Fizoptika VG910 Fiber Optic Gyroscope ≤0.02°/√h Random Walk for Racing Drone Control
| 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 |
The MFOG-910 micro-nano fiber optic gyroscope is an angular rate sensor integrating optics, mechanics and electronics. Based on the Sagnac effect, it incorporates various micro-nano fiber devices and detects phase differences between counter-propagating light beams to measure rotation rates.
This product consists of optical path components, circuit components and structural components. It features a simple structure with no moving parts, fast startup, compact size, and light weight, making it ideal for attitude control and measurement applications.
- Optical path assembly
- Detection and control signal circuit board
- Optical fiber coil skeleton, shell and other structural parts
Overall dimensions: 82mm * 82mm * 19.5mm (without plug)
≤150g
-40℃ to +70℃
-55℃ to +85℃
Random vibration level: 20g, frequency range: 20Hz to 2000Hz
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