HIGH TORQUE Mini Hi Humanoid Robot
Mini Hi is a compact humanoid robot designed for robotics education, development, motion control, and interactive robotics applications. With a human-like 23-DoF configuration, integrated computing, IMU, bottom controller, and SDK interface, it provides a flexible platform for learning, experimentation, and secondary development.
23-DoF Humanoid Robot Platform
Mini Hi features 23 degrees of freedom for full-body movement and supports a range of articulated motions across the head, arms, waist, legs, and ankles. Its compact form factor with an 830 mm standing height makes it suitable for robotics labs, educational environments, and development projects where a full-size humanoid platform is impractical.
Integrated Computing and Motion Control
The robot integrates a high-performance RK3588 CPU, high-performance IMU, and bottom controller to support onboard motion processing and control. An SDK interface is also provided for software development and custom robotics applications.
Battery-Powered Robotic Platform
Mini Hi operates on a 48 V battery system with a 5000 mAh nominal capacity and supports a maximum speed of 1.15 m/s. The integrated BMS battery and charger provide a complete power solution for mobile robotics development and testing.
Interactive Motion and Remote Control
Mini Hi supports remote control and built-in predefined motions. The standard version includes a single-hand wave motion, providing a simple starting point for demonstrations and interactive applications.
Key Specifications
- 23-DoF compact humanoid robot
- 830 mm standing height
- 19.5 kg weight including battery
- 36 Nm maximum joint torque
- 48 V, 5000 mAh battery system
- Maximum speed of 1.15 m/s
- RK3588 high-performance CPU
- Integrated IMU and bottom controller
- SDK interface for secondary development
- BMS battery and charger included
- Remote control support
- Built-in single-hand wave motion
Applications
Mini Hi is suitable for robotics education, humanoid robot development, motion control research, interactive robotics, robot programming, university laboratories, and robotics demonstrations.

