采用温度稳定at切割石英的新型角速度传感器

Y. Yong, M. Patel
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引用次数: 3

摘要

提出了利用温度稳定的at切割石英制作新型角速度传感器的可行性。该传感器由一对驱动基本厚度剪切模式的电极和另一对测量角速度的电极组成。两倍从谐振器向外延伸,在平板的平面上。时间被设计成对谐振器的角速度敏感。角速度与振动时间的线性动量的叉乘引起的科里奥利体力改变了振动时间的模态振型,进而扰动了厚度剪切模态,改变了传感电极处的电压。以捕获能量厚度模式为主要驱动模式的振动陀螺仪在频率稳定性方面有很好的改善,并且对传感元件的安装支架和引线安装的依赖较小。由于已知at切割谐振器具有良好的f-T曲线和长期老化,因此这种陀螺仪将具有稳定的石英at切割谐振器的优点。给出了两种角速度传感器的测试结果:(1)灵敏度为5.8 mV/deg的5 MHz传感器。(2)灵敏度为0.38 mV/deg的37 MHz传感器。/s绕z轴的角速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new angular velocity sensor using the temperature stable AT-cut quartz
The feasibility of a new angular velocity sensor using the temperature stable AT-cut quartz was presented. The sensor consisted of one pair of electrodes for driving the fundamental thickness shear mode, and another pair of electrodes for sensing the angular velocity. Two tines extended outward from resonator, and in the plane of the plate. The tines were designed to be sensitive to angular velocity of the resonator. The Coriolis body force caused by the cross product of the angular velocity with the linear momentum of the vibrating tines changes the their mode shapes that in turn perturbed the thickness shear mode, and changed the voltage at the sensing electrodes. A vibratory gyroscope with a trapped energy thickness mode as the main driving mode offers good improvements in terms of frequency stability and less dependence on the mounting supports and lead installation of the sensing element. Since the AT-cut resonators were known to have good f-T curves and long term aging, such a gyroscope would have the advantages of a stable quartz AT-cut resonator. Results for two angular velocity sensors were presented: (1) a 5 MHz sensor with a sensitivity of 5.8 mV/deg./s angular velocity about the X-axis, and (2) a 37 MHz sensor with a sensitivity of 0.38 mV/deg./s angular velocity about the Z-axis.
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