About
R1 EDU with Dexterous Hands and High-Power Computing
The R1 EDU platform supports secondary development, fully open joint and sensor control interfaces, and mainstream simulation platforms. The EDU configuration also supports high-power computing modules in the 40–100 TOPS range.
With two Unitree tendon-driven dexterous hands, the U10 configuration adds 2 actuated degrees of freedom per hand to the 26-DOF R1 EDU base, for 30 total actuated degrees of freedom.

Built for Development, Simulation & Manipulation
R1 EDU combines open development interfaces, high-performance computing, binocular perception, and optional dexterous manipulation hardware.
Secondary Development
R1 EDU supports secondary development with open interfaces for robot joints and sensors.
100 TOPS Computing
The EDU platform supports high-power computing modules, including configurations up to 100 TOPS.
Dual Dexterous Hands
Each Unitree tendon-driven dexterous hand provides 2 actuated degrees of freedom with hidden internal wiring and compatibility with R1.
Binocular Vision
R1 EDU uses a binocular camera for onboard visual perception.
30 Total Actuated Degrees of Freedom
The R1 EDU base provides 26 joint degrees of freedom. Two Unitree Dex2/5 tendon-driven hands add 2 actuated degrees of freedom per hand.
Computing, Perception & Open Development
R1 EDU combines an 8-core high-performance processor with optional high-power computing modules, binocular vision, open development interfaces, and support for mainstream simulation platforms.
R1 EDU U10 Highlights
Research-oriented R1 EDU configuration with high-power computing and dual dexterous hands.
Technical Specifications
R1 EDU with Dexterous Hands and High-Power Computing
The R1 EDU platform supports secondary development, fully open joint and sensor control interfaces, and mainstream simulation platforms. The EDU configuration also supports high-power computing modules in the 40–100 TOPS range.
With two Unitree tendon-driven dexterous hands, the U10 configuration adds 2 actuated degrees of freedom per hand to the 26-DOF R1 EDU base, for 30 total actuated degrees of freedom.

Built for Development, Simulation & Manipulation
R1 EDU combines open development interfaces, high-performance computing, binocular perception, and optional dexterous manipulation hardware.
Secondary Development
R1 EDU supports secondary development with open interfaces for robot joints and sensors.
100 TOPS Computing
The EDU platform supports high-power computing modules, including configurations up to 100 TOPS.
Dual Dexterous Hands
Each Unitree tendon-driven dexterous hand provides 2 actuated degrees of freedom with hidden internal wiring and compatibility with R1.
Binocular Vision
R1 EDU uses a binocular camera for onboard visual perception.
30 Total Actuated Degrees of Freedom
The R1 EDU base provides 26 joint degrees of freedom. Two Unitree Dex2/5 tendon-driven hands add 2 actuated degrees of freedom per hand.
Computing, Perception & Open Development
R1 EDU combines an 8-core high-performance processor with optional high-power computing modules, binocular vision, open development interfaces, and support for mainstream simulation platforms.
R1 EDU U10 Highlights
Research-oriented R1 EDU configuration with high-power computing and dual dexterous hands.
Technical Specifications
Unitree R1 EDU U10 Pro H AI Humanoid Robot White and Blue
- Regular price
- $23,000.00
- Sale price
- $23,000.00
- Regular price
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