Inertial Navigation Sensors: MEMS IMU, Accelerometers, Gyroscopes, AHRS, GPS-INS & Point Cloud Generation
Vision-Aided Inertial Navigation System (VINS) High-accuracy inertial navigation system engineered for GNSS-denied environments
Vision-Aided Inertial Navigation System (VINS)

High-accuracy inertial navigation system engineered for GNSS-denied environments

VINS is a rugged, high-precision navigation solution designed for unmanned vehicles and autonomous platforms operating in challenging and GNSS-denied environments. By combining advanced inertial measurement with intelligent sensor fusion, VINS delivers continuous and reliable positioning, heading, and orientation data. Visit Website Contact
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Vision-Aided Inertial Navigation System (VINS)

The VINS Inertial Navigation System delivers precise positioning and orientation for unmanned platforms operating in the most demanding environments. Engineered to maintain accuracy in GNSS-denied conditions, it integrates advanced sensor fusion with high-performance IMUs to ensure continuous navigation even under high vibration, shock, or temperature extremes. Its broad input power range (9–36 V DC) and low power draw for both day and IR camera modules enhance its versatility for UAVs, UGVs, and other uncrewed systems requiring dependable situational awareness.

Built for military and industrial-grade applications, the VINS is fully compliant with MIL-STD-810 and MIL-STD-461 standards, offering reliable operation from -40°C to +85°C and resistance to functional shock up to 20 g. With multiple interface options including RS-232, RS-422, and Ethernet, the unit integrates seamlessly into mission-critical systems. Designed for flight profiles as low as 100 m AGL, the VINS supports tactical deployments where resilience and precision are paramount.

Advancing Unmanned Systems Through Strategic Collaboration UST works with major OEMs to foster collaboration and increase engagement with SMEs, to accelerate innovation and drive unmanned systems capabilities forward.