Attribute | Value |
---|---|
Range | ±240°/s |
Zero-bias stability (10s, 1σ) | ≤0.8°/h |
Angular random walk | ≤0.02°/h |
3dB Bandwidth | ≥1000Hz |
Zero-bias repeatability (1σ) | ≤0.8°/h |
Scale factor nonlinearity | ≤1000ppm |
Weight | ≤150g |
Power Consumption | ≤1.5W |
The MFOG-910 Micro-Nano Fiber Optic Gyroscope is a high-performance angular rate sensor that integrates optical, mechanical, and electronic systems into a compact and robust unit. It operates based on the Sagnac effect, utilizing two beams of light traveling in opposite directions through a micro-nano optical fiber coil to detect angular velocity.
This product features an all-solid-state design with no moving or wearing parts, ensuring excellent reliability, fast startup, long operational life, and exceptional resistance to shock and vibration. Its compact size, lightweight construction, and low power consumption make it ideal for integration into dynamic platforms requiring attitude control and inertial measurement.
Serial Number | Project | Performance Indicators |
---|---|---|
1 | Range (°/s) | ±240 |
2 | Scale factor (mV/°/s) | 47±5 |
3 | Scale factor nonlinearity (ppm) | ≤1000 |
4 | Zero-bias stability (10s, 1σ, °/H) | ≤0.8 |
5 | Zero-bias repeatability (1σ, °/H) | ≤0.8 |
6 | 3dB Bandwidth (Hz) | ≥1000 |
7 | Random walk (°/√H) | ≤0.02 |
8 | Power supply (V) | 5+0.25+12 |
9 | Power Consumption (W) | ≤1.5 |
10 | Impact (g) | ≥1500 |
11 | Acceleration (g) | ≥70 |
12 | Life (years) (calculated assessment) | ≥15 |
13 | MTBF (Calculated Assessment) | ≥100000 |