UBTECH recently released a full-scale scientific research and education humanoid robot "Tiangong Walker" with Beijing Humanoid Robot Innovation Center, priced at 299,000 yuan, which will be delivered in Q2 this year.
Officially, "Tiangong Walker" is the industry's first scientific research-grade humanoid robot within 300,000 yuan, with high bionics, high strength, high performance, high stability, high expansion, and high openness 6 high characteristics.

With a height of 170cm, it has a highly bionic torso configuration and anthropomorphic motion control ability, with 20 degrees of freedom throughout the body, can run stably at a speed of 10km/h, and has the ability to move smoothly in complex generalized terrain such as slopes, steps, sand, and snow, and resist impact interference. At the same time, it is also equipped with the general embodied intelligence platform of the innovation center "Wisdom Kaiwu", which can provide complete humanoid robot research solutions for universities and scientific research institutions.
Its key parts are made of titanium alloy, with high hardness, high performance and high stability, which is suitable for repeated debugging in scientific research scenarios. It adopts a lightweight, high-performance joint module, which can be expanded to up to 550TOPS computing power, and the heat dissipation design of the whole body air duct ensures that key components such as the main control board, hash power board and joint module can run at high performance for a long time without heat and fully release the hardware performance.
The main body of the machine can be freely expanded, and can be equipped with core components of humanoid robots such as depth cameras, lidars, NVIDIA Orin computing power boards, six-dimensional force sensors, seven-degree-of-freedom collaborative arms, and five-fingered dexterous hands. At the same time, Tiangong Walker has completely opened the underlying motor interface, sensor interface and motion control interface, supporting development guidelines and sample code, which can meet the secondary development needs of scientific research users in the fields of embodied intelligent ontology control and high-precision motion control.
