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Multi-axis chip-scale MEMS inertial measurement unit (IMU) based on frequency modulation

  • US 9,696,340 B2
  • Filed: 02/19/2016
  • Issued: 07/04/2017
  • Est. Priority Date: 01/28/2013
  • Status: Active Grant
First Claim
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1. A method of operation and compensation of a frequency modulation inertial measurement unit (FM IMU) comprising:

  • continuously or periodically driving an FM accelerometer comprising two tuning fork resonators into an anti-phase resonance by means of an electronic feedback system, which includes tracking of the resonant frequency, wherein each tuning fork resonator comprises a plurality of parallel plate electrodes;

    generating a measure of input acceleration of the FM IMU from the driven FM accelerometer as an FM signal of the accelerometer;

    demodulating the FM signal of the accelerometer to measure the input acceleration by using a phase locked loop (PLL), frequency counter, or zero crossing detection;

    periodically switching a DC bias voltage applied to the FM accelerometer parallel plate electrodes, which have opposite orientations and which are coupled to the accelerometer tuning forks between two fixed values to periodically switch the accelerometer scale factor (in Hz/g) between two different output values of equal magnitude but opposite polarity of an output signal; and

    signal processing the two output values of the output signal to decouple the effect of temperature and common mode errors from true acceleration, whereby intentional switching of the scale factor results in compensation of the FM accelerometer.

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