data_glove","b":"robotiq_hande","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_eg2_4b2","b":"ufactory_lite6","status":"integration","reason":"Lite 6's 8-pin tool connector carries 24 V and RS485 for Modbus RTU within its 1 A supply. The 223 g gripper leaves 377 g of payload; an adapter plate is needed.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"inspire_eg2_4b2","b":"ufactory_xarm5","status":"native","reason":"Knoxlabs lists the xArm as compatible, and its tool connector supplies 24V plus a user RS485 pair.","url":"https://en.inspire-robots.com/product/eg2-4b-2/","st":"maker"},{"a":"inspire_eg2_4b2","b":"ufactory_xarm6","status":"native","reason":"Knoxlabs lists the xArm as compatible, and its tool connector supplies 24V plus a user RS485 pair.","url":"https://en.inspire-robots.com/product/eg2-4b-2/","st":"maker"},{"a":"inspire_eg2_4b2","b":"ufactory_xarm7","status":"native","reason":"Knoxlabs lists the xArm as compatible, and its tool connector supplies 24V plus a user RS485 pair.","url":"https://en.inspire-robots.com/product/eg2-4b-2/","st":"maker"},{"a":"inspire_eg2_4b2","b":"ufactory_850","status":"integration","reason":"The 850's tool connector has 24V and user RS485. An adapter plate joins its ISO 9409 flange.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_eg2_4b2","b":"franka_fr3","status":"integration","reason":"Bolts to the ISO 9409-1-A50 flange, but 24V and RS485 run as external wiring, not through X6.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"inspire_eg2_4b2","b":"trossen_viperx","status":"incompatible","reason":"The ViperX gripper is a servo in the arm's own 12V DYNAMIXEL chain, with no tool flange.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"inspire_eg2_4b2","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 takes a wrist gripper and publishes 24V and RS485. Bracket and driver work scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_eg2_4b2","b":"limx_tron2_mobile","status":"integration","reason":"TRON 2 takes a wrist gripper and publishes 24V and RS485. Bracket and driver work scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_eg2_4b2","b":"limx_tron2_suite","status":"integration","reason":"TRON 2 takes a wrist gripper and publishes 24V and RS485. Bracket and driver work scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_eg2_4b2","b":"limx_oli","status":"integration","reason":"Oli's SDK drives an Inspire 2-finger gripper but LimX does not name the model. The EG2-4B2 uses the same EG2-4X2 RS485 protocol; confirm mount and voltage variant with LimX.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"inspire_eg2_4c2","b":"ufactory_lite6","status":"integration","reason":"Lite 6's tool port carries 24V and RS485, but the 231g gripper leaves only 370g payload.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"inspire_eg2_4c2","b":"ufactory_xarm5","status":"native","reason":"Knoxlabs lists the xArm. The gripper runs off its 24V tool RS485 port via a mounting plate.","url":"https://en.inspire-robots.com/product/eg2-4c/","st":"maker"},{"a":"inspire_eg2_4c2","b":"ufactory_xarm6","status":"native","reason":"xArm 6's 5 kg payload and tool RS485 port drive this gripper. Knoxlabs lists the xArm.","url":"https://en.inspire-robots.com/product/eg2-4c/","st":"maker"},{"a":"inspire_eg2_4c2","b":"ufactory_xarm7","status":"native","reason":"Knoxlabs lists the xArm. The seven-axis wrist feeds the gripper 24V and RS485 from its tool port.","url":"https://en.inspire-robots.com/product/eg2-4c/","st":"maker"},{"a":"inspire_eg2_4c2","b":"ufactory_850","status":"integration","reason":"The 850's tool port has 24V and RS485 for Modbus RTU. A mounting plate is needed.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_eg2_4c2","b":"franka_fr3","status":"integration","reason":"Bolts to the DIN ISO 9409-1-A50 flange. X6 is Franka Hand only, so RS485 runs separately.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"inspire_eg2_4c2","b":"trossen_viperx","status":"incompatible","reason":"The ViperX gripper is one of its DYNAMIXEL servos and Trossen publishes no tool flange to swap it.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"inspire_eg2_4c2","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 supplies the 24V and RS485 this gripper needs. Wrist bracket and driver are scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_eg2_4c2","b":"limx_tron2_mobile","status":"integration","reason":"The mobile TRON 2 has the same 24V and RS485 ports. Wrist bracket and driver scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_eg2_4c2","b":"limx_tron2_suite","status":"integration","reason":"The three-in-one TRON 2 exposes RS485 and 24V. Wrist bracket and gripper driver are scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_eg2_4c2","b":"limx_oli","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"inspire_rh56bfx","b":"ufactory_lite6","status":"incompatible","reason":"The hand alone weighs 540 g of the Lite 6's 600 g payload, leaving 60 g for adapter and object, and its 2 A peak exceeds the 1 A tool supply.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"inspire_rh56bfx","b":"ufactory_xarm5","status":"integration","reason":"Needs an adapter to the ISO 9409-1-50 flange. The tool port supplies 24 V and RS485.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56bfx","b":"ufactory_xarm6","status":"integration","reason":"Needs an adapter to the ISO 9409-1-50 flange. 5 kg payload and a 24 V RS485 tool port.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56bfx","b":"ufactory_xarm7","status":"integration","reason":"Needs an adapter to the ISO 9409-1-50 flange. 3.5 kg payload and a 24 V RS485 tool port.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56bfx","b":"ufactory_850","status":"integration","reason":"Bolts to the ISO 9409-1-50-4-M6 flange with your adapter. The tool connector carries RS485.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56bfx","b":"franka_fr3","status":"integration","reason":"Mounts on the DIN ISO 9409-1-A50 flange, but the hand needs its own 24 V and RS485 wiring.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"inspire_rh56bfx","b":"trossen_viperx","status":"incompatible","reason":"The wrist ends in a fixed gripper with no tool flange, so the hand cannot bolt on.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"inspire_rh56bfx","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 accepts a dexterous hand and supplies RS485 and 24 V. We scope the wrist adapter.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56bfx","b":"limx_tron2_mobile","status":"integration","reason":"Same TRON 2 wrist, RS485 port and 24 V output. The hand adapter is scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56bfx","b":"limx_tron2_suite","status":"integration","reason":"The suite uses the same TRON 2 arms, so the hand needs a wrist adapter and RS485 wiring.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56bfx","b":"limx_oli","status":"integration","reason":"Oli's SDK supports LimX grippers, an Inspire 2-finger gripper and BrainCo Revo 1 and 2 hands, not this hand. Fitting it needs a custom wrist adapter and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"inspire_rh56dfx","b":"ufactory_lite6","status":"incompatible","reason":"Lite 6 is rated 600 g. The hand weighs 540 g bare and 650 g with wrist.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"inspire_rh56dfx","b":"ufactory_xarm5","status":"native","reason":"UFACTORY Studio drives this hand over the xArm tool RS485. Inspire supplies the aviation adapter cable.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"inspire_rh56dfx","b":"ufactory_xarm6","status":"native","reason":"UFACTORY Studio drives this hand over the xArm tool RS485. Inspire supplies the aviation adapter cable.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"inspire_rh56dfx","b":"ufactory_xarm7","status":"native","reason":"UFACTORY Studio drives this hand over the xArm tool RS485. Inspire supplies the aviation adapter cable.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"inspire_rh56dfx","b":"ufactory_850","status":"native","reason":"UFACTORY's own guide pairs the 850 with this hand over tool RS485. Inspire supplies the adapter cable.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"inspire_rh56dfx","b":"franka_fr3","status":"integration","reason":"Mounts on the ISO 9409-1-A50 flange with an adapter plate. The hand's RS485 is wired separately.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"inspire_rh56dfx","b":"trossen_viperx","status":"incompatible","reason":"The ViperX ends in its own DYNAMIXEL gripper servo, and Trossen publishes no tool flange for mounting a hand.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"inspire_rh56dfx","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 takes a dexterous hand on 24 V RS485. LimX has tested only BrainCo hands.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56dfx","b":"limx_tron2_mobile","status":"integration","reason":"TRON 2 takes a dexterous hand on 24 V RS485. LimX has tested only BrainCo hands.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56dfx","b":"limx_tron2_suite","status":"integration","reason":"The TRON 2 wrist takes a dexterous hand and the body has an RS485 port and 24 V output.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56dfx","b":"limx_oli","status":"integration","reason":"Oli's SDK supports LimX grippers, an Inspire 2-finger gripper and BrainCo Revo 1 and 2 hands, not this hand. Fitting it needs a custom wrist adapter and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"inspire_rh56e2","b":"ufactory_lite6","status":"incompatible","reason":"The hand weighs 790 g, over the Lite 6's 600 g maximum payload.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"inspire_rh56e2","b":"ufactory_xarm5","status":"integration","reason":"The xArm 5's 3 kg payload carries the 790 g hand and its tool port carries RS485, but the 4 A peak exceeds the port's 1.8 A, so add a 24 V supply.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"inspire_rh56e2","b":"ufactory_xarm6","status":"integration","reason":"The xArm 6's 12-pin tool port carries the hand's RS485 link, but the hand's 4 A peak exceeds the port's 1.8 A, so it needs its own 24 V supply and an adapter plate.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"inspire_rh56e2","b":"ufactory_xarm7","status":"integration","reason":"The xArm 7's 3.5 kg payload carries the 790 g hand and its tool port carries RS485, but the 4 A peak exceeds the port's 1.8 A, so add a 24 V supply.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"inspire_rh56e2","b":"ufactory_850","status":"integration","reason":"Mounts on the ISO 9409-1-50 flange with an adapter plate and talks RS485 from the tool port.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56e2","b":"franka_fr3","status":"integration","reason":"Bolts to the FR3's DIN ISO 9409-1-A50 flange by adapter. Franka configures X6 for the Franka Hand, so the hand's 24 V and RS485 run as external wiring.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"inspire_rh56e2","b":"trossen_viperx","status":"incompatible","reason":"Its gripper is built in with no tool flange, and 750 g payload is under the hand.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"inspire_rh56e2","b":"limx_tron2_dualarm","status":"integration","reason":"Wrist takes a dexterous hand on 24V RS485. Only BrainCo is tested, so we scope integration.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56e2","b":"limx_tron2_mobile","status":"integration","reason":"Same 5 kg wrist on 24V RS485. LimX has tested only BrainCo, so the hand needs scoping.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56e2","b":"limx_tron2_suite","status":"integration","reason":"LimX rates the wrist for a dexterous hand and offers 24V with RS485, so integration is scoped.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56e2","b":"limx_oli","status":"integration","reason":"Oli's SDK supports LimX grippers, an Inspire 2-finger gripper and BrainCo Revo 1 and 2 hands, not this hand. Fitting it needs a custom wrist adapter and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"inspire_rh56f1","b":"ufactory_lite6","status":"incompatible","reason":"The hand weighs 630 g and the Lite 6 is rated for 600 g, so it cannot carry it.","url":"https://en.inspire-robots.com/product/rh56f1/","st":"maker"},{"a":"inspire_rh56f1","b":"ufactory_xarm5","status":"integration","reason":"The 3 kg wrist carries it. Add an adapter plate and drive the hand over RS485.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56f1","b":"ufactory_xarm6","status":"integration","reason":"Plenty of payload at 5 kg. Needs an adapter plate and its own 24V and RS485 feed.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56f1","b":"ufactory_xarm7","status":"integration","reason":"The 3.5 kg wrist takes it on an adapter plate, with the hand on its own RS485 line.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56f1","b":"ufactory_850","status":"integration","reason":"The ISO 9409 flange and 5 kg wrist fit. Add an adapter plate and a 24V supply.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh56f1","b":"franka_fr3","status":"integration","reason":"Mounts on the DIN ISO 9409 flange by adapter. The hand needs its own wiring, not X6.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"inspire_rh56f1","b":"trossen_viperx","status":"incompatible","reason":"The ViperX ends in its own DYNAMIXEL gripper servo with no published tool flange, and the hand needs 24 to 48 V, not the arm's 12 V supply.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"inspire_rh56f1","b":"limx_tron2_dualarm","status":"integration","reason":"The torso's EtherCAT, RS485 and 24V to 48V outputs suit the hand. We scope the wrist bracket.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56f1","b":"limx_tron2_mobile","status":"integration","reason":"Same wiring as the fixed torso: EtherCAT, RS485 and 24V power, plus a wrist bracket we scope.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56f1","b":"limx_tron2_suite","status":"integration","reason":"TRON 2 takes a dexterous hand at the wrist and offers EtherCAT, RS485 and 24V power.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56f1","b":"limx_oli","status":"integration","reason":"Oli's SDK supports LimX grippers, an Inspire 2-finger gripper and BrainCo Revo 1 and 2 hands, not this hand. Fitting it needs a custom wrist adapter and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"inspire_rh56h1","b":"ufactory_lite6","status":"incompatible","reason":"The 470 g hand leaves 130 g of the Lite 6's 600 g payload for adapter and object, and its 5 A peak far exceeds the 1 A tool supply.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"inspire_rh56h1","b":"ufactory_xarm5","status":"integration","reason":"UFACTORY's RH56 guide covers only the RH56DFX. The H1 talks RS485 at 115200 by default, but its 5 A peak exceeds the xArm's 1.8 A tool supply, so power it separately.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"inspire_rh56h1","b":"ufactory_xarm6","status":"integration","reason":"The xArm 6's 5 kg payload carries the 470 g hand over tool RS485, but UFACTORY's guide covers only the RH56DFX and the H1's 5 A peak needs its own supply.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"inspire_rh56h1","b":"ufactory_xarm7","status":"integration","reason":"UFACTORY's RH56 guide covers only the RH56DFX. The H1 needs an adapter plate to the xArm 7 flange, RS485 from the tool port and its own supply for its 5 A peak.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"inspire_rh56h1","b":"ufactory_850","status":"integration","reason":"UFACTORY's 850 guide covers the RH56DFX, not the H1. The H1 talks RS485 at 115200 by default from the tool port, but its 5 A peak needs its own supply.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"inspire_rh56h1","b":"franka_fr3","status":"integration","reason":"Adapter plate onto the DIN ISO 9409-1-A50 flange, then the hand runs on its own RS485 wiring.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"inspire_rh56h1","b":"trossen_viperx","status":"incompatible","reason":"The follower arm ends in its own built-in gripper, with no tool flange to mount a hand.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"inspire_rh56h1","b":"limx_tron2_dualarm","status":"integration","reason":"LimX has tested BrainCo hands only, so we scope the Inspire integration with you.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56h1","b":"limx_tron2_mobile","status":"integration","reason":"Same wrist and RS485 port as the fixed TRON 2, so this pairing is scoped engineering.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56h1","b":"limx_tron2_suite","status":"integration","reason":"TRON 2 wrists take a dexterous hand over RS485. The Inspire fit needs configuration engineering.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh56h1","b":"limx_oli","status":"integration","reason":"Oli's SDK supports LimX grippers, an Inspire 2-finger gripper and BrainCo Revo 1 and 2 hands, not this hand. Fitting it needs a custom wrist adapter and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"inspire_rh5dg2","b":"ufactory_lite6","status":"incompatible","reason":"Lite 6 carries 600 g and the hand alone weighs 1020 g, so the arm is undersized.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"inspire_rh5dg2","b":"ufactory_xarm5","status":"integration","reason":"The 1020 g hand fits the xArm 5's 3 kg payload with a flange adapter, its own 24 V supply and your EtherCAT master.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh5dg2","b":"ufactory_xarm6","status":"integration","reason":"xArm 6's 5kg payload leaves headroom. You add a wrist adapter plate and an EtherCAT master.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh5dg2","b":"ufactory_xarm7","status":"integration","reason":"xArm 7's 3.5kg payload suits the hand, once a wrist adapter and EtherCAT master are added.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh5dg2","b":"ufactory_850","status":"integration","reason":"Mounts on the 850's ISO 9409-1-50-4-M6 flange with an adapter plate. Control runs from your EtherCAT master.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"inspire_rh5dg2","b":"franka_fr3","status":"integration","reason":"Adapter plate joins the hand to the FR3's DIN ISO 9409-1-A50 flange. X6 serves Franka Hand only.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"inspire_rh5dg2","b":"trossen_viperx","status":"incompatible","reason":"The follower arm holds 750g and ends in its own gripper, with no wrist flange to swap.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"inspire_rh5dg2","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 wrists accept a dexterous hand and expose EtherCAT plus 48V. LimX has validated BrainCo hands.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh5dg2","b":"limx_tron2_mobile","status":"integration","reason":"Same wrists, EtherCAT ports and 48V rail as the fixed TRON 2. We scope the hand integration.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh5dg2","b":"limx_tron2_suite","status":"integration","reason":"The TRON 2 arms take a dexterous hand on EtherCAT and 48V. Integration is scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"inspire_rh5dg2","b":"limx_oli","status":"integration","reason":"Oli's SDK supports LimX grippers, an Inspire 2-finger gripper and BrainCo Revo hands, not this hand; its 7.5 A peak also exceeds Oli's 5 A outputs. Custom engineering needed.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"manus_bodypack","b":"quantum_metagloves","status":"native","reason":"MANUS runs the Bodypack with Quantum Metagloves, but those gloves are end of life.","url":"https://www.manus-meta.com/products/quantum-metagloves","st":"maker"},{"a":"manus_bodypack","b":"senseglove_nova2","status":"incompatible","reason":"The Bodypack's ports take MANUS gloves only. Nova 2 talks Bluetooth to SenseCom.","url":"https://www.manus-meta.com/products/bodypack-lite","st":"maker"},{"a":"manus_bodypack","b":"senseglove_r1","status":"incompatible","reason":"R1 runs through its own Link Box to a PC, not a MANUS Bodypack.","url":"https://senseglove.gitlab.io/SenseGloveDocs/R1.html","st":"maker"},{"a":"manus_bodypack","b":"weart_touchdiver","status":"incompatible","reason":"The Bodypack Lite takes MANUS Metagloves and Prime 3 gloves only, on ports made for MANUS gloves, so it cannot carry this glove.","url":"https://www.manus-meta.com/products/bodypack-lite","st":"maker"},{"a":"manus_bodypack","b":"contactglove3","status":"incompatible","reason":"ContactGlove3 ships its own Windows dongle. The Bodypack carries MANUS gloves only.