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Unitree Robotics -- Official End-Effector

Unitree R1 Dedicated LinkerBot Linker Hand O6

Official bionic dexterous hand for the Unitree R1 humanoid robot. LinkerBot Linker Hand O6 (Non-Tactile Version) features 6 degrees of freedom across 11 joints (6 active + 5 passive), a lightweight 370g aluminum alloy and engineering polymer construction, and a powerful linkage drive mechanism delivering 70N maximum grip force and an exceptional 50kg payload capacity. Includes a wrist-mounted RGB Camera (FOV 160) with dedicated mount for visual feedback, plus CAN and RS-485 communication interfaces. This listing is for a single hand -- typically, two dexterous hands are selected per humanoid robot for dual-arm manipulation.

11
Joints (6 Active)
70N
Max Grip Force
50kg
Max Payload
370g
Weight
0.2mm
Repeatability

Product Overview

The Unitree R1 Dedicated LinkerBot Linker Hand O6 (Non-Tactile Version) is the official bionic dexterous hand for the Unitree R1 humanoid robot, engineered by LinkerBot (China) for high-performance manipulation in research, logistics, and automation environments. The O6 features a linkage drive mechanism powered by high-torque servo modules with worm gear transmission, delivering 70N maximum grip force across all five fingers and an industry-leading 50kg maximum payload -- all in an exceptionally lightweight 370g package. The hand provides 6 active degrees of freedom across 11 total joints, enabling natural finger flexion, extension, and thumb opposition. A wrist-mounted RGB Camera (FOV 160) with a dedicated mount provides color visual feedback for object recognition and grasp verification. Dual communication interfaces (CAN and RS-485) ensure seamless integration with the R1 robot control system.

6 Active DOF, 11 Total Joints
6 active + 5 passive degrees of freedom distributed across 5 fingers. The hybrid joint structure enables both delicate precision grasps and powerful full-hand grips for versatile manipulation.
70N Grip / 50kg Payload
70N maximum grip force (all five fingers), 25N maximum fingertip force (four fingers), and 20N maximum thumb fingertip force. Exceptional 50kg payload capacity for heavy-object manipulation.
Linkage Drive Mechanism
High-torque servo modules with worm gear transmission and linkage drive deliver efficient force transmission. Main structural material: aluminum alloy + engineering polymers for strength and lightness.
Wrist-Mounted RGB Camera (FOV 160)
RGB camera with 160 degrees field of view mounted at the wrist with dedicated mount. Provides color visual feedback for object recognition, visual servoing, and grasp verification.
CAN + RS-485 Communication
Dual communication interfaces for reliable, real-time control. Compatible with standard robotics middleware and the Unitree R1 control architecture.
Lightweight & Compact -- 370g
At just 370g with compact dimensions of 177 x 76.5 x 40 mm, the O6 minimizes arm payload while maximizing manipulation capability and integration flexibility.

Linkage Drive & Mechanical Design

The Linker Hand O6 employs an advanced linkage drive mechanism that converts motor torque into precise finger motion through a system of rigid links and joints. This design achieves exceptional force output and reliability:

Drive
Linkage Drive Mechanism
Rigid link-based force transmission delivers high mechanical advantage and precise motion control. More robust and backlash-free compared to tendon-driven alternatives.
Motors
High-Torque Servo Modules
Equipped with worm gear transmission for self-locking capability and high torque density. Prevents back-driving under load for stable grasping.
Materials
Aluminum + Polymers
Aluminum alloy structural frame combined with engineering polymers for finger segments. Optimized strength-to-weight ratio at 370g total.
Hybrid Joints
Adaptive Grasping
Hybrid joint structure adapts naturally to different object shapes. Grasps both delicate and irregular items with improved stability and compliance.

Force & Precision Performance

The Linker Hand O6 delivers class-leading force output and positioning precision for demanding manipulation tasks:

Maximum Grip Force -- 70N
70N total grip force when all five fingers engage simultaneously. Enables secure handling of heavy and large objects up to 50kg payload.
Fingertip Forces -- 25N / 20N
25N maximum fingertip force for the four fingers and 20N for the thumb. Distributed force capability supports both power grasps and precision pinches.
Repeatability -- <0.20mm
Sub-0.20mm repeatability accuracy ensures consistent grasp positioning. Critical for repetitive pick-and-place, assembly, and insertion tasks.
50kg Maximum Payload
Exceptional 50kg payload capacity -- among the highest in its weight class. Enables the R1 robot to manipulate heavy tools, boxes, and equipment.

