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Upper-Body Dual-Arm Humanoid Robot with Dex1-1 Advanced Grippers & Dual Intel Core i5/i7 Compute. 21 DOF, 7-DOF precision arms, 600 mm reach, binocular vision & full-stack open SDK. The industrial-grade platform for advanced humanoid manipulation research.
H2-A Standard A — upper-body humanoid with Dex1-1 Advanced grippers, 7-DOF arms & dual Intel compute
The H2-A Standard A is the entry-level configuration of the H2-A upper-body platform. You get the full upper-body dual-arm humanoid with 7-DOF arms, 3-DOF waist, binocular vision, voice interaction, and open SDK — paired with the industrial-grade Dex1-1 Advanced two-finger parallel grippers with integrated wrist RGB cameras for precision manipulation. The dual Intel Core i5 (platform) + i7 (development) compute architecture provides robust real-time control and ample headroom for AI research. At ~34.4 kg with the included upper-body battery, the H2-A delivers serious industrial payload capacity in a compact, desk-deployable form factor.
The H2-A Standard A is engineered around two 7-DOF high-performance arms, each driven by low-inertia inner-rotor PMSM motors with crossed-roller and double-row ball bearings. With 600 mm reach and a ~7 kg rated payload per arm (up to ~15 kg peak), it handles precise assembly, heavy pick-and-place, and industrial manipulation research with human-like fluidity. The extra two degrees of freedom per arm (compared to 5-DOF platforms) provide kinematic redundancy — the arm can maintain end-effector pose while reconfiguring its elbow to avoid obstacles, reach around corners, or optimize for natural motion. Dual encoders on every joint deliver closed-loop precision down to ±0.1 mm.
Multimodal Perception & Natural Interaction: Integrating binocular vision with natural language interaction, H2-A enables intuitive and natural human–robot collaboration.
The Dex1-1 Advanced is a robust two-finger parallel gripper designed for industrial precision. With 90 mm stroke, 5–120 N adjustable gripping force, and 0.1 mm position resolution, it excels at grasping regular-shaped objects, tools, and components in structured environments. The integrated wrist RGB camera (1920×1080, 130° DFOV) provides close-up visual feedback for grasp verification and precision alignment. While more advanced dexterous hands are available as upgrades, the Dex1-1 Advanced provides everything a research lab needs to start collecting manipulation data immediately — with the reliability and speed demanded by industrial applications.
The 3-DOF waist joint provides full torso articulation — yaw, pitch, and roll — dramatically expanding the robot's reachable workspace without moving the base. In a seated or standing deployment, the waist allows the robot to turn and manipulate objects on either side, hand objects from one hand to the other across the body, bend forward for floor-level picking, and orient toward humans or workstations. Combined with 7-DOF arms, the H2-A achieves human-like reach envelopes that cover a full sphere of workspace — ideal for collaborative tasks, assembly workflows, and human-robot interaction studies.
The H2-A Standard A ships with a built-in dual-compute architecture: PC1 runs an Intel Core i5 for real-time platform functionality and motion control, while PC2 provides an Intel Core i7 dedicated to user development. This separation ensures deterministic robot behavior while giving researchers full freedom to experiment. Optional expansion slots (PC3 for NVIDIA Jetson Thor, PC4 for Intel i7 or Jetson Orin NX) future-proof the platform as your AI ambitions grow.
A wide-angle humanoid-style binocular camera head delivers a broad field of view for spatial awareness. Paired with an 8-core high-performance CPU + 10 TOPS NPU in the head module, plus the dual Intel compute in the body, it runs visual perception, object detection, and gesture recognition locally — no cloud required. The Dex1-1 Advanced wrist cameras add close-up visual feedback for precision grasping and manipulation verification.
Array beamforming microphones and high-power speakers enable clear voice capture and synthesis in noisy labs or industrial floors. The open audio framework supports custom wake words, multilingual TTS, and integration with LLMs for conversational command-and-control.