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"manus_bodypack","b":"inspire_data_glove","status":"incompatible","reason":"The Bodypack Lite takes MANUS Metagloves and Prime 3 gloves only, on ports made for MANUS gloves, so it cannot carry this glove.","url":"https://www.manus-meta.com/products/bodypack-lite","st":"maker"},{"a":"manus_bodypack","b":"rokoko_smartgloves","status":"incompatible","reason":"Smartgloves II connect to Rokoko's own suit and Studio. The Bodypack takes MANUS gloves.","url":"https://www.rokoko.com/products/smartgloves-ii","st":"maker"},{"a":"manus_bodypack","b":"xsens_awinda_starter","status":"native","reason":"Wears with the Awinda Starter suit and streams its hand data into Xsens MVN.","url":"https://www.manus-meta.com/products/bodypack-lite","st":"maker"},{"a":"manus_bodypack","b":"rokoko_smartsuit","status":"integration","reason":"Rides on the suit and sync records with Rokoko, but its gloves must be MANUS.","url":"https://www.manus-meta.com/products/bodypack-lite","st":"maker"},{"a":"manus_bodypack","b":"rokoko_smartsuit_gr","status":"integration","reason":"Rides on the suit and sync records with Rokoko, but its gloves must be MANUS.","url":"https://www.manus-meta.com/products/bodypack-lite","st":"maker"},{"a":"manus_pro","b":"inspire_rh56dfx","status":"integration","reason":"Knoxlabs names data gloves generically, not MANUS, so we retarget onto the hand's RS485 or CAN interface.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"manus_pro","b":"inspire_rh56bfx","status":"integration","reason":"Knoxlabs names data gloves generically, not MANUS, so we retarget onto the hand's RS485 or CAN interface.","url":"https://en.inspire-robots.com/product/rh56bfx/","st":"maker"},{"a":"manus_pro","b":"inspire_rh56h1","status":"integration","reason":"Knoxlabs names older MANUS gloves for this hand, so we retarget Metagloves Pro onto its RS485 interface.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"manus_pro","b":"inspire_rh56f1","status":"integration","reason":"Knoxlabs names older MANUS gloves (Prime 3, Quantum) for this hand. Metagloves Pro data is retargeted over its EtherCAT link, which needs an EtherCAT master, or RS485.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/RH56F1-User-ManualV1.2.pdf","st":"maker"},{"a":"manus_pro","b":"inspire_rh56e2","status":"native","reason":"MANUS publishes an RH56E2 teleoperation and retargeting use case: MANUS Core streams the hand skeleton and a grasp-retargeting layer maps it onto the six drives.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"manus_pro","b":"inspire_rh5dg2","status":"integration","reason":"Knoxlabs names older MANUS gloves (Prime 3, Quantum) for this hand. Metagloves Pro data is retargeted over its EtherCAT link, which needs an EtherCAT master.","url":"https://en.inspire-robots.com/product/rh5dg2/","st":"maker"},{"a":"manus_pro","b":"seed_rh8d","status":"integration","reason":"Retargets onto the RH8D through Seed's ROS 2 driver and the MANUS ROS 2 package.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"manus_pro","b":"seed_rh8d_fs","status":"integration","reason":"Retargets onto the force-sensing RH8D through Seed's ROS 2 driver and the MANUS ROS 2 package.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"manus_pro","b":"seed_rh6d","status":"integration","reason":"Seed's ROS driver covers the RH6D, and we bridge it to the MANUS glove stream.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"manus_pro","b":"seed_rh4d","status":"integration","reason":"Seed's ROS driver covers the RH4D, but its four actuators take a coarse finger mapping.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"manus_pro","b":"allegro_v4","status":"native","reason":"Wonik ships an Allegro teleoperation package built on MANUS Core 3 and its ROS 2 stream.","url":"https://github.com/Wonikrobotics-git/allegro_hand_teleoperation","st":"maker"},{"a":"manus_pro","b":"psyonic_ability","status":"native","reason":"MANUS publishes a Metagloves Pro to Ability Hand ROS 2 teleoperation workflow.","url":"https://www.manus-meta.com/use-cases/how-to-teleoperate-psyonic-ability-hand-with-manus","st":"maker"},{"a":"manus_pro","b":"inspire_eg2_4b2","status":"integration","reason":"Your pinch drives one jaw position over the gripper's RS485 Modbus link.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"manus_pro","b":"inspire_eg2_4c2","status":"integration","reason":"Your pinch drives one jaw position over the gripper's RS485 Modbus link.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"manus_pro","b":"ufactory_gripper_g2","status":"integration","reason":"Your pinch drives one jaw position through the UFACTORY Python SDK (set_gripper_g2_position), with the gripper on a UFACTORY arm.","url":"https://www.ufactory.cc/wp-content/uploads/2025/07/Gripper-G2-User-Manual_V2.7.0.pdf","st":"maker"},{"a":"manus_pro","b":"ufactory_bio_gripper","status":"integration","reason":"Your pinch drives one jaw position through the UFACTORY BIO gripper SDK calls.","url":"https://www.ufactory.cc/wp-content/uploads/2025/04/BIO-Gripper-G2-User-Manual-V2.6.0.pdf","st":"maker"},{"a":"manus_pro","b":"ufactory_vacuum","status":"integration","reason":"There is nothing to retarget here: a pinch gesture can only switch suction on or off.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"manus_pro","b":"tesollo_dg2f","status":"integration","reason":"Retargets through Tesollo's DG-2F ROS 2 driver, but two fingers need a custom mapping.","url":"https://en.tesollo.com/products/grippers/dg-2f","st":"maker"},{"a":"manus_pro","b":"tesollo_dg3f","status":"integration","reason":"Retargets through Tesollo's DG-3F ROS 2 driver, but three fingers need a custom mapping.","url":"https://en.tesollo.com/products/grippers/dg-3f-m","st":"maker"},{"a":"manus_pro","b":"tesollo_dg4f","status":"integration","reason":"Knoxlabs calls the DG-4F the pick when you do not need human-shaped retargeting.","url":"https://en.tesollo.com/products/grippers/dg-4f","st":"maker"},{"a":"manus_pro","b":"robotiq_2f85","status":"integration","reason":"Your pinch drives one knuckle position through Robotiq's ROS 2 driver.","url":"https://robotiq.com/hubfs/Product-sheets/Adaptive%20Grippers/Product-sheet-Adaptive-Grippers-EN.pdf","st":"maker"},{"a":"manus_pro","b":"robotiq_2f140","status":"integration","reason":"Robotiq's ROS 2 packages ship a 2F-140 description, so a pinch drives one jaw command.","url":"https://robotiq.com/hubfs/Product-sheets/Adaptive%20Grippers/Product-sheet-Adaptive-Grippers-EN.pdf","st":"maker"},{"a":"manus_pro","b":"robotiq_hande","status":"integration","reason":"Robotiq's open C++ SDK covers Hand-E, so a pinch drives one jaw position command.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"manus_pro_haptic","b":"inspire_rh56dfx","status":"integration","reason":"Glove data from the MANUS ROS 2 package is retargeted onto the hand's six drives over its RS485 protocol.","url":"https://www.manus-meta.com/products/metagloves-pro-haptic","st":"maker"},{"a":"manus_pro_haptic","b":"inspire_rh56bfx","status":"integration","reason":"Glove data from the MANUS ROS 2 package is retargeted onto the hand's six drives over its RS485 protocol.","url":"https://www.manus-meta.com/products/metagloves-pro-haptic","st":"maker"},{"a":"manus_pro_haptic","b":"inspire_rh56h1","status":"integration","reason":"Knoxlabs names older MANUS gloves here, so we scope Pro Haptic retargeting over ROS 2.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"manus_pro_haptic","b":"inspire_rh56f1","status":"integration","reason":"Knoxlabs names older MANUS gloves here, so we scope Pro Haptic retargeting over ROS 2.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/RH56F1-User-ManualV1.2.pdf","st":"maker"},{"a":"manus_pro_haptic","b":"inspire_rh56e2","status":"native","reason":"MANUS names the Inspire Hand E2 among the robot hands its Metagloves drive.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"manus_pro_haptic","b":"inspire_rh5dg2","status":"integration","reason":"Knoxlabs names older MANUS gloves here, so we scope Pro Haptic retargeting over ROS 2.","url":"https://en.inspire-robots.com/product/rh5dg2/","st":"maker"},{"a":"manus_pro_haptic","b":"seed_rh8d","status":"integration","reason":"Finger angles reach the RH8D through Seed's ROS 2 driver. We scope the retargeting.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"manus_pro_haptic","b":"seed_rh8d_fs","status":"integration","reason":"Same ROS 2 path as the plain RH8D, and its fingertip forces can feed the haptics.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"manus_pro_haptic","b":"seed_rh6d","status":"integration","reason":"Seed's ROS 1 driver names the RH6D. We bridge it to the MANUS ROS 2 stream.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"manus_pro_haptic","b":"seed_rh4d","status":"integration","reason":"Seed's ROS 1 driver names the RH4D. Its four actuators take a reduced finger mapping.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"manus_pro_haptic","b":"allegro_v4","status":"native","reason":"Wonik ships an official MANUS glove teleoperation package that retargets to Allegro joint commands.","url":"https://github.com/Wonikrobotics-git/allegro_hand_teleoperation","st":"maker"},{"a":"manus_pro_haptic","b":"psyonic_ability","status":"native","reason":"MANUS publishes a step by step ROS 2 workflow for driving the Ability Hand.","url":"https://www.manus-meta.com/use-cases/how-to-teleoperate-psyonic-ability-hand-with-manus","st":"maker"},{"a":"manus_pro_haptic","b":"inspire_eg2_4b2","status":"integration","reason":"Your grip becomes one open and close command over RS485. We script that mapping.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"manus_pro_haptic","b":"inspire_eg2_4c2","status":"integration","reason":"Your grip becomes one open and close command over RS485. We script that mapping.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"manus_pro_haptic","b":"ufactory_gripper_g2","status":"integration","reason":"Your grip drives one jaw position through the UFACTORY Python SDK (set_gripper_g2_position), with the gripper on a UFACTORY arm.","url":"https://www.ufactory.cc/wp-content/uploads/2025/07/Gripper-G2-User-Manual_V2.7.0.pdf","st":"maker"},{"a":"manus_pro_haptic","b":"ufactory_bio_gripper","status":"integration","reason":"Your grip drives one jaw position through the UFACTORY Python SDK (set_bio_gripper_g2_position), with the gripper on a UFACTORY arm's RS-485 tool port.","url":"https://www.ufactory.cc/wp-content/uploads/2025/04/BIO-Gripper-G2-User-Manual-V2.6.0.pdf","st":"maker"},{"a":"manus_pro_haptic","b":"ufactory_vacuum","status":"integration","reason":"A pinch triggers suction through the tool I/O. There is no finger by finger control.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"manus_pro_haptic","b":"tesollo_dg2f","status":"integration","reason":"Tesollo's ROS 2 package takes a retargeted grip from the MANUS bridge. We scope it.","url":"https://en.tesollo.com/products/grippers/dg-2f","st":"maker"},{"a":"manus_pro_haptic","b":"tesollo_dg3f","status":"integration","reason":"Twelve driven joints accept retargeted finger data through Tesollo's ROS 2 package. We scope it.","url":"https://en.tesollo.com/products/grippers/dg-3f-m","st":"maker"},{"a":"manus_pro_haptic","b":"tesollo_dg4f","status":"integration","reason":"Eighteen driven joints accept retargeted finger data through Tesollo's ROS 2 package. We scope it.","url":"https://en.tesollo.com/products/grippers/dg-4f","st":"maker"},{"a":"manus_pro_haptic","b":"robotiq_2f85","status":"integration","reason":"Grip aperture maps to one position command in Robotiq's ROS 2 driver. We script it.","url":"https://robotiq.com/hubfs/Product-sheets/Adaptive%20Grippers/Product-sheet-Adaptive-Grippers-EN.pdf","st":"maker"},{"a":"manus_pro_haptic","b":"robotiq_2f140","status":"integration","reason":"Grip aperture maps to one position command in Robotiq's ROS 2 driver. We script it.","url":"https://robotiq.com/hubfs/Product-sheets/Adaptive%20Grippers/Product-sheet-Adaptive-Grippers-EN.pdf","st":"maker"},{"a":"manus_pro_haptic","b":"robotiq_hande","status":"integration","reason":"Robotiq's open SDK covers Hand-E over Modbus. Your grip maps to one position command.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"psyonic_ability","b":"ufactory_lite6","status":"integration","reason":"The 470 g hand sits under the Lite 6's 600 g payload, tool included, leaving about 130 g for objects. It needs an ISO 9409-1-50 adapter and a separate 6 to 12 V supply.","url":"https://www.psyonic.io/s/Robotics-Spec-Sheet_06-000006.pdf","st":"maker"},{"a":"psyonic_ability","b":"ufactory_xarm5","status":"integration","reason":"We adapt the hand to UFACTORY's ISO 9409 flange and drive it from the ROS 2 host.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"psyonic_ability","b":"ufactory_xarm6","status":"integration","reason":"We adapt the hand to UFACTORY's ISO 9409 flange and drive it from the ROS 2 host.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"psyonic_ability","b":"ufactory_xarm7","status":"integration","reason":"We adapt the hand to UFACTORY's ISO 9409 flange and drive it from the ROS 2 host.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"psyonic_ability","b":"ufactory_850","status":"integration","reason":"Bolts to the 850's ISO 9409-1-50-4-M6 flange with an adapter, driven from our ROS 2 host.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"psyonic_ability","b":"franka_fr3","status":"integration","reason":"Adapter to the FR3's DIN ISO 9409-1-A50 flange. X6 is Franka Hand only, so we wire the hand.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf?hsLang=en","st":"maker"},{"a":"psyonic_ability","b":"trossen_viperx","status":"integration","reason":"The 470 g hand is under the ViperX's 750 g working payload, but the wrist ends in Trossen's gripper and no tool flange is published, so the mount is custom.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"psyonic_ability","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 takes a dexterous hand, but only BrainCo is tested, so we scope wiring and retargeting.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"psyonic_ability","b":"limx_tron2_mobile","status":"integration","reason":"TRON 2 takes a dexterous hand, but only BrainCo is tested, so we scope wiring and retargeting.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"psyonic_ability","b":"limx_tron2_suite","status":"integration","reason":"TRON 2 takes a dexterous hand, but only BrainCo is tested, so we scope wiring and retargeting.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"psyonic_ability","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers only its own grippers, an Inspire gripper and BrainCo Revo hands, so the Ability Hand needs a custom wrist mount, power and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"quantum_metagloves","b":"tesollo_m","status":"integration","reason":"Glove skeleton data retargets into the hand's ROS 2 driver. Knoxlabs lists the Pro gloves, not Quantum.","url":"https://en.tesollo.com/products/grippers/dg-5f-m","st":"maker"},{"a":"quantum_metagloves","b":"tesollo_s","status":"integration","reason":"Same ROS 2 retargeting path as the DG-5F-M. Knoxlabs lists Metagloves Pro for this hand, not Quantum.","url":"https://en.tesollo.com/products/grippers/dg-5f-s","st":"maker"},{"a":"quantum_metagloves","b":"inspire_rh56dfx","status":"integration","reason":"Knoxlabs lists data gloves generally. MANUS skeleton data is retargeted onto the hand's six drives over its RS485 protocol.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"quantum_metagloves","b":"inspire_rh56bfx","status":"integration","reason":"Same RS485 path as the RH56DFX: MANUS skeleton data is retargeted onto the hand's six drives.","url":"https://en.inspire-robots.com/product/rh56bfx/","st":"maker"},{"a":"quantum_metagloves","b":"inspire_rh56h1","status":"native","reason":"Knoxlabs lists Quantum Metagloves as a teleoperation input for this hand.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"quantum_metagloves","b":"inspire_rh56f1","status":"native","reason":"Knoxlabs names Quantum Metagloves in this hand's full-body teleoperation input list.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/RH56F1-User-ManualV1.2.pdf","st":"maker"},{"a":"quantum_metagloves","b":"inspire_rh56e2","status":"native","reason":"Knoxlabs lists Quantum Metagloves as a teleoperation input for the RH56E2.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"quantum_metagloves","b":"inspire_rh5dg2","status":"native","reason":"Knoxlabs names Quantum Metagloves for full-body teleoperation of this 13 DOF hand.","url":"https://en.inspire-robots.com/product/rh5dg2/","st":"maker"},{"a":"quantum_metagloves","b":"seed_rh8d","status":"integration","reason":"We bridge MANUS glove data into the hand's open-source ROS package over RS-485.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"quantum_metagloves","b":"seed_rh8d_fs","status":"integration","reason":"Same ROS bridge as the plain RH8D, but Quantum has no channel for fingertip force.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"quantum_metagloves","b":"seed_rh6d","status":"integration","reason":"Child-size hand takes the same ROS bridge. Finger travel is rescaled from adult glove data.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"quantum_metagloves","b":"seed_rh4d","status":"integration","reason":"Only four actuators, so glove fingers collapse onto index and combined finger flexion.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"quantum_metagloves","b":"allegro_v4","status":"integration","reason":"Wonik publishes a MANUS glove retargeting stack on Core 3. We confirm legacy Quantum licensing.","url":"https://github.com/Wonikrobotics-git/allegro_hand_teleoperation","st":"maker"},{"a":"quantum_metagloves","b":"psyonic_ability","status":"integration","reason":"MANUS retargets gloves to this hand, but its published workflow requires Metagloves Pro.","url":"https://www.manus-meta.com/use-cases/how-to-teleoperate-psyonic-ability-hand-with-manus","st":"maker"},{"a":"quantum_metagloves","b":"inspire_eg2_4b2","status":"integration","reason":"Grip aperture maps to one RS485 position command. The glove's finger joints go unused.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"quantum_metagloves","b":"inspire_eg2_4c2","status":"integration","reason":"Same RS485 position mapping as the EG2-4B2, at 20N instead of 15N grip.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"quantum_metagloves","b":"ufactory_gripper_g2","status":"integration","reason":"Pinch distance drives set_gripper_g2_position over Modbus. A UFACTORY arm and control box are required.","url":"https://www.ufactory.cc/wp-content/uploads/2025/07/Gripper-G2-User-Manual_V2.7.0.pdf","st":"maker"},{"a":"quantum_metagloves","b":"ufactory_bio_gripper","status":"integration","reason":"Pinch distance drives the labware jaws over Modbus RTU through a UFACTORY control box.","url":"https://www.ufactory.cc/wp-content/uploads/2025/04/BIO-Gripper-G2-User-Manual-V2.6.0.pdf","st":"maker"},{"a":"quantum_metagloves","b":"ufactory_vacuum","status":"integration","reason":"Suction is only on or off, so a pinch gesture triggers the tool I/O line.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"quantum_metagloves","b":"tesollo_dg2f","status":"integration","reason":"Glove data retargets onto six joints through Tesollo's ROS 2 driver over Ethernet.","url":"https://en.tesollo.com/products/grippers/dg-2f","st":"maker"},{"a":"quantum_metagloves","b":"tesollo_dg3f","status":"integration","reason":"Glove data retargets onto twelve joints through Tesollo's ROS 2 driver over Ethernet.","url":"https://en.tesollo.com/products/grippers/dg-3f-m","st":"maker"},{"a":"quantum_metagloves","b":"tesollo_dg4f","status":"integration","reason":"Glove data retargets onto eighteen joints through Tesollo's ROS 2 driver over Ethernet.","url":"https://en.tesollo.com/products/grippers/dg-4f","st":"maker"},{"a":"quantum_metagloves","b":"robotiq_2f85","status":"integration","reason":"Grasp aperture becomes one Modbus position command through Robotiq's open-source SDK.","url":"https://robotiq.com/hubfs/Product-sheets/Adaptive%20Grippers/Product-sheet-Adaptive-Grippers-EN.pdf","st":"maker"},{"a":"quantum_metagloves","b":"robotiq_2f140","status":"integration","reason":"Same single Modbus position command as the 2F-85, across a 140 mm stroke.","url":"https://robotiq.com/hubfs/Product-sheets/Adaptive%20Grippers/Product-sheet-Adaptive-Grippers-EN.pdf","st":"maker"},{"a":"quantum_metagloves","b":"robotiq_hande","status":"integration","reason":"Same Robotiq Modbus SDK path. The sealed jaws take a single position command.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"robotiq_2f140","b":"ufactory_lite6","status":"incompatible","reason":"The 2F-140 weighs about 1 kg, past the Lite 6's 600 g rated payload.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"robotiq_2f140","b":"ufactory_xarm5","status":"native","reason":"UFACTORY lists the 2F-140 as a supported xArm end effector. The 3 kg payload carries it easily.