Welcome, XHAND 1 PRO!

XHAND 1 PRO is a dexterous robotic hand designed for research, teleoperation, and advanced humanoid manipulation. It uses a five finger layout, multiple active joints, and tactile sensing at the fingertips to reproduce natural hand motion with a strong balance of reach, control, and grip. The hand is built to curl, pinch, rotate, and reposition its fingers for a wide variety of grasp patterns, which helps it handle delicate parts as well as heavier objects. Pressure, texture, and temperature sensing support real time grip adjustment, allowing the hand to respond to contact instead of relying on fixed motion sequences. Robotera also pairs this dexterity with a robust mechanical package that weighs 1.1 kilograms and is housed in a lightweight metal alloy and composite structure. A rated lifting strength of 25 kilograms further sets it apart, giving it meaningful force for lab testing and integration into demanding manipulation tasks.

Beyond basic grasping, the XHAND 1 PRO is aimed at workflows where touch feedback and compliant motion matter. Its back drivable joint motors help the hand yield when pushed, which supports safer interaction during testing and makes contact with objects feel less rigid. That quality is especially useful in teleoperation, imitation learning, and data collection, where operators and researchers want movements that are both expressive and forgiving. The hand is also positioned for integration with common robotics software, making it easier to place into existing control stacks, simulator pipelines, and humanoid development programs. In practical terms, this gives teams a platform for studying precision handling, adaptive gripping, and general purpose manipulation without sacrificing the strength needed for more demanding experiments.

Robotera lists the XHAND 1 PRO as in production, underscoring its role as a commercially available building block rather than a lab only concept. Manufactured in China, it sits in the capable tier with a Humanoid Guide score of 7 out of 10, supported by a strong 4 out of 5 rating for degrees of freedom and a 3 out of 5 rating for strength. That profile makes it notable for teams seeking a mature balance of dexterity and force in a single hand. Its combination of tactile sensing, compliant actuation, and solid lifting capability gives universities, research labs, and robotics companies a practical option for advancing humanoid manipulation systems, remote operation interfaces, and broader work on humanlike hand function.

 

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