At just 780 × 444 × 200 mm and approximately 34.4 kg (with battery), the H2-A Standard A fits on a reinforced lab bench or industrial workstation. The compact footprint leaves room for objects, tools, and sensors around the robot. Power via the included upper-body Li-ion battery for ~8 hours of untethered operation, or connect the external power supply for 24/7 continuous use.
Comprehensive SDKs and APIs, together with a mature manipulation and perception software stack, enable developers to focus on application innovation while reducing development cycles from months to weeks.
Unitree provides a mature, Linux-based robot development framework with open APIs for the underlying system, robotic arms, audio, lighting, and visual control. ROS 2 native support, dual encoders on every arm joint, and hollow internal wiring make the H2-A Standard A a clean slate for reinforcement learning, teleoperation research, and embodied AI. The dual Intel compute handles model training and inference without external hardware.
Start with Standard A and expand as your projects evolve. The H2-A platform is fully modular:
| Model | Unitree H2-A Standard A (Upper Body) |
| Dimensions | 780 × 444 × 200 mm (H × W × D) |
| Weight (with Battery) | ~34.4 kg |
| Total DOF (without hands) | 19 (Arm 7×2, Waist 3, Head 2) |
| Total DOF (with hands) | 21 (Arm 7×2, Waist 3, Head 2, Gripper 1×2) |
| Arm Reach | 600 mm (forearm + upper arm) |
| Joint Bearings | Crossed-roller + double-row ball bearings |
| Joint Motors | Low-inertia, high-speed, inner-rotor permanent magnet synchronous motors |
| Max Arm Payload | Peak: ~15 kg; Rated: ~7 kg (posture-dependent) |
| End-Effector Precision | ±0.1 mm |
| End Effectors | Dex1-1 Advanced two-finger parallel grippers (both arms, pre-installed) with wrist RGB camera |
| Gripper Specs | 143 × 78 × 67 mm, 550 g, 90 mm stroke, 5–120 N force, 0.1 mm resolution |
| Gripping Load | Conformal: 20 kg; Friction: 5 kg |
| Wrist Cameras | Included — RGB 1920×1080, FOV D:130°/H:120°/V:81° |
| Tactile Sensing | Not included |
| Waist Joint | 3-DOF (Yaw, Pitch, Roll) |
| Head Joint | 2-DOF, Yaw: ±115°, Pitch: ±36° |
| Vision | Binocular camera — wide-angle humanoid-style dual-camera system |
| Head Compute | 8-core high-performance CPU + 10 TOPS NPU |
| Body Compute (PC1) | Intel Core i5 (platform functionality) |
| Body Compute (PC2) | Intel Core i7 (user development) |
| Optional Compute (PC3) | NVIDIA Jetson Thor (empty slot, add-on) |
| Optional Compute (PC4) | Intel Core i7 or NVIDIA Jetson Orin NX (empty slot, add-on) |
| Audio | Array microphone + high-power speaker |
| Connectivity | Wi-Fi 6, Bluetooth 5.2, OTA updates |
| Power | Upper-body Li-ion battery (~8 h) + external DC PSU (24/7) |
| Cabling | Hollow + internal wiring |
| Joint Encoders | Dual + single encoders per joint |
| Cooling | Localized air cooling |
| SDK & Interfaces | Linux-based framework, ROS 2, open APIs for arm/audio/vision/lighting |
| Controllers | Handheld remote control included |
| Warranty | 12 months on the entire unit |
Standard A is the entry point. Every configuration shares the same H2-A upper-body base — the difference is the end effector. Choose the one that matches your research goals:
| Config | Hand | DOF (Total) | Features |
|---|---|---|---|
| Standard A | Dex1-1 Advanced (RGB) | 21 | Entry-level parallel grippers with wrist camera, 7-DOF arms, stereo vision |
| Standard B | Dex3-1 (RGB) | 33 | 3-finger dexterous hand with wrist RGB camera |
