NeoBionics
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Smart Upper Limb Prosthesis

Development of a lightweight robotic hand prototype integrating sensors and adaptive control.

Project Overview

The Smart Upper Limb Prosthesis is a robotic hand prototype designed to explore new possibilities in assistive technology and human–machine interaction.

The project focuses on developing a lightweight, functional and adaptable prosthetic system capable of reproducing natural hand movements while remaining comfortable and easy to control. The prototype integrates mechanical design, electronic components and intelligent control algorithms within a compact architecture.

From the initial CAD design to the physical prototype and testing phase, the project follows an iterative engineering approach focused on performance, precision and usability.

The objective is to combine advanced robotics with intuitive control to create a prosthetic solution that is lightweight, responsive and adaptable to the user’s needs.

  • Category : Bionic Prosthetics
  • Date : 02.03.2022
  • Client : Add Content
  • Address : Add Content

Key Features

  • Lightweight robotic hand architecture
  • Custom mechanical and CAD design
  • Integrated sensors for movement and interaction detection
  • Adaptive control system
  • Precise finger movement and actuation
  • Prototype development and assembly
  • Functional testing and performance evaluation