Integrated Vision & Communication

The O6 Non-Tactile Version includes a wrist-mounted vision system and dual communication interfaces for seamless integration with the Unitree R1:

Wrist-Mounted RGB Camera
RGB camera with 160 degrees field of view mounted at the wrist. Provides color visual feedback for object detection, pose estimation, and grasp planning directly at the end-effector.
RGB Camera Dedicated Mount
Precision dedicated mount for the wrist-mounted RGB camera. Optimized positioning for maximum field of view coverage and minimal occlusion during grasping operations.
CAN Bus Interface
Controller Area Network (CAN) interface for robust, real-time multi-node communication. Standard in industrial robotics and automotive applications.
RS-485 Interface
RS-485 serial communication for long-distance, noise-resistant data transmission. Widely supported across robotics platforms and development frameworks.

What's Included (Per Hand)

Each Linker Hand O6 Non-Tactile Version package contains the following components for a single dexterous hand:

Hand
Linker Hand O6 Unit
Complete dexterous hand assembly with linkage drive, 6 active DOF, 11 joints, and aluminum alloy + polymer construction.
Vision
RGB Camera (FOV 160)
Wrist-mounted RGB camera with 160 degrees field of view for color visual feedback at the end-effector.
Mount
RGB Camera Dedicated Mount
Precision dedicated mount for the wrist-mounted RGB camera. Optimized for maximum FOV coverage and minimal occlusion.
Cables
Power & Data Cables
All necessary power and communication cables for CAN and RS-485 connection to the R1 robot.
Important Notes
  • This package includes a wrist-mounted RGB Camera (FOV 160) with dedicated mount and other accessories including cables.
  • This is the Non-Tactile Version. Tactile/force sensors are not included in this variant.
  • This is the price and information for a single hand. Typically, two hands are selected per humanoid robot for dual-arm manipulation. 
  • The Linker Hand O6 is manufactured by LinkerBot (China). Specifications are based on manufacturer data and may vary slightly by production batch.
  • Secondary development requires programming knowledge and familiarity with robotics control concepts and CAN/RS-485 communication protocols.

Technical Specifications

Parameter Unitree R1 LinkerBot Linker Hand O6 (Non-Tactile)
Product Name LinkerBot Linker Hand O6 (Non-Tactile Version) (with RGB Camera)
Compatible Robot Unitree R1 humanoid robot
Total Degrees of Freedom 11 (6 active + 5 passive)
Active Joints 6
Weight 370 g
Dimensions (L x W x H) 177 x 76.5 x 40 mm
Number of Fingers 5
Drive Mechanism Linkage drive with worm gear transmission
Main Structural Material Aluminum alloy + engineering polymers
Maximum Grip Force (all 5 fingers) 70 N
Max Fingertip Force (thumb) 20 N
Max Fingertip Force (4 fingers) 25 N
Maximum Payload 50 kg
Repeatability < 0.20 mm
Tactile/Force Sensors Not included (Non-Tactile Version)
Wrist-Mounted RGB Camera RGB Camera (FOV 160) x1
RGB Camera Dedicated Mount x1 (included)
Communication Interface CAN, RS-485
Motor Technology High-torque servo modules
Manufacturer LinkerBot (China)
Package Contents Hand unit, RGB camera, dedicated mount, cables and other accessories
Package Quantity Single hand per package
Typical Robot Configuration Two hands per humanoid robot (dual-arm)
Warranty 12 months

    * Specifications are based on manufacturer data and may vary slightly by production batch.
    * This package includes a wrist-mounted RGB Camera (FOV 160) with dedicated mount and other accessories including cables.
    * This is the Non-Tactile Version. Tactile/force sensors are not included.
    * This package includes one hand. For dual-arm manipulation, order two units.
    * Secondary development requires programming skills and familiarity with robotics control concepts and CAN/RS-485 protocols.
    * Unitree is a registered trademark of Unitree Robotics. LinkerBot is a registered trademark of LinkerBot.

    Description

    Unitree Robotics -- Official End-Effector

    Unitree R1 Dedicated LinkerBot Linker Hand O6

    Official bionic dexterous hand for the Unitree R1 humanoid robot. LinkerBot Linker Hand O6 (Non-Tactile Version) features 6 degrees of freedom across 11 joints (6 active + 5 passive), a lightweight 370g aluminum alloy and engineering polymer construction, and a powerful linkage drive mechanism delivering 70N maximum grip force and an exceptional 50kg payload capacity. Includes a wrist-mounted RGB Camera (FOV 160) with dedicated mount for visual feedback, plus CAN and RS-485 communication interfaces. This listing is for a single hand -- typically, two dexterous hands are selected per humanoid robot for dual-arm manipulation.