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"robotiq_2f140","b":"ufactory_xarm6","status":"native","reason":"UFACTORY documents the 2F-140 on xArm 6: wired to the tool port, Modbus RTU at 115200 baud, and driven from UFACTORY Studio.","url":"http://docs.supportarticle.ufactory.cc/support_articles/software/how-to-use-robotiq-gripper-on-xarm-tool-end.html","st":"maker"},{"a":"robotiq_2f140","b":"ufactory_xarm7","status":"native","reason":"A supported xArm end effector in UFACTORY's own manual, with TCP and collision presets published for the 2F-140.","url":"http://docs.supportarticle.ufactory.cc/support_articles/software/how-to-use-robotiq-gripper-on-xarm-tool-end.html","st":"maker"},{"a":"robotiq_2f140","b":"ufactory_850","status":"integration","reason":"UFACTORY's Robotiq guide names xArm 5, 6 and 7 only. The 850 has the same 12-pin RS-485 tool port, and UFACTORY Studio carries 2F-140 presets.","url":"https://docs.ufactory.cc/user_manual/ufactoryStudio/5.blockly.html","st":"maker"},{"a":"robotiq_2f140","b":"franka_fr3","status":"integration","reason":"Bolts to the FR3's ISO 9409 A50 flange. Its X6 port is Franka Hand only, so wire externally.","url":"https://blog.robotiq.com/knowledge/mounting-robotiq-2f-and-hand-e-grippers-on-franka-emika-robots","st":"maker"},{"a":"robotiq_2f140","b":"trossen_viperx","status":"incompatible","reason":"The ViperX's 750 g working payload is below this gripper's 1 kg weight, and the arm ends in its own servo gripper.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"robotiq_2f140","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 publishes 24 V and RS485 peripheral ports. We scope the wrist bracket and driver work.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_2f140","b":"limx_tron2_mobile","status":"integration","reason":"TRON 2 Mobile publishes the same 24 V and RS485 ports. We scope the bracket and driver.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_2f140","b":"limx_tron2_suite","status":"integration","reason":"LimX takes a gripper at the wrist and publishes 24 V plus RS485. Mounting is engineered per build.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_2f140","b":"limx_oli","status":"integration","reason":"LimX documents only its own and named Inspire and BrainCo end effectors for Oli, each with its own adapter. This gripper needs a custom wrist adapter and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"robotiq_2f85","b":"ufactory_lite6","status":"incompatible","reason":"Lite 6 carries 600 g, and UFACTORY itself rates this gripper at 925 g.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"robotiq_2f85","b":"ufactory_xarm5","status":"native","reason":"UFACTORY lists the 2F-85 as a supported xArm end effector. 3 kg leaves margin.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"robotiq_2f85","b":"ufactory_xarm6","status":"native","reason":"UFACTORY supports the 2F-85 on xArm, and the 5 kg xArm 6 carries it easily.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"robotiq_2f85","b":"ufactory_xarm7","status":"native","reason":"A supported xArm end effector. It wires to the arm's 12-pin tool connector.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"robotiq_2f85","b":"ufactory_850","status":"integration","reason":"UFACTORY's Robotiq guide names xArm 5, 6 and 7 only. The 850 has the same 12-pin RS-485 tool port, and UFACTORY Studio carries 2F-85 presets.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"robotiq_2f85","b":"franka_fr3","status":"integration","reason":"Bolts to the FR3's ISO 9409-1-A50 flange with the Robotiq coupling. Needs separate 24 V and RS-485 wiring.","url":"https://blog.robotiq.com/knowledge/mounting-robotiq-2f-and-hand-e-grippers-on-franka-emika-robots","st":"maker"},{"a":"robotiq_2f85","b":"trossen_viperx","status":"incompatible","reason":"The ViperX carries 750 g, publishes no tool flange, and its gripper is a fixed servo joint.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"robotiq_2f85","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 publishes the 24 V and RS-485 this gripper needs. We scope the wrist bracket.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_2f85","b":"limx_tron2_mobile","status":"integration","reason":"LimX publishes 24 V and RS-485 on TRON 2. We scope the wrist bracket and validation.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_2f85","b":"limx_tron2_suite","status":"integration","reason":"The TRON 2 wrist takes a gripper, but this one needs a bracket we scope.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_2f85","b":"limx_oli","status":"integration","reason":"LimX documents only its own and named Inspire and BrainCo end effectors for Oli, each with its own adapter. This gripper needs a custom wrist adapter and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"robotiq_hande","b":"ufactory_lite6","status":"incompatible","reason":"Hand-E weighs 1 kg or more, past the Lite 6's 600 g rated payload.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"robotiq_hande","b":"ufactory_xarm5","status":"integration","reason":"UFACTORY publishes a Robotiq gripper guide for xArm. We supply the coupling and set the Modbus link.","url":"http://docs.supportarticle.ufactory.cc/support_articles/software/how-to-use-robotiq-gripper-on-xarm-tool-end.html","st":"maker"},{"a":"robotiq_hande","b":"ufactory_xarm6","status":"integration","reason":"UFACTORY Studio already drives Robotiq grippers on xArm. Hand-E adds a coupling and a wiring step.","url":"https://docs.ufactory.cc/user_manual/ufactoryStudio/5.blockly.html","st":"maker"},{"a":"robotiq_hande","b":"ufactory_xarm7","status":"integration","reason":"Same xArm tool flange and Modbus tool port. We fit the Robotiq coupling and scope the wiring.","url":"http://docs.supportarticle.ufactory.cc/support_articles/hardware/the-difference-between-ufactory-xarm5-xarm6-and-xarm7.html","st":"maker"},{"a":"robotiq_hande","b":"ufactory_850","status":"integration","reason":"The 850's ISO 9409-1-50-4-M6 flange takes the Robotiq coupling, and its tool port speaks Modbus RTU.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"robotiq_hande","b":"franka_fr3","status":"integration","reason":"Bolts to the FR3's ISO 9409-1-A50 flange. Its 24 V and Modbus link run as external wiring.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"robotiq_hande","b":"trossen_viperx","status":"incompatible","reason":"The ViperX ends in its own servo gripper, and Hand-E's 1 kg or more exceeds its 750 g working payload.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"robotiq_hande","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 takes a gripper at the wrist, but third-party fitting is engineered per configuration.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_hande","b":"limx_tron2_mobile","status":"integration","reason":"Same TRON 2 wrist, 24 V output and RS485 port. We scope the Hand-E fitting at quotation.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_hande","b":"limx_tron2_suite","status":"integration","reason":"TRON 2 arms take a gripper, but LimX publishes no wrist flange, so we scope the adapter.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"robotiq_hande","b":"limx_oli","status":"integration","reason":"LimX documents only its own and named Inspire and BrainCo end effectors for Oli, each with its own adapter. This gripper needs a custom wrist adapter and driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"rokoko_coil_pro","b":"manus_pro","status":"incompatible","reason":"The Coil Pro only tracks Rokoko glove sensors, and the MANUS mount takes Vive, OptiTrack or Xsens trackers.","url":"https://www.rokoko.com/products/coil-pro","st":"maker"},{"a":"rokoko_coil_pro","b":"manus_pro_haptic","status":"incompatible","reason":"Same as the non-haptic glove: the Coil Pro reads Rokoko sensors only, and MANUS mounts Vive, OptiTrack or Xsens.","url":"https://www.rokoko.com/products/coil-pro","st":"maker"},{"a":"rokoko_coil_pro","b":"quantum_metagloves","status":"incompatible","reason":"These legacy MANUS gloves carry no Rokoko EMF sensor, so the Coil Pro has nothing to track.","url":"https://www.rokoko.com/products/coil-pro","st":"maker"},{"a":"rokoko_coil_pro","b":"senseglove_nova2","status":"incompatible","reason":"Nova 2 needs a tracker clipped to its glove mount, and the Coil Pro is a tripod-mounted room emitter.","url":"https://senseglove.gitlab.io/SenseGloveDocs/compatibility.html","st":"maker"},{"a":"rokoko_coil_pro","b":"senseglove_r1","status":"incompatible","reason":"The R1 takes a tracker mounted on the glove, and the Coil Pro only reads Rokoko Smartglove sensors.","url":"https://senseglove.gitlab.io/SenseGloveDocs/R1.html","st":"maker"},{"a":"rokoko_coil_pro","b":"weart_touchdiver","status":"incompatible","reason":"TouchDIVER Pro tracks fingers itself and wears no adapters, so the Coil Pro has no sensor to read.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"rokoko_coil_pro","b":"contactglove3","status":"incompatible","reason":"ContactGlove3 needs SteamVR base stations or VIVE trackers for hand position, which the Coil Pro cannot provide.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"rokoko_coil_pro","b":"inspire_data_glove","status":"incompatible","reason":"The Inspire glove sends pose straight to the robot hand and carries no Rokoko sensor to track.","url":"https://www.rokoko.com/products/coil-pro","st":"maker"},{"a":"rokoko_coil_pro","b":"xsens","status":"incompatible","reason":"Xsens Link adds finger data through Manus or StretchSense gloves, and the Coil Pro tracks only Rokoko sensors.","url":"https://www.xsens.com/motion-capture/xsens-link-specifications","st":"maker"},{"a":"rokoko_coil_pro","b":"xsens_awinda","status":"incompatible","reason":"Awinda names Manus and StretchSense for hand data, and the Coil Pro positions Rokoko Smartgloves only.","url":"https://www.xsens.com/motion-capture/xsens-mvn-awinda","st":"maker"},{"a":"rokoko_coil_pro","b":"xsens_awinda_starter","status":"incompatible","reason":"Awinda Starter takes Manus or StretchSense gloves, and the Coil Pro works only with Rokoko Smartgloves.","url":"https://www.xsens.com/motion-capture/xsens-mvn-awinda-starter","st":"maker"},{"a":"rokoko_smartgloves","b":"tesollo_m","status":"integration","reason":"Glove pose retargets onto the hand's twenty joints through its ROS 2 driver. We scope that work.","url":"https://www.tesollo.com/en/products/grippers/dg-5f-m","st":"maker"},{"a":"rokoko_smartgloves","b":"tesollo_s","status":"integration","reason":"Same ROS 2 and Modbus TCP path as the DG-5F-M, at 500 Hz. Retargeting is custom code.","url":"https://www.tesollo.com/en/products/grippers/dg-5f-s","st":"maker"},{"a":"rokoko_smartgloves","b":"inspire_rh56dfx","status":"integration","reason":"Knoxlabs lists data gloves as an input for this hand. Retargeted finger commands go to it over RS485 or CAN.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"rokoko_smartgloves","b":"inspire_rh56bfx","status":"integration","reason":"Same RS485 path as the RH56DFX. The gloves feed it retargeted finger angles.","url":"https://en.inspire-robots.com/product/rh56bfx/","st":"maker"},{"a":"rokoko_smartgloves","b":"inspire_rh56h1","status":"integration","reason":"Retargeted glove angles reach six hand DoF over RS485 or CAN FD. Rokoko is not vendor-listed.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"rokoko_smartgloves","b":"inspire_rh56f1","status":"integration","reason":"Takes RS485, CAN FD or EtherCAT. The glove's pose stream reaches it as retargeted joint targets.","url":"https://www.rokoko.com/products/smartgloves-ii","st":"maker"},{"a":"rokoko_smartgloves","b":"inspire_rh56e2","status":"integration","reason":"Its ROS 2 plugins accept retargeted finger targets over RS485, CAN or ModbusTCP from the glove stream.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"rokoko_smartgloves","b":"inspire_rh5dg2","status":"integration","reason":"Thirteen DoF take retargeted glove angles over EtherCAT, CAN FD or RS485. Mapping is custom code.","url":"https://en.inspire-robots.com/product/rh5dg2/","st":"maker"},{"a":"rokoko_smartgloves","b":"seed_rh8d","status":"integration","reason":"Seed's open source ROS package takes retargeted finger angles over the hand's Dynamixel RS485 bus.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"rokoko_smartgloves","b":"seed_rh8d_fs","status":"integration","reason":"Same ROS path as the plain RH8D. Fingertip force returns data these gloves cannot render.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"rokoko_smartgloves","b":"seed_rh6d","status":"integration","reason":"Fifteen child-size joints take retargeted glove angles through Seed's ROS package over RS485.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"rokoko_smartgloves","b":"seed_rh4d","status":"integration","reason":"Four actuators make the mapping coarse, but Seed's ROS package accepts retargeted glove commands over RS485.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"rokoko_smartgloves","b":"allegro_v4","status":"integration","reason":"Wonik's teleoperation repo retargets glove input to joint commands, but ships tuned for MANUS, not Rokoko.","url":"https://github.com/Wonikrobotics-git/allegro_hand_linux_v4","st":"maker"},{"a":"rokoko_smartgloves","b":"psyonic_ability","status":"integration","reason":"The hand's ROS 2 wrapper takes target finger positions. MANUS documents a glove path to this hand; a Rokoko bridge is custom code.","url":"https://github.com/psyonicinc/ability-hand-ros2","st":"maker"},{"a":"rokoko_smartgloves","b":"inspire_eg2_4b2","status":"integration","reason":"Pinch width maps to the 70 mm stroke over RS485. One channel, not full finger pose.","url":"https://en.inspire-robots.com/product/eg2-4b/","st":"maker"},{"a":"rokoko_smartgloves","b":"inspire_eg2_4c2","status":"integration","reason":"Same RS485 stroke command as the EG2-4B2, at 20N. The glove supplies only pinch width.","url":"https://en.inspire-robots.com/product/eg2-4c/","st":"maker"},{"a":"rokoko_smartgloves","b":"ufactory_gripper_g2","status":"integration","reason":"Pinch width becomes a position command through the xArm Python SDK. Needs a UFACTORY arm and control box.","url":"https://docs.accessories.ufactory.cc/xArm_Gripper_G2/1.Introduction.html","st":"maker"},{"a":"rokoko_smartgloves","b":"ufactory_bio_gripper","status":"integration","reason":"A mapped pinch width drives its position mode through the xArm Python SDK and UFACTORY control box.","url":"https://docs.accessories.ufactory.cc/Bio_Gripper_G2/1.introduction.html","st":"maker"},{"a":"rokoko_smartgloves","b":"ufactory_vacuum","status":"integration","reason":"Suction is one on or off command, so a pinch triggers it. No finger retargeting applies.","url":"https://docs.accessories.ufactory.cc/xArm_Vacuum_Gripper/1.Introduction.html","st":"maker"},{"a":"rokoko_smartgloves","b":"tesollo_dg2f","status":"integration","reason":"Six joints on two fingers take retargeted glove pose through Tesollo's official ROS 2 package.","url":"https://www.tesollo.com/en/products/grippers/dg-2f","st":"maker"},{"a":"rokoko_smartgloves","b":"tesollo_dg3f","status":"integration","reason":"Twelve joints on three fingers take retargeted glove pose through Tesollo's ROS 2 package. Five fingers map down.","url":"https://www.tesollo.com/en/products/grippers/dg-3f-m","st":"maker"},{"a":"rokoko_smartgloves","b":"tesollo_dg4f","status":"integration","reason":"Eighteen joints on four fingers accept retargeted glove pose through Tesollo's official ROS 2 package.","url":"https://www.tesollo.com/en/products/grippers/dg-4f","st":"maker"},{"a":"rokoko_smartgloves","b":"robotiq_2f85","status":"integration","reason":"Pinch width maps to the 85 mm stroke through Robotiq's open source SDK over Modbus RTU.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"rokoko_smartgloves","b":"robotiq_2f140","status":"integration","reason":"Same open source SDK and Modbus RTU link as the 2F-85, across a 140 mm stroke.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"rokoko_smartgloves","b":"robotiq_hande","status":"integration","reason":"Robotiq's open source SDK covers Hand-E too, so a mapped pinch drives its parallel stroke.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"rokoko_smartsuit","b":"manus_pro","status":"integration","reason":"The suit streams the body and MANUS Core the fingers. Merging the two is custom work.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"rokoko_smartsuit","b":"manus_pro_haptic","status":"integration","reason":"Same path as Metagloves Pro: body from Rokoko Studio, fingers and haptics from MANUS Core.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"rokoko_smartsuit","b":"quantum_metagloves","status":"integration","reason":"Body from Rokoko Studio and fingers from MANUS Core can merge in Unreal or MotionBuilder, but Quantum Metagloves are end of life.","url":"https://www.manus-meta.com/products/quantum-metagloves","st":"maker"},{"a":"rokoko_smartsuit","b":"senseglove_nova2","status":"integration","reason":"Suit tracks the body, Nova 2 the fingers and forces. Joining both streams is custom work.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"rokoko_smartsuit","b":"senseglove_r1","status":"integration","reason":"R1 gives fingers and force feedback through its own API. We scope the merge with the suit.","url":"https://senseglove.gitlab.io/SenseGloveDocs/R1.html","st":"maker"},{"a":"rokoko_smartsuit","b":"weart_touchdiver","status":"integration","reason":"TouchDIVER Pro tracks fingers through its own SDK. Combining that with the suit's body is custom.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"rokoko_smartsuit","b":"contactglove3","status":"incompatible","reason":"ContactGlove3 speaks only SteamVR on Windows and publishes no data port the suit can join.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"rokoko_smartsuit","b":"inspire_data_glove","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"rokoko_smartsuit_gr","b":"manus_pro","status":"integration","reason":"Rokoko streams the body, MANUS Core the fingers. They join on one rig in MotionBuilder or Unreal.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"rokoko_smartsuit_gr","b":"manus_pro_haptic","status":"integration","reason":"Rokoko streams the body, MANUS Core the fingers. They join on one rig in MotionBuilder or Unreal.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"rokoko_smartsuit_gr","b":"quantum_metagloves","status":"integration","reason":"Same MotionBuilder blend of Rokoko body and MANUS fingers, but these gloves are end of life.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"rokoko_smartsuit_gr","b":"senseglove_nova2","status":"integration","reason":"Body comes from Rokoko Studio, fingers from SenseCom. Merging them on one rig is scoped with us.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"rokoko_smartsuit_gr","b":"senseglove_r1","status":"integration","reason":"Body streams from Rokoko Studio, hands from the R1's Python API or ROS workspace. Merging the two into one rig is custom work.","url":"https://senseglove.gitlab.io/SenseGloveDocs/R1.html","st":"maker"},{"a":"rokoko_smartsuit_gr","b":"weart_touchdiver","status":"integration","reason":"Rokoko sends the body, the WEART SDK the fingers. We scope the merge into one rig.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"rokoko_smartsuit_gr","b":"contactglove3","status":"incompatible","reason":"Diver-X states this ContactGlove3 has no generic data output and no Unity, Unreal, MotionBuilder or ROS 2 SDK, so its finger data cannot join the suit's body capture.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"rokoko_smartsuit_gr","b":"inspire_data_glove","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"seed_rh4d","b":"ufactory_lite6","status":"integration","reason":"Seed's ISO 9409-1-50 adapter fits the Lite 6 flange. The 600 g payload is the limit.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"seed_rh4d","b":"ufactory_xarm5","status":"integration","reason":"Seed's ISO 9409-1-50 adapter fits the xArm end flange. The hand keeps its own RS-485 line.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"seed_rh4d","b":"ufactory_xarm6","status":"integration","reason":"Seed's ISO 9409-1-50 adapter fits the xArm end flange. 5 kg payload carries the 250 g hand easily.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"seed_rh4d","b":"ufactory_xarm7","status":"integration","reason":"Seed's ISO 9409-1-50 adapter fits the xArm 7 end flange. The hand keeps its own RS-485 line.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"seed_rh4d","b":"ufactory_850","status":"integration","reason":"The 850 tool flange is ISO 9409-1-50-4-M6, the exact standard Seed's mounting adapter is made for.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"seed_rh4d","b":"franka_fr3","status":"integration","reason":"Mounts on the FR3 DIN ISO 9409-1-A50 flange. Power and control are wired externally, not through X6.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf?hsLang=en","st":"maker"},{"a":"seed_rh4d","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 takes a dexterous hand and offers 24 V and RS-485 ports. We scope the bracket.