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szczegółowe informacje o produktach

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High Dynamic Range Fog Gyroscope Sensor with RS422 Digital Communication

High Dynamic Range Fog Gyroscope Sensor with RS422 Digital Communication

Nazwa marki: AVIC
Numer modelu: F60
MOQ: 1
Warunki płatności: L/C, T/T
Zdolność do zaopatrzenia: 500/miesiąc
Szczegółowe informacje
Place of Origin:
CHINA
Orzecznictwo:
CE
Skala:
±400~±800°/sek
Stabilność zerowego przesunięcia:
≤ 0,06°/godz.
Współczynnik błądzenia losowego:
≤0,006% √h
Współczynnik skali Nieliniowy:
≤ 50 ppm
Pasmo:
>200 Hz
Zasilanie:
±5V
Interface:
RS-422
Wielkość:
Φ60×32mm
Szczegóły pakowania:
gąbka/pudełko
Możliwość Supply:
500/miesiąc
Opis produktu

High Dynamic Range Fog Gyroscope Sensor with RS422 Digital Communication​

 

High Dynamic Range Fog Gyroscope Sensor with RS422 Digital Communication 0

 

PRODUCT DESCRIPTION

 

 This product is an inertial angular rate sensor based on the optical Sagnac effect, which is used to measure the angular rate of the carrier along the sensitive axis of the product. The angular rate sensing unit of the product is an optical fiber ring, and a digital closed-loop detection circuit is adopted to extract the optical path difference of clockwise and anticlockwise propagating light caused by the external physical angular rate, which is sensed by the optical fiber ring,At the same time, the voltage signal converted from the optical path difference signal is used for closed-loop feedback and control to realize the modulation and demodulation of the signal and achieve the purpose of angular velocity signal detection.

 

Composition

 

a) The optical path unit comprise an SLD light source, an optical fiber re, an integrated optical phase modulator, an optical fiber coupler and an optical detector;

b) The circuit unit comprises a light source driving circuit and a detection and control signal circuit board;

c) Gyroscope structural parts.

 

 

Product structure and features


The gyroscope structure adopts a typical optical fiber ring structure design scheme, and from the miniaturization integrated design, structural stability (resistance to shock and vibration), anti-resonance, structural symmetry, ease of installation and thermal design (temperature Characteristics) and other aspects were considered, and the existing structure of the gyro was optimized and designed.

Product Usage


The F60 fiber optic gyroscope has the characteristics of long life, strong shock and vibration resistance, large measurement range, high bandwidth, instant start, no drift caused by acceleration, and wide accuracy coverage. It can be widely used in ships, aircraft, and vehicles and Robot navigation, positioning and orientation, stability control and other fields.

Gyro working power supply


±5V power supply, power supply accuracy 5%, power supply ripple not more than 20mV. The maximum impulse current of the full temperature power supply is 1.5A. The steady-state power consumption at room temperature is not more than 2.5W, and the steady-state power consumption at full temperature is not more than 5W.

 

Main Parameters

 

Project unit F60A F60B F60C F60D
Measuring range º/s ±400~±800
Zero offset stability º/h 0.06 0.1 0.3 1.5
Zero bias repeatability º/h 0.06 0.1 0.3 1.5
Random walk coefficient º/√h 0.006 0.01 0.03 0.5
Scale factorNonlinear ppm 50 60 70 150
Scale factorRepeatability ppm 50 60 70 150
Scale factorAsymmetry ppm 50 60 70 150
Start Time s 1
bandwidth Hz >200
power supply V -5,+5
power W 6
Operating temperature ºC -40~+65
storage temperature ºC -45~+85
vibration Hz,g2/Hz 20~2000,0.06
Shock g,ms 30,11
Data refresh rate Hz 200~2000
Baud rate bps 115200~921600
outputmethod / Broadcast (default) / triggered (custom)
Interface level / RS-422
Connector / J30J-15TJL
shape size mm Φ60×32

 

Dimension

 

High Dynamic Range Fog Gyroscope Sensor with RS422 Digital Communication 1

 

Main Application Fields

 

High Dynamic Range Fog Gyroscope Sensor with RS422 Digital Communication 2

High Dynamic Range Fog Gyroscope Sensor with RS422 Digital Communication 3High Dynamic Range Fog Gyroscope Sensor with RS422 Digital Communication 4