    11
    Joints (6 Active)
    70N
    Max Grip Force
    50kg
    Max Payload
    370g
    Weight
    0.2mm
    Repeatability

    Product Overview

    The Unitree R1 Dedicated LinkerBot Linker Hand O6 (Non-Tactile Version) is the official bionic dexterous hand for the Unitree R1 humanoid robot, engineered by LinkerBot (China) for high-performance manipulation in research, logistics, and automation environments. The O6 features a linkage drive mechanism powered by high-torque servo modules with worm gear transmission, delivering 70N maximum grip force across all five fingers and an industry-leading 50kg maximum payload -- all in an exceptionally lightweight 370g package. The hand provides 6 active degrees of freedom across 11 total joints, enabling natural finger flexion, extension, and thumb opposition. A wrist-mounted RGB Camera (FOV 160) with a dedicated mount provides color visual feedback for object recognition and grasp verification. Dual communication interfaces (CAN and RS-485) ensure seamless integration with the R1 robot control system.

    6 Active DOF, 11 Total Joints
    6 active + 5 passive degrees of freedom distributed across 5 fingers. The hybrid joint structure enables both delicate precision grasps and powerful full-hand grips for versatile manipulation.
    70N Grip / 50kg Payload
    70N maximum grip force (all five fingers), 25N maximum fingertip force (four fingers), and 20N maximum thumb fingertip force. Exceptional 50kg payload capacity for heavy-object manipulation.
    Linkage Drive Mechanism
    High-torque servo modules with worm gear transmission and linkage drive deliver efficient force transmission. Main structural material: aluminum alloy + engineering polymers for strength and lightness.
    Wrist-Mounted RGB Camera (FOV 160)
    RGB camera with 160 degrees field of view mounted at the wrist with dedicated mount. Provides color visual feedback for object recognition, visual servoing, and grasp verification.
    CAN + RS-485 Communication
    Dual communication interfaces for reliable, real-time control. Compatible with standard robotics middleware and the Unitree R1 control architecture.
    Lightweight & Compact -- 370g
    At just 370g with compact dimensions of 177 x 76.5 x 40 mm, the O6 minimizes arm payload while maximizing manipulation capability and integration flexibility.

    Linkage Drive & Mechanical Design

    The Linker Hand O6 employs an advanced linkage drive mechanism that converts motor torque into precise finger motion through a system of rigid links and joints. This design achieves exceptional force output and reliability:

    Drive
    Linkage Drive Mechanism
    Rigid link-based force transmission delivers high mechanical advantage and precise motion control. More robust and backlash-free compared to tendon-driven alternatives.
    Motors
    High-Torque Servo Modules
    Equipped with worm gear transmission for self-locking capability and high torque density. Prevents back-driving under load for stable grasping.
    Materials
    Aluminum + Polymers
    Aluminum alloy structural frame combined with engineering polymers for finger segments. Optimized strength-to-weight ratio at 370g total.
    Hybrid Joints
    Adaptive Grasping
    Hybrid joint structure adapts naturally to different object shapes. Grasps both delicate and irregular items with improved stability and compliance.

    Force & Precision Performance

    The Linker Hand O6 delivers class-leading force output and positioning precision for demanding manipulation tasks:

    Maximum Grip Force -- 70N
    70N total grip force when all five fingers engage simultaneously. Enables secure handling of heavy and large objects up to 50kg payload.
    Fingertip Forces -- 25N / 20N
    25N maximum fingertip force for the four fingers and 20N for the thumb. Distributed force capability supports both power grasps and precision pinches.
    Repeatability -- <0.20mm
    Sub-0.20mm repeatability accuracy ensures consistent grasp positioning. Critical for repetitive pick-and-place, assembly, and insertion tasks.
    50kg Maximum Payload
    Exceptional 50kg payload capacity -- among the highest in its weight class. Enables the R1 robot to manipulate heavy tools, boxes, and equipment.

