China Unveils Rugged AS2-W Robotic Platform
China's Unitree has unveiled the AS2-W, a rugged, Nvidia-powered robotic platform designed for rough terrain. The four-wheeled vehicle can carry heavy payloads and climb steep slopes, with a battery life of over three hours. The AS2-W is equipped with advanced sensors and mobility features, and is designed for use in various environments.
Key points
- Unitree, a Chinese robotics company, has unveiled the AS2-W, a rugged, Nvidia-powered robotic platform.
- The AS2-W is a four-wheeled vehicle that can carry heavy payloads of up to 150 kg and climb obstacles up to 80 cm high.
- The robot has a battery life of over three hours and is equipped with advanced sensors and mobility features, including industrial-grade LiDAR and a 648 Wh battery.
- The AS2-W is designed for use in various environments, with an IP54 dust and water resistance rating and a temperature range of -20°C to 55°C.
- The platform uses Nvidia's AI technology and supports developer software tools for customization.
China's Unitree has unveiled the AS2-W, a rugged, Nvidia-powered robotic platform designed for rough terrain. The four-wheeled vehicle is equipped with advanced sensors and mobility features, including industrial-grade LiDAR and a 648 Wh battery. The AS2-W can carry heavy payloads of up to 150 kg and climb obstacles up to 80 cm high, making it suitable for use in various environments.
The AS2-W has a battery life of over three hours and is designed to operate in temperatures ranging from -20°C to 55°C. It also has an IP54 dust and water resistance rating, making it suitable for use in harsh environments. The platform uses Nvidia's AI technology and supports developer software tools for customization.
The AS2-W is the latest addition to Unitree's lineup of robotic platforms, which include the armed AS2-W variant that was recently spotted in joint military drills in Mongolia. The company's focus on developing rugged and versatile robotic platforms has made it a key player in the global robotics market.
Sources
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