Offline Neural Text-to-Speech
High-accuracy OCR algorithms extract and recite printed documents, product labels, prescription bottles, and signage without requiring active internet connectivity.
Sprhava designs and manufactures industrial-grade AI smart glasses for visually impaired individuals, engineered specifically to empower users with hands-free, high-speed spatial awareness and text-to-speech interaction.
Built upon robust edge-computing neural architectures, our proprietary vision models process complex environmental cues, printed media, and obstacle locations locally within milliseconds. Designed in close collaboration with certified orientation and mobility (O&M) specialists and clinical low-vision experts, Sprhava provides distributors, health procurement groups, and accessibility partners with reliable, scalable assistive technology.
We partner with global accessibility organizations, government rehabilitation departments, and visual aid importers to deploy localized solutions tailored to specific clinical requirements.
Designed to meet international compliance and usability benchmarks for electronic orientation and mobility aids.
High-accuracy OCR algorithms extract and recite printed documents, product labels, prescription bottles, and signage without requiring active internet connectivity.
Real-time spatial analysis alerts wearers to low-hanging overhead objects, open glass doors, curbs, and approaching structural hazards missed by traditional canes.
Advanced deep-learning vision models segment public spaces, identifying pathways, seating areas, queues, and environmental landmarks upon voice prompt.
Directional audio transducers channel clear, natural speech directly to the user's ears while keeping the ear canals completely open for environmental acoustic cues.
Strict data privacy architecture ensures video frames are processed transiently in volatile memory and immediately erased without cloud logging.
Engineered to be worn over standard prescription spectacles, tint filters, or customized low-vision optical frames with zero facial pressure points.
Engineering parameters optimized for institutional procurement, clinical evaluation, and international distribution.
| Device Classification | Wearable Computer Vision Assistive Device / Electronic Orientation Aid |
|---|---|
| Optical Sensor | Ultra-wide dynamic range sensor, dynamic low-light optical compensation |
| Inference Processing | On-board low-power AI neural processing engine (Edge Computing) |
| Audio Output | Dual directional open-ear acoustic drivers (Preserves ambient traffic sound) |
| Frame Weight | 49 grams (Equally balanced weight distribution across temples) |
| Battery & Charging | Full-day operational battery system with rapid USB-C smart charging dock |
| Language Support | 30+ offline and cloud-assisted voice synthesis engine options |
| Prescription Integration | Compatible with custom prescription lenses and light-sensitivity clip-ons |
| Regulatory Compliance | CE, FCC, RoHS, IEC 62471 Optical Safety Certified |
Key technical and operational information for procurement teams, clinical directors, and international distributors.
Connect with our technical solution managers to request unit evaluations, detailed technical documentation, institutional pricing, or custom OEM manufacturing schedules.