ExoArm-7 Wearable Exoskeleton Teleoperation Arm
ExoArm-7 is a wearable exoskeleton teleoperation system designed for robotic arm control, human motion capture, and robot learning data collection. By capturing the operator's arm movements and mapping them to compatible robotic arms, it provides an intuitive interface for teleoperation, imitation learning, and robotics research.
14-DoF Motion Capture System
ExoArm-7 features a dual-arm design with 14 degrees of freedom, providing 7 DoF per arm for tracking human upper-body arm movements. The system uses 14-bit single-turn absolute encoders to capture joint motion for robotic control and data acquisition.
Low-Latency Robot Teleoperation
With transmission latency under 20 ms, ExoArm-7 supports responsive real-time teleoperation. The wearable design allows operator movements to be mapped directly to the robotic arm, supporting remote manipulation, motion synchronization, and robot control experiments.
OpenArm Compatibility and Development
ExoArm-7 is compatible with the OpenArm robotic arm platform and provides SDK support for integration and secondary development. It can be incorporated into custom robotics workflows for teleoperation, motion data collection, robot learning, and AI model development.
Key Specifications
- Dual-arm wearable exoskeleton
- 14 DoF total, 7 DoF per arm
- 14-bit single-turn absolute encoders
- Transmission latency: <20 ms
- OpenArm compatible
- SDK support
- Real-time motion tracking
- Robot teleoperation and data collection
Applications
ExoArm-7 is suitable for robotic arm teleoperation, motion data acquisition, imitation learning, VLA data collection, robot learning research, robotics development, and university education.