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh4d","b":"limx_tron2_mobile","status":"integration","reason":"TRON 2 takes a dexterous hand and offers 24 V and RS-485 ports. We scope the bracket.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh4d","b":"limx_tron2_suite","status":"integration","reason":"TRON 2 takes a dexterous hand and offers 24 V outputs and an RS-485 port, which suit the RH4D. The wrist bracket is custom and quoted.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh4d","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers only its own grippers, an Inspire gripper and BrainCo Revo hands, so a Seed hand needs a custom wrist bracket, power and RS-485 driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"seed_rh6d","b":"ufactory_lite6","status":"integration","reason":"Needs an adapter plate to the Lite 6's ISO 9409-1-50 flange, and the 305 g hand uses about half of the 600 g payload.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"seed_rh6d","b":"ufactory_xarm5","status":"integration","reason":"An adapter plate bolts it to the xArm's ISO 9409-1-50 flange. The hand keeps its own RS-485 link.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"seed_rh6d","b":"ufactory_xarm6","status":"integration","reason":"An adapter plate fits the ISO 9409-1-50 flange, and the 5 kg payload leaves plenty for the 305 g hand.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"seed_rh6d","b":"ufactory_xarm7","status":"integration","reason":"Same ISO 9409-1-50 flange and 24 V, RS-485 tool port as the xArm 6, so the hand needs only an adapter plate to bolt on.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"seed_rh6d","b":"ufactory_850","status":"integration","reason":"Bolts to the ISO 9409-1-50-4-M6 flange with an adapter plate. The tool port carries 24 V and RS-485, within the hand's 9 to 24 V range.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"seed_rh6d","b":"franka_fr3","status":"integration","reason":"Bolts to the DIN ISO 9409-1-A50 flange. X6 suits Franka Hand, so the hand is wired separately.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf?hsLang=en","st":"maker"},{"a":"seed_rh6d","b":"trossen_viperx","status":"integration","reason":"Both sides speak the DYNAMIXEL bus, but Trossen publishes no tool flange, so the bracket is custom.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"seed_rh6d","b":"limx_tron2_dualarm","status":"integration","reason":"The wrist takes a dexterous hand, but only BrainCo is tested, so Seed needs bracket and driver work.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh6d","b":"limx_tron2_mobile","status":"integration","reason":"Same wrist and 24 V RS-485 ports as the fixed TRON 2, so Seed needs a custom bracket.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh6d","b":"limx_tron2_suite","status":"integration","reason":"TRON 2 wrists accept a dexterous hand. Seed's custom bracket and RS-485 wiring are scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh6d","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers only its own grippers, an Inspire gripper and BrainCo Revo hands, so a Seed hand needs a custom wrist bracket, power and RS-485 driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"seed_rh8d","b":"ufactory_lite6","status":"incompatible","reason":"The hand weighs 620 g and the Lite 6 is rated for 600 g at the flange.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"seed_rh8d","b":"ufactory_xarm5","status":"integration","reason":"An adapter plate bolts the hand to the xArm's ISO 9409-1-50 flange, and 620 g sits inside the 3 kg payload.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"seed_rh8d","b":"ufactory_xarm6","status":"integration","reason":"An adapter plate bolts the hand to the xArm's ISO 9409-1-50 flange, and 620 g sits inside the 5 kg payload.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"seed_rh8d","b":"ufactory_xarm7","status":"integration","reason":"An adapter plate bolts the hand to the xArm's ISO 9409-1-50 flange, and 620 g sits inside the 3.5 kg payload.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"seed_rh8d","b":"ufactory_850","status":"integration","reason":"An adapter plate fits the 850's ISO 9409-1-50-4-M6 flange, and the tool port carries the 24 V and RS-485 the hand runs on.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"seed_rh8d","b":"franka_fr3","status":"integration","reason":"Mounts on the DIN ISO 9409-1-A50 flange, with power and RS-485 wired externally since X6 suits Franka Hand.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf?hsLang=en","st":"maker"},{"a":"seed_rh8d","b":"trossen_viperx","status":"integration","reason":"The 620 g hand is under the ViperX's 750 g working payload, but the wrist ends in Trossen's gripper and no tool flange is published, so the mount is custom.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"seed_rh8d","b":"limx_tron2_dualarm","status":"integration","reason":"LimX has tested BrainCo hands only, so this pairing needs a custom wrist bracket and wiring.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh8d","b":"limx_tron2_mobile","status":"integration","reason":"LimX has tested BrainCo hands only, so this pairing needs a custom wrist bracket and wiring.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh8d","b":"limx_tron2_suite","status":"integration","reason":"TRON 2 takes a dexterous hand at the wrist, but the bracket and RS-485 wiring are custom.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh8d","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers only its own grippers, an Inspire gripper and BrainCo Revo hands, so a Seed hand needs a custom wrist bracket, power and RS-485 driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"seed_rh8d_fs","b":"ufactory_lite6","status":"incompatible","reason":"The 620 g hand is heavier than the Lite 6's 600 g rated payload.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"seed_rh8d_fs","b":"ufactory_xarm5","status":"integration","reason":"An adapter plate bolts it to the xArm's ISO 9409-1-50 flange. Wiring and retargeting are scoped with us."},{"a":"seed_rh8d_fs","b":"ufactory_xarm6","status":"integration","reason":"An adapter plate bolts it to the xArm's ISO 9409-1-50 flange, well inside the 5 kg payload.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"seed_rh8d_fs","b":"ufactory_xarm7","status":"integration","reason":"An adapter plate bolts it to the xArm 7's ISO 9409-1-50 flange. We scope wiring and retargeting."},{"a":"seed_rh8d_fs","b":"ufactory_850","status":"integration","reason":"An adapter plate matches the 850's ISO 9409-1-50-4-M6 tool flange. We scope the wiring and driver setup.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"seed_rh8d_fs","b":"franka_fr3","status":"integration","reason":"An adapter plate fits the FR3's DIN ISO 9409-1-A50 flange. The hand keeps its own RS-485 link, since X6 is configured for Franka Hand.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf?hsLang=en","st":"maker"},{"a":"seed_rh8d_fs","b":"trossen_viperx","status":"integration","reason":"The ViperX ends in its own gripper and publishes no tool flange, so the mount is custom. The 620 g listed weight is under its 750 g working payload.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"seed_rh8d_fs","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 takes a dexterous hand at the wrist, but bracket and driver work are scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh8d_fs","b":"limx_tron2_mobile","status":"integration","reason":"TRON 2 takes a dexterous hand at the wrist, but bracket and driver work are scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh8d_fs","b":"limx_tron2_suite","status":"integration","reason":"The TRON 2 wrist accepts a dexterous hand. LimX publishes no flange, so we fit the bracket.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"seed_rh8d_fs","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers only its own grippers, an Inspire gripper and BrainCo Revo hands, so a Seed hand needs a custom wrist bracket, power and RS-485 driver work.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"senseglove_nova2","b":"tesollo_m","status":"integration","reason":"Knoxlabs lists SenseGlove for the DG-5F, but the validated licence is R1, so Nova 2 needs retargeting.","url":"https://www.tesollo.com/products/grippers/dg-5f-m","st":"maker"},{"a":"senseglove_nova2","b":"tesollo_s","status":"integration","reason":"Tesollo publishes a ROS 2 driver for the DG-5F-S, so Nova 2 data from SenseGlove's ROS 2 package is retargeted onto its 20 joints, or 15 on the compact version.","url":"https://www.tesollo.com/products/grippers/dg-5f-s","st":"maker"},{"a":"senseglove_nova2","b":"inspire_rh56bfx","status":"integration","reason":"Knoxlabs lists haptic gloves as a teleoperation input; Nova 2 data from SenseGlove's ROS 2 package is retargeted onto the RH56BFX's open RS485 register protocol.","url":"https://en.inspire-robots.com/product/rh56bfx/","st":"maker"},{"a":"senseglove_nova2","b":"inspire_rh56h1","status":"integration","reason":"Knoxlabs names only MANUS gloves for the RH56H1; Nova 2 joint angles must be retargeted onto Inspire's published RS485, CAN FD or EtherCAT protocol.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"senseglove_nova2","b":"inspire_rh56f1","status":"integration","reason":"Knoxlabs names MANUS as the glove input; Nova 2 needs retargeting onto Inspire's published EtherCAT protocol, with an EtherCAT master, or its RS485 or CAN FD port.","url":"https://en.inspire-robots.com/product/rh56f1/","st":"maker"},{"a":"senseglove_nova2","b":"inspire_rh56e2","status":"integration","reason":"Knoxlabs names MANUS as the glove input; Nova 2 finger data must be retargeted onto the RH56E2's published RS485, CAN or Modbus TCP protocol.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"senseglove_nova2","b":"inspire_rh5dg2","status":"integration","reason":"The RH5DG2 has 13 DoF against the Nova 2's six tracking sensors; Inspire publishes EtherCAT, CAN FD and RS485 protocols, so the mapping is custom integration work.","url":"https://en.inspire-robots.com/product/rh5dg2/","st":"maker"},{"a":"senseglove_nova2","b":"seed_rh8d","status":"integration","reason":"Knoxlabs pairs this hand with the R1, so Nova 2 runs through Seed's open ROS package instead.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"senseglove_nova2","b":"seed_rh8d_fs","status":"integration","reason":"The fingertip force licence is written for the R1, so Nova 2 control stays a scoped integration.","url":"https://www.senseglove.com/project-rembrandt/","st":"maker"},{"a":"senseglove_nova2","b":"seed_rh6d","status":"integration","reason":"Seed's ROS package covers the RH6D, so Nova 2 finger data maps onto six actuators.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"senseglove_nova2","b":"seed_rh4d","status":"integration","reason":"Only two finger channels here, so the glove's grip reduces to index and middle flexion.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"senseglove_nova2","b":"allegro_v4","status":"integration","reason":"Wonik's retargeting framework converts glove input to joint commands. We scope the Nova 2 side.","url":"https://github.com/Wonikrobotics-git/allegro_hand_teleoperation","st":"maker"},{"a":"senseglove_nova2","b":"psyonic_ability","status":"integration","reason":"MANUS is the supported glove path, so Nova 2 drives the hand through its ROS 2 node.","url":"https://github.com/psyonicinc/ability-hand-ros2","st":"maker"},{"a":"senseglove_nova2","b":"inspire_eg2_4b2","status":"integration","reason":"One grip axis, so we map the glove's pinch to an RS485 position command.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"senseglove_nova2","b":"inspire_eg2_4c2","status":"integration","reason":"Same RS485 gripper with more force, so Nova 2 pinch becomes one open and close command.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"senseglove_nova2","b":"ufactory_gripper_g2","status":"integration","reason":"Nova 2 pinch maps to gripper position through the xArm Python SDK, on a UFACTORY arm.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"senseglove_nova2","b":"ufactory_bio_gripper","status":"integration","reason":"The BIO Gripper G2 takes a position command (71 to 150 mm) through the xArm SDK on a UFACTORY arm, so Nova 2 pinch maps to grip width.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"senseglove_nova2","b":"ufactory_vacuum","status":"integration","reason":"No fingers to retarget, so a glove gesture becomes the suction on and off command.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"senseglove_nova2","b":"tesollo_dg2f","status":"integration","reason":"Six driven joints on Modbus and ROS 2, so Nova 2 retargeting is scoped with us.","url":"https://www.tesollo.com/products/grippers/dg-2f","st":"maker"},{"a":"senseglove_nova2","b":"tesollo_dg3f","status":"integration","reason":"Three fingers, twelve joints, so we retarget Nova 2 finger data through the Delto ROS 2 package.","url":"https://www.tesollo.com/products/grippers/dg-3f-m","st":"maker"},{"a":"senseglove_nova2","b":"tesollo_dg4f","status":"integration","reason":"Four fingers and 18 DoF rather than a five-finger hand, so Nova 2 mapping is written per task through Tesollo's ROS 2 driver.","url":"https://www.tesollo.com/products/grippers/dg-4f","st":"maker"},{"a":"senseglove_nova2","b":"robotiq_2f85","status":"integration","reason":"Nova 2 pinch drives grip position through Robotiq's ROS 2 driver or open C++ SDK.","url":"https://github.com/robotiq/grippers","st":"maker"},{"a":"senseglove_nova2","b":"robotiq_2f140","status":"integration","reason":"Robotiq's ROS 2 driver and C++ SDK cover the 2F-140 as well as the 2F-85, so the glove's pinch drives one grip axis.","url":"https://github.com/robotiq/ros","st":"maker"},{"a":"senseglove_nova2","b":"robotiq_hande","status":"integration","reason":"Sealed one-axis gripper on the same Robotiq SDK, so Nova 2 pinch maps to grip position.","url":"https://github.com/robotiq/grippers","st":"maker"},{"a":"senseglove_r1","b":"tesollo_s","status":"native","reason":"The same R1 licence covers the DG-5F-S in 15 and 20 DoF. SenseGlove is a listed data glove.","url":"https://www.senseglove.com/project-rembrandt/","st":"maker"},{"a":"senseglove_r1","b":"inspire_rh56dfx","status":"integration","reason":"Knoxlabs states this hand pairs with haptic gloves; R1 joint angles from SenseGlove's ROS 2 package are retargeted onto the hand's open RS485 register protocol.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"senseglove_r1","b":"inspire_rh56bfx","status":"integration","reason":"Knoxlabs lists haptic gloves as a teleoperation input; R1 joint angles from SenseGlove's ROS 2 package are retargeted onto the RH56BFX's open RS485 register protocol.","url":"https://en.inspire-robots.com/product/rh56bfx/","st":"maker"},{"a":"senseglove_r1","b":"inspire_rh56h1","status":"integration","reason":"R1 finger angles from SenseGlove's ROS 2 package are retargeted onto the RH56H1's published RS485, CAN FD or EtherCAT protocol.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"senseglove_r1","b":"inspire_rh56f1","status":"integration","reason":"R1 retargeting onto the RH56F1 runs over Inspire's published EtherCAT protocol, which needs an EtherCAT master, or its RS485 or CAN FD port.","url":"https://en.inspire-robots.com/product/rh56f1/","st":"maker"},{"a":"senseglove_r1","b":"inspire_rh56e2","status":"integration","reason":"R1 finger angles are retargeted onto the RH56E2 over Inspire's published RS485, CAN or Modbus TCP protocol.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"senseglove_r1","b":"inspire_rh5dg2","status":"integration","reason":"R1 retargeting onto the 13 DoF RH5DG2 runs over Inspire's published EtherCAT, CAN FD or RS485 protocol.","url":"https://en.inspire-robots.com/product/rh5dg2/","st":"maker"},{"a":"senseglove_r1","b":"seed_rh8d","status":"native","reason":"Knoxlabs states the RH8D pairs with the SenseGlove R1 for teleoperation and imitation-learning data collection.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"senseglove_r1","b":"seed_rh6d","status":"integration","reason":"Seed's ROS package covers the RH6D, so the R1 Seed licence is scoped to your hand model.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"senseglove_r1","b":"seed_rh4d","status":"integration","reason":"Seed's open ROS package covers the RH4D, but only two of its four actuators move fingers (the others drive the wrist), so R1 retargeting is scoped per project.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"senseglove_r1","b":"allegro_v4","status":"integration","reason":"Wonik's teleoperation repo retargets glove joint angles into Allegro commands. We swap MANUS for the R1.","url":"https://github.com/Wonikrobotics-git/allegro_hand_teleoperation","st":"maker"},{"a":"senseglove_r1","b":"psyonic_ability","status":"integration","reason":"The documented MANUS route publishes glove joint angles into the ROS 2 hand node. The R1 substitutes.","url":"https://github.com/psyonicinc/ability-hand-ros2","st":"maker"},{"a":"senseglove_r1","b":"inspire_eg2_4b2","status":"integration","reason":"The R1 grip drives one open and close axis over Modbus RTU. Nothing else to retarget.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"senseglove_r1","b":"inspire_eg2_4c2","status":"integration","reason":"Same single open and close axis over Modbus RTU, at 20N instead of 15N grip force.","url":"https://en.inspire-robots.com/wp-content/uploads/2026/09/INSPIRE-ROBOTS-ELECTRIC-GRIPPER-USER-MANUAL.pdf","st":"maker"},{"a":"senseglove_r1","b":"ufactory_gripper_g2","status":"integration","reason":"The R1 pinch maps to one position command in the xArm SDK. A UFACTORY arm is required.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"senseglove_r1","b":"ufactory_bio_gripper","status":"integration","reason":"The xArm SDK sets BIO Gripper G2 position, speed and force, so the R1 pinch maps to grip width through a UFACTORY arm and control box.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"senseglove_r1","b":"ufactory_vacuum","status":"integration","reason":"Suction is on or off only, so the glove can trigger it but not retarget fingers.","url":"https://github.com/xArm-Developer/xArm-Python-SDK/blob/master/doc/api/xarm_api.md","st":"maker"},{"a":"senseglove_r1","b":"tesollo_dg2f","status":"integration","reason":"Tesollo's ROS 2 driver takes joint targets, so we map R1 fingers onto six gripper joints.","url":"https://www.tesollo.com/products/grippers/dg-2f","st":"maker"},{"a":"senseglove_r1","b":"tesollo_dg3f","status":"integration","reason":"Tesollo's ROS 2 driver takes joint targets. Mapping five fingers onto three is a custom retarget.","url":"https://www.tesollo.com/products/grippers/dg-3f-m","st":"maker"},{"a":"senseglove_r1","b":"tesollo_dg4f","status":"integration","reason":"Tesollo's ROS 2 driver takes joint targets, but Knoxlabs notes this shape is not built for retargeting.","url":"https://www.tesollo.com/products/grippers/dg-4f","st":"maker"},{"a":"senseglove_r1","b":"robotiq_2f85","status":"integration","reason":"The R1 grip maps to one knuckle angle in Robotiq's ROS 2 driver, roughly open to closed.","url":"https://github.com/robotiq/grippers","st":"maker"},{"a":"senseglove_r1","b":"robotiq_2f140","status":"integration","reason":"Same ROS 2 driver and one knuckle angle as the 2F-85, with a 140 mm stroke.","url":"https://github.com/robotiq/ros","st":"maker"},{"a":"senseglove_r1","b":"robotiq_hande","status":"integration","reason":"Robotiq's C++ SDK covers Hand-E over Modbus RTU, so the R1 grip drives one open-close axis.","url":"https://github.com/robotiq/grippers","st":"maker"},{"a":"tesollo_dg2f","b":"ufactory_lite6","status":"incompatible","reason":"Lite 6 is rated for 600 g and the gripper alone weighs 770 g.","url":"https://www.ufactory.cc/lite-6-collaborative-robot/","st":"maker"},{"a":"tesollo_dg2f","b":"ufactory_xarm5","status":"integration","reason":"Bolts to the xArm's ISO 9409-1-50-4-M6 flange. We wire the 24 V supply and Ethernet control.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_dg2f","b":"ufactory_xarm6","status":"integration","reason":"Mounts on the xArm 6's ISO 9409-1-50-4-M6 flange and runs on its own 24 V line.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_dg2f","b":"ufactory_xarm7","status":"integration","reason":"Same ISO 9409-1-50-4-M6 flange as the other xArms, with a separate 24 V feed and Modbus or Ethernet control.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_dg2f","b":"ufactory_850","status":"integration","reason":"Shares the ISO 9409-1-50-4-M6 flange, and the 850's end-flange Ethernet port suits the gripper's TCP/IP control.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"tesollo_dg2f","b":"franka_fr3","status":"integration","reason":"Bolts to the FR3's DIN ISO 9409-1-A50 flange. The X6 port is Hand-only, so we wire the gripper separately.