Shenzhen Fire Power Control Technology Co., LTD
                                                                                                           
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25 Years
Since 2001
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MFOG-103N Navigation Grade Single Axis Fiber Optic Gyro 0.8deg/h Bias Stability RS422 Digital Output

Price Negotiable
Price: USD 1250-1550 / Piece
MOQ: 1 Piece
Delivery Time: 7-15 working days
Brand: Firepower
Product Description

Product Description

The MFOG-103N Fiber Optic Gyroscope (FOG) is a high-precision angular rate sensor developed by Firepower Control Technology Co., Ltd. Based on the Sagnac effect, it integrates advanced micro-nano optical fiber devices with proprietary signal processing algorithms to deliver exceptional bias stability, low noise, and wide dynamic range.

Featuring a fully solid-state design with no moving or wearing parts, the MFOG-103N ensures ultra-fast startup, long operational life, and maintenance-free performance. Its compact form factor and lightweight construction make it ideal for seamless integration into inertial navigation systems (INS), attitude and heading reference systems (AHRS), gimbal stabilization platforms, UAV flight control, robotic motion control, and autonomous vehicle guidance.

Key Features

  • Solid-state Sagnac interferometric design with zero mechanical wear
  • Fast startup time for immediate operational readiness
  • Excellent bias stability and low angular random walk (ARW)
  • Wide operating temperature range with built-in temperature compensation
  • Compact, lightweight construction for easy system integration
  • High shock and vibration resistance for harsh environments
  • RS422 digital output with configurable baud rate for direct system integration

Technical Specifications

ParameterSpecification
Range±350°/s
Bias Stability (10s, 1σ)≤0.8°/h
Bias Repeatability (1σ)≤0.8°/h
Angular Random Walk≤0.015°/√h
Scale Factor6±0.6mV/°/s
Scale Factor Nonlinearity≤500ppm
Bandwidth (3dB)≥1000Hz
Power Supply5±0.25V DC
Power Consumption≤1W
Output InterfaceRS422 Digital
Startup Time≤1s
Service Life≥15 years

Environmental Specifications

ParameterSpecification
Operating Temperature-40°C to +70°C
Storage Temperature-55°C to +85°C
Random Vibration20g, 20Hz ~ 2000Hz
Shock Resistance≥1500g

Applications

  • Inertial Navigation Systems (INS)
  • UAV Flight Control and Autopilot
  • Gimbal and Antenna Stabilization
  • Autonomous Ground Vehicles
  • Marine Navigation and DP Systems

About Firepower Control Technology

Shenzhen Firepower Control Technology Co., Ltd, established in 2013, is a high-tech enterprise specializing in R&D and production of fiber optic gyroscopes, MEMS gyros, quartz accelerometers, IMUs, INS, and angle testing equipment. With automated production lines in Xi'an, Shenzhen, and Zhuhai, we maintain China's leading production capabilities for inertial navigation and communication products.

Our proprietary array algorithm powers a comprehensive series of inertial navigation products that deliver precise position, 3D attitude, and speed data for autonomous navigation applications across civilian vehicles, ships, UAVs, and industrial robotics.

FAQ

Q: What is your lead time?
A: Stock: 5-15 days. No stock: 15-30 days after samples confirmed. Contact us for specific lead time based on order quantities.

Q: How does your factory ensure quality control?
A: We implement strict QC: 1) Production per agreed technical requirements; 2) Comprehensive testing per methodology; 3) Professional QA/QC team oversight.

Q: Do you accept OEM or ODM orders?
A: Yes, we provide both OEM and ODM services tailored to customer requirements.

Q: What are the payment methods?
A: TT, L/C, PayPal, Western Union, Online Bank Payment.

Q: What is the warranty?
A: Standard 12 months, negotiable for longer periods.

Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Shenzhen Fire Power Control Technology Co., LTD
Location 429, Building A10, Fuhai Information Port, Xinhe Community, Fuhai Street, Shenzhen, Guangdong, China
Contact Person Caine

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