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Low Drift MEMS Vertical Reference Gyro For Antenna / Camera Stabilization VG100

Categories Vertical Reference Gyro
Brand Name: SkyMEMS
Model Number: VG100
Certification: CE, FCC, ROHS
Place of Origin: Nanjing, Jiangsu
MOQ: 1PCS
Price: discuss personally
Payment Terms: Western Union, MoneyGram, L/C, T/T, D/A, D/P
Supply Ability: 1000PCS for month
Delivery Time: 3-5 days after payment
Packaging Details: Strong cartn with PET strap for VG100 Vertical Reference Gyro
High Performance Vertical Reference Gyro: Yes
Pitch Accuracy:
Roll Accuracy:
Resolution: 0.1°
Tilt Range: Pitch ± 90º, roll ± 180º
Application: Antenna and Camera Stabilization
Ruggedized Enclosure: IP67
Power supply: DC +5V or 11-35V
Dimensions: L59 x W37 x H22.6mm
Weight: 60g
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    Low Drift MEMS Vertical Reference Gyro For Antenna / Camera Stabilization VG100

    Low Drift MEMS Vertical Reference Unit Vertical Reference Gyro for Antenna and Camera Stabilization VG100


    Product Description

    VG100 vertical gyroscope is a low cost, high performance inertial measurement device, which is used for measuring the attitude parameters (roll and pith) as well as angular velocity and acceleration of carriers in motion. The equipment adopt high-quality and reliable MEMS accelerometer and gyroscope and optimal algorithm to guarantee accuracy.

    Deviation of attitude and angular velocity can be estimated optimally by 6-state Kalman filtering with appropriate gain. It is a product applicable to dynamic measurement of navigation and positioning. With nonlinear compensation, perpendicular compensation, temperature compensation, and drift compensation, etc., the error sources of VG100 can be significantly eliminated so as to improve the overall accuracy. Its interfaces has digital interfaces, AC/DC interface, etc., it is easy for VG100 to be integrated into the system.


    Main Features

    - High Performance Vertical Gyro, dynamic/static measuremen

    - Fully temperature compensated over entire operational range

    - IP67 protection

    - Pitch accuracy 2°, Roll accuracy 2°, resolution: 0.1°

    - Nonlinear compensation, perpendicular compensation

    - High performance Kalman filtering algorithm

    - Wide operating temperature: -40~+85℃

    - Small size: L59mm×W37mm×H22.6mm (customizable)


    Typical Application

    VG100 Vertical Reference Gyro delivers a high performance cost-effective solution that

    meets the demanding environmental requirements for operation

    in control, navigation and stabilization systems, it has been widely applied in the following solutions, such as:

    • platform stabilization

    • Antenna and Camera stabilization

    • Ground Vehicle Navigation


    Technical Specifications

    Technical Specs
    Attitude parameterspitch accuracy
    Roll accuracy
    Resolution0.1°
    Tilt marginPitch ± 90º, roll ± 180º
    Physical propertiesDimensionL59 x W37 x H22.6 (mm)
    Weight60 g
    RS-232/RS485 interface connector5 pins
    Interface characteristicsStart-up delay<50 ms
    Maximum sampling rate50 times/s[2]
    Serial port communication rate2400~115200 baud rate
    Digital output formatBinary high performance protocol
    Power supplyVoltageDC +5V
    Current (max)40mA
    Operation mode30mA
    EnvironmentStore range-40℃~+125℃
    Operation temperature-40℃~+85℃
    Shock resistance3000g

    Competitive Advantages

    High Performance Vertical Reference Gyro

    - Advanced MEMS Sensors

    - High MTBF

    - Digital RS232/RS485 Outputs

    - Environmentally sealed (IP67), compact design

    - High shock resistance

    - Full tests and individual calibration from -40 to 85°C

    - High cost effective


    FAQ

    What is Allan variance?

    The “Allan Variance” was named after Dr. David Allan who worked out a method of characterizing noise and stability in clock systems. It is a method which analyzes a time sequence and pulls out the intrinsic clock noise from a system, as a function of the

    averaging time. The Allan variance was developed for clocks, but it can easily be adapted for any other type of output [9]. The computation of Allan variance starts by taking a long

    sequence of data and dividing it into bins based on an averaging time.

    Quality Low Drift MEMS Vertical Reference Gyro For Antenna / Camera Stabilization VG100 for sale
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