A model for static and dynamic thermal analysis of thin film MEMS structures including the thermal conductivity of the surrounding gas

G. de Graaf, Huaiwen Wu, R. Wolffenbuttel
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引用次数: 0

Abstract

In this work an analytical model for static and dynamic thermal analysis of heated thin bridges, membranes or cantilevers is presented. The analysis includes the thermal conductivity of the surrounding gas, which cannot be neglected in most MEMS devices. The model is based on Laplace transformation of the heat equations and on the Thermal Quadrupole Method. A one-dimensional approximation using these methods results in practical sets of equations that can be roughly evaluated by hand for feasibility studies of a design. Further evaluation can be done by some basic matrix operations, e.g. analytically by Mathematica or numerically using MATLAB. Plots of these functions can provide the designer with insight on the thermal behavior of the structure, without the use of finite element calculations.
薄膜MEMS结构的静态和动态热分析模型,包括周围气体的热导率
在这项工作中,提出了加热薄桥,薄膜或悬臂梁的静态和动态热分析的分析模型。分析包括了周围气体的热导率,这在大多数MEMS器件中是不能忽视的。该模型基于热方程的拉普拉斯变换和热四极杆法。使用这些方法的一维近似可以得到一组实际的方程,这些方程可以手工粗略地评估设计的可行性研究。进一步的评估可以通过一些基本的矩阵运算来完成,例如用Mathematica进行分析或用MATLAB进行数值计算。这些函数的曲线图可以为设计者提供对结构热性能的洞察,而无需使用有限元计算。
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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