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BrainCo Revo 3 V-Touch Robot Hand

The BrainCo Revo 3 V-Touch is the latest evolution in dexterous robotic hardware, merging high-performance robotics with advanced sensory feedback. Building on the success of the Revo 2, the Revo 3 is designed for both advanced prosthetics and high-fidelity humanoid robot manipulation.

(Price on request)

Product Overview

The Revo 3 represents a significant leap in “embodied intelligence.” It is engineered to mimic the human hand’s range of motion and sensitivity, making it capable of tasks previously thought impossible for non-humanoid hardware—such as solving a Rubik’s cube, performing rope tricks, or executing delicate scissor cuts.

Key Specifications & Features

  • V-Touch Sensory System: The “V-Touch” designation refers to the integrated tactile and visual feedback system. It utilizes full-palm and fingertip sensors that perceive hardness, texture, and force direction.

  • High-Speed Dexterity: Features a high-frequency response (up to 3Hz speed for complex gestures), allowing for fluid, lifelike movements.

  • Ultra-Lightweight Build: Maintaining BrainCo’s signature lightweight design, it minimizes “arm drag” for prosthetic users while maximizing the payload-to-weight ratio for roboticists.

  • Multi-Modal Control: Compatible with BrainCo’s non-invasive Brain-Computer Interface (BCI), which reads neural signals through the skin to allow for “thought-controlled” finger independence.

     

Technical Capabilities

Feature Description
Degrees of Freedom (DoF) Up to 11 active degrees of freedom for human-equivalent grasping.
Tactile Precision 3D tactile sensing capable of detecting friction and proximity.
Durability Constructed with aerospace-grade aluminum and reinforced polymers.
Quiet Operation Operating noise is kept below 50 dB, making it suitable for office or home environments.
Connectivity Supports EtherCAT and wide-voltage features via a dedicated SDK for developers.

 

Use Cases

  1. Next-Gen Prosthetics: Allows amputees to regain fine motor skills, including playing musical instruments or writing calligraphy, without invasive surgery.

  2. Humanoid Research: Serves as the “hands” for advanced AI models, providing the hardware necessary for robots to learn human-like manipulation.

  3. Industrial Automation: Ideal for delicate assembly lines where traditional grippers are too clumsy for small electronic components.

Weight 1 kg

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