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"tesollo_dg2f","b":"trossen_viperx","status":"incompatible","reason":"The ViperX carries 750 g and has its own built-in gripper, with no tool flange to swap.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"tesollo_dg2f","b":"limx_tron2_dualarm","status":"integration","reason":"We scope Tesollo on TRON 2 as configuration-specific engineering. The wrist publishes no flange standard.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_dg2f","b":"limx_tron2_mobile","status":"integration","reason":"Same TRON 2 wrist, so a Tesollo fit is configuration-specific engineering we quote with the robot.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_dg2f","b":"limx_tron2_suite","status":"integration","reason":"The suite uses the same TRON 2 arms, so the gripper needs a wrist plate and RS485 or Ethernet wiring.","url":"https://www.limxdynamics.com/en/documents/888811977667907584","st":"maker"},{"a":"tesollo_dg2f","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers LimX, Inspire and BrainCo end effectors, not TESOLLO. A TESOLLO fit needs a custom wrist mount, driver work and a 24 V supply above Oli's 5 A ports.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"tesollo_dg3f","b":"ufactory_lite6","status":"incompatible","reason":"Lite 6 carries 600 g and the gripper alone weighs 1,114 g, so it cannot be fitted.","url":"https://www.ufactory.cc/lite-6-collaborative-robot/","st":"maker"},{"a":"tesollo_dg3f","b":"ufactory_xarm5","status":"integration","reason":"Adapter plate onto the xArm flange, Modbus control and its own 24 V supply. 1.9 kg payload left.","url":"https://www.tesollo.com/products/grippers/dg-3f-m","st":"maker"},{"a":"tesollo_dg3f","b":"ufactory_xarm6","status":"integration","reason":"Adapter plate onto the xArm flange, Modbus control and its own 24 V supply. 5 kg payload.","url":"https://www.tesollo.com/products/grippers/dg-3f-m","st":"maker"},{"a":"tesollo_dg3f","b":"ufactory_xarm7","status":"integration","reason":"Adapter plate onto the xArm flange, Modbus control and its own 24 V supply. 3.5 kg payload.","url":"https://www.tesollo.com/products/grippers/dg-3f-m","st":"maker"},{"a":"tesollo_dg3f","b":"ufactory_850","status":"integration","reason":"Bolts to the 850's ISO 9409-1-50-4-M6 flange. The wrist Ethernet port carries its TCP link.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"tesollo_dg3f","b":"franka_fr3","status":"integration","reason":"Bolts to the FR3's ISO 9409-1-A50 flange with the supplied adapter frame. Power and wiring are separate.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"tesollo_dg3f","b":"trossen_viperx","status":"incompatible","reason":"The ViperX carries 750 g, has a built-in gripper, and publishes no tool flange to mount on.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"tesollo_dg3f","b":"limx_tron2_dualarm","status":"integration","reason":"LimX has tested BrainCo hands. A Tesollo wrist fit is engineered per configuration with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_dg3f","b":"limx_tron2_mobile","status":"integration","reason":"LimX has tested BrainCo hands. A Tesollo wrist fit is engineered per configuration with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_dg3f","b":"limx_tron2_suite","status":"integration","reason":"Same TRON 2 wrist with no published flange, so we scope the Tesollo bracket and driver.","url":"https://www.limxdynamics.com/en/documents/888811977667907584","st":"maker"},{"a":"tesollo_dg3f","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers LimX, Inspire and BrainCo end effectors, not TESOLLO. A TESOLLO fit needs a custom wrist mount, driver work and a 24 V supply above Oli's 5 A ports.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"tesollo_dg4f","b":"ufactory_lite6","status":"incompatible","reason":"The DG-4F weighs 1,494 g, more than double the Lite 6's 600 g payload.","url":"https://www.ufactory.cc/lite-6-collaborative-robot/","st":"maker"},{"a":"tesollo_dg4f","b":"ufactory_xarm5","status":"integration","reason":"Bolts to the xArm's ISO 9409-1-50-4-M6 flange. We wire its own 24 V and Ethernet.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_dg4f","b":"ufactory_xarm6","status":"integration","reason":"Mounts on the xArm 6's ISO 9409-1-50-4-M6 flange. The 5 kg payload leaves about 3.5 kg after the 1,494 g gripper, which needs its own 24 V supply.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_dg4f","b":"ufactory_xarm7","status":"integration","reason":"Mounts on the xArm 7's ISO 9409-1-50-4-M6 flange. Its 3.5 kg payload carries it.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_dg4f","b":"ufactory_850","status":"integration","reason":"The 850's flange is the exact ISO 9409-1-50-4-M6 the included adapter frame fits.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"tesollo_dg4f","b":"franka_fr3","status":"integration","reason":"Bolts to the FR3's ISO 9409-1-A50 flange. We wire 24 V and Ethernet separately.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"tesollo_dg4f","b":"trossen_viperx","status":"incompatible","reason":"The ViperX ends in its own gripper, and 750 g payload is under 1,494 g.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"tesollo_dg4f","b":"limx_tron2_dualarm","status":"integration","reason":"Fits with configuration-specific engineering: a wrist adapter, RS485 or Ethernet control from the body ports, and a 24 V supply rated for 10 A, above the body port's 5 A rating.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_dg4f","b":"limx_tron2_mobile","status":"integration","reason":"Fits with configuration-specific engineering: a wrist adapter, RS485 or Ethernet control from the body ports, and a 24 V supply rated for 10 A, above the body port's 5 A rating.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_dg4f","b":"limx_tron2_suite","status":"integration","reason":"Same TRON 2 arms, so the same wrist adapter and RS485 wiring are engineered per configuration.","url":"https://www.limxdynamics.com/en/documents/888811977667907584","st":"maker"},{"a":"tesollo_dg4f","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers LimX, Inspire and BrainCo end effectors, not TESOLLO. A TESOLLO fit needs a custom wrist mount, driver work and a 24 V supply above Oli's 5 A ports.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"tesollo_m","b":"ufactory_lite6","status":"incompatible","reason":"The hand weighs 1.76 kg and the Lite 6 is rated for 600 g.","url":"https://www.ufactory.cc/lite-6-collaborative-robot/","st":"maker"},{"a":"tesollo_m","b":"ufactory_xarm5","status":"integration","reason":"Mounts on the xArm 5 ISO 9409 flange. The 3 kg payload leaves 1.2 kg free.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_m","b":"ufactory_xarm6","status":"integration","reason":"Mounts on the xArm 6 ISO 9409 flange. The 5 kg payload leaves 3.2 kg free.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_m","b":"ufactory_xarm7","status":"integration","reason":"Mounts on the xArm 7 ISO 9409 flange. The 3.5 kg payload leaves 1.7 kg free.","url":"https://docs.xarm.ufactory.cc/4.robotic_electrical_interface.html","st":"maker"},{"a":"tesollo_m","b":"ufactory_850","status":"native","reason":"Knoxlabs clears any ISO 9409-1-50-4-M6 Modbus arm, and the 850 flange and control box match exactly.","url":"https://www.tesollo.com/products/grippers/dg-5f-m","st":"maker"},{"a":"tesollo_m","b":"franka_fr3","status":"native","reason":"TESOLLO's adapter frame fits the FR3's 50 mm, 4 x M6 flange, and TESOLLO cites DG-5F-M hands on Franka arms at Stanford. Power and Ethernet run outside the Franka Hand port.","url":"https://www.tesollo.com/products/grippers/dg-5f-m","st":"maker"},{"a":"tesollo_m","b":"trossen_viperx","status":"incompatible","reason":"The ViperX carries 750 g and ends in its own gripper, with no tool flange to bolt onto.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"tesollo_m","b":"limx_tron2_dualarm","status":"integration","reason":"LimX has tested BrainCo hands, so a TESOLLO fit needs configuration-specific engineering and validation.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_m","b":"limx_tron2_mobile","status":"integration","reason":"LimX has tested BrainCo hands, so a TESOLLO fit needs configuration-specific engineering and validation.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_m","b":"limx_tron2_suite","status":"integration","reason":"The TRON 2 wrist takes a dexterous hand, but a TESOLLO fit needs engineering we scope with you.","url":"https://www.limxdynamics.com/en/documents/888811977667907584","st":"maker"},{"a":"tesollo_m","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers LimX, Inspire and BrainCo end effectors, not TESOLLO. A TESOLLO fit needs a custom wrist mount, driver work and a 24 V supply above Oli's 5 A ports.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"tesollo_s","b":"ufactory_lite6","status":"incompatible","reason":"The Lite 6 carries 600 g at the tool. The hand alone weighs 780 to 880 g.","url":"https://www.ufactory.cc/lite-6-collaborative-robot/","st":"maker"},{"a":"tesollo_s","b":"ufactory_xarm5","status":"integration","reason":"The hand's supplied adapter frame fits the xArm 5's ISO 9409-1-50-4-M6 flange, and the 3 kg payload is ample. The hand needs its own 24 V supply and an Ethernet link.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"tesollo_s","b":"ufactory_xarm6","status":"integration","reason":"The hand's supplied adapter frame fits the xArm 6's ISO 9409-1-50-4-M6 flange, and the 5 kg payload is ample. The hand needs its own 24 V supply and an Ethernet link.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"tesollo_s","b":"ufactory_xarm7","status":"integration","reason":"The hand's supplied adapter frame fits the xArm 7's ISO 9409-1-50-4-M6 flange, and the 3.5 kg payload is ample. The hand needs its own 24 V supply and an Ethernet link.","url":"https://www.ufactory.cc/xarm-collaborative-robot/","st":"maker"},{"a":"tesollo_s","b":"ufactory_850","status":"native","reason":"The 850 prints the exact ISO 9409-1-50-4-M6 flange the hand's supplied adapter frame bolts onto.","url":"https://docs.850.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"tesollo_s","b":"franka_fr3","status":"native","reason":"We pair Franka torque-controlled arms with TESOLLO hands. The hand bolts to the ISO A50 flange.","url":"https://franka.de/hubfs/Datasheet_FrankaResearch3_R02212_2.4.pdf","st":"maker"},{"a":"tesollo_s","b":"trossen_viperx","status":"incompatible","reason":"The ViperX carries 750 g, ends in its own gripper, and offers no tool flange.","url":"https://docs.trossenrobotics.com/interbotix_xsarms_docs/specifications/avx300s.html","st":"maker"},{"a":"tesollo_s","b":"limx_tron2_dualarm","status":"integration","reason":"The arms take a dexterous hand, but a TESOLLO fit needs a custom adapter and validation.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_s","b":"limx_tron2_mobile","status":"integration","reason":"Same TRON 2 wrist: the hand fits with a custom adapter and configuration work we scope.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_s","b":"limx_tron2_suite","status":"integration","reason":"The suite uses the same TRON 2 arms, so the hand needs a custom adapter and validation.","url":"https://www.limxdynamics.com/en/documents/888811977667907584","st":"maker"},{"a":"tesollo_s","b":"limx_oli","status":"integration","reason":"LimX's Oli SDK covers LimX, Inspire and BrainCo end effectors, not TESOLLO. A TESOLLO fit needs a custom wrist mount, driver work and a 24 V supply above Oli's 5 A ports.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"ufactory_bio_gripper","b":"ufactory_lite6","status":"incompatible","reason":"UFACTORY lists only the Gripper Lite and Vacuum Gripper Lite for Lite 6, and the BIO Gripper G2's 790 g exceeds its 600 g payload.","url":"http://docs.accessories.ufactory.cc/Bio_Gripper_G2/6.technical_specifications.html","st":"maker"},{"a":"ufactory_bio_gripper","b":"ufactory_xarm5","status":"native","reason":"UFACTORY lists the BIO Gripper G2 as an official xArm accessory. The supplied plate bolts on.","url":"http://docs.accessories.ufactory.cc/Bio_Gripper_G2/6.technical_specifications.html","st":"maker"},{"a":"ufactory_bio_gripper","b":"ufactory_xarm6","status":"native","reason":"We list it on the xArm 6. The supplied plate bolts on and one cable powers it.","url":"https://docs.xarm.ufactory.cc/8.technical_specifications.html","st":"maker"},{"a":"ufactory_bio_gripper","b":"ufactory_xarm7","status":"native","reason":"Official xArm accessory: the supplied adapter plate bolts to the tool flange and runs over RS-485.","url":"http://docs.accessories.ufactory.cc/Bio_Gripper_G2/6.technical_specifications.html","st":"maker"},{"a":"ufactory_bio_gripper","b":"ufactory_850","status":"native","reason":"UFACTORY lists the BIO Gripper G2 among the 850's official accessories. It wires to the tool connector.","url":"http://docs.accessories.ufactory.cc/Bio_Gripper_G2/6.technical_specifications.html","st":"maker"},{"a":"ufactory_bio_gripper","b":"franka_fr3","status":"integration","reason":"No maker covers this pair. The FR3's X6 port serves the Franka Hand, so the gripper needs its own 24 V and RS-485 line, and the plate fit is not published.","url":"https://franka.de/hubfs/Datasheet%20Franka%20Research%203_R02212_2.4_EN.pdf","st":"maker"},{"a":"ufactory_bio_gripper","b":"trossen_viperx","status":"incompatible","reason":"The ViperX has its own fixed gripper, no tool flange, and 750 g of working payload.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"ufactory_bio_gripper","b":"limx_tron2_dualarm","status":"integration","reason":"Wires to the TRON 2's 24 V and RS-485 ports. The wrist bracket is scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_bio_gripper","b":"limx_tron2_mobile","status":"integration","reason":"Wires to the TRON 2's 24 V and RS-485 ports. The wrist bracket is scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_bio_gripper","b":"limx_tron2_suite","status":"integration","reason":"Same TRON 2 wrist: 24 V and RS-485 are there, the mounting bracket is scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_bio_gripper","b":"limx_oli","status":"integration","reason":"LimX documents only its own and named Inspire and BrainCo end effectors for Oli, each with its own adapter. This gripper needs a custom wrist adapter and RS-485 wiring.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"ufactory_gripper_g2","b":"ufactory_lite6","status":"incompatible","reason":"Lite 6 carries 600 g and takes the Gripper Lite. The G2 weighs 800 g.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"ufactory_gripper_g2","b":"franka_fr3","status":"integration","reason":"No maker covers this pair. The G2 is a 24 V RS-485 Modbus RTU gripper and the FR3's X6 port serves the Franka Hand, so it needs external wiring and an adapter.","url":"https://franka.de/hubfs/Datasheet%20Franka%20Research%203_R02212_2.4_EN.pdf","st":"maker"},{"a":"ufactory_gripper_g2","b":"trossen_viperx","status":"incompatible","reason":"The ViperX carries 750 g, has its own built-in gripper and publishes no tool flange.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"ufactory_gripper_g2","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 offers 24 V and RS-485 but no published wrist flange, so we scope the bracket.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_gripper_g2","b":"limx_tron2_mobile","status":"integration","reason":"Same TRON 2 wrist: 24 V and RS-485 are there, the mounting bracket is custom work.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_gripper_g2","b":"limx_tron2_suite","status":"integration","reason":"The suite uses the same TRON 2 arms, so the G2 needs a custom wrist bracket and RS-485 wiring.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_gripper_g2","b":"limx_oli","status":"integration","reason":"LimX documents only its own and named Inspire and BrainCo end effectors for Oli, each with its own adapter. This gripper needs a custom wrist adapter and RS-485 wiring.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"ufactory_vacuum","b":"ufactory_lite6","status":"incompatible","reason":"Lite 6 carries 600 g and this gripper weighs 610 g, so order the Vacuum Gripper Lite.","url":"https://docs.lite6.ufactory.cc/9.technical_specifications.html","st":"maker"},{"a":"ufactory_vacuum","b":"ufactory_850","status":"native","reason":"The gripper's install guide names the UF850 flange connector, so it plugs straight in.","url":"http://docs.accessories.ufactory.cc/xArm_Vacuum_Gripper/4.Technical_Specifications.html","st":"maker"},{"a":"ufactory_vacuum","b":"franka_fr3","status":"integration","reason":"The FR3's X6 flange port serves the Franka Hand (48 V, CAN) and has no 24 V outputs, so the gripper needs external 24 V, a digital output and an adapter."},{"a":"ufactory_vacuum","b":"trossen_viperx","status":"integration","reason":"The ViperX ends in its own servo gripper and publishes no tool flange or 24 V I/O. The 610 g gripper sits near its 750 g working payload.","url":"https://www.trossenrobotics.com/viperx-aloha","st":"maker"},{"a":"ufactory_vacuum","b":"limx_tron2_dualarm","status":"integration","reason":"No wrist flange or tool I/O is published, so we scope the bracket and 24 V switching.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_vacuum","b":"limx_tron2_mobile","status":"integration","reason":"No wrist flange or tool I/O is published, so we scope the bracket and 24 V switching.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_vacuum","b":"limx_tron2_suite","status":"integration","reason":"No wrist flange or tool I/O is published, so we scope the bracket and 24 V switching.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"ufactory_vacuum","b":"limx_oli","status":"integration","reason":"LimX documents only its own and named Inspire and BrainCo end effectors for Oli, each with its own adapter. This gripper needs a custom wrist adapter and 24 V switching.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"vive_manus_adapters","b":"senseglove_nova2","status":"incompatible","reason":"Wrong mount. The Nova 2 takes a VIVE Tracker on SenseGlove's own mount base, not MANUS.","url":"https://senseglove.gitlab.io/SenseGloveDocs/compatibility.html","st":"maker"},{"a":"vive_manus_adapters","b":"senseglove_r1","status":"incompatible","reason":"The R1 carries its tracker on SenseGlove hardware. These adapters only clip to MANUS glove modules.","url":"https://senseglove.gitlab.io/SenseGloveDocs/R1.html","st":"maker"},{"a":"vive_manus_adapters","b":"weart_touchdiver","status":"incompatible","reason":"TouchDIVER Pro is worn with no adapters and offers no MANUS mounting face for this plate.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"vive_manus_adapters","b":"contactglove3","status":"incompatible","reason":"ContactGlove3 mounts trackers with Diver-X's own adapter and mounter, so this MANUS plate does not fit.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"vive_manus_adapters","b":"inspire_data_glove","status":"incompatible","reason":"The Inspire glove streams straight to the hand and has no MANUS mount for these adapters.","url":"https://docs.manus-meta.com/latest/Products/Metagloves%20Pro/Attachments/","st":"maker"},{"a":"vive_manus_adapters","b":"rokoko_smartgloves","status":"incompatible","reason":"Smartgloves II add wrist position with Coil Pro and carry no MANUS mount for this adapter.","url":"https://www.rokoko.com/products/smartgloves-ii","st":"maker"},{"a":"vive_manus_adapters","b":"xsens","status":"incompatible","reason":"This set seats a VIVE Tracker. Xsens Link sensors need the MANUS Xsens Adapter Set instead.","url":"https://www.manus-meta.com/integrations/xsens","st":"maker"},{"a":"vive_manus_adapters","b":"xsens_awinda","status":"incompatible","reason":"Awinda trackers mount on MANUS gloves with the Xsens adapter set, not this VIVE tracker plate.","url":"https://www.manus-meta.com/integrations/xsens","st":"maker"},{"a":"vive_manus_adapters","b":"xsens_awinda_starter","status":"incompatible","reason":"Starter uses the same Awinda trackers, which need the Xsens adapter set rather than this plate.","url":"https://www.manus-meta.com/integrations/xsens","st":"maker"},{"a":"vive_manus_adapters","b":"rokoko_smartsuit","status":"incompatible","reason":"The Smartsuit Pro II tracks hands with its own built-in sensors and has no MANUS mount.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"vive_manus_adapters","b":"rokoko_smartsuit_gr","status":"incompatible","reason":"Glove Ready wrists carry USB-C ports for Rokoko gloves, with no MANUS mount for this adapter.