Booster T2 Pro | Nvidia Thor Orin | 2000 TOPS
Varianten: T2 Pro
Booster Robotics T2 Pro met 2000 TOPS
De Booster Robotics T2 Pro is een 1,4 meter hoge humanoïde robot met 31 vrijheidsgraden, volledig koppelgestuurde gewrichten met dubbele encoders en een draagvermogen van maximaal 3 kg per arm. Twee dieptecamera's, een 9-assige IMU en audiosensoren maken nauwkeurige waarneming en interactie mogelijk.
Uitgerust met het Nvidia Thor Orin-platform levert de T2 Pro tot 2000 TOPS aan AI-prestaties voor realtime AI, waarneming en bewegingsbesturing. Het hybride besturingssysteem, dat koppel, snelheid en positie combineert, samen met Wi-Fi 6, Ethernet, USB en USB-C, ondersteunt flexibele ontwikkelingsprojecten.
Ideaal voor belichaamde AI, humanoïde robotica, autonome navigatie, manipulatietaken en mens-robotinteractie in onderzoek en ontwikkeling.
Hoogtepunten
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The Booster T2 Pro with 2.000 TOPS for high end AI computations
The Booster Robotics T2 Pro is a humanoid research and development robot designed for AI, robotics research, autonomous systems and human-robot interaction. It is approximately 1.4 m tall, weighs around 42 kg and has 31 degrees of freedom for its legs, arms, waist and head. The fully torque-controlled joints, featuring dual-encoder technology, enable the control of torque, speed and position. The Nvidia Thor Orin platform delivers up to 2,000 TOPS of AI computing power for demanding real-time perception, motion and manipulation tasks. Unlike the T2 Pro Gripper and T2 Pro Dex Hand, however, this version is supplied without specialized gripping systems. The arms are fitted only with demonstration hands and are therefore primarily designed for motion research, navigation, human-robot interaction and AI development.
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What applications is the Booster T2 Pro suitable for?
The T2 Pro is particularly well-suited to embodied AI, autonomous navigation, humanoid motion research, sensor fusion, voice interaction and the development of intelligent robotic systems. Typical target groups include universities, research institutions, development departments and technology companies. Key features include 31 degrees of freedom (DoF), head and waist depth cameras, a 9-axis IMU, a microphone array, a loudspeaker and the powerful Nvidia Thor Orin computing platform with 2,000 TOPS. For complex gripping tasks, object manipulation or applications requiring fine motor skills, the variants with grippers or dexterous robotic hands are more suitable.
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Integration and commissioning of the Booster T2 Pro
The integration is aimed at developers and research teams with experience in robotics, AI and humanoid systems. The Booster T2 Pro features Wi-Fi 6, Bluetooth 5.2, Ethernet, USB and USB-C, as well as an external power output for extensions. The package includes a battery pack, charger, remote controller and a robust carrying case. The comprehensive sensor suite and open system architecture facilitate the development of complex applications in research and development.
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How do you programme the Booster T2 Pro?
The T2 Pro was designed as an open development platform for demanding AI and robotics applications. The Nvidia Thor Orin platform, with up to 2,000 TOPS, supports complex perception, motion and interaction models directly on the robot. The hybrid control system, combining torque, speed and position control, enables the development of precise motion sequences and intelligent manipulation strategies. Expansions can be integrated via Ethernet, USB and USB-C, allowing the T2 Pro to be flexibly adapted to a wide range of research requirements. The Booster T2 Pro supports open development environments with ROS 2 and SDK support. This allows motion control, sensor systems, AI applications and manipulation tasks to be developed flexibly using Python or C++ and integrated into existing robotics workflows.
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What applications can the Booster T2 Pro be used for?
The Booster Robotics T2 Pro is ideal for businesses, universities and development teams seeking a high-performance humanoid platform for embodied AI, autonomous navigation, motion research and human-robot interaction. With 31 degrees of freedom, 2,000 TOPS of AI performance, dual depth sensors, a payload of up to 3 kg per arm and a battery life of up to two hours, it offers the ideal conditions for modern research and development projects. Its strengths lie in its high computing power, advanced sensor technology and human-like motion architecture.
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