Udaondo Carlos, Collado Carlos, Mateu Jordi
Signal Theory and Communications (TSC) Department, Universitat Politècnica de Catalunya (UPC), 08034 Barcelona, Spain.
Micromachines (Basel). 2023 Oct 25;14(11):1980. doi: 10.3390/mi14111980.
Lateral modes are responsible for the in-band spurious resonances that appear on BAW resonators, degrading the in-band filter response. In this work, a fast computational method based on the transmission line matrix (TLM) method is employed to model the lateral resonances of BAW resonators. Using the precomputed dispersion curves of Lamb waves and an equivalent characteristic impedance for the TE mode, a network of transmission lines is used to calculate the magnitude of field distributions on the electrodes. These characteristics are specific to the stack layer configuration. The model's implementation is based on nodal Y matrices, from which particle displacement profiles are coupled to the electric domain via piezoelectric constitutive relations. Consequently, the input impedance of the resonator is obtained. The model exhibits strong agreement with FEM simulations of FBARs and SMRs, and with measurements of several SMRs. The proposed model can provide accurate predictions of resonator input impedance, which is around 200 times faster than conventional FEM.
横向模式是导致体声波谐振器出现带内杂散共振的原因,会降低带内滤波器响应。在这项工作中,采用了一种基于传输线矩阵(TLM)方法的快速计算方法来对体声波谐振器的横向共振进行建模。利用预先计算的兰姆波色散曲线和TE模式的等效特性阻抗,使用传输线网络来计算电极上的场分布幅度。这些特性特定于堆叠层配置。该模型的实现基于节点Y矩阵,通过压电本构关系将粒子位移轮廓与电域耦合。因此,获得了谐振器的输入阻抗。该模型与薄膜体声波谐振器(FBAR)和表面微机械谐振器(SMR)的有限元模拟以及几个SMR的测量结果表现出高度一致性。所提出的模型可以提供谐振器输入阻抗的准确预测,其速度比传统有限元方法快约200倍。