Lighting the Future of Digital Health
We engineer clinical-grade, non-invasive, non-obtrusive diagnostic hardware. Our physical sensors bridge molecular chemistry and clinical cardiology to bypass invasive blood draws and deliver real-time telemetry.
Precision Diagnostic Hardware
Our current prototypes undergo rigorous laboratory verification. We translate complex molecular chemistry into physical, market-ready telemetry systems designed for high-fidelity data capture.
Hemodynamic Monitoring
Proprioceptive Testing
Real-time, non-invasive, non-obtrusive blood pressure and cardiovascular telemetry. Custom sensor-to-skin interfaces capture clinical-grade pulse wave data, eliminating the need for invasive arterial lines.
Neurological and proprioceptive diagnostic devices designed for immediate clinical feedback. Ergonomic hardware solutions capture micro-movements and sensory response times in active environments.


Translational Medical Engineering
We explore physics-based sensing and computational methods to investigate reliable forms of medical-grade telemetry concepts for physiological data acquisition in real-world conditions.
Our independent laboratory focuses entirely on physical sensor development. By controlling the hardware layer, we guarantee clinical-grade telemetry and reliable diagnostic accuracy for future digital health technologies.
Accelerate Clinical Innovation
We seek academic partnerships, institutional investors, and clinical collaborators to advance our diagnostic hardware pipeline from laboratory verification to active clinical trials.
