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Wave-propagation analysis of the monolithic-crystal filter

机译:单片滤波器的波传播分析

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The monolithic-crystal filter has two or more pairs of electrodes on the same piezoelectric plate; mechanical-wave propagation in the regions between electrodes takes place in an evanescent mode. A method of analysis, based on solutions to the wave equation, is first developed in general terms and then applied specifically to AT-cut quartz. Boundary conditions are used to determine resonant frequencies and vibration patterns under short-circuit conditions; from these, the electrical equivalent circuit is developed. Experimental results confirm the validity of the method. The theoretical results presented describe the bandwidth and motional capacitances of 2- and 3-resonator filters as functions of their geometry (electrode width, thickness and spacing). A method of predicting unwanted resonances is developed. A 3-resonator filter, with a centre resonator of different geometry, is considered. Some results relevant to multiple-resonator filters (up to ten) are described. Extension of the theory to overtone-mode devices is also discussed.
机译:该单片滤波器在同一压电板上具有两对或更多对电极。电极之间区域中的机械波传播以e逝模式发生。首先根据通用方程开发一种基于波动方程解的分析方法,然后将其专门应用于AT切割石英。边界条件用于确定短路条件下的谐振频率和振动模式。据此,开发出等效电路。实验结果证实了该方法的有效性。提出的理论结果描述了2谐振滤波器和3谐振滤波器的带宽和运动电容,它们是其几何形状(电极宽度,厚度和间距)的函数。开发了一种预测有害共振的方法。考虑了具有不同几何形状的中心谐振器的3-谐振器滤波器。描述了与多谐振器滤波器(最多十个)有关的一些结果。还讨论了将该理论扩展到泛音模式设备的问题。

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