Restoring a voice to the silent.

Real-time Physics
Hardware Accelerated
Initializing Render Engine...
Real-time Neural Sync
Hardware Accelerated AAC
Observe the hardware acceleration. The central 3D element renders perfectly synced to the scroll tick, never dropping a frame while this block slides in seamlessly.
Notice the sophisticated glassmorphism effect. Instead of a simple opacity fade, these panels transition smoothly from a blurred state into absolute clarity.
By mapping thousands of extracted image frames to the browser's scroll height, we completely bypass standard video decoding lag-resulting in an award-winning user experience.
Current medical-grade eye-tracking devices sit at an exorbitant ₹8,00,000+ price point, requiring complex daily calibration.
We engineered a hyper-accessible, open-source alternative using an ESP32 and a single infrared sensor. Total cost: ₹500.
Zero physical force, zero skin contact. Mounted on eyeglasses or near a functional limb; detects minute changes in infrared reflectance to register micro-movements seamlessly.
Safety is paramount. 4 rapid triggers bypass all software logic, sounding an immediate local alarm and pushing a red-alert to the Caregiver Dashboard.
Designed for zero cognitive overload. Auto-cycles columns, allowing patients to zoom in on specific requests effortlessly.
No complex keyboards. Three logical commands mapped to a single sensor: Tap to move, Hold (>800ms) to select, and Double-Tap to step back.
IR sensor detects a muscle twitch or blink.
ESP32 debounces signal and runs state machine.
JSON payloads fire at sub-500ms latency.
React dashboard alerts staff instantly.
The full hardware schematics, C++ firmware, and dashboard source code are published open-source. Assistive tech should not be gated behind lakh-rupee licensing.