Two Axis Fiber Optic Gyroscope

Two Axis Fiber Optic Gyroscope

ER-DFOG-60 ( 0.1~1.0º/h)
1. Double-axis FOG;
2. Bias stability: 0.1~1.0º/h;
3. Small size: 108mm×108mm×76mm.

Two Axis Fiber Optic Gyroscope

Two Axis Fiber Optic Gyroscope

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Introduction

Low Cost Two Axis Fiber Optic Gyroscope

ER-DFOG-60 Low Cost Two Axis Fiber Optic Gyroscope is an important angular rate sensor, which has the characteristics of long life, fast start up, high precision, lower power consumption, wide dynamic range and so on. The FOG gyros can determine the orientation of moving objects. As an inertial navigation instrument, it has been widely used in platform stability, inertial navigation system (INS), unmanned vehicle and servo tracking.

Applications

Servo tracking、medium precision INS、platform stability

High-speed rail track detection、photoelectric pod

Satellite communications

On-the-move (SOTM)

Unmanned vehicle

Specifications

ItemsUnitER-DFOG-60AER-DFOG-60BER-DFOG-60CER-DFOG-60D
Measuring rangeº/s-600~600-600~600-600~600-600~600
Bias stabilityº/h≤0.1≤0.3≤0.5≤1.0
Bias repeatabilityº/h≤0.1≤0.3≤0.5≤1.0
Random walk coefficientº/√h≤0.01≤0.03≤0.05≤0.1
Scale factor non-linearityppm≤ 50≤ 60≤70≤100
Scale factor repeatabilityppm≤ 50≤ 60≤70≤ 100
Scale factor symmetryppm≤ 50≤ 60≤ 70≤100
Start times≤ 1≤ 1≤ 1≤ 1
BandwidthHz>200>200>200>200
Power supplyV-5~+5-5~+5-5~+5-5~+5
PowerW≤ 15≤ 15≤ 15≤ 15
Operating temperature-40~+65-40~+65-40~+65-40~+65
Storage temperature-45~+85-45~+85-45~+85-45~+85
Vibration/2g (RMS), 20Hz~2000Hz
Shock/40g, 1ms40g, 1ms40g, 1ms40g, 1ms
Output method/RS-422RS-422RS-422RS-422
Connector/J30J-15TJLJ30J-15TJLJ30J-15TJLJ30J-15TJL

Note: Unfilled dimensional tolerances are performed in accordance with GB/T 1804-2000 Class C.


Application Techniques

1.Do You Know Fiber Optic Gyroscope and Its Typical Applications?

2.Fiber Optic Gyroscope Development Trend

3.Detailed Explanation of FOG Parameters

4.MEMS Gyro Whether Can Replace FOG Technology

5.Questions of FOG North Seeking Gyro and Continuous North Seeking Gyro

6.MEMS and FOG: How Should you Choose Inertial Navigation System?


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