Ausories AFLS
An intelligent lighting platform that dynamically controls light distribution based on real-time road conditions and surrounding traffic — bringing adaptive front lighting capability to a wider range of vehicles.
Inside the Intelligent Shutter Projector.
The Ausories AFLS is built around a tightly integrated system of optical, mechanical, and electronic components working in concert to deliver adaptive beam control.
Camera / Sensor Module
Continuously captures the road environment ahead. Identifies oncoming vehicles, ambient light levels, and road geometry to feed real-time data to the controller.
Engineering Specifications.
Current specifications reflect the active development and validation stage of the Ausories AFLS platform.
Specifications are based on current R&D stage. Final production specifications will be confirmed following completion of validation and testing cycles. Contact Ausories for detailed technical information.
What the AFLS Platform Delivers.
Adaptive High Beam
Continuously adapts the high beam pattern to shield detected oncoming vehicles while maintaining maximum road illumination for the driver.
Glare Reduction
Intelligent shutter mechanism creates precision shadow zones for oncoming drivers, reducing glare without switching to low beam.
Road Environment Awareness
Camera-based detection provides real-time awareness of the road environment to drive intelligent beam decisions.
Multi-Mode Beam Control
Supports multiple beam configurations selectable based on driving conditions — highway, urban, adverse weather modes.
Retrofit Integration
Designed with retrofit compatibility in mind, enabling deployment on existing vehicle platforms without full system replacement.
Embedded Intelligence
All processing and control logic runs on a purpose-built embedded controller — no dependency on external computing infrastructure.
Interested in the AFLS Platform?
Whether you're an OEM, Tier-1 supplier, aftermarket partner, or investor — reach out to discuss how Ausories AFLS can fit your application.