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用于体声波谐振器的改进型梅森模型。

Modified mason model for bulk acoustic wave resonators.

作者信息

Jamneala Tiberiu, Bradley Paul, Koelle Uli B, Chien Allen

机构信息

Avago Technologies, Wireless Semiconductor Division, San Jose, CA, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Sep;55(9):2025-9. doi: 10.1109/TUFFC.893.

Abstract

Accurate modeling of a bulk acoustic wave resonator frequency response is limited by the inability of the current 1-D models to simulate certain parasitic modes excited in realistic 3-D structures. A simple technique is proposed to simulate such parasitic modes by employing the 1-D Mason Model of a resonator and a coupling term between the fundamental mode and those parasitic modes. This Modified Mason Model allows accurate simulation of resonators with arbitrary impedance and arbitrary resonating frequency. Finally, the model's prediction is compared with the on-wafer measurement of a ladder-type filter composed of several resonators.

摘要

体声波谐振器频率响应的精确建模受到当前一维模型无法模拟在实际三维结构中激发的某些寄生模式的限制。本文提出了一种简单的技术,通过采用谐振器的一维梅森模型以及基模与那些寄生模式之间的耦合项来模拟此类寄生模式。这种改进的梅森模型能够精确模拟具有任意阻抗和任意谐振频率的谐振器。最后,将该模型的预测结果与由多个谐振器组成的梯形滤波器的晶圆上测量结果进行了比较。

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