Introducing our advanced Attitude and Heading Reference System (AHRS), engineered for mission-critical navigation across defense, autonomous, marine, and industrial platforms. Built on a modern strapdown inertial architecture, the system integrates high-grade gyroscopes (FOG/RLG) and precision accelerometers, delivering stable 3D orientation, heading, and motion data even in the most challenging operational environments.
The AHRS supports:
Pure inertial navigation for GNSS-denied or jammed environments
GNSS-aided navigation for enhanced accuracy and redundancy
High-rate output and low-latency sensor fusion for real-time control
Applications include:
Defense and armored vehicles requiring reliable inertial navigation
Autonomous land vehicles (UGV/AGV), drones, and robotic systems
Marine and offshore platforms for precision navigation
Industrial surveying, mapping, and automated equipment
Key Features & Advantages:
High-accuracy attitude, heading, and inertial navigation
Rugged design tolerates shock, vibration, and extreme temperatures
Compact, lightweight, and low power for easy integration
Flexible digital interfaces (RS232, RS422, RS485, CAN, Ethernet)
Long-term reliability for continuous mission-critical operation
This AHRS solution provides gyrocompassing-class performance and inertial navigation capability, ideal for applications where high-precision orientation, heading, and motion data are essential.
#AHRS #StrapdownIMU #FOGINS #RLGINS #GNSSDeniedNavigation #InertialNavigation #LandINS #MarineINS #AutonomousVehicleNavigation #DefenseNavigation #HighPrecisionIMU #RoboticsNavigation #IndustrialAutomation #IMUSensor
Introducing our advanced Attitude and Heading Reference System (AHRS), engineered for mission-critical navigation across defense, autonomous, marine, and industrial platforms. Built on a modern strapdown inertial architecture, the system integrates high-grade gyroscopes (FOG/RLG) and precision accelerometers, delivering stable 3D orientation, heading, and motion data even in the most challenging operational environments.
The AHRS supports:
Pure inertial navigation for GNSS-denied or jammed environments
GNSS-aided navigation for enhanced accuracy and redundancy
High-rate output and low-latency sensor fusion for real-time control
Applications include:
Defense and armored vehicles requiring reliable inertial navigation
Autonomous land vehicles (UGV/AGV), drones, and robotic systems
Marine and offshore platforms for precision navigation
Industrial surveying, mapping, and automated equipment
Key Features & Advantages:
High-accuracy attitude, heading, and inertial navigation
Rugged design tolerates shock, vibration, and extreme temperatures
Compact, lightweight, and low power for easy integration
Flexible digital interfaces (RS232, RS422, RS485, CAN, Ethernet)
Long-term reliability for continuous mission-critical operation
This AHRS solution provides gyrocompassing-class performance and inertial navigation capability, ideal for applications where high-precision orientation, heading, and motion data are essential.
#AHRS #StrapdownIMU #FOGINS #RLGINS #GNSSDeniedNavigation #InertialNavigation #LandINS #MarineINS #AutonomousVehicleNavigation #DefenseNavigation #HighPrecisionIMU #RoboticsNavigation #IndustrialAutomation #IMUSensor