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"vive_tracker3","b":"quantum_metagloves","status":"integration","reason":"MANUS documents a VIVE adapter on the Quantum mount, but the glove is end of life.","url":"https://www.manus-meta.com/products/quantum-metagloves","st":"maker"},{"a":"vive_tracker3","b":"senseglove_nova2","status":"native","reason":"SenseGlove lists Tracker 3.0 as supported, and the position tracking mounts ship in the box.","url":"https://senseglove.gitlab.io/SenseGloveDocs/compatibility.html","st":"maker"},{"a":"vive_tracker3","b":"senseglove_r1","status":"integration","reason":"SenseGlove's R1 has no built-in position tracking and names a Vive Tracker, mounted on the glove, or a robotic arm as the position source.","url":"https://senseglove.gitlab.io/SenseGloveDocs/R1.html","st":"maker"},{"a":"vive_tracker3","b":"weart_touchdiver","status":"integration","reason":"WEART takes wrist position from an external tracker, but publishes no bracket for the puck.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"vive_tracker3","b":"contactglove3","status":"native","reason":"Diver-X requires two pucks for hand position and names Tracker 3.0 by model.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"vive_tracker3","b":"xsens","status":"native","reason":"Xsens Animate fuses VIVE puck position with the Link suit. Base stations needed.","url":"https://www.xsens.com/motion-capture/xsens-link-specifications","st":"maker"},{"a":"vive_tracker3","b":"xsens_awinda","status":"native","reason":"Xsens Animate fuses VIVE puck position with the Awinda suit. Base stations needed.","url":"https://www.xsens.com/motion-capture/xsens-mvn-awinda","st":"maker"},{"a":"vive_tracker3","b":"xsens_awinda_starter","status":"native","reason":"Same Xsens Animate position aiding with a VIVE puck as the full Awinda system.","url":"https://www.xsens.com/motion-capture/xsens-mvn-awinda-starter","st":"maker"},{"a":"vive_tracker3","b":"rokoko_smartsuit","status":"integration","reason":"Rokoko documents a VIVE Tracker (2.0 or later) for root position, merged in Unreal Engine with a Studio Pro plan and two base stations. The back mount comes from Rokoko or is 3D printed.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"vive_tracker3","b":"rokoko_smartsuit_gr","status":"integration","reason":"Rokoko documents a VIVE Tracker (2.0 or later) for root position, merged in Unreal Engine with a Studio Pro plan and two base stations. The back mount comes from Rokoko or is 3D printed.","url":"https://www.rokoko.com/products/smartsuit-pro","st":"maker"},{"a":"weart_touchdiver","b":"tesollo_m","status":"integration","reason":"Glove tracking feeds the Tesollo ROS 2 driver over Ethernet TCP/IP. We scope the 20 joint retargeting.","url":"https://www.tesollo.com/en/products/grippers/dg-5f-m","st":"maker"},{"a":"weart_touchdiver","b":"tesollo_s","status":"integration","reason":"Same ROS 2 path as the DG-5F-M, retargeted onto the compact hand over Ethernet TCP/IP.","url":"https://www.tesollo.com/en/products/grippers/dg-5f-s","st":"maker"},{"a":"weart_touchdiver","b":"inspire_rh56dfx","status":"integration","reason":"Knoxlabs lists haptic gloves as a teleoperation input. We map glove fingers onto the RS485 commands.","url":"https://en.inspire-robots.com/product/rh56dfx/","st":"maker"},{"a":"weart_touchdiver","b":"inspire_rh56bfx","status":"integration","reason":"Knoxlabs lists haptic gloves as an input for this hand. The finger retargeting is scoped with us.","url":"https://en.inspire-robots.com/product/rh56bfx/","st":"maker"},{"a":"weart_touchdiver","b":"inspire_rh56h1","status":"integration","reason":"Knoxlabs lists MANUS gloves for this hand, not WEART, so we retarget glove tracking onto six DOF over RS485 or CAN FD.","url":"https://en.inspire-robots.com/product/rh56h1/","st":"maker"},{"a":"weart_touchdiver","b":"inspire_rh56f1","status":"integration","reason":"Takes RS485, CAN FD or EtherCAT from your host beside the WEART ROS 2 nodes. Retargeting is scoped with us.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"weart_touchdiver","b":"inspire_rh56e2","status":"integration","reason":"Drives the hand through its ROS 2 plugins on RS485, CAN or ModbusTCP after retargeting.","url":"https://en.inspire-robots.com/product/rh56e2/","st":"maker"},{"a":"weart_touchdiver","b":"inspire_rh5dg2","status":"integration","reason":"Thirteen DOF over EtherCAT with a master on your host. We remap the glove's finger tracking.","url":"https://en.inspire-robots.com/product/rh5dg2/","st":"maker"},{"a":"weart_touchdiver","b":"seed_rh8d","status":"integration","reason":"Commands go through Seed's open source ROS package on RS485. Retargeting is scoped with us.","url":"https://www.seedrobotics.com/rh8d-adult-robot-hand","st":"maker"},{"a":"weart_touchdiver","b":"seed_rh8d_fs","status":"integration","reason":"Same ROS and RS485 path, and the fingertip force channel is what feeds the glove's feedback.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"weart_touchdiver","b":"seed_rh6d","status":"integration","reason":"Seed's ROS package covers the RH6D. We retarget adult hand capture onto child scale fingers.","url":"https://www.seedrobotics.com/rh5d-rh7d-childsize-robot-hand","st":"maker"},{"a":"weart_touchdiver","b":"seed_rh4d","status":"integration","reason":"Four actuators on the same Seed ROS and RS485 path, so expect a grasp map, not fingers.","url":"https://www.seedrobotics.com/rh4d-advanced-manipulator","st":"maker"},{"a":"weart_touchdiver","b":"allegro_v4","status":"integration","reason":"Wonik publishes glove retargeting into Allegro joint commands. We adapt it to the WEART SDK.","url":"https://github.com/Wonikrobotics-git/allegro_hand_linux_v4","st":"maker"},{"a":"weart_touchdiver","b":"psyonic_ability","status":"integration","reason":"MANUS is the named retargeting glove here, so we bridge WEART into the ROS 2 wrapper.","url":"https://github.com/psyonicinc/ability-hand-ros2","st":"maker"},{"a":"weart_touchdiver","b":"inspire_eg2_4b2","status":"integration","reason":"One RS485 channel and two jaws, so the glove's grip drives aperture only. We bridge it.","url":"https://en.inspire-robots.com/product/eg2-4b/","st":"maker"},{"a":"weart_touchdiver","b":"inspire_eg2_4c2","status":"integration","reason":"Same single RS485 link as the 4B2, so grip maps to jaw position and force, nothing per finger.","url":"https://en.inspire-robots.com/product/eg2-4c/","st":"maker"},{"a":"weart_touchdiver","b":"ufactory_gripper_g2","status":"integration","reason":"Commands run through the xArm control box, so glove grip becomes one position and force call.","url":"https://docs.accessories.ufactory.cc/xArm_Gripper_G2/1.Introduction.html","st":"maker"},{"a":"weart_touchdiver","b":"ufactory_bio_gripper","status":"integration","reason":"Labware jaws on the xArm SDK: glove grip drives open, close and position, nothing per finger.","url":"https://docs.accessories.ufactory.cc/Bio_Gripper_G2/1.introduction.html","st":"maker"},{"a":"weart_touchdiver","b":"ufactory_vacuum","status":"integration","reason":"Suction is a digital on or off line, so a glove pinch can trigger it and nothing more.","url":"https://docs.accessories.ufactory.cc/xArm_Vacuum_Gripper/1.Introduction.html","st":"maker"},{"a":"weart_touchdiver","b":"tesollo_dg2f","status":"integration","reason":"Two fingers with three joints each on Tesollo's ROS 2 driver, so glove finger pose can drive more than aperture. We scope the mapping.","url":"https://www.tesollo.com/en/products/grippers/dg-2f","st":"maker"},{"a":"weart_touchdiver","b":"tesollo_dg3f","status":"integration","reason":"Twelve joints across three fingers on the Delto ROS 2 driver. We scope the finger mapping.","url":"https://www.tesollo.com/en/products/grippers/dg-3f-m","st":"maker"},{"a":"weart_touchdiver","b":"tesollo_dg4f","status":"integration","reason":"Eighteen joints on the Delto ROS 2 driver. Five glove fingers map onto four robot fingers.","url":"https://www.tesollo.com/en/products/grippers/dg-4f","st":"maker"},{"a":"weart_touchdiver","b":"robotiq_2f85","status":"integration","reason":"Robotiq's ROS 2 driver takes position commands, so glove grip drives the 85 mm stroke.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"weart_touchdiver","b":"robotiq_2f140","status":"integration","reason":"Same ROS 2 driver as the 2F-85, with glove grip mapped onto the 140 mm stroke.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"weart_touchdiver","b":"robotiq_hande","status":"integration","reason":"Hand-E is covered by Robotiq's open source SDK on Modbus RTU. Grip drives jaw position.","url":"https://robotiq.com/products/adaptive-grippers","st":"maker"},{"a":"widowx_leader","b":"ufactory_lite6","status":"integration","reason":"Drives Lite 6 through xArm servo mode. We scope the retargeting, since reach and workspace differ.","url":"http://docs.supportarticle.ufactory.cc/support_articles/developer/ufactory-servo-mode-guide.html","st":"maker"},{"a":"widowx_leader","b":"ufactory_xarm5","status":"integration","reason":"Drives through xArm servo mode, but five axes cannot follow the leader's full wrist orientation.","url":"http://docs.supportarticle.ufactory.cc/support_articles/hardware/the-difference-between-ufactory-xarm5-xarm6-and-xarm7.html","st":"maker"},{"a":"widowx_leader","b":"ufactory_xarm6","status":"integration","reason":"Six axes match the leader closely. We retarget its ROS 2 joint stream through servo mode.","url":"https://www.trossenrobotics.com/widowx-aloha-set","st":"maker"},{"a":"widowx_leader","b":"ufactory_xarm7","status":"integration","reason":"We retarget the leader's six joints onto xArm 7 servo mode. Its extra axis is planned.","url":"https://www.trossenrobotics.com/widowx-aloha-set","st":"maker"},{"a":"widowx_leader","b":"ufactory_850","status":"integration","reason":"We retarget the leader's ROS 2 joint stream into the 850's servo mode over Ethernet.","url":"http://docs.supportarticle.ufactory.cc/support_articles/developer/ufactory-servo-mode-guide.html","st":"maker"},{"a":"widowx_leader","b":"franka_fr3","status":"integration","reason":"We retarget leader joint states into FR3 through franka_ros2. True force feedback needs a torque leader.","url":"https://franka.de/hubfs/Datasheet%20Franka%20Research%203_R02212_2.4_EN.pdf","st":"maker"},{"a":"widowx_leader","b":"limx_tron2_dualarm","status":"integration","reason":"TRON 2 takes servoP and low-level joint commands. Leader retargeting is scoped with us.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"widowx_leader","b":"limx_tron2_mobile","status":"integration","reason":"The mobile version shares those servoP and low-level joint interfaces. We scope the leader retargeting.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"widowx_leader","b":"limx_tron2_suite","status":"integration","reason":"Its dual-arm module has the same servoP and joint interfaces. We scope the leader retargeting.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"widowx_leader","b":"limx_oli","status":"integration","reason":"Oli's SDK takes ServoJ and ServoP arm commands, so the leader's joint stream can be retargeted. LimX documents no leader-arm teleoperation for Oli, so the mapping is bespoke.","url":"https://www.limxdynamics.com/en/products/oli/spec","st":"maker"},{"a":"xsens","b":"quantum_metagloves","status":"integration","reason":"No Link NG hand adapter fits these discontinued gloves, so pairing them means a legacy MANUS Core setup.","url":"https://www.manus-meta.com/products/quantum-metagloves","st":"maker"},{"a":"xsens","b":"senseglove_r1","status":"integration","reason":"Both sides publish ROS 2, so the suit's body and the R1's fingers are merged in your own stack.","url":"https://www.xsens.com/motion-capture/xsens-link-specifications","st":"maker"},{"a":"xsens","b":"weart_touchdiver","status":"integration","reason":"WEART publishes C++, C# and Python SDKs and Xsens Humanoid streams ROS 2, so fingers and body merge in your own stack.","url":"https://www.xsens.com/motion-capture/xsens-link-specifications","st":"maker"},{"a":"xsens","b":"contactglove3","status":"incompatible","reason":"Diver-X states this ContactGlove3 has no generic data output and no Unity, Unreal, MotionBuilder or ROS 2 SDK, so its finger data cannot join the suit's body capture.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"xsens","b":"inspire_data_glove","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"xsens","b":"rokoko_smartgloves","status":"integration","reason":"Xsens takes finger data natively only from MANUS or StretchSense, but Smartgloves II and Xsens both stream to Unreal Engine and ROS, so merging them is custom work.","url":"https://www.xsens.com/motion-capture/xsens-link-specifications","st":"maker"},{"a":"xsens_awinda","b":"quantum_metagloves","status":"integration","reason":"Quantum gloves stream into MVN, but the Awinda adapter and Core 3 licence cover only Pro gloves.","url":"https://www.xsens.com/motion-capture/xsens-mvn-animate","st":"maker"},{"a":"xsens_awinda","b":"senseglove_nova2","status":"integration","reason":"Xsens takes fingers natively only from MANUS or StretchSense. SenseGlove allows custom tracker mounts and offers Unity, Unreal and ROS 2 APIs, so merging is custom work.","url":"https://www.xsens.com/motion-capture/xsens-mvn-awinda","st":"maker"},{"a":"xsens_awinda","b":"senseglove_r1","status":"integration","reason":"The R1 drives robot hands over ROS 2 and has no path into the Xsens MVN skeleton. Custom integration, scoped with us.","url":"https://senseglove.gitlab.io/SenseGloveDocs/R1.html","st":"maker"},{"a":"xsens_awinda","b":"weart_touchdiver","status":"integration","reason":"Xsens takes fingers natively only from MANUS or StretchSense. WEART publishes Unity, Unreal and low-level SDKs, so fingers and the Awinda body merge in your own stack.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"xsens_awinda","b":"contactglove3","status":"incompatible","reason":"ContactGlove3 needs SteamVR trackers and ships no mocap plugin, so nothing feeds the Awinda skeleton.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"xsens_awinda","b":"inspire_data_glove","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"xsens_awinda","b":"rokoko_smartgloves","status":"integration","reason":"Xsens takes finger data natively only from MANUS or StretchSense, but Smartgloves II and Xsens both stream to Unreal Engine and ROS, so merging them is custom work.","url":"https://www.xsens.com/motion-capture/xsens-mvn-awinda","st":"maker"},{"a":"xsens_awinda_starter","b":"manus_pro_haptic","status":"native","reason":"MANUS Core with the Motion Capture licence (or a MANUS Bodypack) streams finger data into Xsens MVN, and an Xsens adapter set mounts the hand sensor on the glove.","url":"https://docs.manus-meta.com/latest/Products/Metagloves%20Pro%20Haptic/Attachments/","st":"maker"},{"a":"xsens_awinda_starter","b":"quantum_metagloves","status":"integration","reason":"Quantum Metagloves are end of life, MANUS lists no Xsens adapter for them and MANUS Core 3 names only Pro gloves, so pairing with Awinda Starter is a legacy setup.","url":"https://www.manus-meta.com/products/quantum-metagloves","st":"maker"},{"a":"xsens_awinda_starter","b":"senseglove_nova2","status":"integration","reason":"A custom mount carries an Awinda hand tracker. Body and finger streams combine in Unity or Unreal.","url":"https://senseglove.gitlab.io/SenseGloveDocs/compatibility.html","st":"maker"},{"a":"xsens_awinda_starter","b":"senseglove_r1","status":"integration","reason":"Both sides publish ROS 2, so body and hands fuse there. We confirm the Humanoid licence.","url":"https://senseglove.gitlab.io/SenseGloveDocs/R1.html","st":"maker"},{"a":"xsens_awinda_starter","b":"weart_touchdiver","status":"integration","reason":"WEART's Unity, Unreal and low-level SDKs can merge its fingers with the Awinda Starter body stream. WEART publishes no mount for an Awinda tracker.","url":"https://weart.it/touchdiver-pro-haptic-gloves/","st":"maker"},{"a":"xsens_awinda_starter","b":"contactglove3","status":"incompatible","reason":"Diver-X states this ContactGlove3 has no generic data output and no Unity, Unreal, MotionBuilder or ROS 2 SDK, so its finger data cannot join the suit's body capture.","url":"https://store.diver-x.jp/en/products/contactglove3-magnetra3","st":"maker"},{"a":"xsens_awinda_starter","b":"inspire_data_glove","status":"unverified","reason":"We could not confirm this pair from the makers' published information. Send it to us and an engineer checks it with your quote."},{"a":"xsens_awinda_starter","b":"rokoko_smartgloves","status":"integration","reason":"Rokoko offers Smartgloves II plugins for OptiTrack, Qualisys and MOVIN but not Xsens, so an Awinda Starter body take and the gloves merge in Unreal or a custom pipeline."},{"a":"limx_tron2_dualarm","b":"brainco_revo2","status":"native","reason":"LimX's TRON 2 SDK guide documents the BrainCo Revo 2 Basic hand, and the Knoxlabs listing says LimX has tested BrainCo hands on TRON 2.","url":"https://www.limxdynamics.com/en/documents/856848486581276672","st":"maker"},{"a":"limx_tron2_mobile","b":"brainco_revo2","status":"native","reason":"LimX's TRON 2 SDK guide documents the BrainCo Revo 2 Basic hand, and the Knoxlabs listing says LimX has tested BrainCo hands on TRON 2.","url":"https://www.limxdynamics.com/en/documents/856848486581276672","st":"maker"},{"a":"limx_tron2_suite","b":"brainco_revo2","status":"native","reason":"LimX's TRON 2 SDK guide documents the BrainCo Revo 2 Basic hand, and the Knoxlabs listing says LimX has tested BrainCo hands on TRON 2.","url":"https://www.limxdynamics.com/en/documents/856848486581276672","st":"maker"},{"a":"limx_tron2_dualarm","b":"kind:hand","status":"integration","reason":"LimX has tested BrainCo hands; other hands need configuration-specific engineering.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"limx_tron2_mobile","b":"kind:hand","status":"integration","reason":"LimX has tested BrainCo hands; other hands need configuration-specific engineering.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"limx_tron2_suite","b":"kind:hand","status":"integration","reason":"LimX has tested BrainCo hands; other hands need configuration-specific engineering.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"limx_tron2_dualarm","b":"kind:gripper","status":"integration","reason":"Third-party end effectors need configuration-specific engineering on TRON 2.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"limx_tron2_mobile","b":"kind:gripper","status":"integration","reason":"Third-party end effectors need configuration-specific engineering on TRON 2.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"limx_tron2_suite","b":"kind:gripper","status":"integration","reason":"Third-party end effectors need configuration-specific engineering on TRON 2.","url":"https://www.limxdynamics.com/en/products/tron2/spec","st":"maker"},{"a":"tesollo_m","b":"aubo_i3","status":"integration","reason":"Bolts onto the AUBO-i3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 1.2 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_s","b":"aubo_i3","status":"integration","reason":"Bolts onto the AUBO-i3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 2.1 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_i3","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.5 kg. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_i3","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.5 kg. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56h1","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.5 kg. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56f1","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.4 kg. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56e2","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.2 kg. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.0 kg. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.4 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i3's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh6d","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.7 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh4d","b":"aubo_i3","status":"integration","reason":"Mounts on the AUBO-i3's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. The 3 kg payload leaves 2.8 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"allegro_v4","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 1.9 kg. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"psyonic_ability","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-i3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.5 kg. Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"brainco_revo2","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.6 kg. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.8 kg. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate to the AUBO-i3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.8 kg. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.2 kg. Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.2 kg. Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_vacuum","b":"aubo_i3","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.4 kg. Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg2f","b":"aubo_i3","status":"integration","reason":"Bolts onto the AUBO-i3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 2.2 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg3f","b":"aubo_i3","status":"integration","reason":"Bolts onto the AUBO-i3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 1.9 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg4f","b":"aubo_i3","status":"integration","reason":"Bolts onto the AUBO-i3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 1.5 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f85","b":"aubo_i3","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-i3's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i3.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f140","b":"aubo_i3","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-i3's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i3.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_hande","b":"aubo_i3","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-i3's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i3.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"tesollo_m","b":"aubo_i5","status":"integration","reason":"Bolts onto the AUBO-i5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 3.2 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_s","b":"aubo_i5","status":"integration","reason":"Bolts onto the AUBO-i5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 4.1 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_i5","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.5 kg. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_i5","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.5 kg. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56h1","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.5 kg. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56f1","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.4 kg. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56e2","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.2 kg. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.0 kg. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.4 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i5's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh6d","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.7 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh4d","b":"aubo_i5","status":"integration","reason":"Mounts on the AUBO-i5's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. The 5 kg payload leaves 4.8 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"allegro_v4","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 3.9 kg. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"psyonic_ability","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-i5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.5 kg. Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"brainco_revo2","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.6 kg. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.8 kg. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate to the AUBO-i5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.8 kg. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.2 kg. Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.2 kg. Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_vacuum","b":"aubo_i5","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.4 kg. Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg2f","b":"aubo_i5","status":"integration","reason":"Bolts onto the AUBO-i5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 4.2 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg3f","b":"aubo_i5","status":"integration","reason":"Bolts onto the AUBO-i5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 3.9 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg4f","b":"aubo_i5","status":"integration","reason":"Bolts onto the AUBO-i5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 3.5 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f85","b":"aubo_i5","status":"native","reason":"Robotiq sells an AUBO kit for the 2F-85 (AGC-AUBO-KIT-85) with an ISO 9409-1-50-4-M6 coupling, and its control plug-in names the AUBO i5. The plug-in is for AUBO's earlier teach-pendant software, so check your controller version.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f140","b":"aubo_i5","status":"native","reason":"Robotiq sells an AUBO kit for the 2F-140 (AGC-AUBO-KIT-140) with an ISO 9409-1-50-4-M6 coupling, and its control plug-in names the AUBO i5. The plug-in is for AUBO's earlier teach-pendant software, so check your controller version.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_hande","b":"aubo_i5","status":"native","reason":"Robotiq sells an AUBO kit for the Hand-E (HND-AUBO-KIT) with an ISO 9409-1-50-4-M6 coupling, and its control plug-in names the AUBO i5. The plug-in is for AUBO's earlier teach-pendant software, so check your controller version.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"tesollo_m","b":"aubo_i7","status":"integration","reason":"Bolts onto the AUBO-i7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_s","b":"aubo_i7","status":"integration","reason":"Bolts onto the AUBO-i7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_i7","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_i7","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56h1","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56f1","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56e2","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i7's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i7's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh6d","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh4d","b":"aubo_i7","status":"integration","reason":"Mounts on the AUBO-i7's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"allegro_v4","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"psyonic_ability","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-i7's flange (4 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"brainco_revo2","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate to the AUBO-i7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i7's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i7's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_vacuum","b":"aubo_i7","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i7's flange (4 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg2f","b":"aubo_i7","status":"integration","reason":"Bolts onto the AUBO-i7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg3f","b":"aubo_i7","status":"integration","reason":"Bolts onto the AUBO-i7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg4f","b":"aubo_i7","status":"integration","reason":"Bolts onto the AUBO-i7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f85","b":"aubo_i7","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-i7's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i7.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f140","b":"aubo_i7","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-i7's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i7.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_hande","b":"aubo_i7","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-i7's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i7.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"tesollo_m","b":"aubo_i10","status":"integration","reason":"Bolts onto the AUBO-i10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_s","b":"aubo_i10","status":"integration","reason":"Bolts onto the AUBO-i10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_i10","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_i10","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56h1","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56f1","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56e2","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i10's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i10's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh6d","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh4d","b":"aubo_i10","status":"integration","reason":"Mounts on the AUBO-i10's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"allegro_v4","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"psyonic_ability","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-i10's flange (4 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"brainco_revo2","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate to the AUBO-i10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i10's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i10's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_vacuum","b":"aubo_i10","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i10's flange (4 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg2f","b":"aubo_i10","status":"integration","reason":"Bolts onto the AUBO-i10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg3f","b":"aubo_i10","status":"integration","reason":"Bolts onto the AUBO-i10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg4f","b":"aubo_i10","status":"integration","reason":"Bolts onto the AUBO-i10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f85","b":"aubo_i10","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-i10's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i10.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f140","b":"aubo_i10","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-i10's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i10.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_hande","b":"aubo_i10","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-i10's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i10.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"tesollo_m","b":"aubo_i12","status":"integration","reason":"Bolts onto the AUBO-i12's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_s","b":"aubo_i12","status":"integration","reason":"Bolts onto the AUBO-i12's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_i12","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_i12","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56h1","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56f1","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56e2","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i12's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i12's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh6d","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh4d","b":"aubo_i12","status":"integration","reason":"Mounts on the AUBO-i12's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"allegro_v4","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"psyonic_ability","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-i12's flange (4 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"brainco_revo2","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate to the AUBO-i12's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i12's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i12's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_vacuum","b":"aubo_i12","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i12's flange (4 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg2f","b":"aubo_i12","status":"integration","reason":"Bolts onto the AUBO-i12's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg3f","b":"aubo_i12","status":"integration","reason":"Bolts onto the AUBO-i12's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg4f","b":"aubo_i12","status":"integration","reason":"Bolts onto the AUBO-i12's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f85","b":"aubo_i12","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-i12's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i12.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f140","b":"aubo_i12","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-i12's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i12.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_hande","b":"aubo_i12","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-i12's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i12.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"tesollo_m","b":"aubo_i16","status":"integration","reason":"Bolts onto the AUBO-i16's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_s","b":"aubo_i16","status":"integration","reason":"Bolts onto the AUBO-i16's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_i16","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_i16","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56h1","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56f1","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56e2","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i16's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i16's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh6d","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh4d","b":"aubo_i16","status":"integration","reason":"Mounts on the AUBO-i16's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"allegro_v4","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"psyonic_ability","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-i16's flange (4 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"brainco_revo2","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate to the AUBO-i16's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i16's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i16's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_vacuum","b":"aubo_i16","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i16's flange (4 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg2f","b":"aubo_i16","status":"integration","reason":"Bolts onto the AUBO-i16's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg3f","b":"aubo_i16","status":"integration","reason":"Bolts onto the AUBO-i16's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg4f","b":"aubo_i16","status":"integration","reason":"Bolts onto the AUBO-i16's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f85","b":"aubo_i16","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-i16's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i16.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f140","b":"aubo_i16","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-i16's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i16.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_hande","b":"aubo_i16","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-i16's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-i16.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"tesollo_m","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-i20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_s","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-i20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_i20","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_i20","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56h1","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56f1","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56e2","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i20's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-i20's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh6d","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh4d","b":"aubo_i20","status":"integration","reason":"Seed's ISO 9409-1-50 adapter needs a further plate for the AUBO-i20's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"allegro_v4","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"psyonic_ability","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-i20's flange (6 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"brainco_revo2","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate to the AUBO-i20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i20's flange (6 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i20's flange (6 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_vacuum","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-i20's flange (6 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg2f","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-i20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg3f","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-i20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg4f","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-i20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_i_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f85","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-85) has a 4-bolt ISO 50 coupling and the AUBO-i20's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f140","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-140) has a 4-bolt ISO 50 coupling and the AUBO-i20's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_hande","b":"aubo_i20","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (HND-AUBO-KIT) has a 4-bolt ISO 50 coupling and the AUBO-i20's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"tesollo_m","b":"aubo_is3","status":"integration","reason":"Bolts onto the AUBO-iS3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 1.2 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_s","b":"aubo_is3","status":"integration","reason":"Bolts onto the AUBO-iS3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 2.1 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_is3","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.5 kg. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_is3","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.5 kg. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56h1","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.5 kg. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56f1","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.4 kg. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56e2","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.2 kg. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.0 kg. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.4 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS3's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh6d","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.7 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh4d","b":"aubo_is3","status":"integration","reason":"Mounts on the AUBO-iS3's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. The 3 kg payload leaves 2.8 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"allegro_v4","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 1.9 kg. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"psyonic_ability","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-iS3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.5 kg. Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"brainco_revo2","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.6 kg. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.8 kg. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate to the AUBO-iS3's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 3 kg payload leaves 2.8 kg. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.2 kg. Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.2 kg. Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_vacuum","b":"aubo_is3","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS3's flange (4 x M6 on a 50 mm circle). The 3 kg payload leaves 2.4 kg. Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg2f","b":"aubo_is3","status":"integration","reason":"Bolts onto the AUBO-iS3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 2.2 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg3f","b":"aubo_is3","status":"integration","reason":"Bolts onto the AUBO-iS3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 1.9 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg4f","b":"aubo_is3","status":"integration","reason":"Bolts onto the AUBO-iS3's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 3 kg payload leaves 1.5 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f85","b":"aubo_is3","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-iS3's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS3.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f140","b":"aubo_is3","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-iS3's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS3.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_hande","b":"aubo_is3","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-iS3's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS3.