Theoretical and numerical modeling of a CMOS micromachined acoustic sensor

B. Mezghani, K. Haboura, Fares Tounsi, S. Smaoui, S. El-Borgi, S. Choura, M. Masmoudi
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引用次数: 1

Abstract

In this paper, we present theoretical and numerical modeling done on a new structure of CMOS micromachined inductive microphone. Its mode of operation is based on the variation of the mutual inductance between an external fixed inductor and an internal suspended inductor. This internal inductor is designed on a 1.4timesl.4mm2 suspended membrane. The displacement of the suspended membrane with two different attachment structures, the I-shaped and the L-shaped beams, is studied, losing a theoretical mechanical modeling, we get displacement values of 13.11 mum and 68.82 mum, for the I-shaped and L-shaped beam design, respectively. With a numerical FEM analysis, using the Ansys software, displacement values of 12.7 mum and 63.5 mum were found for the I-shaped and L-shaped beam design, respectively. Using the analogy between acoustic, mechanical and electrical domains, the dynamic behavior of the L-shaped beam design sensor is studied and a corner frequency around 200 kHz is found. This value is also found when applying analytical dynamics principles to determine the equations of motion for the suspended membrane. A FEM analysis, using the Ansys software, is conducted in order to validate this theoretical model
CMOS微机械声传感器的理论与数值建模
本文对一种新型CMOS微机械感应传声器结构进行了理论和数值模拟。它的工作方式是基于外部固定电感和内部悬浮电感之间互感的变化。该内部电感器设计在1.4倍的尺寸上。4mm2悬浮膜。对i型梁和l型梁两种不同附着结构下悬膜的位移进行了研究,并建立了理论力学模型,得到了i型梁和l型梁的位移值分别为13.11 mum和68.82 mum。利用Ansys软件进行数值有限元分析,得到i型梁和l型梁的位移值分别为12.7 mum和63.5 mum。利用声学、力学和电领域的类比,研究了l型梁设计传感器的动态特性,得到了200 kHz左右的转角频率。当应用分析动力学原理来确定悬浮膜的运动方程时,也可以发现这个值。利用Ansys软件对该理论模型进行了有限元分析
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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