Epitaxially-Encapsulated Quad Mass Gyroscope With Nonlinearity Compensation

2016 IEEE 29TH INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS (MEMS)(2016)

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摘要
We present an epitaxially-encapsulated 2x2 mar quad -mass gyroscope (QMG). Relative to the earlier QMG which measured 8x8 [1] and required an external vacuum package and getter [1]. this device is 16x smaller in area and is vacuum-sealed at the wafer-level. Due to the device's small size, high quality factor (Q) and large oscillation amplitude are required to achieve low noise. However, the device's high Q (85,000) makes it highly sensitive to mechanical nonlinearity, resulting in amplitude-frequency dependence and instability of the oscillator loop at large amplitudes. To overcome these problems, we demonstrate electrostatic compensation of the mechanical nonlinearity, enabling 10x greater amplitude and therefore scale factor (SF). Together with closed-loop amplitude control and quadrature compensation, this enables angle-random walk of 0.42 mdeg/s/root Hz, comparable to the best QMG published to date. Closed-loop amplitude control and quadrature null are used to achieve a bias instability of 1.6 deg/hr.
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关键词
epitaxially-encapsulated quad mass gyroscope,QMG,nonlinearity compensation,external vacuum package,external vacuum getter,vacuum sealing,wafer-level,quality factor,oscillation amplitude,mechanical nonlinearity,amplitude-frequency dependence,oscillator loop,electrostatic compensation,scale factor,closed-loop amplitude control,quadrature compensation,angle-random walk
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