| Standard C | Dex3-1 Tactile (RGB) | 33 | 3-finger hand with 33 tactile sensors + wrist RGB camera |
| Standard D | Dex5-1 (RGB) | 51 | 5-finger 16-DOF hand with wrist RGB camera |
| Standard E | Dex5-1P Tactile (RGB) | 51 | 5-finger hand with 94 pressure sensors + wrist RGB camera |
| Standard F | Revo 2 Basic (RGB) | 31 | 5-finger 6-DOF BrainCo hand with wrist RGB camera |
| Standard G | Revo 2 Tactile (RGB) | 31 | 5-finger hand with pressure/friction/direction/proximity sensing + wrist RGB camera |
| Standard H | RH56DFQ (RGB) | 31 | Inspire Robots 5-finger 6-DOF hand with wrist RGB camera |
| Standard I | RH56E2-T1 Tactile (RGB) | 31 | Inspire Robots 5-finger hand with 17 tactile sensors + wrist RGB camera |
| Standard J | Revo 3 U21 (RGB) | 61 | BrainCo 21-DOF hand with wrist RGB camera |
| Standard K | Revo 3 U21T Tactile (RGB) | 61 | BrainCo 21-DOF hand with full-palm tactile + wrist RGB camera |
| Standard L | Revo 3 U21VT Visuo-Tactile (RGB) | 61 | BrainCo 21-DOF hand with visuo-tactile sensing + wrist RGB camera |
| Standard M | WUJI Hand 2 Tactile (RGB) | 59 | WUJI 20-DOF hand with tactile + wrist RGB camera, 1000 Hz control |
* Specifications are based on manufacturer data and may vary slightly by production batch. Optional compute modules and alternative end effectors sold separately.
Unitree® is a registered trademark of Unitree Robotics. Images are for reference; actual product appearance may differ.
Users must maintain a sufficient safety distance. This is a civilian robot — comply with local laws and regulations.
Upper-Body Dual-Arm Humanoid Robot with Dex1-1 Advanced Grippers & Dual Intel Core i5/i7 Compute. 21 DOF, 7-DOF precision arms, 600 mm reach, binocular vision & full-stack open SDK. The industrial-grade platform for advanced humanoid manipulation research.
H2-A Standard A — upper-body humanoid with Dex1-1 Advanced grippers, 7-DOF arms & dual Intel compute
The H2-A Standard A is the entry-level configuration of the H2-A upper-body platform. You get the full upper-body dual-arm humanoid with 7-DOF arms, 3-DOF waist, binocular vision, voice interaction, and open SDK — paired with the industrial-grade Dex1-1 Advanced two-finger parallel grippers with integrated wrist RGB cameras for precision manipulation. The dual Intel Core i5 (platform) + i7 (development) compute architecture provides robust real-time control and ample headroom for AI research. At ~34.4 kg with the included upper-body battery, the H2-A delivers serious industrial payload capacity in a compact, desk-deployable form factor.
The H2-A Standard A is engineered around two 7-DOF high-performance arms, each driven by low-inertia inner-rotor PMSM motors with crossed-roller and double-row ball bearings. With 600 mm reach and a ~7 kg rated payload per arm (up to ~15 kg peak), it handles precise assembly, heavy pick-and-place, and industrial manipulation research with human-like fluidity. The extra two degrees of freedom per arm (compared to 5-DOF platforms) provide kinematic redundancy — the arm can maintain end-effector pose while reconfiguring its elbow to avoid obstacles, reach around corners, or optimize for natural motion. Dual encoders on every joint deliver closed-loop precision down to ±0.1 mm.
Multimodal Perception & Natural Interaction: Integrating binocular vision with natural language interaction, H2-A enables intuitive and natural human–robot collaboration.
