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Navigation Grade Fiber Optic Gyroscope FOG)Sensor for Aerospace Inertial Navigation System

Navigation Grade Fiber Optic Gyroscope FOG)Sensor for Aerospace Inertial Navigation System

Brand Name: FIREPOWER
Model Number: MFOG-910
MOQ: 1
Price: 500$
Payment Terms: L/C,T/T
Supply Ability: 500/month
Detail Information
Place of Origin:
China
Measurement Range:
240°/s
Bias Repeatability:
0.8°/h
Size:
82mmx82mmx 19.5mm
Zero-bias Stability:
0.8°/h
Scale Factor Nonlinearity:
≤1000ppm
Acceleration:
≥70g
Packaging Details:
sponge +carton
Supply Ability:
500/month
Highlight:

fiber optic gyroscope aerospace navigation

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inertial navigation system FOG sensor

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navigation grade gyroscope sensor

Product Description
MFOG-910 Micro-Nano Fiber Optic Gyroscope

The MFOG-910 Micro-Nano Fiber Optic Gyroscope is an advanced angular rate sensor that integrates optical, mechanical, and electronic technologies. Utilizing the Sagnac effect principle, this navigation-grade FOG sensor incorporates micro-nano fiber-optic devices to detect, process, and provide feedback on phase differences between counter-propagating light beams, delivering precise angular rate measurement for aerospace inertial navigation systems.

Engineered with optical path assemblies, electronic circuits, and mechanical structures, this product features a streamlined design with no moving or wearing components. This ensures rapid startup, compact dimensions, lightweight construction, and exceptional reliability, making it ideal for attitude control and motion measurement across various carrier platforms.

Technical Specifications
Parameter Specification
Range (°/s) ±240
Scale Factor (mV/°/s) 47±5
Scale Factor Nonlinearity (ppm) ≤1000
Zero-Bias Stability (10s, 1σ, °/H) ≤0.8
Zero-Bias Repeatability (1σ, °/H) ≤0.8
3dB Bandwidth (Hz) ≥1000
Random Walk (°/√H) ≤0.02
Power Supply (V) 5±0.25+12
Power Consumption (W) ≤1.5
Impact Resistance (g) ≥1500
Vibration Resistance (g) ≥70
Service Life (years) ≥15
MTBF (Calculated) ≥100,000 hours
Key Features
  • Navigation-grade precision for aerospace applications
  • Solid-state design with no moving parts
  • Fast startup and high reliability
  • Compact and lightweight construction
  • High impact and vibration resistance
  • Low power consumption
  • Extended service life and high MTBF
Installation Dimensions
Navigation Grade Fiber Optic Gyroscope FOG)Sensor for Aerospace Inertial Navigation System 0