The Unitree G1edu U7 is a humanoid robot EDU platform for AI research, robotics education, embodied intelligence experiments, and secondary development. Based on Unitree's official G1 EDU specification family, it is designed for teams that need a compact humanoid robot with development support, onboard sensing, dexterous manipulation options, and a research-oriented hardware platform. Unitree's official G1 parameter table lists the G1 EDU configuration with 23-43 total joint degrees of freedom, about 35 kg+ weight with battery, 1320 x 450 x 200 mm standing dimensions, Depth Camera + 3D LiDAR, an 8-core high-performance CPU, Wi-Fi 6, Bluetooth 5.2, and secondary development support. These official G1 EDU family values are used here rather than unverified package-specific claims. For AI labs, robotics courses, and research teams, G1edu U7 provides a compact humanoid platform for locomotion, manipulation, perception, and interaction workflows. Unitree's official open-source and SDK ecosystem, including Unitree SDK2, gives developers a starting point for custom robotics software and control experiments. Features Humanoid EDU platform - G1edu U7 is positioned for AI research, robotics education, and secondary development workflows. Official G1 EDU family specs - The description uses Unitree's verified G1 EDU parameter table instead of unsupported variant assumptions. 23-43 joint degrees of freedom - G1 EDU is listed with a configurable joint freedom range for humanoid research and manipulation studies. Compact humanoid form factor - Official standing dimensions are 1320 x 450 x 200 mm, with folded dimensions of 690 x 450 x 300 mm. Advanced sensing - Unitree lists Depth Camera + 3D LiDAR for perception and environment-awareness experiments. Development-ready compute - G1 EDU includes an 8-core high-performance CPU and supports an optional NVIDIA Jetson Orin high-computing-power module. Dexterous hand options - G1 EDU supports optional three-finger dexterous hand and wrist degrees of freedom configurations. Research-grade actuation - Official data lists industrial-grade crossed roller bearings, low-inertia PMSM joint motors, and up to 120 N.m knee joint torque. Audio and wireless features - The G1 EDU parameter table lists a 4-microphone array, 5W speaker, Wi-Fi 6, and Bluetooth 5.2. Secondary development support - G1 EDU is listed with secondary development support for advanced research and custom software workflows. Specifications Parameter Value Model Unitree G1edu U7 Platform Family Unitree G1 EDU Product Type Humanoid robot EDU platform Standing Dimensions 1320 x 450 x 200 mm Folded Dimensions 690 x 450 x 300 mm Weight (With Battery) About 35 kg+ Total Degrees of Freedom 23-43 joint degrees of freedom Single Leg Degrees of Freedom 6 Waist Degrees of Freedom 1 + optional 2 additional waist degrees of freedom Single Arm Degrees of Freedom 5 Single Hand Degrees of Freedom Optional 7-DOF three-finger hand + optional 2 additional wrist degrees of freedom Max Knee Joint Torque 120 N.m Arm Maximum Load About 3 kg Power Supply 13-string lithium battery Battery Quick-release smart battery, 9000 mAh Battery Life About 2 hours Charger 54 V 5 A Basic Computing Power 8-core high-performance CPU Optional High Computing Power Module NVIDIA Jetson Orin Sensing Sensor Depth Camera + 3D LiDAR Audio 4-microphone array + 5W speaker Wireless Connectivity Wi-Fi 6, Bluetooth 5.2 Secondary Development Supported Reference Documents Unitree Official Open Source Resources Unitree SDK2 Official GitHub Repository Application AI robotics research - Use G1edu U7 for humanoid locomotion, perception, planning, and embodied AI experiments. Robotics education - Teach humanoid robot control, sensing, manipulation, and software integration with a real platform. Secondary development - Build custom software workflows using Unitree's official development ecosystem. Dexterous manipulation research - Explore optional hand and wrist configurations for grasping and interaction studies. Human-robot interaction - Develop interaction demos using onboard sensing, audio, and humanoid motion capabilities. Autonomous behavior prototyping - Test movement, perception, and decision-making workflows in controlled research environments. University lab projects - Support advanced coursework, capstone projects, and research prototypes. AI model validation - Use the humanoid platform for testing embodied AI policies and robot behavior models. Packing List Description Quantity Unitree G1edu U7 humanoid robot EDU platform 1 FAQ Q1: What is the difference between Unitree G1edu U7 and Unitree G1edu U8? Both are OpenELAB-listed G1 EDU variants. Unitree's public official G1 page provides a shared G1 EDU parameter column rather than separate U7/U8 rows, so this description uses verified G1 EDU family specifications and avoids unsupported variant-specific claims. Q2: What is the difference between Unitree G1edu U7 and the standard Unitree G1? The official G1 table lists secondary development support for G1 EDU, while the standard G1 row does not list secondary development. G1 EDU also supports a broader 23-43 joint freedom range. Q3: Does G1edu U7 support secondary development? Yes. Unitree's official G1 EDU parameter table lists secondary development as supported. Q4: What sensing hardware is listed for G1 EDU? Unitree lists Depth Camera + 3D LiDAR. Q5: What compute is listed for G1 EDU? The official table lists an 8-core high-performance CPU and an optional NVIDIA Jetson Orin high-computing-power module. Q6: What is the listed battery life? Unitree lists about 2 hours of battery life for G1 EDU. Q7: What is the arm load listed for G1 EDU? The official table lists about 3 kg arm maximum load, with the note that actual load varies by arm extension posture. Q8: Is G1edu U7 suitable for AI and robotics research? Yes. Its humanoid form factor, sensing, secondary development support, and optional high-computing-power module make it suitable for AI research, robotics education, and lab experimentation.