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Single Axis Open Loop Fiber Optic Gyroscope ±240°/s Angular Rate Sensor

Single Axis Open Loop Fiber Optic Gyroscope ±240°/s Angular Rate Sensor

ব্র্যান্ড নাম: Firepower
মডেল নম্বর: এমএফওজি -910
MOQ.: 1
মূল্য: 700$
অর্থ প্রদানের শর্তাবলী: এল/সি, ডি/এ, ডি/পি, টি/টি, ওয়েস্টার্ন ইউনিয়ন
সরবরাহের ক্ষমতা: 500/মাস
বিস্তারিত তথ্য
উৎপত্তি স্থল:
চীন
সর্বোচ্চ কৌণিক হার:
±240°/সে
পক্ষপাত স্থায়িত্ব:
≤0.8°/ঘণ্টা
শূন্য পক্ষপাত পুনরুত্পাদনযোগ্যতা:
≤0.8°/ঘণ্টা
র্যান্ডম ওয়াক দক্ষ:
≤0.02°/√ঘণ্টা
সরবরাহ ভোল্টেজ:
+5V
আউটপুট প্রকার:
এনালগ
ব্যান্ড প্রস্থ:
≥1000Hz
মাত্রা:
82 মিমি × 82 মিমি × 19.5 মিমি
প্যাকেজিং বিবরণ:
বক্স+স্পঞ্জ
যোগানের ক্ষমতা:
500/মাস
বিশেষভাবে তুলে ধরা:

single axis fiber optic gyroscope

,

open loop angular rate sensor

,

fiber optic gyro ±240°/s

পণ্যের বিবরণ
Single Axis Open Loop Fiber Optic Gyroscope ±240°/s Angular Rate Sensor

The MFOG-910 fiber optic gyroscope (VG910 alternative) is a tactical-grade gyroscope combining optical, electronic, and mechanical components. Its optical path assembly, detection circuit board, and fiber coil skeleton provide accurate angular velocity measurement. Key specifications include ±240°/s range, 3dB bandwidth ≥1000Hz, power supply 5~12V, and impact resistance ≥1500g. Ideal for UAV navigation, missile attitude control, and autonomous vehicle guidance. Lightweight design (≤150g) ensures easy integration.

Product Composition

The product is mainly composed of the following components:

  • Optical path assembly
  • Detection and control signal circuit board
  • Optical fiber ring skeleton, shell and other structural parts
Main Performance Specifications
Serial Number Project Performance Indicators
1Range (°/s)±240
2Scale factor (mV/°/s)47±5
3Scale factor nonlinearity (ppm)≤1000
4Zero-bias stability (10s, 1σ, °/H)≤0.8
5Zero-bias repeatability (1σ, °/H)≤0.8
63dB Bandwidth (Hz)≥1000
7Random walk (°/√H)≤0.02
8Power supply (V)5 +0.25 +12
9Power Consumption (W)≤1.5
10Impact (g)≥1500
11Acceleration (g)≥70
12Life (years)≥15
13MTBF≥100000
Outline Drawing
Single Axis Open Loop Fiber Optic Gyroscope ±240°/s Angular Rate Sensor 0
Applications

The MFOG-910 fiber optic gyroscope is widely used in navigation, stabilization, and attitude measurement systems.

  • Unmanned Aerial Vehicles (UAVs)
  • Autonomous navigation systems
  • Marine navigation and stabilization
  • Robotics and intelligent vehicles
  • Antenna stabilization platforms
  • Electro-optical tracking systems
  • Inertial navigation systems (INS)
  • Unmanned ground vehicles (UGV)
  • Industrial motion control systems
Fizoptika VG910 Replacement

The MFOG-910 is designed to provide equivalent or superior performance compared to the Fizoptika VG910 fiber optic gyroscope.

Advantages include:
  • Comparable bias stability and random walk performance
  • Compatible angular rate measurement range
  • Compact and lightweight structure
  • Improved supply stability and reliability
  • Cost-effective alternative solution

This makes the MFOG-910 an excellent choice for customers seeking a reliable replacement for Fizoptika VG910 in inertial navigation and stabilization applications.

MFOG-910 vs VG910H1 Comparison
Parameter VG910H1 Fiber Optic Gyroscope MFOG-910 Micro-Nano Fiber Optic Gyroscope
Angular Rate Range (°/s)250±240
Bias Stability (RMS, °/h)1≤0.8
Angle Random Walk (°/√h)0.015≤0.02
Bandwidth (kHz)1≥1
Scale Factor Stability / Repeatability (RMS, %)0.02≤0.1
Start-up Time (s)0.03Fast start
Power Consumption (W)0.5≤1.5
Dimensions (mm)82 * 82 * 2082 * 82 * 19.5
Weight (g)150≤150
Operating Temperature (°C)−40 ~ +70−40 ~ +70
Storage Temperature (°C)−55 ~ +85−55 ~ +85
Vibration (RMS, 0.02-2 kHz, g)3020
Shock (g, 1 ms)1200≥1500
MTBF (20°C)100000 h≥100000 h
Lifetime15 years≥15 years
Frequently Asked Questions
MFOG-910 | VG910H1 Replacement
1. What is a fiber optic gyroscope?

A fiber optic gyroscope (FOG) is a high-precision angular rate sensor based on the Sagnac effect. It measures rotation by detecting the phase difference between two beams of light traveling in opposite directions inside a fiber coil. FOG sensors are widely used in inertial navigation systems, UAVs, robotics, and stabilization platforms.

2. Can MFOG-910 replace the VG910H1 fiber optic gyroscope?

Yes. The MFOG-910 micro-nano fiber optic gyroscope is designed to provide comparable performance to the VG910H1. It features similar angular rate range, bandwidth, size, and environmental specifications, making it suitable as a replacement in many inertial navigation and stabilization systems.

3. What are the advantages of fiber optic gyroscopes?

Fiber optic gyroscopes provide several advantages compared with mechanical gyroscopes and MEMS sensors:

  • No moving parts
  • High reliability and long service life
  • High precision and low drift
  • Strong resistance to vibration and shock
  • Wide operating temperature range

These characteristics make FOG sensors ideal for navigation and guidance applications.

4. What applications use fiber optic gyroscopes?

Fiber optic gyroscopes are widely used in:

  • UAV and drone navigation
  • Inertial Navigation Systems (INS)
  • Electro-optical stabilization platforms
  • Antenna stabilization systems
  • Autonomous vehicles and robotics
  • Marine navigation systems
  • Aerospace guidance systems
5. Why choose fiber optic gyroscopes for UAV navigation?

Fiber optic gyroscopes offer several advantages for UAV systems:

  • High precision attitude measurement
  • Fast response and high bandwidth
  • Excellent vibration resistance
  • Long-term stability during flight

These features make FOG sensors ideal for drone flight control and navigation systems.

6. How do fiber optic gyroscopes compare with MEMS gyroscopes?

Fiber optic gyroscopes generally provide:

  • Higher accuracy
  • Lower drift
  • Better long-term stability

MEMS gyroscopes are usually smaller and lower cost but are often used in lower-precision navigation systems.