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"tesollo_m","b":"aubo_is7","status":"integration","reason":"Bolts onto the AUBO-iS7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_s","b":"aubo_is7","status":"integration","reason":"Bolts onto the AUBO-iS7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_is7","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_is7","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56h1","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56f1","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56e2","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS7's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS7's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh6d","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh4d","b":"aubo_is7","status":"integration","reason":"Mounts on the AUBO-iS7's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"allegro_v4","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"psyonic_ability","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-iS7's flange (4 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"brainco_revo2","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate to the AUBO-iS7's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS7's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS7's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_vacuum","b":"aubo_is7","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS7's flange (4 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg2f","b":"aubo_is7","status":"integration","reason":"Bolts onto the AUBO-iS7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg3f","b":"aubo_is7","status":"integration","reason":"Bolts onto the AUBO-iS7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg4f","b":"aubo_is7","status":"integration","reason":"Bolts onto the AUBO-iS7's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f85","b":"aubo_is7","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-iS7's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS7.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f140","b":"aubo_is7","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-iS7's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS7.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_hande","b":"aubo_is7","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-iS7's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS7.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"tesollo_m","b":"aubo_is10","status":"integration","reason":"Bolts onto the AUBO-iS10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_s","b":"aubo_is10","status":"integration","reason":"Bolts onto the AUBO-iS10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_is10","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_is10","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56h1","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56f1","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56e2","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS10's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS10's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh6d","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh4d","b":"aubo_is10","status":"integration","reason":"Mounts on the AUBO-iS10's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"allegro_v4","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"psyonic_ability","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-iS10's flange (4 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"brainco_revo2","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate to the AUBO-iS10's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS10's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS10's flange (4 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_vacuum","b":"aubo_is10","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS10's flange (4 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg2f","b":"aubo_is10","status":"integration","reason":"Bolts onto the AUBO-iS10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg3f","b":"aubo_is10","status":"integration","reason":"Bolts onto the AUBO-iS10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg4f","b":"aubo_is10","status":"integration","reason":"Bolts onto the AUBO-iS10's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f85","b":"aubo_is10","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-iS10's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS10.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f140","b":"aubo_is10","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-iS10's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS10.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_hande","b":"aubo_is10","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-iS10's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-iS10.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"tesollo_m","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_s","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_is20","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_is20","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56h1","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56f1","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh56e2","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS20's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS20's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh6d","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"seed_rh4d","b":"aubo_is20","status":"integration","reason":"Seed's ISO 9409-1-50 adapter needs a further plate for the AUBO-iS20's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"allegro_v4","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"psyonic_ability","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-iS20's flange (6 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"brainco_revo2","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS20's flange (6 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS20's flange (6 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"ufactory_vacuum","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS20's flange (6 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg2f","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg3f","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"tesollo_dg4f","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f85","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-85) has a 4-bolt ISO 50 coupling and the AUBO-iS20's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_2f140","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-140) has a 4-bolt ISO 50 coupling and the AUBO-iS20's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"robotiq_hande","b":"aubo_is20","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (HND-AUBO-KIT) has a 4-bolt ISO 50 coupling and the AUBO-iS20's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"2 October 2026"},{"a":"tesollo_m","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20L's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_s","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20L's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_is20l","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_is20l","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56h1","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56f1","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56e2","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh6d","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh4d","b":"aubo_is20l","status":"integration","reason":"Seed's ISO 9409-1-50 adapter needs a further plate for the AUBO-iS20L's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"allegro_v4","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"psyonic_ability","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"brainco_revo2","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_vacuum","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS20L's flange (6 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg2f","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20L's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg3f","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20L's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg4f","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS20L's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f85","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-85) has a 4-bolt ISO 50 coupling and the AUBO-iS20L's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f140","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-140) has a 4-bolt ISO 50 coupling and the AUBO-iS20L's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_hande","b":"aubo_is20l","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (HND-AUBO-KIT) has a 4-bolt ISO 50 coupling and the AUBO-iS20L's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"tesollo_m","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS25's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_s","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS25's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_is25","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_is25","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56h1","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56f1","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56e2","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS25's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS25's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh6d","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh4d","b":"aubo_is25","status":"integration","reason":"Seed's ISO 9409-1-50 adapter needs a further plate for the AUBO-iS25's flange (6 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"allegro_v4","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"psyonic_ability","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-iS25's flange (6 x M6 on a 50 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"brainco_revo2","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate to the AUBO-iS25's flange (6 x M6 on a 50 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS25's flange (6 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS25's flange (6 x M6 on a 50 mm circle). Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_vacuum","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS25's flange (6 x M6 on a 50 mm circle). Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg2f","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS25's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg3f","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS25's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg4f","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS25's flange has 6 x M6 on a 50 mm circle. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f85","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-85) has a 4-bolt ISO 50 coupling and the AUBO-iS25's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f140","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-140) has a 4-bolt ISO 50 coupling and the AUBO-iS25's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_hande","b":"aubo_is25","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (HND-AUBO-KIT) has a 4-bolt ISO 50 coupling and the AUBO-iS25's flange has 6 x M6 on a 50 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"tesollo_m","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS35's flange has 6 x M8 on an 80 mm circle. Needs its own 24 V supply (10 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_s","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS35's flange has 6 x M8 on an 80 mm circle. Needs its own 24 V supply (10 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_is35","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_is35","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (2 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56h1","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56f1","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Needs its own supply (5 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56e2","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Needs its own 24 V supply (4.5 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Needs its own supply (7.5 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS35's flange (6 x M8 on an 80 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-iS35's flange (6 x M8 on an 80 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh6d","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh4d","b":"aubo_is35","status":"integration","reason":"Seed's ISO 9409-1-50 adapter needs a further plate for the AUBO-iS35's flange (6 x M8 on an 80 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"allegro_v4","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the manual read shows no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"psyonic_ability","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-iS35's flange (6 x M8 on an 80 mm circle). Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"brainco_revo2","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Needs its own supply (4.6 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate to the AUBO-iS35's flange (6 x M8 on an 80 mm circle); the maker publishes no mounting pattern. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS35's flange (6 x M8 on an 80 mm circle). Needs its own 24 V supply (1.5 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS35's flange (6 x M8 on an 80 mm circle). Needs its own 24 V supply (1.5 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_vacuum","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-iS35's flange (6 x M8 on an 80 mm circle). May run from the tool supply; the manual read does not state the AUBO-iS35's tool connector rating. The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg2f","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS35's flange has 6 x M8 on an 80 mm circle. Needs its own 24 V supply (10 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg3f","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS35's flange has 6 x M8 on an 80 mm circle. Needs its own 24 V supply (10 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg4f","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate: TESOLLO's supplied frame is 4-bolt ISO 50 and the AUBO-iS35's flange has 6 x M8 on an 80 mm circle. Needs its own 24 V supply (10 A peak; the manual read does not state the AUBO-iS35's tool connector rating). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_is_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f85","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-85) has a 4-bolt ISO 50 coupling and the AUBO-iS35's flange has 6 x M8 on an 80 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f140","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (AGC-AUBO-KIT-140) has a 4-bolt ISO 50 coupling and the AUBO-iS35's flange has 6 x M8 on an 80 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_hande","b":"aubo_is35","status":"integration","reason":"Needs an adapter plate: Robotiq's AUBO kit (HND-AUBO-KIT) has a 4-bolt ISO 50 coupling and the AUBO-iS35's flange has 6 x M8 on an 80 mm circle. Robotiq's plug-in names only the AUBO i5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"tesollo_m","b":"aubo_c5","status":"integration","reason":"Bolts onto the AUBO-C5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 3.2 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_s","b":"aubo_c5","status":"integration","reason":"Bolts onto the AUBO-C5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 4.1 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over Ethernet from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56dfx","b":"aubo_c5","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.5 kg. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56bfx","b":"aubo_c5","status":"integration","reason":"AUBO lists Inspire dexterous hands in its ecosystem without naming a model. Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.5 kg. Needs its own 24 V supply (2 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56h1","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.5 kg. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56f1","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.4 kg. Needs its own supply (5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh56e2","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.2 kg. Needs its own 24 V supply (4.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_rh5dg2","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.0 kg. Needs its own supply (7.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-C5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.4 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh8d_fs","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate from Seed's own wrist pattern to the AUBO-C5's flange (4 x M6 on a 50 mm circle). Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh6d","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.7 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"seed_rh4d","b":"aubo_c5","status":"integration","reason":"Mounts on the AUBO-C5's flange (4 x M6 on a 50 mm circle) with Seed's ISO 9409-1-50 adapter. The 5 kg payload leaves 4.8 kg. Plan a separate 9 to 24 V supply: Seed publishes no peak current. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"allegro_v4","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 3.9 kg. Needs its own 24 V, 100 W supply. Control is over CAN by a separate cable to the PC; the arm has no CAN at the tool.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"psyonic_ability","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate from PSYONIC's 4 x M5 wrist pattern to the AUBO-C5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.5 kg. Needs its own 6 to 12 V supply (up to 14 A). Control is over UART or 5 V RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"brainco_revo2","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.6 kg. Needs its own supply (4.6 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4b2","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.8 kg. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"inspire_eg2_4c2","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate to the AUBO-C5's flange (4 x M6 on a 50 mm circle); the maker publishes no mounting pattern. The 5 kg payload leaves 4.8 kg. Standard units run on 7 to 9 V: use a separate supply or order the 24 V version. Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_gripper_g2","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-C5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.2 kg. Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_bio_gripper","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-C5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.2 kg. Needs its own 24 V supply (1.5 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"ufactory_vacuum","b":"aubo_c5","status":"integration","reason":"Needs an adapter plate from the UFACTORY arm-end mount to the AUBO-C5's flange (4 x M6 on a 50 mm circle). The 5 kg payload leaves 4.4 kg. Runs from the arm's 24 V tool supply (0.5 A). The arm's tool digital outputs can switch it, with custom wiring.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg2f","b":"aubo_c5","status":"integration","reason":"Bolts onto the AUBO-C5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 4.2 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg3f","b":"aubo_c5","status":"integration","reason":"Bolts onto the AUBO-C5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 3.9 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"tesollo_dg4f","b":"aubo_c5","status":"integration","reason":"Bolts onto the AUBO-C5's flange (4 x M6 on a 50 mm circle) with TESOLLO's supplied frame. The 5 kg payload leaves 3.5 kg. Needs its own 24 V supply (10 A peak; the arm's tool connector gives 1 A). Control is over RS485 from your own software; there is no AUBO plug-in.","url":"https://developer.aubo-robotics.cn/en/hardware/user_manual/robot_arm_c_user_manual.html","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f85","b":"aubo_c5","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-85) bolts onto the AUBO-C5's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-C5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_2f140","b":"aubo_c5","status":"integration","reason":"Robotiq's AUBO kit (AGC-AUBO-KIT-140) bolts onto the AUBO-C5's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-C5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"},{"a":"robotiq_hande","b":"aubo_c5","status":"integration","reason":"Robotiq's AUBO kit (HND-AUBO-KIT) bolts onto the AUBO-C5's flange and wires to the control box. Its plug-in names only the AUBO i5 and AUBO's earlier software, so confirm control on the AUBO-C5.","url":"https://robotiq.com/cobot-brands/aubo-robotics","st":"maker","d":"6 October 2026"}]}