Humanoid HMND 01vsUnitree Robotics H1
Side-by-side comparison of Humanoid HMND 01 and Unitree Robotics H1: specs, price, use cases and SDKs.

HMND 01
Industrial HMND 01 humanoid tested for factory logistics with Siemens.

H1
Sub-$100K Chinese humanoid — fastest walker in class
Specifications
| Spec | HMND 01 | H1 |
|---|---|---|
| Price (USD) | $0 | $90,000 |
| Category | humanoid | humanoid |
| Payload | — | 30 kg |
| Runtime | — | 2 h |
| Speed | 1.5 m/s | 3.3 m/s |
| Weight | — | 47 kg |
| Degrees of Freedom | — | 19 |
- Factory tote handling
- Goods handling
- Picking and packing
- Kitting and part handling
- Machine feeding and offbearing
- Humanoid robotics research
- Industrial R&D
- Content creation / film
- Robotics competitions
When to pick which
Choose the Humanoid HMND 01 for high-volume industrial logistics and brownfield factory deployments where reliability outweighs the need for bipedal movement. It is specifically engineered for automotive or electronics manufacturing environments requiring consistent tote handling and machine feeding. With an 8-hour uptime and a 90% success rate in pick-and-place tasks, this robot excels in 24/7 production cycles. The omnidirectional wheeled configuration provides the stability necessary for heavy-duty factory floors, while the Siemens-validated NVIDIA AI stack ensures seamless integration into existing industrial automation workflows and high-fidelity simulation environments.
Select the Unitree Robotics H1 for academic research, corporate R&D, or media production where bipedal agility and speed are the primary requirements. At a $90,000 price point, it serves as an accessible entry for labs testing dynamic walking algorithms or humanoid kinematics. Its 3.3 m/s top speed and 19 degrees of freedom make it ideal for robotics competitions and cinematic content creation. While the 2-hour runtime is shorter than industrial alternatives, the open-source SDK and ROS2 driver support provide the flexibility needed for developers to customize low-level control systems for experimental human-robot interaction.
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