| MOQ: | 1 set |
| Delivery Period: | 30 work days |
| Supply Capacity: | 5000 set per year |
The optical fiber gyroscope (FOG) is a solid-state angular rate sensor based on modern physical principles. With no moving parts, it provides high reliability and excellent performance under vibration and shock. Data is output via serial interface, ensuring easy integration with navigation or control systems.
Key Features:
Solid-State Design – No mechanical components, reducing wear and maintenance.
High Reliability – Stable performance under vibration, shock, and harsh environmental conditions.
Direct Data Output – Serial interface allows seamless connection to navigation processors.
Precision Angular Rate Measurement – Provides accurate rotational data critical for navigation and orientation.
Applications:
Core sensor for inertial navigation systems (INS)
Angular rate measurement for marine vessels, land vehicles, and aerospace platforms
High-precision heading, roll, and pitch monitoring for ships and specialized vehicles
Integration with navigation and guidance systems that require accurate rotational data
| MOQ: | 1 set |
| Delivery Period: | 30 work days |
| Supply Capacity: | 5000 set per year |
The optical fiber gyroscope (FOG) is a solid-state angular rate sensor based on modern physical principles. With no moving parts, it provides high reliability and excellent performance under vibration and shock. Data is output via serial interface, ensuring easy integration with navigation or control systems.
Key Features:
Solid-State Design – No mechanical components, reducing wear and maintenance.
High Reliability – Stable performance under vibration, shock, and harsh environmental conditions.
Direct Data Output – Serial interface allows seamless connection to navigation processors.
Precision Angular Rate Measurement – Provides accurate rotational data critical for navigation and orientation.
Applications:
Core sensor for inertial navigation systems (INS)
Angular rate measurement for marine vessels, land vehicles, and aerospace platforms
High-precision heading, roll, and pitch monitoring for ships and specialized vehicles
Integration with navigation and guidance systems that require accurate rotational data