Origin BCI produces modular bionic hands with a slim palm and interchangeable finger modules, delivering over 20 myoelectric‑controlled grip patterns and closed‑loop biosensor feedback. The hybrid 3D‑printing and injection‑molding manufacturing reduces part count, weight, and cost, while a companion mobile app provides calibration, firmware updates, and remote diagnostics. Devices are sold directly to users and through prosthetics clinics and rehabilitation centers.
Funding
Funding not disclosed
Founders
Product
Problem
People with limb loss often face prosthetic options that are expensive, bulky, and limited in functional grip patterns, which restricts daily activities and hampers social integration.
Solution
Origin BCI delivers a line of modular bionic hands that combine a slimmer palm profile with interchangeable finger mechanisms, providing over 20 configurable grip patterns. The devices use space‑efficient myoelectric control paired with integrated biosensors to deliver real‑time feedback, enabling intuitive and precise movements. Manufacturing relies on a hybrid of 3D printing and injection molding, reducing part count and cost while maintaining durability. A companion mobile app allows users and clinicians to fine‑tune control parameters and update firmware, supporting easy repairs and future upgrades. By offering a stylish, low‑maintenance design, the hands aim to make advanced prosthetic functionality accessible to a broader user base.
Target Audience
The primary customers are individuals with upper‑limb loss seeking functional, affordable prosthetic hands, and clinical partners such as prosthetics clinics and rehabilitation centers that provide prosthetic services.
Features
- Modular finger architecture with 12 % smaller fingers and a palm that is 54 % slimmer than conventional prostheses
- Over 20 pre‑programmed grip patterns selectable via onboard myoelectric controller
- Integrated biosensors that capture muscle activity and provide closed‑loop feedback for smoother motion
- Space‑optimized electronics layout to minimize weight and improve reliability under daily use
- Hybrid manufacturing process (high‑resolution 3D printing + injection molding) for cost‑effective, lightweight parts
- Plug‑and‑play design enabling rapid repairs, component swaps, and firmware upgrades
- User‑friendly mobile application for calibration, grip customization, and remote diagnostics