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Embodied robotics platform

LimX TRON 2 Three-in-One Suit - EDU Edition

By LimX Dynamics

The most complete TRON 2 EDU configuration, designed to support modular dual-arm manipulation, bipedal mobility, wheeled mobility, teleoperation, simulation, and embodied-AI data collection.

Available as: Dual-arm robot · Biped robot · Wheeled robot · Modular multi-form robot

Priced per configuration. Freight and customs are quoted separately.

Contact for pricing

This platform is configured and quoted to your requirements. Freight, customs, and integration scope are confirmed before order.

  • 100% deposit required under current reseller terms
  • Freight and customs quoted separately
  • Final included modules and integration scope must be confirmed

Request a quote

Tell us your configuration, integration needs, and timeline — hardware, software, and deployment can be quoted together.

We respond within 24 hours — typically much faster during business hours.

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Deployment Expertise

XR & robotics specialists on staff

Integration Support

SDK, ROS & simulator guidance

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Enterprise Support

Hardware, software & deployment help

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Global Fulfillment

Freight & customs coordinated

  • Three robot forms from one purchase. Dual-arm, bipedal, and wheeled configurations share a single platform, so a lab can cover manipulation and mobility research without funding separate robots.
  • Built for embodied-AI data collection. Teleoperation, an active-vision head, and waist, head, and wrist RGBD cameras make it usable as a demonstration-capture rig, not only a control-research target.
  • Standard toolchain, no proprietary lock-in. Python and C++ SDKs with ROS 1, ROS 2, Isaac Sim, MuJoCo, and Gazebo support mean existing lab code and trained policies transfer over.
  • Open electrical and mechanical interfaces. Ethernet, USB 3.0, EtherCAT, and RS485, plus 12 V, 24 V, and 48 V power rails, allow third-party end effectors and sensors to be added.
  • Field-replaceable battery and fast charge. A swappable 46.8 V pack reaching 80 percent in 30 minutes keeps sessions running across a teaching day.
  • Integration handled, not left to you. Knoxlabs validates third-party hands, gloves, and capture hardware against your configuration before it ships, and coordinates freight and customs.

Spec Highlights

  • 7 DoF per arm
  • 5 DoF per leg
  • 2 DoF active-vision head
  • Up to 5 kg maximum end-effector load per arm; 3 kg extended
  • Python, C++, ROS 1 and ROS 2 support
  • Ethernet, USB 3.0, EtherCAT and RS485 interfaces

Technical Specifications

Mechanical, compute, power, SDK, and interface details for research and deployment.

Mechanical

Single arm dof
7
Single leg dof
5
Active vision head dof
2
Max end effector load per arm kg
5
Extended load per arm kg
3
Max end effector speed m s
5
Repeat positioning accuracy mm
±0.5
Mobility modes
sole, wheeled

Compute & Sensors

Development compute
Intel Core Ultra module option
Storage
2 TB on development module
Sensors
waist RGBD camera, IMU, head RGBD camera on dual-arm configuration, wrist RGBD camera on dual-arm configuration

Power & Battery

Battery voltage v
46.8
Battery capacity ah
9
Max battery power w
2800
Replaceable battery
true
Charging time
20-80% in 30 minutes; 20-100% in 54 minutes

Software & Interfaces

SDK languages
Python, C++
Operating systems
Linux, Ubuntu 20.04 reference environment, Windows low-level SDK availability
Middleware & frameworks
ROS 1, ROS 2, WebSocket JSON API
Simulators
NVIDIA Isaac Sim, MuJoCo, Gazebo
Communication interfaces
Ethernet, USB 3.0, EtherCAT, RS485
Power interfaces
12V output, 24V output, 48V output, External power input

Specification notes

Figures shown are manufacturer-stated for the TRON 2 platform. Combined manipulation and mobility performance depends on the module set and end effectors selected for your configuration.

  • Maximum end-effector load is 5 kg per arm, reducing to 3 kg in extended postures.
  • Repeat positioning accuracy is stated as plus or minus 0.5 mm.
  • Maximum end-effector speed is 5 m/s.
  • Two mobility modes are supported: sole (bipedal) and wheeled.
  • The 46.8 V / 9 Ah battery is field-replaceable, with 2,800 W peak output.
  • Charging takes 30 minutes from 20 to 80 percent, and 54 minutes from 20 to 100 percent.
  • The development compute module option carries an Intel Core Ultra processor with 2 TB of storage.
  • The dual-arm configuration adds head and wrist RGBD cameras alongside the waist RGBD camera and IMU.

Configuration and documentation

The Three-in-One Suit is a modular platform. The exact module list, end-effector selection, and included accessories are confirmed on quotation. Full manufacturer specifications are published by LimX Dynamics at limxdynamics.com.

Product details

Overview

A modular embodied-robotics platform combining TRON 2 dual-arm manipulation with interchangeable mobility configurations for education, research, teleoperation, and embodied-AI data collection.

  • 7 degrees of freedom per arm
  • Up to 5 kg maximum end-effector load per arm; 3 kg in extended configurations
  • Supports Python, C++, ROS 1, and ROS 2 development
  • Designed for modular dual-arm, bipedal, and wheeled research workflows
  • SDK, robot-management, simulation, and data-collection resources available

Purchase note: Final included modules, freight, customs, lead time, training, and integration requirements are confirmed during quotation. A 100% deposit is required under the current reseller terms.

Need More Than Hardware?

Knoxlabs also handles the deployment.

Device setup
SDK & ROS onboarding
Integration validation
Freight & customs
Teleoperation setup
Robotics deployment consulting

FAQ

Which robot forms does the Three-in-One Suit support?

Four: dual-arm manipulation, bipedal locomotion, wheeled mobility, and modular multi-form operation. It is the broadest TRON 2 EDU configuration available.

What languages, frameworks, and operating systems does it support?

Python and C++ SDKs, with ROS 1, ROS 2, and a WebSocket JSON API. Linux is the primary target, with Ubuntu 20.04 as the reference environment. A low-level SDK is available for Windows.

Which simulators can I train and test in?

NVIDIA Isaac Sim, MuJoCo, and Gazebo.

Can third-party robot hands or gloves be integrated?

LimX reports a tested BrainCo hand configuration, though the exact Revo2 edition and mounting package must be confirmed for your build. Other third-party integrations, including Tesollo, MANUS, and SenseGlove, require configuration-specific mechanical, electrical, software, payload, safety, and warranty validation. Knoxlabs can scope that validation as part of the deployment.

How is the platform priced and ordered?

By quotation. Import duties are included in the price shown. Freight and customs handling are quoted separately, and a 100 percent deposit applies under current supplier terms.

What is the lead time?

Lead time is confirmed on quotation together with the final module list, since it depends on the configuration selected.

Does Knoxlabs provide setup and onboarding?

Yes. Device setup, SDK and ROS onboarding, integration validation, teleoperation setup, and robotics deployment consulting can all be quoted alongside the hardware.

Who typically deploys this platform?

Universities, robotics labs, AI research teams, advanced technical education programs, and enterprise R&D groups.