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he Figure 02 humanoid robot has been designed with advanced features that enable it to perform a variety of tasks across different industries.
The Figure 02 has been tested in a BMW manufacturing facility, where it demonstrated its ability to assist with automobile assembly by picking up parts, showcasing its practical application in a real-world manufacturing environment.
The robot features hands with 16 degrees of freedom, allowing it to perform complex tasks such as lifting objects weighing up to 44 lbs (approximately 20 kg). This design mimics human dexterity, making it suitable for various manufacturing processes.
The advanced design of the robot's hands, with 16 degrees of freedom, is a game-changer in robotics, as it closely replicates the fine motor skills of human hands. This capability enables the Figure 02 to handle a wide array of tasks, from delicate assembly to heavy lifting, without compromising safety or efficiency. The ability to adapt its grip and movement in real-time based on the task at hand means that it can perform intricate operations in manufacturing processes that require precision, thus broadening its application beyond simple automation.
Healthcare
he Figure 02 humanoid robot has been designed with advanced features that enable it to perform a variety of tasks across different industries.
The Figure 02 has been tested in a BMW manufacturing facility, where it demonstrated its ability to assist with automobile assembly by picking up parts, showcasing its practical application in a real-world manufacturing environment.
The robot features hands with 16 degrees of freedom, allowing it to perform complex tasks such as lifting objects weighing up to 44 lbs (approximately 20 kg). This design mimics human dexterity, making it suitable for various manufacturing processes.
The advanced design of the robot's hands, with 16 degrees of freedom, is a game-changer in robotics, as it closely replicates the fine motor skills of human hands. This capability enables the Figure 02 to handle a wide array of tasks, from delicate assembly to heavy lifting, without compromising safety or efficiency. The ability to adapt its grip and movement in real-time based on the task at hand means that it can perform intricate operations in manufacturing processes that require precision, thus broadening its application beyond simple automation.
Healthcare