Haptych develops non‑invasive neural interface hardware that records brain activity without surgery, enabling researchers and developers to build brain‑computer applications using a wearable sensor array. The system integrates high‑resolution electrophysiology with cloud‑based analytics, allowing real‑time signal processing and data visualization for neuroscience experiments and prototype development.
Funding
Funding not disclosed

Founders
Product
Problem
Current neural interface solutions typically require surgical implantation, creating barriers to widespread adoption for applications such as neurorehabilitation, brain‑computer interaction, and continuous health monitoring. The invasiveness limits patient eligibility, increases risk, and raises costs, preventing many users from benefiting from direct brain‑device communication.
Solution
Haptych offers a non‑invasive neural interface platform that captures brain activity through wearable sensor arrays and translates the signals into digital commands for external devices. The system employs high‑resolution electrophysiological sensing combined with on‑device signal processing to deliver real‑time decoding without the need for surgery. An open software stack provides developers with APIs and toolkits to integrate brain‑derived inputs into rehabilitation equipment, BCI applications, and wearable health monitors. By eliminating surgical requirements, the platform expands access to neural interfacing technologies for both clinical and consumer markets while maintaining data security and low latency performance.
Target Audience
Primary customers include neurorehabilitation clinics seeking non‑surgical therapy tools, developers of brain‑computer interface applications, and manufacturers of wearable health monitoring devices that require direct brain‑derived inputs.
Features
- Wearable, high‑density sensor array that records neural activity without skin penetration
- On‑device preprocessing and artifact rejection to ensure clean signal acquisition in real‑world settings
- Real‑time decoding engine delivering low‑latency translation of brain signals into actionable commands
- Developer SDK with cross‑platform APIs for rapid integration into rehabilitation devices, BCI software, and health wearables
- Modular form factor adaptable to headbands, caps, or integrated device housings for diverse use cases
- End‑to‑end encryption of neural data to protect user privacy during transmission and storage