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MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance

Wuhan Liocrebif Technology Co., Ltd
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    Buy cheap MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance from wholesalers
     
    Buy cheap MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance from wholesalers
    • Buy cheap MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance from wholesalers
    • Buy cheap MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance from wholesalers

    MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance

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    Brand Name : Liocrebif
    Certification : GJB 9001C-2017
    Price : 5000-25000CHY
    Delivery Time : 2-4 weeks
    Payment Terms : T/T
    Supply Ability : 10000
    Model Number : LKF-MSU204
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    MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance

    Essential details
    MOQ:1
    Size:L(4.7)*W(4.4)*H(1.4) cm
    Specification Number:LKF-MSU204
    Product Introduction
    Technical Characteristics
    High performance in very small size
    LKF-MSU204 is a High-performance MEMS inertial measurement unit with small volume and high overload resistance. LKF16488A has a built-in tri-axis gyro and tri-axis accelerometer for measuring the tri-axis angular rate and tri-axis acceleration of the carrier. It also has a built-in triaxial magnetometer and pressure sensor The gyro and accelerometer data with error compensation (including temperature compensation, installation misalignment angle compensation, nonlinear compensation, etc.) are output through the serial port according to the agreed communication protocol.
    High quality and reliability
    MSU204 adopts high-precision MEMS inertial devices from original big brand, has high reliability and stability, and can accurately measure the angular velocity and acceleration information of a moving carrier in harsh environments. It can be used for precise navigation, control and dynamic measurement of weapons.

    Autonomous Sensor System

    LKF-MSU204 is an autonomous sensor system. When there is an effective power supply, it will start automatically. After completing the initialization process, it starts sampling, processing and loading the calibrated sensor data into the output register, which can be accessed through the SPI port. SPI port is usually connected to compatible port of embedded processor.

    Table1 MSU204 Main Parameters

    Parameter

    Conditions

    MIN

    TYP

    MAX

    Unit

    Gyroscope

    Range

    -450

    +450

    °/s

    Bias instability

    Allan variance

    0.8

    1

    °/h

    Bias stability

    10s smoothing

    3

    5

    °/h

    Bias repeatability

    Constant temperature

    3

    5

    °/h

    Scale factor nonlinearity

    25

    50

    ppm

    RAW

    0.1

    0.2

    °/√h

    g-Dependent Term

    10

    °/h/g

    Cross-coupling

    0.001

    Rad

    Scale factor error

    0.1

    %FS

    bandwidths

    200

    Hz

    Accelerometer

    range

    -16

    +16

    g

    Bias instability

    Allan variance

    0.02

    0.03

    mg

    Bias stability

    10s smoothing

    0.05

    0.1

    mg

    Bias repeatability

    Constant temperature

    0.05

    0.1

    mg

    VRW

    0.02

    0.03

    m/s/√h

    Scale factor nonlinearity

    3000

    5000

    ppm

    Cross-coupling

    0.001

    Rad

    Bandwidth

    200

    Hz

    Magnetometer

    Range

    -8

    +8

    Gs

    Resolution

    200

    μGs

    Noise intensity

    50

    μGs

    Bandwidth

    200

    Hz

    Barometers

    Range

    300

    1100

    mbar

    Total error

    4.5

    mbar

    Absolute error

    1.5

    mbar

    Nonlinearity

    0.1

    %FS

    Resolution

    0.1

    mbar

    Interface

    SPI

    10

    MHz

    UART

    9.6

    460.8

    921.6

    kbps

    Electrical Characteristics

    Operating voltage

    3.0

    3.3

    3.6

    V

    Power consumption

    0.5

    W

    Ripples

    peak-to-peak ratio

    100

    mV

    Structural Properties

    Size

    47.0 × 44.0 × 14.0

    mm

    Weight

    50

    g

    Working Environment

    Operating temperature

    -40

    85

    Storage temperature

    -55

    85

    Vibration

    10-2000Hz, 6.06g

    Shock

    30g, 11ms

    Overloaded

    half-sine wave

    1000g

    Dependability

    MTBF

    20000

    h

    Continuous working time

    120

    h

    Table2 MSU204 Inertial Measurement Unit Connector External Pin Definitions

    PIN

    Name

    Type

    Descriptions

    10, 11, 12

    VDD

    Power Supply

    13, 14, 15

    GND

    Power Ground

    7

    DIO1

    Input/Output

    General purpose IO, configurable

    9

    DIO2

    Input/Output

    1

    DIO3

    Input/Output

    2

    DIO4

    Input/Output

    3

    SPI-CLK

    Input

    SPI master-slave mode is not configurable

    4

    SPI-MISO

    Output

    5

    SPI-MOSI

    Input

    6

    SPI-CS

    Input

    16

    UART-0-TXD

    Output

    UART0, for debugging only.

    17

    UART-0-RXD

    Input

    8

    RST

    Input

    Reset

    23

    VDD RTC

    Power Supply

    Unused

    22, 24, 18, 19, 20, 21

    NC

    Reservation

    Unconnected

    Main Features

    Triaxial digital gyroscope, range ±450°/s

    Triaxial digital accelerometer, range ±16g

    Digital barometric sensor, range 300mbar~1200mbar

    -40°C to +85°C full temperature calibration compensation (gyroscopes and accelerometers)

    SPI compatible

    Built-in temperature sensor

    Small size and light weight

    Compatible with ADIS16488A

    Applications

    Anti-vibration and attitude control of industrial equipment

    Automatic control

    Robot control

    Pan-tilt l stabilization and control

    Instrumentation

    Figure 1 Dimension
    MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance

    Figure 2 Pin Definition

    MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance
    MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance

    Quality MEMS Inertial Sense Imu Micro Inertial Measurement Unit Autonomous High Overload Resistance for sale
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