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Electrothermal Characterization of Doped-Si Heated Microcantilevers Under Periodic Heating Operation

机译:周期性加热下掺杂硅的微悬臂梁的电热特性

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This paper reports the frequency-dependent electrothermal behaviors of a freestanding doped-silicon heated microcantilever probe operating under periodic (ac) Joule heating. We conducted a frequency-domain finite-element analysis (FEA) and compared the steady periodic solution with 3ω experiment results. The computed thermal transfer function of the cantilever accurately predicts the ac electrothermal behaviors over a full spectrum of operational frequencies, which could not be accomplished with the 1D approximation. In addition, the thermal transfer functions of the cantilever in vacuum and in air were compared, through which the frequency-dependent heat transfer coefficient of the air was quantified. With the developed FEA model, design parameters of the cantilever (i.e., the size and the constriction width of the cantilever heater) and their effects on the ac electrothermal behaviors were carefully investigated. Although this work focused on doped-Si heated microcantilever probes, the developed FEA model can be applied for the ac electrothermal analysis of general microelectromechanical systems.
机译:本文报道了在周期性(ac)焦耳加热下工作的独立式掺杂硅加热微悬臂梁探针的频率依赖性电热行为。我们进行了频域有限元分析(FEA),并将稳态周期解与3ω实验结果进行了比较。计算出的悬臂的热传递函数可以准确预测整个工作频率范围内的交流电热行为,而一维逼近则无法实现。另外,比较了悬臂在真空和空气中的热传递函数,通过该函数可以量化空气随频率变化的热传递系数。利用已开发的FEA模型,仔细研究了悬臂的设计参数(即悬臂加热器的尺寸和收缩宽度)及其对交流电热行为的影响。尽管这项工作集中在掺杂Si加热的微悬臂梁探针上,但是开发的FEA模型可以用于一般微机电系统的交流电热分析。

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