| MOQ: | 1 set |
| Delivery Period: | 30 work days |
| Supply Capacity: | 100 set per year |
This marine-grade strapdown inertial navigation system (INS) integrates either RLG or FOG gyroscopes with high-precision quartz accelerometers to deliver superior navigation performance. Its advanced computational core processes real-time navigation data using sophisticated strapdown algorithms, providing accurate and reliable 3D position, velocity, and heading information for maritime applications.
The system supports flexible operational configurations, including autonomous inertial navigation, GNSS-assisted navigation, and velocity-augmented modes, enabling comprehensive navigation solutions for a wide range of vessels. Designed for demanding maritime conditions, it ensures continuous performance even in challenging environments.
Core Sensors: RLG or FOG Gyroscopes + Quartz Accelerometers
Navigation Modes: Autonomous inertial, GNSS-assisted, and velocity-augmented navigation
Real-Time Processing: High-speed computational core with strapdown algorithms
This marine INS system is ideal for a variety of maritime platforms:
Commercial Ships & Cargo Vessels: Reliable navigation in open seas and GNSS-denied areas
Naval & Defense Vessels: Accurate heading, position, and velocity reference under challenging conditions
Autonomous Marine Vehicles & Research Vessels: Supports precision navigation and survey missions
Offshore Platforms & Support Vessels: Continuous navigation solutions in harsh offshore environments
Integrated Marine Avionics Systems: Seamless integration with GNSS, radar, and other marine sensors
Reliable Maritime Performance: Continuous and accurate operation in GNSS-denied or high-sea conditions
Flexible Operational Modes: Supports inertial-only, GNSS-assisted, and velocity-augmented navigation modes
Comprehensive Navigation Solutions: Delivers complete position, velocity, and heading information for any vessel
| MOQ: | 1 set |
| Delivery Period: | 30 work days |
| Supply Capacity: | 100 set per year |
This marine-grade strapdown inertial navigation system (INS) integrates either RLG or FOG gyroscopes with high-precision quartz accelerometers to deliver superior navigation performance. Its advanced computational core processes real-time navigation data using sophisticated strapdown algorithms, providing accurate and reliable 3D position, velocity, and heading information for maritime applications.
The system supports flexible operational configurations, including autonomous inertial navigation, GNSS-assisted navigation, and velocity-augmented modes, enabling comprehensive navigation solutions for a wide range of vessels. Designed for demanding maritime conditions, it ensures continuous performance even in challenging environments.
Core Sensors: RLG or FOG Gyroscopes + Quartz Accelerometers
Navigation Modes: Autonomous inertial, GNSS-assisted, and velocity-augmented navigation
Real-Time Processing: High-speed computational core with strapdown algorithms
This marine INS system is ideal for a variety of maritime platforms:
Commercial Ships & Cargo Vessels: Reliable navigation in open seas and GNSS-denied areas
Naval & Defense Vessels: Accurate heading, position, and velocity reference under challenging conditions
Autonomous Marine Vehicles & Research Vessels: Supports precision navigation and survey missions
Offshore Platforms & Support Vessels: Continuous navigation solutions in harsh offshore environments
Integrated Marine Avionics Systems: Seamless integration with GNSS, radar, and other marine sensors
Reliable Maritime Performance: Continuous and accurate operation in GNSS-denied or high-sea conditions
Flexible Operational Modes: Supports inertial-only, GNSS-assisted, and velocity-augmented navigation modes
Comprehensive Navigation Solutions: Delivers complete position, velocity, and heading information for any vessel