Straight crested wave analysis of quartz MEMS ring electroded mesa resonators

Y. Yong, J. Vig, A. Ballato
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引用次数: 8

Abstract

An analytical technique for designing high Q, thickness shear micro electromechanical, ring electroded mesa quartz resonators is proposed. The method is demonstrated using two-dimensional straight crested wave analysis. The design method is based on the two characteristics of a stable resonator: (a) The mode is energy trapped and relatively isolated from its supports, and (b) the motional impedance of the mode is low. The root mean squares of vibration displacements are employed to characterize the modes of vibration, and the thickness shear mode has a large rms u/sub 1/ displacement in the x/sub 1/ direction (diagonal axis). The rms displacement is used to compare the energy trapping of the thickness shear mode as a function of the electrode and plate geometry. For each mode of vibration, the electric flux density D/sub 2/ is calculated at the quartz to electrode interface to yield the electric current at the electrodes. Given a constant driving voltage, the magnitude of the electric current is inversely proportional to the motional impedance. Hence the electric current for a mode as a function of the electrode and plate geometry is employed as a further means for comparing the merits of different resonator designs. Results are shown for a 1 GHz inverted mesa AT-cut resonator.
石英MEMS环电极台面谐振器的直峰波分析
提出了一种设计高Q值、厚度剪切型微机电环电极台面石英谐振器的解析技术。用二维直峰波分析对该方法进行了验证。该设计方法基于稳定谐振器的两个特性:(a)模态被能量捕获并与其支撑相对隔离;(b)模态的运动阻抗低。采用振动位移均方根来表征振动模态,厚度剪切模态在x/sub - 1/方向(对角线轴)具有较大的均方根u/sub - 1/位移。均方根位移用于比较厚度剪切模式的能量捕获作为电极和板几何形状的函数。对于每种振动模式,计算石英与电极界面处的电通量密度D/sub 2/,以产生电极处的电流。给定恒定的驱动电压,电流的大小与运动阻抗成反比。因此,一种模式的电流作为电极和极板几何形状的函数被用作比较不同谐振器设计优点的进一步手段。结果显示了1 GHz倒台面AT-cut谐振器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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