High Precision Navigation Mems Imu

High Performance 2-Axis MEMS Gyro

ER-2MG-06
1. Smallest Size;
2. Bias Instability(1σ 25℃): 0.03-0.05º/h;
3. Light Weight.

High Performance 2-Axis MEMS Gyro

High Precision Navigation Mems Imu

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    Introduction

    ER-2MG-06  High Performance 2-Axis MEMS Gyro

    Introduction
    The ER-2MG-06 High Performance 2-Axis MEMS Gyro has small volume, light weight, simple structure and good reliability. The biggest function of the 2-axis gyroscope is to "measure the angular velocity to judge the motion state of the object, so it is also called a motion sensor". In other words, this thing can let our equipment know where we are and where we are going. "

    Applications
    Integrated Navigation Systems & Inertial Guidance System
    Flight Control & Guidance System
    Attitude Heading Reference Systems (AHRS)
    Stabilization of Antennas, Cameras & Platforms

    Specifications

    Parameter ER-2MG-06A ER-2MG-06B Unit
    Range 300 400 deg/s
    Scale Factor at 25°C 28000 20000 LSB/deg/s
    Scale Factor Repeatability (1σ) <50 <20 ppm
    Scale Factor VS Temperature (1σ) ±300 ±100 ppm
    Scale Factor Non-Linearity (1σ) <300 <100 ppm
    Bias Instability(1σ 25℃) 0.03 0.05 deg/hr
    Bias stability (10s 1σ) <0.15 <0.5 deg/hr
    Angular Random Walk <0.01 <0.025 °/ √h
    Bias Repeatability(1σ 25℃) <0.3 <0.3 deg/hr
    Size 38.6mm*44.8mm*25.5mm
    Weight ≤70g
    Operate temperature -40~+80
    Storage temperature -55~+105

    Dimension

    Dimension of High Performance 2-Axis MEMS Gyro


    Application Techniques

    1.Impact resistance technology of MEMS gyroscope

    2.Bandwidth test method of MEMS gyroscope

    3.Packaging of MEMS gyroscope: Structural Analysis of Deep Hole Packaging

    4.Error Analysis of MEMS Gyroscope

    5.The analysis of damping in MEMS gyroscope

    6.Error Generation Mechanism of MEMS Gyroscope Under High Acceleration Condition


    Application Techniques

    1.Research on driving mode of MEMS gyroscope

    2.Research on scale factor nonlinearity of MEMS gyroscope

    3.Packaging of MEMS gyroscope: Structural Analysis of Deep Hole Packaging

    4.Bias Temperature Compensation Analysis of MEMS Gyroscope

    5.Error Analysis of MEMS Gyroscope

    6.The analysis of damping in MEMS gyroscope


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