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Built In MEMS Gyroscope IMU Inertial Measurement Unit Based On MEMS

Shenzhen Fire Power Control Technology Co., LTD
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    Buy cheap Built In MEMS Gyroscope IMU Inertial Measurement Unit Based On MEMS from wholesalers
     
    Buy cheap Built In MEMS Gyroscope IMU Inertial Measurement Unit Based On MEMS from wholesalers
    • Buy cheap Built In MEMS Gyroscope IMU Inertial Measurement Unit Based On MEMS from wholesalers

    Built In MEMS Gyroscope IMU Inertial Measurement Unit Based On MEMS

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    Brand Name : Firepower
    Model Number : IMU200B
    Certification : CE ROHS
    Payment Terms : T/T
    Supply Ability : 200/month
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    Built In MEMS Gyroscope IMU Inertial Measurement Unit Based On MEMS

    Inertial Measurement Unit (IMU) Based On Micromachining Technology (MEMS) With Built-In High-Performance MEMS Gyroscope


    The IMU200B-IMU is an inertial measurement unit (IMU) based on micromachining technology (MEMS) with built-in high-performance MEMS gyroscope and MEMS accelerometer, which outputs 3 angular velocities and 3 accelerations.

    The IMU200B-IMU features high reliability and strong environmental adaptability. By matching different software, the product can be widely used in tactical and industrial UAV, smart ammunition, seeker and other fields.

    Product features

    1. Three-axis digital gyroscope:
      1. ± 500º/s dynamic measuring range;
      2. Zero bias stability: 8 °/H (GJB, 10s), 1.9 °/H (ALLAN);
    2. Triaxial digital accelerometer:
      1. ± 16 G dynamic measuring range;
      2. Zero-bias stability: 0.5mg (GJB, 10s), 0.1mg (ALLAN);
    3. High reliability: MTBF > 20000h;
    4. Guaranteed accuracy within the full temperature range (-40 ℃ ~ 80 ℃): built-in high-performance temperature calibration and compensation algorithm;
    5. Suitable for working under strong vibration conditions;
    6. Interface 1-way RS422

    Test conditions

    Typical value

      Angular velocity
        Zero biasStability10 s average, + 70 ℃, + 20 ℃, -40 ℃
        Allan variance, + 20 ℃2.853.8
        Repeatability of successive starts
        1. ℃,+20℃,-40℃
        22.530
        Daily start repeatability
        1. ℃,+20℃,-40℃
        4560
        Monthly Start Repeatability
        1. ℃,+20℃,-40℃
        90120
        Zero-bias total temperature variation-40 ℃ ~ + 70 ℃, 1 ℃/min, 10 s average, 1σ0.030.04
        Zero biasLife-cycle change, accelerated testing0.2250.3
        Scale factorRepeatability of successive starts
        1. ℃,+20℃,-40℃
        150200
          Daily start repeatability
          1. ℃,+20℃,-40℃
          300400
            Monthly Start Repeatability
            1. ℃,+20℃,-40℃
            600800
              Non-linearity
              300400
                Full temperature change
                1. ℃/min,1σ
                600800
                  Scale factorLife-cycle change, accelerated testing45006000
                    Acceleration sensitive term
                    Random walk°/√hr
                    Noise density°/s/√Hz
                    Bandwidth
                    Data delayExcluding transmission time
                          Zero biasStability10 s average, + 70 ℃, + 20 ℃, -40 ℃
                            Allan variance, + 20 ℃
                              Repeatability of successive starts
                              1. ℃,+20℃,-40℃
                                Daily start repeatability
                                1. ℃,+20℃,-40℃
                                  Monthly Start Repeatability
                                  1. ℃,+20℃,-40℃
                                    Zero-bias total temperature variation-40 ℃ ~ + 70 ℃, 1 ℃/min variation
                                      Zero biasLife-cycle change, accelerated test instead
                                        Scale factorRepeatability of successive starts
                                        1. ℃,+20℃,-40℃
                                          Daily start repeatability
                                          1. ℃,+20℃,-40℃
                                            Monthly Start Repeatability
                                            1. ℃,+20℃,-40℃
                                              Non-linearity
                                                Full temperature change

                                                After full temperature calibration and compensation,

                                                1 ℃/min, 10 s average peak-peak value

                                                  Scale factorLife-cycle change, accelerated test instead
                                                    Bandwidth
                                                    Data delayExcluding transmission time
                                                      Start timeTime from power up to output valid data
                                                        Reset timeTime from reset to output valid data (hard reset)
                                                          Time from reset to output valid data (soft reset)

                                                            3 gyro axes and 3 acceleration axes

                                                            The degree of nonorthogonality between any two ax

                                                            1. ℃,+20℃,-40℃
                                                            Power supply
                                                              Power consumption
                                                                Communication update rate1-way RS422

                                                                200 (default)

                                                                500 (Max)

                                                                Communication baud rate1-way RS422

                                                                230.4 (default)

                                                                921.6 (Max)

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