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Bionic Robotic Hand with 6 Axis and AI – For Arduino, Python and ROS

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Regular price 327 314 Kč s DPH
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Regular price Sale price 327 314 Kč

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SKU: 1601419216368

Description

  • ✔ 6 degrees of freedom for unparalleled flexibility and natural movements
  • ✔ Intuitive control thanks to advanced somatosensory technology
  • ✔ Extensive programming capabilities in Python, ROS and C++
  • ✔ Precise torque control and force segmentation for delicate handling
  • ✔ Easy integration with Arduino and other development platforms
  • ✔ Inspired by bionics for dexterity and adaptability close to the human hand
  • ✔ Ideal for research, education and advanced robotics projects

Introducing a revolutionary 6-DOF bionic robotic arm that pushes the boundaries of human-robot interaction. Inspired by human anatomy, this sophisticated manipulator is designed for exceptional precision, adaptability, and fluidity of movement. Whether you're involved in research, education, or developing innovative applications, this robotic arm will bring a level of dexterity to your projects that was once the domain of science fiction.

Bionic robotic arm with 6 axes

⚙️ Discover her masterful abilities: Key features

  • 6 degrees of freedom: Allows a wide range of movements and grips that mimic the human hand.
  • Somatosensory control: Intuitive interaction where the robot responds to the operator's natural movements and intentions.
  • Advanced programmability: Full support for Python, ROS (Robot Operating System), and C++ code for flexible application development.
  • Integrated servo motors: In-house developed servo motors for smooth and precise finger and joint movement.
  • Communication protocols: Compatibility with CAN and RS485 protocols for easy integration into existing systems.
  • Multi-discipline synergy: Combining bionics, mechatronics, materials science and information technology for cutting-edge performance.
  • Intelligent control algorithms: Built-in flexible torque control algorithm allows for fine force segmentation.

🔬 Explore every detail and advance your projects

This bionic hand is the result of extensive research and development, with the aim of providing a solution that surpasses conventional robotic manipulators. Its design emphasizes robustness while maintaining smoothness of movement, making it ideal for tasks requiring high precision. Whether it is handling fragile objects, simulating complex grips, or teaching advanced robotics, this system offers unparalleled capabilities.

With its open architecture and support for widely used programming languages, the bionic hand is ready to become the heart of your most innovative projects. It enables rapid prototyping and efficient deployment in a variety of applications, from industrial automation to assistive technologies.

🤔 Are you facing the challenge of precise manipulation in robotics?

Many robotic applications require dexterity and finesse that conventional manipulators cannot offer. Insufficient sensitivity, complex programming, and limited degrees of freedom can hinder innovation and efficiency. Whether you’re trying to replicate complex human actions or need a robotic solution with intuitive control, standard robotic systems often reach their limits.

💡 The solution is within reach: Bionic Hand for unmatched dexterity

With this bionic robotic hand, you get a tool that not only replicates, but often surpasses, human dexterity. With 6 axes, intelligent torque control, and somatosensory control, you can accomplish projects that were previously unimaginable. Push your boundaries in robotics, automation, and research with technology that is designed for excellence.

Close-up view of a bionic hand

🌟 More than just features, real benefits you'll appreciate

  • Function: 6 degrees of freedom → Benefit: Allows natural and complex movements for manipulating various objects.
  • Function: Somatosensory control → Benefit: Provides intuitive and easy control, reduces operator learning time.
  • Features: Python, ROS, C++ support → Benefit: Broad compatibility and flexibility for developing your own advanced applications.
  • Function: Intelligent torque control → Benefit: Allows for gentle manipulation and precise gripping of even fragile objects.
  • Function: Multi-joint collaborative control → Benefit: Makes it easier to perform complex tasks requiring coordination of multiple movements.

🎯 For whom is a bionic hand the ideal choice?

  • Robotics researchers: Ideal for developing new algorithms and testing advanced manipulation techniques.
  • DIY enthusiasts and innovators: Provides a robust foundation for ambitious smart robot and automation projects.
  • Educational institutions: An excellent tool for teaching mechatronics, AI, and advanced robotics in universities and high schools.
  • Industrial application developers: For prototyping solutions requiring delicate and adaptable handling.

❓ Do you have concerns? We will answer them with clarity

  • Concern: Is programming such a complex hand too difficult? → Answer: Thanks to support for popular languages ​​like Python, ROS, and C++, programming is accessible to a wide range of developers.
  • Concern: Will the hand be dexterous enough for my specific tasks? → Answer: With 6 degrees of freedom, intelligent torque control, and multi-joint control, the hand offers exceptional dexterity and flexibility.
  • Concern: How easily can the hand be integrated into existing systems? → Answer: Standard CAN and RS485 communication protocols ensure seamless integration with many robotic platforms and microcontrollers.

📊 Technical specifications and dimensions

Parameter Value
Degrees of freedom 6 axes
Palm width 80mm
Maximum hand width 132 mm
Hand length (including fingers) 205mm
Finger length 97 mm
Distance of thumb from bottom of palm 132 mm
Communication protocols CAN, RS485
Programmability Python, ROS, C++
Control system Built-in intelligent flexible torque control algorithm
Key technologies Bionics, mechatronics, materials science, biomedicine, information technology
Adaptive system CG Boost

💡 Frequently Asked Questions

What does '6 degrees of freedom' mean in a robotic arm?
Six degrees of freedom (6 DoF) means that the robotic hand can move in three axes of translation (forward/backward, up/down, left/right) and three axes of rotation (tilt, pivot, yaw). This allows it to achieve high flexibility and replicate the complex movements of the human hand.
What are the main advantages of somatosensory control?
Somatosensory control enables intuitive interaction, where the robotic arm responds to the operator's natural movements or intentions (e.g., using a glove or sensor). This simplifies control, increases accuracy, and reduces fatigue during long-term work.
Is this bionic hand compatible with the Arduino platform?
Yes, the robotic arm is designed for easy integration and compatibility with Arduino and other popular microcontroller platforms, opening up wide possibilities for DIY projects and educational purposes.
What programming languages ​​and frameworks are supported for development?
Support includes popular languages ​​such as Python, C++, as well as the Robot Operating System (ROS), allowing developers to leverage extensive libraries and tools for advanced robotics applications.
What types of projects is this bionic hand most suitable for?
It is ideal for academic research in robotics and AI, prototype development for industrial automation, educational programs in mechatronics and robotics, and for ambitious DIY projects that require precise and adaptable manipulation.
Can the strength of the hand grip be controlled?
Yes, thanks to the built-in intelligent flexible torque control algorithm, it is possible to precisely control and segment the gripping force, allowing you to handle fragile objects without damage.
What are the physical dimensions of the robotic hand?
The robotic hand has a palm width of 80 mm, a maximum hand width of 132 mm, and a total length (including fingers) of 205 mm. The finger length is 97 mm, and the distance from the thumb to the bottom of the palm is 132 mm.