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The Unitree B2 Robotic Dog is an advanced industrial-grade quadruped robot engineered to operate in diverse environments with remarkable adaptability to various terrains. It is proficient in climbing stairs, navigating obstacles, and seamlessly transitioning between legged and wheeled configurations. This robotic dog is equipped with autonomous charging capabilities, ensuring high endurance and intelligent power management, making it suitable for a wide range of industrial applications.
The Unitree B2 is designed to deliver exceptional performance with a maximum running speed exceeding 6 meters per second. It boasts a robust joint torque and can achieve a significant jump distance, demonstrating its agility and strength. The robot is capable of bearing substantial loads, with a maximum standing load capacity of 120 kilograms and a continuous walking load exceeding 40 kilograms. Its obstacle-crossing ability is impressive, with a maximum capacity to overcome obstacles up to 40 centimeters high and navigate slopes with angles greater than 45 degrees.
This robotic dog offers ultra-long endurance, capable of continuous walking without load for over five hours, and with a 20-kilogram load, it can sustain continuous walking for more than four hours. The battery performance is robust, with a capacity of 45Ah and a voltage of 58V, providing a battery life ranging from four to six hours. It operates efficiently in a wide temperature range from -20 to 55 and is protected against dust and water ingress with an IP67 rating.
The Unitree B2 is equipped with advanced control and perception systems, featuring a standard configuration that includes Intel Core i5 for platform functions and Intel Core i7 for user development. Optional configurations are available with Intel Core i7 and Jetson Orin NX for enhanced processing capabilities. Its sensing capabilities are augmented by a 3D LiDAR, two depth cameras, and two optical cameras, providing comprehensive environmental awareness.
Note: Ensure proper handling and operation within specified environmental conditions to maintain safety and performance.
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Advanced autonomous capabilities in rough environmentssuch as climbing stairs, operating in complete darkness, or handling unknown debris require custom development and testing by the user.