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首页> 外文期刊>Journal of Microelectromechanical Systems >High-Fidelity Modeling of MEMS Resonators-Part I: Anchor Loss Mechanisms Through Substrate
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High-Fidelity Modeling of MEMS Resonators-Part I: Anchor Loss Mechanisms Through Substrate

机译:MEMS谐振器的高保真建模-第一部分:通过基板的锚固损耗机制

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A computational model is developed for the predic tion of wave propagation in the substrate of a MEMS resonator to study energy loss mechanisms from the vibrating beams to the substrate, viz., anchor loss. The model employs a modified classical Fourier transform method under periodic excitations at the anchor area. The present substrate model, when applied to a typical commercially fabricated substrate, estimates that the an chor loss of an ends-anchored resonator with its center frequency of 50 MHz can reach as high as 0.05% in terms of equivalent damping ratio. Anchor loss versus resonator center frequency is assessed by varying the beam dimension, which predicts that anchor loss increases a hundredfold for every tenfold increase in resonator center frequency in the case of two ends-anchored beam resonators. The substrate model has been integrated into a coupled beam-substrate-electrostatics model and validated with experimental data. Development of the detailed coupled-physics model and its validation is presented in Part II as a companion paper.
机译:开发了用于预测MEMS谐振器基板中的波传播的计算模型,以研究从振动梁到基板的能量损耗机制,即锚固损耗。该模型在锚点区域的周期性激励下采用改进的经典傅里叶变换方法。当将本衬底模型应用于典型的工业制造衬底时,估计其等效频率的等效阻尼比可将中心频率为50 MHz的端部固定谐振器的an声损耗提高至0.05%。通过改变波束尺寸来评估锚损耗与谐振器中心频率之间的关系,这预示着在两端锚定梁谐振器的情况下,谐振器中心频率每增加十倍,锚固损耗就会增加一百倍。基材模型已集成到耦合的梁-基材-静电模型中,并通过实验数据进行了验证。详细的耦合物理模型的开发及其验证在第二部分中作为随附文件进行了介绍。

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