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High Sensitivity Fiber Optic Gyroscope Accurate With Dual Module Integration

High Sensitivity Fiber Optic Gyroscope Accurate With Dual Module Integration

High Sensitivity Fiber Optic Gyroscope

High Sensitivity fiber optic gyro

Accurate Fiber Optic Gyroscope

Place of Origin:

China

Brand Name:

Liocrebif

Certification:

GJB 9001C-2017

Model Number:

LKF-F3G70

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Product Details
Color&Classification:
LKF-F3G70
Dimensions:
6.1±0.01×6.1±0.01×2.8±0.01cm
Module Type:
Gyroscope
Brand:
LIOCREBIF
Application:
Medium-high Precision Inertial Navigation System, Positioning And Orientation System, Servo Stabilization System
Electricity:
RS422
Original Place:
China
Highlight:

High Sensitivity Fiber Optic Gyroscope

,

High Sensitivity fiber optic gyro

,

Accurate Fiber Optic Gyroscope

Payment & Shipping Terms
Minimum Order Quantity
1
Price
5000-25000CHY
Packaging Details
Wooden box/Cardboard box/Container
Delivery Time
2-4 weeks
Payment Terms
T/T
Supply Ability
10000
Product Description
Essential details
MOQ:1
Size:6.1±0.01×6.1±0.01×2.8±0.01cm
Specification Number:LKF-F3G70
Product Introduction

 

Introduction

LKF-F3G70 three-axis fiber optic gyroscope is an inertial angular rate sensor based on the optical Sagnac effect, designed to measure the angular velocity of the carrier along the product's sensitive axis. The angular velocity sensing unit of this product is an optical fiber ring. It employs a digital closed-loop detection circuit to extract the path difference of light propagating clockwise and counterclockwise caused by external physical angular velocity, which is sensitive to the optical fiber ring. Simultaneously, the path difference signal is converted into a voltage signal for closed-loop feedback and control, achieving signal modulation and demodulation to realize high-precision angular velocity signal detection.

 

 

Table 1  Performance parameters of LKF-F3G70 Three-axis FOG

No.

Test items

Unit

Technical Requirement

1

Start-up time

s

5

2

Bias stability at normal temperature (10 s smoothing)

(°)/h

0.05

0.03

3

Bias stability at variable temperature (1°C/min temperature change, 100 s smoothing)

(°)/h

0.03

0.03

4

Bias repeatability

(°)/h

0.015

0.015

5

Bias magnetic sensitivity

(°)/h/Gs

0.01

6

Random walk coefficient

(°)/h^1/2

0.003

7

Scale factor nonlinearity

ppm

10

8

Scale factor asymmetry

pp

5

9

Scale factor repeatability

ppm

≤10

10

Threshold

(°)/h

0.015

11

Resolution

(°)/h

0.015

12

Bandwidth

Hz

200

13

Operating temperature

-45~+70

14

Storage temperature

-55+85

15

Dynamic range

(°)/s

±300

16

Supply voltage

V

+5

17

Room temperature steady-state power consumption

W

4

18

Full temperature range steady-state power consumption

W

8

19

Startup transient current

A

2

 

 

 Table 2  The Electrical Interface Of The Gyroscope Uses J30JZLN9ZKCA000 Connector

No.

Definition

Notes

1

+5V

Power supply input

2

GND

Power supply ground

3

Reserved

--

4

RXD+

Gyro differential select positive

5

TXD+

Gyro RS422 output positive

6

+5V

Power supply input

7

GND

Power supply ground

8

RXD-

Gyro differential select negative

9

TXD-

Gyro RS422 output negative

 

 

Main Features

Dual-module integration

Multi-parameter synchronous output

Optical inertial sensing

 

Application

Medium-high precision inertial navigation system

Positioning and orientation system

Servo stabilization system

 

Fig. 1 Dimensions of the external structure
  High Sensitivity Fiber Optic Gyroscope Accurate With Dual Module Integration 0   High Sensitivity Fiber Optic Gyroscope Accurate With Dual Module Integration 1
 
 
High Sensitivity Fiber Optic Gyroscope Accurate With Dual Module Integration 2  High Sensitivity Fiber Optic Gyroscope Accurate With Dual Module Integration 3
 
 
 
 
 

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