IF2700 High Performance Fiber Optic Inertial Navigation System FOG INS GNSS Integrated Navigation

The IF2700 fiber optic inertial navigation system is a small fiber optic combination inertial navigation system composed of a three-axis integrated fiber optic inertial IMU and satellite navigation system. It is used to measure the position, velocity, and attitude of the carrier in three directions, while outputting the angular velocity and acceleration of the three axes. Fiber optic inertial navigation includes a three-axis integrated fiber optic gyroscope and a three-axis integrated MEMS accelerometer. The accelerometer is sensitive to and measures the three-axis acceleration signal of the carrier, while the gyroscope is sensitive to and measures the three-axis angular velocity signal of the carrier. After compensation and calculation, the position, velocity, and attitude of the carrier are obtained; At the same time, Kalman filtering is used to effectively integrate INS and GNSS information, obtaining optimal estimates of position, velocity, and attitude, and improving the reliability and stability of fiber optic inertial navigation.

  • Part No, :

    IF2700
  • Order(MOQ) :

    1
  • Product Description

Product Series and Parameters

 

IF2700-A

IF2700-B

Unit

Fiber optic gyro parameters

dynamic range

±500

±500

°/s

Zero bias stability

≤0.2

≤0.1

°/h (1 σ,10s)

Zero bias repeatability

≤0.2

≤0.1

°/h (1 σ,10s)

Scale factor repeatability

≤100

≤100

ppm

Scale factor nonlinearity

≤100

≤100

ppm

Random walk coefficient

≤0.05

≤0.05

° /h1 /2

Bandwidth

≥400

≥400

Hz

MEMS Accelerometer parameters

Bias Stability

(Room temperature, 100s, 1 σ)

≤0.1

≤0.1

mg

 bias repeatability

 (Room temperature)

≤0.1

≤0.1

mg

dynamic range

±20

±20

g

Scale factor nonlinearity (1 σ)

≤100

≤100

ppm

Integrated navigation parameters

Initial alignment time

(after initial position binding)

≤10min

Heading accuracy

Initial self-alignment 1°/h (1σ)

Maintain 0.5°/h (1σ)

Heading accuracy (GPS effective)

When combining dual antenna GNSS: 0.2 °/L, L is the baseline length

Speed accuracy(1 σ)

0.2 m/s

Horizontal position

3m (1σ, satellite single point positioning)

0.1m (1σ, satellite RTK differential positioning accuracy 0.05m

Height

10m (1σ, satellite single point positioning)

0.2m (1σ, satellite RTK differential positioning accuracy: 0.05m) 0.05 (°)/h1/2

Data output rate

100Hz

Other parameters

External dimensions

70*65*54

mm

Start time

1

min

Weight

500

g

Power input

+12~+36

V

Working temperature

-40~+60

Storage temperature

-55~+85

Power ripple (Vpp)

50

mV

Maximum power consumption

< 8

W

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 


Production process


Product dimension

FOG INS

 


Application Scenarios

FOG INS application
The FOG-based INS (Inertial Navigation System) is suitable for high-accuracy navigation and guidance scenarios such as UAV/VTOL and aircraft navigation, vehicle/ship attitude & heading reference and GNSS/INS integrated navigation, antenna/radar/electro-optical stabilization platforms, and survey-grade mobile mapping & georeferencing—delivering ultra-low drift, excellent bias stability, and strong vibration/EMI robustness for long-duration and demanding environments.
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MEMS accelerometer for UAV
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