cMUT单元的有限元仿真与测量验证

S. Mao, X. Rottenberg, V. Rochus, B. Nauwelaers, H. Tilmans
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引用次数: 3

摘要

本文介绍了一个孤立的cMUT单元的声学和力学行为的有限元模拟和实验结果。采用imec的SiGeMEMS技术制造的cMUT细胞作为试验载体。利用ANSYS有限元分析和Polytec振动计测量数据,研究了脉冲叠加直流偏压驱动下cMUT单元的谐振频率、q因子和瞬态位移等动态特性。有限元模拟结果与光学测量结果吻合较好。基于ANSYS获得的传感器表面信息和光学测量结果,采用瑞利积分法构建了传感器的空间压力场。结果与水听器测量值进行了比较,结果吻合较好。在氟惰性介质(FC-84)中,对典型的cMUT电池(侧面测量~60μm)进行声学测量,显示出7MHz的中心频率,~100% -6dB的分数带宽(FBW)和几千帕斯卡的峰对峰压力。我们的方法提供了一种清晰的方法来准确地预测cMUT单元的瞬态空间压力场,特别是在远场区域,而且时间成本低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FEM simulation and measurement validation of a cMUT cell
This paper presents Finite Element Modeling (FEM) simulation and experimental results of the acoustic and mechanical behavior of an isolated cMUT cell. cMUT cells fabricated in the SiGeMEMS technology of imec are used as test vehicles. Dynamic characteristics of a cMUT cell actuated by a pulse superimposed on a DC bias, such as resonance frequency, Q-factor and transient displacement, are studied using ANSYS FEM and Polytec vibrometer measurements. A good agreement is achieved between the FEM simulation results and optical measurements. The Rayleigh integral method is used to construct the spatial pressure field based on the transducer surface information obtained both from ANSYS and the optical measurements. The results are compared with hydrophone measurements, and good agreements are achieved. Acoustic measurements on a typical cMUT cell (measuring ~60μm on the side) in a fluorinert medium (FC-84) show a 7MHz center frequency, ~100% -6dB fractional bandwidth (FBW) and several kilo Pascal peak-to-peak pressure at millimeters scale. Our method provides a clear methodology to accurately predict the transient spatial pressure field of a cMUT cell, especially in the far field region, with little time cost.
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