Unitree G1 EDU-U14 Humanoid Robot
- Built-in expansion dock with 100Tops computing power, capable of secondary development, including AI algorithm and technical support
- The maximum torque of the knee joint is upgraded to 120N.m
- The maximum load of the arm is 3kg
- Support high-level and low-level secondary development
- Provide excellent technical support services, complete development manuals and ecological support
- Equipped with 2 five-finger hands without tactile sensors(Tendon-Driven Dexterous Hand)
- The whole machine has 27 degrees of freedom
- Trusted dealerDirect manufacturer partnership
- Pan-India deliveryInsured shipping, all states
- Post-sale supportTraining + service included
What makes it work
Unitree G1 EDU-U14 Humanoid Robot
The Unitree G1 EDU-U14 is the five-finger dexterous hand variant of the G1 EDU research and education humanoid series. Built on the full G1 EDU platform, it adds dual Tendon-Driven Dexterous Hand five-finger hands — 6 DOF each — to standard 5-DOF arms, 1-DOF waist, and 100 TOPS onboard AI expansion dock. The result is a 27-degree-of-freedom bipedal humanoid platform combining agile whole-body locomotion with five-finger manipulation capability, backed by full high- and low-level secondary development support.
With a 120 N·m knee joint torque, 3 kg arm payload, Intel RealSense D435i depth camera, LIVOX-MID360 3D LiDAR, and an 18-month warranty covering the entire device, the G1 EDU-U14 is built for universities, AI research labs, and engineering teams that need a credible, fully programmable humanoid development platform.
Engineered Down to Every Joint
3D LiDAR
LIVOX-MID360 — 360° spatial awareness
Microphone Array
4-mic array — noise cancellation, echo cancellation
Single Arm Degrees of Freedom
Shoulder 3 + Elbow 2 = 5 DOF per arm
Core Motion Module
Maximum torque at knee joint: 120 N·m
Mobility
Moving speed of 2 m/s
Depth Camera
Intel RealSense D435i
Speaker
Stereo, 5W power
Tendon-Driven Dexterous Hand Five-Finger Hands
6 DOF per hand — 29 DOF body + 6+6 hand = 33 total DOF
100 TOPS Expansion Dock
Built-in AI compute for secondary development and algorithm support
Waist
1 DOF: Z±155°
Core Specifications
What Makes the G1 EDU-U14 Stand Out
Tendon-Driven Dexterous Hand Five-Finger Hands
Two Tendon-Driven Dexterous Hand five-finger dexterous hands — 6 DOF each — for biomimetic grasping and manipulation research. Wrist-mounted RGB camera included. No tactile sensors in this configuration.
Zero External Cabling — Hand to Body
A defining design feature: there is no external cabling between the Tendon-Driven Dexterous Hands and the G1 EDU-U14's main body. All routing is internal — producing a streamlined silhouette, an aesthetically refined appearance, and a mechanically more reliable system with fewer exposed failure points.
27 Total DOF — Standard Body + Tendon Hands
23 body DOF (5 per arm × 2, 6 per leg × 2, 1 waist) plus 2 DOF per Tendon-Driven hand gives 27 total joint motors — whole-body bipedal locomotion with standard arm configuration combined with cable-free compliant tendon-actuated end-effectors.
100 TOPS Built-In AI Expansion Dock
Onboard 100 TOPS expansion dock powers AI algorithm development and secondary development directly on the robot — supporting high- and low-level SDK access across all 27 DOF.
120 N·m Knee Torque — 3 kg Arm Load
Upgraded knee joint torque (120 N·m vs 90 N·m on G1 standard) and 3 kg arm payload (vs 2 kg) give the G1 EDU-U14 the strength needed for dynamic motion and heavier manipulation tasks.
Full Secondary Development
High- and low-level secondary development supported — Isaac SIM compatible, robot models and simulation interfaces provided, comprehensive development manuals and dedicated technical support included.
Tendon-Driven Dexterous Hands — 27 Total Degrees of Freedom
The G1 EDU-U14 is equipped with two Tendon-Driven Dexterous Hand five-finger dexterous hands, each providing 6 degrees of freedom — bringing the complete device to 27 total joint motors (23 body DOF plus 2 per hand). Tendon actuation delivers compliant, low-inertia motion for safe physical interaction and gentle object handling. No tactile sensors are included. A broad range of grasping configurations more closely approximating the functional range of the human hand. Each hand includes a wrist-mounted RGB camera for close-range visual feedback during manipulation tasks. Tactile sensors are not included in this Tendon-Driven Dexterous Hand configuration.
Both hands are fully accessible via the G1 EDU-U14's secondary development interfaces, enabling researchers to develop and deploy custom manipulation algorithms across the full 27-DOF kinematic chain.
7-DOF Arms and 3-Axis Waist for Whole-Body Motion
Both arms on the G1 EDU-U14 are upgraded from 5 to 7 degrees of freedom — adding wrist pitch and yaw (±92.5° each) to the existing shoulder and elbow articulation. This expanded arm range enables more natural, human-like reach patterns and unlocks manipulation tasks that require precise wrist orientation.
