Healthcare

3D Rehabilitation Training Robot

Innovation Consulting

Mechanical Engineering

Prototyping

Industrial Design

Electrical Engineering

cases-study

Project Overview

A large-scale rehabilitation training equipment designed by FNI for customers. It is an innovative and leading device for spinal isokinetic assessment and training in the industry. The system can operate in six major modes of active and passive isokinetic, isotonic, and isometric exercises along three axes, providing precise assessment and training for patient’s spinal rehabilitation or professional sports training.

3d-rehabilitation-training-robot
Overview
  • Development Teams

    Product Manager, ID Designer, MD Designer, Hardware Development Engineer, Firmware Development Engineer, Supply Chain Manager, Test Engineer, Quality Engineer

  • PM

    Long JIANG

  • Staff

    13 people

  • Completion

    28 weeks

Core Spec
  • Chipset & OS

    CPU  Dual Core Cortex-A72 + 4 Core Cortex-A53, Linux

  • Display

    27 Inch Touch Screen

  • Integration

    BLDC for Medical(640N·m*1+480N·m*2), Stepper Motor*6

Innovation Consulting

The product has a three-axis motion direction, which can assess and train the core muscles in standing and sitting positions of forward flexion, dorsiflexion, lateral flexion and rotation. The product has both isometric and isotonic muscle strength testing and training modes, and the three muscle strength testing and training modes complement each other to provide a three-dimensional and all-round analysis of the core muscle group's strength and stability and provide targeted training programs.

3d-rehabilitation-training-robot

Industrial Design

Adaptability and Amenity

Studied and selected appropriate product size based upon ergonomics and national average height, Conducted spinal cord link simulations to pin point the right location to assure the product operates smoothly and comfortable.

Professional and Hi-Tech-ish

The design highlights the medical attributes of the product. To give the professional and hi-tech-ish look and feel, we mixed the streamlined and spliced elements together with a great looking while into a macrocosm style.

3d-rehabilitation-training-robot

Software and Hardware Development

Operating precisely and effectively are the basic requirements of a rehab equipment after constant wear and tear of the equipment. We selected high torque and high precision sensors for the equipment to ensure the accuracy of data collection and the stability and safety when operate the equipment. Pinpoint the joint position and the axis of the movement is a major challenge for the system. The design team choose laser for precise positioning to ensure the accuracy of the operation after extended test of various options.

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  • Industrial Design
  • Mechanical Engineering
  • Electrical Engineering
  • Firmware Development
  • Rapid Prototyping
  • Tooling

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