The Dex1-1 Advanced is a robust two-finger parallel gripper designed for industrial precision. With 90 mm stroke, 5–120 N adjustable gripping force, and 0.1 mm position resolution, it excels at grasping regular-shaped objects, tools, and components in structured environments. The integrated wrist RGB camera (1920×1080, 130° DFOV) provides close-up visual feedback for grasp verification and precision alignment. While more advanced dexterous hands are available as upgrades, the Dex1-1 Advanced provides everything a research lab needs to start collecting manipulation data immediately — with the reliability and speed demanded by industrial applications.
The 3-DOF waist joint provides full torso articulation — yaw, pitch, and roll — dramatically expanding the robot's reachable workspace without moving the base. In a seated or standing deployment, the waist allows the robot to turn and manipulate objects on either side, hand objects from one hand to the other across the body, bend forward for floor-level picking, and orient toward humans or workstations. Combined with 7-DOF arms, the H2-A achieves human-like reach envelopes that cover a full sphere of workspace — ideal for collaborative tasks, assembly workflows, and human-robot interaction studies.
The H2-A Standard A ships with a built-in dual-compute architecture: PC1 runs an Intel Core i5 for real-time platform functionality and motion control, while PC2 provides an Intel Core i7 dedicated to user development. This separation ensures deterministic robot behavior while giving researchers full freedom to experiment. Optional expansion slots (PC3 for NVIDIA Jetson Thor, PC4 for Intel i7 or Jetson Orin NX) future-proof the platform as your AI ambitions grow.
A wide-angle humanoid-style binocular camera head delivers a broad field of view for spatial awareness. Paired with an 8-core high-performance CPU + 10 TOPS NPU in the head module, plus the dual Intel compute in the body, it runs visual perception, object detection, and gesture recognition locally — no cloud required. The Dex1-1 Advanced wrist cameras add close-up visual feedback for precision grasping and manipulation verification.
Array beamforming microphones and high-power speakers enable clear voice capture and synthesis in noisy labs or industrial floors. The open audio framework supports custom wake words, multilingual TTS, and integration with LLMs for conversational command-and-control.
At just 780 × 444 × 200 mm and approximately 34.4 kg (with battery), the H2-A Standard A fits on a reinforced lab bench or industrial workstation. The compact footprint leaves room for objects, tools, and sensors around the robot. Power via the included upper-body Li-ion battery for ~8 hours of untethered operation, or connect the external power supply for 24/7 continuous use.
Comprehensive SDKs and APIs, together with a mature manipulation and perception software stack, enable developers to focus on application innovation while reducing development cycles from months to weeks.
Unitree provides a mature, Linux-based robot development framework with open APIs for the underlying system, robotic arms, audio, lighting, and visual control. ROS 2 native support, dual encoders on every arm joint, and hollow internal wiring make the H2-A Standard A a clean slate for reinforcement learning, teleoperation research, and embodied AI. The dual Intel compute handles model training and inference without external hardware.
