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A -Axis Quartz Tuning Fork Micromachined Gyroscope Based on Shear Stress Detection

机译:基于剪切应力检测的A轴石英音叉微机械陀螺仪

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摘要

This paper proposes a novel quartz micromachined gyroscope. The structure is designed by using shear stress detection method which can simplify the sidewall electrodes obviously. Furthermore, a tuning fork is introduced by the structure to obtain better differential vibrations. In order to increase the sensitivity of the sensor, the sense beam is designed to be a symmetric tapered beam. The device was fabricated using quartz anisotropic wet etching process. The drive mode frequency is 14.99 kHz, and the quality factor is 7600 in air. The sense mode frequency is 14.25 kHz, and the quality factor is 600 in air. Therefore, this gyroscope can operate at atmosphere pressure properly. The sensor is tested on a rate table through a specially designed readout circuitry. The sensitivity is 23.9 and the nonlinearity is 1.1% in range of . The noise floor is 0.1 .
机译:本文提出了一种新型的石英微机械陀螺仪。采用剪应力检测方法设计结构,可以明显简化侧壁电极。此外,该结构引入了音叉以获得更好的差分振动。为了增加传感器的灵敏度,感测光束被设计为对称的锥形光束。该器件是使用石英各向异性湿法刻蚀工艺制造的。驱动模式频率为14.99 kHz,空气中的品质因数为7600。感应模式频率为14.25 kHz,空气中的品质因数为600。因此,该陀螺仪可以在大气压下正常工作。通过专门设计的读出电路在速率表上对传感器进行测试。在的范围内,灵敏度为23.9,非线性为1.1%。本底噪声为0.1。

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  • 来源
    《Sensors Journal, IEEE》 |2012年第5期|p.1246-1252|共7页
  • 作者

    Xuezhong Wu;

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