Embodied Tien Kung 2.0 Lite
The Embodied Tien Kung 2.0 Lite by Beijing Innovation Center of Humanoid Robotics is an advanced humanoid robot designed for complex task automation. This bipedal platform incorporates cutting-edge motion control, dexterous manipulation, and intelligent autonomous capabilities. It combines state-of-the-art sensors, real-time balance control, and sophisticated software systems for versatile real-world applications in research, industry, and service environments.
Robot Specifications
- Key FeaturesKey Features
- Top Features
- Other Features
Dimensions
173cm x 55cm x 38cm
Weight
60 kg
Speed
10 km/h (Walking/Fast-walking peak)
Runtime
3-5 hours
Charging Time
2-4 hours
Battery Pack
3-5 kWh, 48V LiPo
Wi-Fi 5/6, Ethernet, Bluetooth 5.0
Web app, CLI, ROS interface, teleoperation joystick
Battery Life
3-5 years
Various end-effectors, sensors, tools
Yes, remote monitoring and deployment services
Available Countries
USA,Canada,EU,Japan,Singapore,South Korea
Web interface, ROS 2, cloud dashboard
Available Colours
White, gray, black
Warranty Info
2 years limited warranty, optional extended support
15kg per arm
RGB cameras, depth camera, LiDAR, IMU, force/torque sensors, gyroscope, accelerometer, joint encoders
Image Gallery
Below images are from Beijing Innovation Center of Humanoid Robotics's official sources
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Frequently Asked Questions
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Q1. What is Embodied Tien Kung 2.0 Lite, and what problem is it designed to solve?
Embodied Tien Kung 2.0 Lite is a lightweight humanoid robot developed by the Beijing Innovation Center of Humanoid Robotics. According to the manufacturer, it addresses challenges in agile mobility and task execution in unstructured environments like factories and rescue operations.
Q2. What are the main capabilities and key features of Embodied Tien Kung 2.0 Lite?
The robot supports bipedal locomotion on varied terrains, dexterous manipulation, and real-time adaptation via AI platforms. It integrates perception sensors and computing kits for autonomous navigation and interaction, as described by developers.
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