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Nanjing Sky MEMS Technology Co.,Ltd.
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FOG900 Three Axis Gyroscope , 3 Axis Gyro For Aircraft Flight Stabilizer

Nanjing Sky MEMS Technology Co.,Ltd.
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Nanjing Sky MEMS Technology Co.,Ltd.
City: Nanjing
Province/State: Jiangsu
Country/Region: China
Tel: +86-25-83356968
Contact Person:
Mr David zhu

FOG900 Three Axis Gyroscope , 3 Axis Gyro For Aircraft Flight Stabilizer

Brand Name : SkyMEMS
Model Number : FOG900
Certification : CE, FCC, ROHS
Place of Origin : Nanjing, Jiangsu
MOQ : 1PCS
Price : discuss personally
Payment Terms : Western Union, MoneyGram, L/C, T/T, D/A, D/P
Supply Ability : 1000PCS for month
Delivery Time : 3-5 days after payment
Packaging Details : Strong carton with PET strap for FOG800 Fibre Optic Gyroscope
High Performance Fibre Optic Gyroscope : Yes
Axis Qty. : 3
Normal temperature zero bias stability (25°C) : < 0.01°/h (1σ, 10s smoothing 1h test result)
Full temperature zero bias stability : < 0.01°/h (1σ)
Normal temperature zero bias repeatability : <0.01°/h (1σ, calculated by 6 times measurements data)
Full temperature zero bias repeatability : <0.01°/h (Extremism difference over full temperature)
Dynamic range : ≥±100°/s (support customer-oriented design)
Scale factor repeatability (fixed temperature) : < 50 ppm (angular rate≥1°/s)
Size : 295mm x 212.5mm x 151mm (LWH)
Weight : <8.0kg
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Competitive Fiber Optic Gyro Price Tripple Axes Fibre Optic Gyroscope for Aviation FOG900

Product Description

FOG900 Three Axes Fiber Optic Gyroscope is based on state-of- the-art Fiber Optic Gyroscope technology offers a highly reliable and cost effective solution for both commercial and military vessels and other applications. It gives an accurate, real-time reading of true North as well as control of attitude without need of GPS.

FOG900 enjoys compact size, high update rate for closed loop beam pointing control, low angle random walk (ARW) to mitigate the effects of platform jitter, and low bias drift to enable accurate pointing during platform slew maneuvers.


Main Features

- High Performance Triaxial Fiber Optic Gyro

- Higher Accuracy, Lower Noise and Greater Efficiency

- Zero bias stability < 0.01°/h

- Dynamic range ≥±100°/s (support customer-oriented design)

- Scale factor non-linearity < 50 ppm (angular rate≥1°/s)

- Resolution< 0.5°/h

- Bandwidth≥200Hz

- Low power consumption

- Qualified for Critical Safety Avionics Application

- Individually calibrated, real actual precision

- Extremely reliable in harsh environment


Typical Application

FOG900 is a High Precision FOG (Fiber Optic Gyro), it has been widely applied in the following solutions, such as:

- Tactical Grade Applications

- Precision payload pointing and stabilization

- High performance bus attitude control

- Low drift, low noise applications

- Weapon Platform Stabilization

- Aeronautics and Aviation


Technical Specifications

Technical Specs
NameTechnical SpecsValue
Gyro Performance SpecsNormal temperature zero bias stability (25°C)< 0.01°/h (1σ, 10s smoothing 1h test result)
Full temperature zero bias stability< 0.01°/h (1σ)
Normal temperature zero bias repeatability<0.01°/h (1σ, calculated by 6 times measruements data)
Full temperature zero bias repeatability<0.01°/h (Extremum difference over full temperature, without calibration)
Absolute zero point±0.03°/h
Dynamic range≥±100°/s (support customer-oriented design)
Scale factor non-linearity<500 ppm (angular rate≥1°/s)
Scale factor repeatability (fixed temperature)< 50 ppm (1σ)
Bandwidth≥200Hz
Resolution< 0.5°/h
Random walk< 0.005°/ hr1/2
Accelerometer Performance SpecsFull temperature zero bias stability<50ug (1σ, 10s smoothing 1h test result)
Full temperature zero bias repeatability<50ug (Extremum difference over full temperature)
Range≥±30g (support customer-oriented design)
Scale factor non-linearity<300 ppm
Scale factor repeatability (fixed temperature)< 100 ppm (1σ)
Electronic performance and communication portInitialization time<3s
Communication portfull duplex RS422, with pps synchronization input/output function
RS422 baud rateoptional (default 230.4kbps, maximum 921.6kbps)
Data refreshing periodoptional (default 0.5ms, it can adopt external synchronization mode)
Physical characteristicsSize295mm x 212.5mm x 151mm (LWH)
Installation size278mm x 198mm, 4 M6 screws
Weight<8.0kg
Power consumption< 20W
Power supply±24V (+12~+32V), optional: +12V (+6~+30V)
Environment parametersWorking temperature-45°C~+60°C
Storage temperature-55°C~+75°C
Shock resistance100g (11ms)
Vibration resistanceFlying vibration radom spectrum line (6.06g)
MTBF≥20000hours

Competitive Advantages
High Performance Tripple Axis Fibre Optic Gyroscope
- Excellent reliability – 20,000 hours MTBF
- Insensitive to vibration and linear acceleration
- Low noise, high bandwidth
- Digital or analog output
- High cost effective FOG solution


FAQ
What is Optical Gyroscope Technology?

What is Basic Theory of Fiber Optic Gyros?

There are currently two main classes of fiber optic gyres under development, the interferometric fiber optic gyro (IFOG) and the resonant fiber optic gyro (RFOG). The latter of these, the RFOG,

has received less attention to date and, though it appears to offer better potential accuracy, is the less mature technology. RFOG devices closely resemble ring laser gyros. They require a narrowband light source and rely on an optical cavity. The cavity is formed from optical fiber tuned so that only one frequency of light will propagate. Applied rotations change the wavelength and hence the frequency of the light which will propagate.


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