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Fiber Optic Gyro
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High Precision Single Axis Fiber Optic Gyro with 0.008 Degree per Hour Bias for Tactical Navigation Systems

High Precision Single Axis Fiber Optic Gyro with 0.008 Degree per Hour Bias for Tactical Navigation Systems

Brand Name: WNRLN
Model Number: MFOG091-H
MOQ: 1 Piece
Price: USD 1200-1800 / Piece
Payment Terms: T/T, L/C, PayPal, Western Union
Supply Ability: 300 Pieces per Month
Detail Information
Place of Origin:
Guangdong, China
Certification:
ISO 9001:2015, CE, RoHS
Gyro Type:
High Precision Closed Loop FOG
Number Of Axes:
1 Axis
Bias Stability:
0.008 Deg/h (1 Sigma)
Bias Repeatability:
0.008 Deg/h (1 Sigma)
Scale Factor Nonlinearity:
≤ 30 Ppm
Measurement Range:
± 300 Deg/s
Random Walk:
0.001 Deg/√h
Bandwidth:
≥ 200 Hz
Operating Temperature:
-40°C To +70°C
Interface:
RS422
Power Supply:
±5V DC
Power Consumption:
≤ 4.5W
Weight:
≤ 380g
Dimensions:
Φ55mm X 38mm
Storage Temperature:
-55°C To +85°C
MTBF:
≥ 60,000 Hours
Packaging Details:
WNRLN branded protective case with shock-proof foam insert, export-grade corrugated carton
Supply Ability:
300 Pieces per Month
Highlight:

0.008 Degree per Hour Bias Fiber Optic Gyro

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High Precision Closed Loop Navigation Sensor Module

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Tactical Navigation Systems Tactical Grade Gyro

Product Description

High Precision Fiber Optic Gyro MFOG091-H

The MFOG091-H is the high precision variant featuring 0.008 deg/h bias stability achieved through upgraded optical coil winding and advanced digital signal processing. Purpose-built for tactical navigation systems requiring superior drift performance.

Key Features

  • Enhanced Bias Stability: 0.008 deg/h (1 sigma) with premium optical coil and precision electronics.
  • Improved Scale Factor: Nonlinearity ≤ 30 ppm for high-accuracy angular measurement.
  • Low Random Walk: 0.001 deg/√h minimizes short-term angle integration errors.
  • Extended MTBF: ≥ 60,000 hours with selected components for mission-critical reliability.
  • Temperature Compensated: Full-range calibration from -40°C to +70°C.

Applications

  • Tactical Inertial Navigation Systems (INS)
  • Stabilized Electro-Optical Payloads
  • Missile Mid-Course Guidance
  • Precision Geodetic Survey Equipment
  • Autonomous Underwater Vehicle Navigation

Contact our engineering team for detailed performance data and customization options.