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Buy Unitree H1-2 Texterous Hand to equip your robotics setup with precise and agile handling capabilities. Designed for versatility and accuracy, this advanced robotic hand offers enhanced dexterity, making it ideal for complex tasks and high-performance applications.
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To pick up today
Free
Our courier will deliver to the specified address
2-3 Days
Free
DHL courier will deliver to the specified address
2-3 Days
Free
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Buy Unitree H1-2 Texterous Hand to bring advanced dexterity and control to your robotics setup, transforming efficiency and productivity in complex tasks. This high-precision robotic hand is designed to handle intricate movements with ease, offering lifelike agility and responsiveness. Compatible with various robotics platforms, the Unitree H1 -2Texterous Hand ensures accurate and efficient operation, making it ideal for applications that require delicate and precise handling. Perfect for research, development, and high-performance tasks, it’s the go-to choice for enhancing robotic capabilities and functionality.
The Unitree H1-2 Texterous Hand is engineered to bring exceptional agility, power, and sensory feedback to robotics, making it an invaluable tool for complex and precise tasks. Designed with advanced multi-joint flexibility and powerful torque, this robotic hand mimics natural movements, offering remarkable control.
Please note, this is the price for a single hand, and typically, an H1-2 model can be equipped with up to two dexterous hands. The actual product’s appearance and specifications may vary slightly from the schematic image shown.
Key features include:
Each feature of the Unitree H1-2 Texterous Hand is thoughtfully designed to provide both flexibility and strength, making it an exceptional addition for robotics that demand human-like dexterity and control.
When you buy Unitree H1-2 Texterous Hand, you’re investing in advanced robotics technology built for precision, adaptability, and strength. This cutting-edge robotic hand offers enhanced dexterity, sensory feedback, and powerful torque, making it suitable for complex tasks across various applications. Below is a breakdown of the key features that set it apart:
Feature | Description | Benefit |
---|---|---|
Multi-Jointed Dexterity | Multi-jointed design with ≥10 degrees of freedom, enabling lifelike movement and control. | Allows precise, human-like manipulation for complex tasks. |
Haptic Array Sensors | Equipped with haptic sensors on each finger, offering over 20 contact points per finger. | Provides enhanced tactile feedback for careful handling and delicate operations. |
High Torque Output | Each finger joint provides a torque output exceeding 0.7 Nm, delivering powerful, stable grip. | Ensures a strong, reliable grip for handling various objects and applications. |
Single Hand Pricing | Price is for a single hand; typically, 1 H1 can support up to 2 dexterous hands if desired. | Offers flexible configuration options for different robotic setups. |
Schematic Notice | Product appearance and specifications may vary slightly from schematic shown. | Gives an accurate preview, though the final product may differ to enhance functionality. |
This table highlights each feature, its purpose, and the specific advantages it brings, making it easy to see how the Unitree H1-2 Texterous Hand adds exceptional precision, adaptability, and strength to any robotic system.
In conclusion, the Unitree H1-2 Texterous Hand stands as an advanced, versatile addition to high-performance robotics, representing The Future of Humanoid Robots with exceptional dexterity, powerful torque, and tactile sensitivity. With its multi-jointed design providing over 10 degrees of freedom, this robotic hand is engineered to replicate human-like movement, making it ideal for complex and precise tasks. Enhanced by haptic array sensors with over 20 contact points per finger, it provides valuable tactile feedback for handling delicate objects with care. The strong torque output ensures a stable, reliable grip across various applications, adding both strength and precision.
This flexible, modular solution allows for single or dual-hand configurations, making it adaptable to different robotic setups. While the appearance may vary slightly from the schematic, each hand is meticulously crafted to meet the high standards of functionality and performance. The Unitree H1-2 Texterous Hand offers everything needed to elevate robotics applications, making it a powerful, efficient choice for users seeking enhanced control, adaptability, and accuracy in robotic handling.
The Unitree H1-2 Texterous Hand is designed with over 10 degrees of freedom, allowing for lifelike, multi-jointed movement that enhances dexterity. This makes it suitable for complex tasks requiring high precision and flexibility, closely mimicking human hand movements.
Each finger is equipped with haptic array sensors with over 20 contact points, offering advanced tactile feedback. This allows the hand to sense and adjust its grip based on object texture, pressure, and sensitivity, making it ideal for handling delicate objects.
Each finger joint can deliver a maximum torque output of more than 0.7 Nm. This ensures a stable, powerful grip, allowing the hand to handle objects of various weights and sizes securely and reliably.
No, the price is for a single hand. However, the Unitree H1 model can typically support up to two dexterous hands, allowing you to configure it as needed for different applications.
The schematic image is provided as a general reference, but the actual appearance and specifications of the product may vary slightly. This allows for possible design adjustments to enhance functionality and performance.
With its advanced dexterity, tactile feedback, and strong torque, the Unitree H1 Texterous Hand is ideal for tasks requiring precise handling, such as assembly, research, and various high-performance applications where both strength and sensitivity are essential.
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
Dexterity: |
Multi-jointed dexterous hand with ≥10 degrees of freedom in one hand. |
---|---|
Haptics: |
Haptic array sensors for each finger, number of sensor contacts per finger >20. |
Torque: |
The maximum output torque of each finger joint is more than 0.7n.m, strong power. |
Note: |
Price for a single hand, generally 1 H1 optional 2 dexterous hands. |
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In stock
Weight(KG) |
10.5 |
---|---|
Applicable Industries |
Restaurant, Retail, Other |
Warranty of core components |
1 Year |
Application |
Experience teaching |
Dimension(L*W*H) |
485*275*300mm |
Voltage |
22.2V, 6.4AH |
Degree of freedom |
12 (3 degrees of freedom per leg) |
Climbing angle |
30 Degree |
Span Height |
30cm |
Operating system |
Linux |
Load weight |
3kg |
Self weight |
10.5kg |
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