The waist is upgraded from 1 to 3 degrees of freedom (Z±155°, X±30°, Y±30°), enabling full torso rotation and lean — the whole-body coordinated motion that is essential for balance compensation during manipulation and for natural human-robot interaction research.
Built-In Expansion Dock — On-Robot AI Development
The G1 EDU-U14 includes a built-in expansion dock delivering 100 TOPS of onboard AI computing power — enabling AI algorithm development, perception models, and reinforcement learning pipelines to run directly on the robot. This on-robot compute layer works alongside the 8-core base CPU, removing dependency on external compute servers for most development tasks — supporting AI pipelines across all 27 DOF including the Tendon-Driven Dexterous Hands.
For applications requiring higher throughput, optional high-power computing modules — including Orin-class processors — are also available, providing a scalable compute architecture that grows with the complexity of the research task.
Sees, Hears, and Reacts to Its Environment
The G1 EDU-U14 carries an Intel RealSense D435i depth camera and a LIVOX-MID360 3D LiDAR for 360° spatial awareness and real-time depth mapping — providing the perceptual foundation for SLAM, navigation, and scene-aware manipulation research. A 4-microphone array with noise and echo cancellation, plus a stereo 5W speaker, enable clear audio interaction in real-world environments.
All of this sensor data feeds into the 100 TOPS onboard expansion dock alongside the 8-core CPU, enabling researchers to build and deploy multimodal perception-action pipelines directly on the robot hardware.
High- and Low-Level APIs Across All 27 DOF
The G1 EDU-U14 supports full secondary development — high-level and low-level programming interfaces giving direct access to joint control, sensor data streams, and SDK integration across all 27 degrees of freedom including the Tendon-Driven Dexterous Hands. Robot models and simulation interfaces are provided, with compatibility for Isaac SIM and other standard robotics simulation environments.
Comprehensive development manuals, excellent technical support services, and active ecosystem support are included — providing the documentation and community backing that universities and research institutions require for long-duration development programmes.
Where the G1 EDU-U14 Gets Put to Work
27 DOF, cable-free Tendon-Driven Dexterous Hands, 100 TOPS AI, and full secondary development make the G1 EDU-U14 suited for compliant manipulation and advanced robotics research.
G1 EDU-U14 — In Detail
Full-Length Video Showcase
G1 EDU-U14 — Hardware at a Glance
G1 EDU-U14 — Full Specification Table
| Specification | Value |
|---|---|
| MECHANICAL DIMENSIONS | |
| Height × Width × Thickness (Standing) | 1320 × 450 × 200 mm |
| Height × Width × Thickness (Folded) | 690 × 450 × 300 mm |
| Weight (With Battery) | About 35 kg+ |
| Calf + Thigh Length | 0.6 m |
| Arm Span | About 0.45 m |
| DEGREES OF FREEDOM | |
| Total DOF (Entire Device) | 27 (23 body + 2 per Tendon-Driven Dexterous Hand × 2) |
| Single Leg DOF | 6 (Hip 3 + Knee 1 + Ankle 2) |
| Waist DOF | 1 — Z±155° |
| Single Arm DOF | 5 — Shoulder 3 + Elbow 2 |
| Hand DOF (per hand) | 6 — Tendon-Driven Dexterous Hand five-finger hand (BrainCo) |
| Tactile Sensors | Not Included (Tendon-Driven Dexterous Hand configuration) |
| JOINT RANGE OF MOTION | |
| Waist Joint | Z±155° |
| Knee Joint | 0 ~ 165° |
| Hip Joint | P±154°, R-30~+170°, Y±158° |
| STRENGTH & PAYLOAD | |
| Max Knee Joint Torque | 120 N·m (upgraded from 90 N·m) |
| Arm Maximum Load | About 3 kg (upgraded from 2 kg) |
| ACTUATION | |
| Joint Output Bearing | Industrial grade crossed roller bearings (high precision, high load capacity) |
| Joint Motor | Low inertia high-speed internal rotor PMSM |
| Joint Encoder | Dual encoder |
| Joint Wiring | Full hollow joint electrical routing — no external cables |
| Cooling System | Local air cooling |
| COMPUTE & AI | |
| Basic Computing Power | 8-core high-performance CPU |
| Built-in Expansion Dock | 100 TOPS — AI algorithm support + secondary development |
| Optional High-Power Module | Multiple brands/models available (e.g. Orin-class) |
| PERCEPTION & AUDIO | |
| Depth Camera | Intel RealSense D435i |
| 3D LiDAR | LIVOX-MID360 |
| Microphone Array | 4-mic — noise cancellation + echo cancellation |
| Speaker | Stereo, 5W |
| POWER & CONNECTIVITY | |
| Power Supply | 13 string lithium battery |
| Smart Battery (Quick Release) | 9000 mAh |
| Charger | 54V 5A |
| Battery Life | About 2 hours |
| WiFi | WiFi 6 |
| Bluetooth | Bluetooth 5.2 |
| DEVELOPMENT & OTHER | |
| Secondary Development | Yes — High-level & Low-level |
| Development Manuals | Comprehensive (included) |
| Technical Support | Excellent technical support services + ecosystem support |
| Manual Controller | Yes (included) |
| Upgraded Intelligent OTA | Yes |
| Warranty Period | 18 months (entire device) |




There are no reviews yet.