Robotics

M4, the Multi-Modal Morphobot

Inspired by nature’s resilient locomotion strategies, engineers have developed the Multi-Modal Mobility Morphobot (M4). This versatile robot employs its components as wheels, thrusters, and legs, adapting to unstructured environments with ease. M4 can fly, roll, crawl, balance, and more. It conquers steep slopes, overcomes obstacles, and autonomously adjusts its modes for dynamic terrains. M4’s multi-modal […]

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Xiaomi CyberOne: The Humanoid Robot with Emotion Recognition

The Xiaomi CyberOne is a revolutionary humanoid robot developed by Xiaomi. With advanced AI capabilities, it acts as a personal assistant, companion, and helper in various settings. Its sleek design, intuitive interactions, and multifunctionality make it a game-changer in the world of humanoid robots. The CyberOne promises to redefine our relationship with technology and enhance

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NEO: Your Future Android Assistant

NEO, the next-generation android developed by 1X, is a groundbreaking fusion of cutting-edge robotics and AI. Through extensive real-world testing, NEO guarantees safety and adaptability. With its organic-inspired movements, modeled after human muscle mechanics, NEO effortlessly navigates various environments. By seamlessly integrating advanced AI into its thoughtfully-designed body, NEO responds naturally to commands and learns

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Sanctuary AI Unveils Phoenix: Revolutionizing AI and Robotics

Sanctuary’s Carbon™ AI and Phoenix™ robots revolutionize versatility. Inspired by the human brain, Carbon™ AI mimics memory, sight, sound, and touch. With direct piloting, pilot-assist, and supervised autonomy, humans and robots collaborate seamlessly, enhancing capabilities and safety. The fusion of symbolic and neural reasoning unlocks unprecedented possibilities. Read more

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LEONARDO: Revolutionizing Locomotion with Walking and Flying Fusion

Researchers at Caltech have developed LEONARDO (short for LEgs ONboARD drOne) or LEO, a bipedal robot that combines walking and flying for a new type of locomotion. LEO can perform complex movements such as walking on a slackline and riding a skateboard. By using multi-joint legs and propeller-based thrusters, LEO achieves exceptional balance and control.

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Google Research Advances Natural Language Processing Integration with Robotics for Adaptive Interaction

Google Research and Everyday Robots are working together to integrate natural language processing with robotics, aiming to create robots that can understand and respond to natural language commands. This collaboration has the potential to revolutionize the way we interact with technology, providing more personalized and user-friendly systems that can adapt to our needs. By combining

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