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Intelligent Bionic Robotic Hand for Cobots and Laboratories

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Regular price 327 314 Kč s DPH
270 507 Kč bez DPH
Regular price Sale price 327 314 Kč

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SKU: 1601293982336

Description

  • Revolutionary combination of bionics and robotics for natural manipulation.
  • Six independent actuators for each finger.
  • Flexible thumb movement in two directions.
  • Intuitive somatosensory control for smooth operations.
  • Advanced algorithm for precise division of grip force.
  • Ideal for collaborative robots (cobots) and laboratory research.

Introducing an intelligent bionic robotic hand that pushes the boundaries of human-machine interaction. This sophisticated system integrates the latest advances in bionics, mechanics, materials science, and information technology to provide flexibility and precision comparable to the human hand.

Bionic robotic arm in action

🤖 What can this bionic hand do?

  • Equipped with six independent action units that allow autonomous movement of each finger.
  • The thumb can move in two directions, which significantly expands the possibilities of gripping and manipulation.
  • It uses self-developed somatosensory technology that mimics the feel and response of human touch.
  • The integrated intelligent torque control algorithm ensures fine power distribution.
  • Multi-joint cooperative control makes it easier to perform delicate and complex operations.

🔬 Explore every detail

The design of this bionic hand is inspired by the anatomy and functionality of the human arm, giving it incredible adaptability and dexterity. It aims to replicate the complex movements and gripping force that are key to applications in advanced robotics, from fine assembly to interaction with fragile objects. It is the perfect tool for innovative projects and experiments where maximum precision and naturalness of movement are required.

The manufacturer designed this hand with an emphasis on modularity and ease of integration, making it an ideal component for collaborative robots (cobots) and research platforms. Their technology allows for rapid adaptation to different tasks and materials, opening up new possibilities in automation and scientific research.

🤔 Are you bothered by the limitations of traditional tentacles?

Standard robotic grippers often lack the adaptability and finesse needed to handle irregular shapes or fragile objects. Their rigid design limits interaction options and can lead to damage to the objects being manipulated or inefficient processes. Complex tasks requiring human skill often remain beyond the reach of conventional robotic solutions, slowing down innovation in automation and research.

💡 Get unmatched precision and flexibility!

With the intelligent bionic robotic hand, you can overcome these limitations. With its human-like flexibility and advanced control, it is able to seamlessly manipulate a wide range of objects, from small and delicate components to complex tools. It enables you to perform tasks previously reserved for human hands, opening the door to new levels of automation, efficiency, and safety in your research or manufacturing.

Close-up view of a bionic hand

🌟 More than just features, real benefits

  • Function: Six independently controlled fingers -> Benefit: Adaptability to various shapes and sizes of objects.
  • Feature: Advanced somatosensory control -> Benefit: Intuitive and precise control with natural feedback.
  • Function: Intelligent force division algorithm -> Benefit: Safe gripping of fragile and sensitive objects without damage.
  • Function: Multi-joint cooperation -> Benefit: Ability to perform complex and delicate manipulation tasks.

🎯 Who is it the ideal choice for?

  • For research institutions and universities looking for cutting-edge robotic platforms for bionics and AI.
  • For developers of collaborative robots (cobots) who need a flexible and precise end effector.
  • For laboratories and industrial operations where gentle handling and adaptability are key.

💬 Do you have any concerns? We'll answer them

  • Concern: Is the integration of this advanced hand complex? -> Answer: The hand is designed with easy integration with common collaborative robots and platforms in mind, minimizing the time required for implementation.
  • Concern: How is durability and long-term reliability ensured? -> Answer: The manufacturer uses a combination of robust mechanical components and state-of-the-art materials to ensure high durability and reliability in demanding operation.
  • Concern: How precise is the manipulation of small objects? -> Answer: Thanks to independent movement of the fingers, thumb in two directions and precise torque control, the hand achieves exceptional precision even when manipulating very small and delicate objects.

❓ Frequently Asked Questions (FAQ)

What is the main innovation of this robotic hand?
The main innovation is the integration of bionics with advanced robotics, enabling flexibility and precision comparable to the human hand, thanks to six independent actuators and somatosensory control.
How many independent movements does the hand offer?
The hand has six independent action units for each finger, allowing each finger to move independently. The thumb also offers movement in two directions, greatly expanding manipulative capabilities.
How is precision in handling delicate objects ensured?
Precision is ensured by an intelligent flexible actuator with a torque control algorithm that enables force sharing. This, combined with multi-joint cooperative control, guarantees the ability to perform delicate operations.
What types of applications is this bionic hand intended for?
The hand is ideal for collaborative robots (cobots) in industrial automation, laboratory research in bionics, artificial intelligence and robotics, and for applications requiring delicate and adaptable manipulation.
Is it possible to integrate the hand into existing robotic systems?
Yes, the hand is designed with modularity and easy integration in mind, making it compatible with a variety of robotic platforms and collaborative robots.
How does somatosensory control work?
The hand is equipped with self-developed somatosensory technology that enables intuitive and natural control. It mimics tactile feedback, facilitating interaction and fine manipulation.