Start with Standard A and expand as your projects evolve. The H2-A platform is fully modular:
| Model | Unitree H2-A Standard A (Upper Body) |
| Dimensions | 780 × 444 × 200 mm (H × W × D) |
| Weight (with Battery) | ~34.4 kg |
| Total DOF (without hands) | 19 (Arm 7×2, Waist 3, Head 2) |
| Total DOF (with hands) | 21 (Arm 7×2, Waist 3, Head 2, Gripper 1×2) |
| Arm Reach | 600 mm (forearm + upper arm) |
| Joint Bearings | Crossed-roller + double-row ball bearings |
| Joint Motors | Low-inertia, high-speed, inner-rotor permanent magnet synchronous motors |
| Max Arm Payload | Peak: ~15 kg; Rated: ~7 kg (posture-dependent) |
| End-Effector Precision | ±0.1 mm |
| End Effectors | Dex1-1 Advanced two-finger parallel grippers (both arms, pre-installed) with wrist RGB camera |
| Gripper Specs | 143 × 78 × 67 mm, 550 g, 90 mm stroke, 5–120 N force, 0.1 mm resolution |
| Gripping Load | Conformal: 20 kg; Friction: 5 kg |
| Wrist Cameras | Included — RGB 1920×1080, FOV D:130°/H:120°/V:81° |
| Tactile Sensing | Not included |
| Waist Joint | 3-DOF (Yaw, Pitch, Roll) |
| Head Joint | 2-DOF, Yaw: ±115°, Pitch: ±36° |
| Vision | Binocular camera — wide-angle humanoid-style dual-camera system |
| Head Compute | 8-core high-performance CPU + 10 TOPS NPU |
| Body Compute (PC1) | Intel Core i5 (platform functionality) |
| Body Compute (PC2) | Intel Core i7 (user development) |
| Optional Compute (PC3) | NVIDIA Jetson Thor (empty slot, add-on) |
| Optional Compute (PC4) | Intel Core i7 or NVIDIA Jetson Orin NX (empty slot, add-on) |
| Audio | Array microphone + high-power speaker |
| Connectivity | Wi-Fi 6, Bluetooth 5.2, OTA updates |
| Power | Upper-body Li-ion battery (~8 h) + external DC PSU (24/7) |
| Cabling | Hollow + internal wiring |
| Joint Encoders | Dual + single encoders per joint |
| Cooling | Localized air cooling |
| SDK & Interfaces | Linux-based framework, ROS 2, open APIs for arm/audio/vision/lighting |
| Controllers | Handheld remote control included |
| Warranty | 12 months on the entire unit |
Standard A is the entry point. Every configuration shares the same H2-A upper-body base — the difference is the end effector. Choose the one that matches your research goals:
| Config | Hand | DOF (Total) | Features |
|---|---|---|---|
| Standard A | Dex1-1 Advanced (RGB) | 21 | Entry-level parallel grippers with wrist camera, 7-DOF arms, stereo vision |
| Standard B | Dex3-1 (RGB) | 33 | 3-finger dexterous hand with wrist RGB camera |
| Standard C | Dex3-1 Tactile (RGB) | 33 | 3-finger hand with 33 tactile sensors + wrist RGB camera |
| Standard D | Dex5-1 (RGB) | 51 | 5-finger 16-DOF hand with wrist RGB camera |
| Standard E | Dex5-1P Tactile (RGB) | 51 | 5-finger hand with 94 pressure sensors + wrist RGB camera |
| Standard F | Revo 2 Basic (RGB) | 31 | 5-finger 6-DOF BrainCo hand with wrist RGB camera |
| Standard G | Revo 2 Tactile (RGB) | 31 | 5-finger hand with pressure/friction/direction/proximity sensing + wrist RGB camera |
| Standard H | RH56DFQ (RGB) | 31 | Inspire Robots 5-finger 6-DOF hand with wrist RGB camera |
| Standard I | RH56E2-T1 Tactile (RGB) | 31 | Inspire Robots 5-finger hand with 17 tactile sensors + wrist RGB camera |
| Standard J | Revo 3 U21 (RGB) | 61 | BrainCo 21-DOF hand with wrist RGB camera |
| Standard K | Revo 3 U21T Tactile (RGB) | 61 | BrainCo 21-DOF hand with full-palm tactile + wrist RGB camera |
| Standard L | Revo 3 U21VT Visuo-Tactile (RGB) | 61 | BrainCo 21-DOF hand with visuo-tactile sensing + wrist RGB camera |
| Standard M | WUJI Hand 2 Tactile (RGB) | 59 | WUJI 20-DOF hand with tactile + wrist RGB camera, 1000 Hz control |
* Specifications are based on manufacturer data and may vary slightly by production batch. Optional compute modules and alternative end effectors sold separately.
Unitree® is a registered trademark of Unitree Robotics. Images are for reference; actual product appearance may differ.
Users must maintain a sufficient safety distance. This is a civilian robot — comply with local laws and regulations.
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