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Unitree G1 EDU U2

63.239,4452.264,00

52.264,0043.193,39 exclusive of VAT

Excl. VAT

Incl. VAT

Available on back-order

Estimated delivery between 15/07/2026 - 18/07/2026

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Highlights

  • Extra freedom of movement and advanced hardware
  • Ideal for universities, R&D teams and tech companies
  • Built-in 100 TOPS computing module for AI projects
  • Advanced joints and sensors for fluid movement
  • Full compatibility with ROS, SDKs and APIs

Customer review: 9,6 / 10
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Unitree G1 EDU U2: Maximum Articulation for High-End Robotics Research

The Unitree G1 EDU U2 is the ultimate evolution within the G1 teaching line, designed for those looking to push the boundaries of humanoid motor skills. Whereas previous models focused on basic movements, the U2 variant introduces an expanded range of motion with additional degrees of freedom in the torso (waist) and arms. This increased complexity allows researchers to mimic human movement patterns with unparalleled fidelity. The G1 EDU U2 is the ideal tool for universities and tech companies specialising in embodied AI, where physical interaction with the environment is as important as the underlying algorithms. Unitree G1 Edu

Superior Kinematics & Onboard AI-Power

The U2 configuration provides the mechanical freedom needed for the most complex scenarios:
  • Extended Degrees of Freedom (DoF): With additional joints at the waist and arms, the G1 EDU U2 can perform tasks that require a high degree of torso rotation and arm articulation. This is essential for research into dynamic balance and object handling in unstructured spaces.
  • 100 TOPS Computing power: Like the U1 variant, the U2 features a powerful expansion station with 100 TOPS of computing power. This enables the robot to perform onboard real-time computer vision, voice recognition and complex trajectory planning without delay.
  • Advanced Sensor Integration: The combination of 3D LiDAR and depth cameras provides a crystal-clear view of the environment. In the U2 variant, this data is used to intelligently control the additional joints for proactive obstacle avoidance and smooth interactions.

Industrial Mechanics & Adaptive Design

The U2's hardware is built to withstand the toughest test cycles:
  • Improved Joint Actuators: The motors in the U2 have been optimised for even more precise torque control. This translates into smoother movements and higher resistance to external forces, crucial for stable manipulation.
  • Compact & Robust Chassis: Despite the increase in mechanical complexity, the U2 retains the distinctive compact design of the G1 series. The frame withstands intensive laboratory use and provides a stable base for various experimental setups.
  • Open Development Platform: Thanks to extensive support for ROS, SDKs and APIs developers can get straight to work with the unique capabilities of the extra joints, paving the way for innovative applications in human-machine interaction.
Unitree G1 Edu Product

Why the Unitree G1 EDU U2 is indispensable

The Unitree G1 EDU U2 is the definitive choice for research projects that go beyond the basics. Its combination of superior motor performance and massive computing power makes it a unique platform for developing AI agents that need to be able to perform physically in a human world. Whether you are working on advanced rehabilitation technologies, autonomous assistive robots or basic research into humanoid biomechanics; the U2 delivers the hardware flexibility and software power needed to realise your vision.
Product Unitree G1 EDU U2
EAN DDG_PRO_801114
Dimensions 1320 × 450 × 350 mm (H × W × D)
Weight 35+ kg
Battery Li-ion 48 V, 12 Ah
Max speed joints 180°/s
Max. torque 33 Nm
Encoder resolution 15-bit
Degree of protection IP54
Interface Ethernet, USB
Communications RS485, Wi-Fi
Operating system Ubuntu (ROS compatible)
Check Position control
Force feedback Yes
Collision detection Yes
1 x Unitree G1 EDU Plus (U2) Humanoid Robot
1 x Remote control
1 x Gantry
Note: Hands are not included
Dex3-1 Dexterous Hands (optional)
Gantry
ROS software
SDK & API

About products

1. What products do you have and what are they for?

Made for robot enthusiasts and robot beginners, the Go1 Air and Go1 Pro fall into the consumer market.

