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基于切应力检测的 Z 轴石英十字叉微机械陀螺仪。

A z-axis quartz cross-fork micromachined gyroscope based on shear stress detection.

机构信息

College of Mechatronics Engineering and Automation, National University of Defense Technology, Changsha, 410073, Hunan Province, China.

出版信息

Sensors (Basel). 2010;10(3):1573-88. doi: 10.3390/s100301573. Epub 2010 Mar 1.

Abstract

Here we propose a novel quartz micromachined gyroscope. The sensor has a simple cross-fork structure in the x-y plane of quartz crystal. Shear stress rather than normal stress is utilized to sense Coriolis' force generated by the input angular rate signal. Compared to traditional quartz gyroscopes, which have two separate sense electrodes on each sidewall, there is only one electrode on each sidewall of the sense beam. As a result, the fabrication of the electrodes is simplified and the structure can be easily miniaturized. In order to increase sensitivity, a pair of proof masses is attached to the ends of the drive beam, and the sense beam has a tapered design. The structure is etched from a z-cut quartz wafer and the electrodes are realized by direct evaporation using the aperture mask method. The drive mode frequency of the prototype is 13.38 kHz, and the quality factor is approximately 1,000 in air. Therefore, the gyroscope can work properly without a vacuum package. The measurement ability of the shear stress detection design scheme is validated by the Coriolis' force test. The performance of the sensor is characterized on a precision rate table using a specially designed readout circuit. The experimentally obtained scale factor is 1.45 mV/°/s and the nonlinearity is 3.6% in range of ± 200 °/s.

摘要

我们提出了一种新型的石英微机械陀螺仪。该传感器在石英晶体的 x-y 平面上具有简单的十字叉结构。利用剪切应力而不是正应力来感测由输入角速率信号产生的科里奥利力。与传统的石英陀螺仪相比,传统的石英陀螺仪在每个侧壁上有两个单独的感测电极,而感测梁的每个侧壁上只有一个电极。因此,简化了电极的制造,并且可以轻松地实现结构的小型化。为了提高灵敏度,在驱动梁的末端附加了一对质量块,并且感测梁采用了锥形设计。该结构是从 z 切石英晶片刻蚀而成的,电极是通过使用孔径掩模方法直接蒸发实现的。原型的驱动模式频率为 13.38 kHz,在空气中的品质因数约为 1000。因此,该陀螺仪无需真空封装即可正常工作。通过科里奥利力测试验证了剪切应力检测设计方案的测量能力。使用专门设计的读出电路在精密速率表上对传感器的性能进行了表征。通过实验获得的标度因数为 1.45 mV/°/s,在± 200 °/s 的范围内非线性度为 3.6%。

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