    Integrated Vision & Communication

    The O6 Non-Tactile Version includes a wrist-mounted vision system and dual communication interfaces for seamless integration with the Unitree R1:

    Wrist-Mounted RGB Camera
    RGB camera with 160 degrees field of view mounted at the wrist. Provides color visual feedback for object detection, pose estimation, and grasp planning directly at the end-effector.
    RGB Camera Dedicated Mount
    Precision dedicated mount for the wrist-mounted RGB camera. Optimized positioning for maximum field of view coverage and minimal occlusion during grasping operations.
    CAN Bus Interface
    Controller Area Network (CAN) interface for robust, real-time multi-node communication. Standard in industrial robotics and automotive applications.
    RS-485 Interface
    RS-485 serial communication for long-distance, noise-resistant data transmission. Widely supported across robotics platforms and development frameworks.

    What's Included (Per Hand)

    Each Linker Hand O6 Non-Tactile Version package contains the following components for a single dexterous hand:

    Hand
    Linker Hand O6 Unit
    Complete dexterous hand assembly with linkage drive, 6 active DOF, 11 joints, and aluminum alloy + polymer construction.
    Vision
    RGB Camera (FOV 160)
    Wrist-mounted RGB camera with 160 degrees field of view for color visual feedback at the end-effector.
    Mount
    RGB Camera Dedicated Mount
    Precision dedicated mount for the wrist-mounted RGB camera. Optimized for maximum FOV coverage and minimal occlusion.
    Cables
    Power & Data Cables
    All necessary power and communication cables for CAN and RS-485 connection to the R1 robot.
    Important Notes
    • This package includes a wrist-mounted RGB Camera (FOV 160) with dedicated mount and other accessories including cables.
    • This is the Non-Tactile Version. Tactile/force sensors are not included in this variant.
    • This is the price and information for a single hand. Typically, two hands are selected per humanoid robot for dual-arm manipulation. 
    • The Linker Hand O6 is manufactured by LinkerBot (China). Specifications are based on manufacturer data and may vary slightly by production batch.
    • Secondary development requires programming knowledge and familiarity with robotics control concepts and CAN/RS-485 communication protocols.

    Technical Specifications

    Parameter Unitree R1 LinkerBot Linker Hand O6 (Non-Tactile)
    Product Name LinkerBot Linker Hand O6 (Non-Tactile Version) (with RGB Camera)
    Compatible Robot Unitree R1 humanoid robot
    Total Degrees of Freedom 11 (6 active + 5 passive)
    Active Joints 6
    Weight 370 g
    Dimensions (L x W x H) 177 x 76.5 x 40 mm
    Number of Fingers 5
    Drive Mechanism Linkage drive with worm gear transmission
    Main Structural Material Aluminum alloy + engineering polymers
    Maximum Grip Force (all 5 fingers) 70 N
    Max Fingertip Force (thumb) 20 N
    Max Fingertip Force (4 fingers) 25 N
    Maximum Payload 50 kg
    Repeatability < 0.20 mm
    Tactile/Force Sensors Not included (Non-Tactile Version)
    Wrist-Mounted RGB Camera RGB Camera (FOV 160) x1
    RGB Camera Dedicated Mount x1 (included)
    Communication Interface CAN, RS-485
    Motor Technology High-torque servo modules
    Manufacturer LinkerBot (China)
    Package Contents Hand unit, RGB camera, dedicated mount, cables and other accessories
    Package Quantity Single hand per package
    Typical Robot Configuration Two hands per humanoid robot (dual-arm)
    Warranty 12 months

      * Specifications are based on manufacturer data and may vary slightly by production batch.
      * This package includes a wrist-mounted RGB Camera (FOV 160) with dedicated mount and other accessories including cables.
      * This is the Non-Tactile Version. Tactile/force sensors are not included.
      * This package includes one hand. For dual-arm manipulation, order two units.
      * Secondary development requires programming skills and familiarity with robotics control concepts and CAN/RS-485 protocols.
      * Unitree is a registered trademark of Unitree Robotics. LinkerBot is a registered trademark of LinkerBot.

      Unitree by Unitree

      Unitree R1 LinkerBot Linker Hand O6 (Non-Tactile Version) (with RGB Camera)

      Regular price
      $1,590.00
      Sale price
      $1,590.00
      Regular price
      Shipping calculated at checkout.
      Providing the best new Tech Experience, Energy Independence and Robotics Ways of Optimisation
      Providing the best new Tech Experience, Energy Independence and Robotics Ways of Optimisation
      Packaging note:
      Equipment is being supplied in a manufacturer packaging

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