The Go1 Edu version is aimed at education and scientific research, entertainment, fun to play and robot researchers and developers.

The AlienGo and B1 are mainly intended for industrial applications (site inspections, such as substation inspections, surveying and mapping in construction, etc.), e.g. in the electricity, petrochemical and coal industries, as forward-looking industrial technology.

The Z1 robot arm series is ideally suited to work together with the AlienGo and B1 (the most suitable robot), four-legged robots and other mobile robots to perform complex tasks and explore various application scenarios.

2. How far is the remote control?

With the standard controller, it is like connecting to a Wi-Fi hotspot. The range for the phone connection to the robot dog is about 50 to 60 metres. With the enhanced controller, under unobstructed and interference-free conditions, you can control the robot dog up to a maximum of 500 metres to 1 kilometre, but in normal conditions, a range of at least 200 metres is achievable.

The improved controller is a mini-handheld ground station, similar to the DJI RC Pro for drones, making the remote control capabilities much stronger.

3. Can the robot dog climb stairs?

All stair runners can climb stairs, the maximum height they can climb is:
Go1: 12 cm (4.7 inches)
AlienGo: 18 cm (7 inches)
B1: 20 cm (7.9 inches)
Note: Boston Dynamic spot: typical 7-inch rise for 10-11-inch

4. What is the maximum speed of the robot dog?

Go1: 4.7 m/s (10.5 mph)
AlienGo: 2 m/s (4.47 mph)
B1: 1.8 m/s (4 mph)
Note: Boston Dynamic advertising: 1.6 m/s

5. Is the robot dog holder dustproof and waterproof?

Only B1 is supported, other models are not.

6. What is the maximum payload of the robot dog?

Go1: 3-5 kg (6.6-11 lbs)
AlienGo: 10 kg (22 lbs)
B1: 104 kg (229 lbs)
Note: Boston Dynamic spot: 14 kg (30.9 lbs)

7. Which sensor can be placed on top of the robot dog?

For Go1 Edu, we provide Go1 Edu Explorer. Go1 Edu Explorer is based on Go1 Edu, but supplemented with accessories such as NVIDIA Jetson NX with software and Lidar with software.

After lidar installation, Go1 Edu Explorer supports dynamic obstacle detection, navigation planning, map building and self-positioning. After installation of NX, Go1 Edu Explorer supports gesture recognition, VSLAM and professional secondary development (machine learning, etc.).

The Go1 Edu also supports a high-resolution image transfer system (similar to DJI drones) and a person tracking function (using a wireless vector positioning system). The Go1 Edu can handle uneven terrain and perform various movements, such as rolling, jumping, upside down, walking, fast walking, running, and so on.

The customer can also add other sensors, such as gas detection sensor, laser scanner, speaker, warning lamp, thermal imaging camera and powerful search lamp, etc., for various applications.

8. Does the robot dog support 4G/5G and GPS?

Currently, only the Go1 Edu 4G and the B1 support 4G and 5G, and only the B1 has built-in GNSS for GPS support. Customers must build their own server to use 4G or 5G functionality.

9. What is the voltage and amperage of the external power supply for Go1 Edu?

Normally, we need a stable DC power supply (24V, 20A-30A) for the Go1 Edu, and the connection port for the cable is XT30 or XT30U.

10. What is the camera on the robot dog?

Go1 Edu with 5-group fisheye camera (camera developed by Unitree Robotics).

AlienGo equipped with 3-group cameras, 2-group depth sensors (Intel RealSense D435) and 1-group visual remote camera (T265).

B1 equipped with 5-group sensors (Intel RealSense D430).

11. Does Go1 Edu support all types of navigation APIs? What is the difference between Go1 Edu, AlienGo and B1 in terms of support for this SDK/API?

We did not release an SDK/API related to navigation on GitHub, because navigation is LiDAR-based and we normally ship all software together with the robot dog. Unitree_legged_sdk is our core API for high- and low-level control, and this API supports all models.

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