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Booster Robotics: K1, T1 and T2 Humanoid Development Platforms
Explore Booster Robotics humanoids for research, education and robot soccer, with model differences, developer resources and practical deployment questions.
Company and development focus
Booster Robotics develops humanoid robots and software tools for embodied intelligence. Established in June 2023, the company describes research and education as its early commercial focus. Its catalogue combines physical platforms with development resources, making it relevant to laboratories, teaching programmes and teams building robot behaviours through experimentation.
K1 for introductory development
K1 is the smaller platform, specified at approximately 95 centimetres tall and 19.5 kilograms, with 22 degrees of freedom. Geek, Education and Professional editions share that basic joint layout but differ in computing and battery specifications. Buyers should select the edition against their workloads rather than assume that every K1 has the same equipment.
T1 and configuration choices
T1 provides a larger research platform at approximately 1.18 metres tall and 30 kilograms. The Basic and Standard configurations list 23 degrees of freedom, including a waist joint. Customized configurations add different arms and end effectors. A quotation should identify the delivered joint count, hand equipment and computing hardware before teams select models or training resources.
The newer T2 platform
The company added T2 to its portfolio in July 2026. Its specifications list approximately 1.4 metres in height and 31 degrees of freedom, including seven joints per arm. The Professional edition specifies Jetson Thor T5000 computing. Cameras at the wrists, LiDAR and end effectors are optional items to confirm in the selected configuration.
Official developer resources
Booster's official website links to its GitHub SDK and frameworks for locomotion training, robot assets and policy deployment. The SDK repository supplies C++ resources and describes separate Python distribution. Teams should agree on supported firmware, operating environments and repository versions, then validate their applications on the actual robot after simulation. Open-source availability does not define a support contract.
Robot soccer and validation
The official RoboCup demo provides perception, decision and match-control components for K1 and T1. Its current documentation also identifies unfinished rule adaptations and model-specific configuration requirements. Competition teams therefore need to test against their event rules. Soccer demonstrations offer a useful development context but do not establish dependable autonomous performance in unrelated workplaces.
Procurement and operating scope
An evaluation should specify supervised operating space, emergency stopping, recovery procedures, spare parts and operator training. Ask which teaching materials, software services and technical support are included, and confirm warranty and regional delivery terms. Acceptance should measure the intended research or teaching tasks with the supplied configuration, keeping manufacturer operating restrictions visible to the project team.

