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Inertial Navigation System
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High Accuracy Inertial Navigation System Three-Axis MEMS Gyro GI300F-A0-DGI

High Accuracy Inertial Navigation System Three-Axis MEMS Gyro GI300F-A0-DGI

Brand Name: AVIC
Model Number: GI300F-A0-DGI
MOQ: 1
Price: negotiable
Payment Terms: T/T
Supply Ability: 500/month
Detail Information
Place of Origin:
CHINA
Certification:
CE ROHS
Product Name:
INS With GNSS
Gyro Range:
±400°/s
Gyro Zero Bias Stability:
≤0.3°/h
Accelerometer Range:
±20g
Accelerometer Zero Bias Stability:
≤100µg
Voltage:
9-36V DC
Interface:
2 RS 232,1-RS 422,1- PPS
Operating Temperature:
-40℃~+60℃
Storage Temperature:
-45℃~+70℃
Life Span:
> 15 Years
Packaging Details:
sponge+carton
Supply Ability:
500/month
Highlight:

GI300F-A0-DGI Inertial Navigation System

,

High Accuracy Inertial Navigation System

Product Description

High Accuracy Inertial Navigation System Three-Axis MEMS Gyro GI300F-A0-DGI

 

Product Description

 

The fiber optic integrated navigation system GI300F-A0-DGI consists of a cost-effective three-axis closed-loop fiber optic gyroscope, accelerometer, and navigation board card. It is implemented through multi-sensor fusion and navigation calculation algorithms, meeting the precise measurement requirements for attitude, heading, and position information in applications such as high-precision mobile measurement systems and medium to large unmanned aerial vehicles.

 

Main Function

 

  • The system has inertial/satellite integrated navigation mode and pure inertial mode.
  • In the inertial/satellite integrated navigation mode, the satellite positioning information received by the internal GNSS receiver can be used for integrated navigation, and the pitch, roll, course, position, speed, time and other information of the carrier can be output; After the signal is lost, the position, velocity and attitude of the inertial solution are output, in which the pitch and roll are required to be kept accurate, with a certain course keeping function in a short time and meter-level positioning accuracy in a short time.
  • After the pure inertial mode (that is, GPS fusion has never been performed after power-on, and if it loses lock again after fusion, it belongs to the integrated navigation mode) is started, it has accurate attitude measurement function, can output the pitch and roll heading, and the pure inertial mode can find the north statically.

 

Index Parameter

 

Project Test conditions Indicators
Positioning accuracy GNSS Valid, Single Point 1.5m
GNSS Valid, RT K 2cm+1ppm
Pure inertial horizontal positioning holding 80m/5min(CEP)
500m/10min(CEP)
1.5nm/30min(CEP)
Horizontal positioning holding accuracy 0.8nm/30min (CEP)
Heading accuracy Single antenna (RMS) 0.1°
Dual Antenna (RMS) 0.2 °/L (L = baseline length) (RMS)
Course Keeping (RMS) 0.2°/30min(RMS),0.5°/h
Self-north seeking accuracy (RMS) 0.2 ° SecL,15 min
1.0 ° SecL, 5-10 min
Attitude accuracy GNSS is valid 0.02°(RMS)
Attitude hold (GNSS failure) 0.2°/30min(RMS),0.5°/h(RMS)
Speed accuracy GNSS valid, single point L1/L2 0.1m/s(RMS)
Gyroscope Measuring range ±400°/s
Zero bias stability ≤0.3°/h
Accelerometer Measuring range ±20g
Zero bias stability ≤100µg
Physical dimensions and electrical characteristics Voltage 9-36V DC
Power consumption ≤ 12W (steady state)
Interface 2 RS 232,1-RS 422,1- PPS
Dimension/L*W*H/mm 92.0 *92.0*90.0
Weight ≤1.0kg
Environmental characteristics Operating temperature -40℃~+60℃
Storage temperature -45℃~+70℃
Vibration 5 ~ 2000Hz, 6.06 G
Impact 30g, 11 ms (with shock)
Life span > 15 years
Continuons operating hours > 24 hours

 

Dimensions

 

High Accuracy Inertial Navigation System Three-Axis MEMS Gyro GI300F-A0-DGI 0

                         L92.0mm x W92.0 mm x H90.0mm(L x W x H)

 

High Accuracy Inertial Navigation System Three-Axis MEMS Gyro GI300F-A0-DGI 1High Accuracy Inertial Navigation System Three-Axis MEMS Gyro GI300F-A0-DGI 2High Accuracy Inertial Navigation System Three-Axis MEMS Gyro GI300F-A0-DGI 3