Unitree Dex3-1 Force Control 3-Finger Dexterity Hand
The Unitree Dex3-1 Force Control 3-Finger Dexterity Hand is an advanced robotic end-effector designed to replicate precise grasping and manipulation capabilities. Engineered with sophisticated force control, this versatile hand offers exceptional adaptability for a wide range of robotic research and automation applications.
Key Features
- Advanced force control technology enables the gentle handling of delicate objects and adaptive gripping.
- Versatile three-finger design allows for a wide range of complex manipulation tasks and lifelike dexterity.
- Robust and lightweight construction ensures seamless integration with various compatible robotic arms.
- High-precision feedback systems assist in accurate positioning and sensitive force adjustments.
This innovative robotic hand is an outstanding solution for developers looking to enhance the interactive capabilities of their mobile robots or static arms. It delivers reliable performance and exceptional control, making it ideal for both academic research and practical automation environments.
Brand: Unitree |
Code: UTDEX31NT
Supplier Code: UTDEX31NT
Brand: Unitree |
Code: UTDEX31NT
Supplier Code: UTDEX31NT
At a glance
The Unitree Dex3-1 Force Control 3-Finger Dexterity Hand is an advanced robotic end-effector designed to replicate precise grasping and manipulation capabilities. Engineered with sophisticated force control, this versatile hand offers exceptional adaptability for a wide range of robotic research and automation applications.
Key Features
- Advanced force control technology enables the gentle handling of delicate objects and adaptive gripping.
- Versatile three-finger design allows for a wide range of complex manipulation tasks and lifelike dexterity.
- Robust and lightweight construction ensures seamless integration with various compatible robotic arms.
- High-precision feedback systems assist in accurate positioning and sensitive force adjustments.
This innovative robotic hand is an outstanding solution for developers looking to enhance the interactive capabilities of their mobile robots or static arms. It delivers reliable performance and exceptional control, making it ideal for both academic research and practical automation environments.

