Optical Fiber Gyroscope FOG Solid State Angular Rate Sensor 1000 deg s Serial Output
All-solid-state FOG gyroscope with no moving parts ensures high reliability and long life. Delivers precise angular rate data via serial interface for easy integration. Withstands vibration and shock, ideal for INS, navigation, and guidance systems in marine, land, and aerospace applications.
The optical fiber gyroscope (FOG) is a solid-state gyroscopic sensor developed based on modern physical effects. It adopts a fully solid-state structure without any mechanical moving parts, ensuring stable and reliable performance. The system outputs angular rate data directly through a serial communication interface, allowing convenient integration with upper-level navigation, guidance, or control units.
Product Features
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All-Solid-State Design
No rotating or mechanical components, reducing wear and improving long-term stability. -
High Environmental Robustness
Designed to maintain stable operation under vibration, shock, and complex working conditions. -
Serial Data Output
Supports direct digital output for easy connection with host computers or embedded systems. -
Compact and Modular Structure
Suitable for integration into various inertial and navigation-related equipment.
Key Advantages
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High Reliability
Solid-state architecture enhances operational reliability and reduces maintenance requirements. -
Strong Anti-Vibration and Anti-Shock Performance
Suitable for mobile platforms and harsh environments. -
Good System Compatibility
Standard communication interfaces enable seamless integration with navigation and control systems. -
Long Service Life
Absence of mechanical wear improves durability and lifecycle performance.
Applications
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Core angular rate sensor for inertial navigation systems (INS)
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Navigation and guidance systems for marine vessels, land vehicles, and aerospace platforms
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Attitude and heading measurement in integrated navigation equipment
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Motion sensing for industrial control and precision positioning systems
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Orientation monitoring in unmanned systems and specialized platforms