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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Reducing anchor loss in micromechanical extensional mode resonators
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Reducing anchor loss in micromechanical extensional mode resonators

机译:减少微机械拉伸模式谐振器中的锚损失

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摘要

In this work, we propose a novel method to increase the quality factor of extensional mode micromechanical resonators. The proposed resonator topology is suitable for integration in a silicon-based process to fabricate micromechanical filters and oscillators. It is a half-wavelength-long strip excited longitudinally by electrostatic forces, and it is isolated from the substrate by alternating with bars of a quarter wavelength long. This structure causes a large impedance mismatch between the resonator and the substrate and hence reduces the anchor loss considerably. The performance of the resonator is determined by finite element simulations. We introduce an equivalent electrical circuit to predict the performance of the resonator. The electrical model gives results consistent with the finite element simulations. The proposed resonator is expected to have a very small anchor loss resulting in a very high Q.
机译:在这项工作中,我们提出了一种新颖的方法来增加拉伸模式微机械谐振器的品质因数。所提出的谐振器拓扑结构适合集成在基于硅的工艺中以制造微机械滤波器和振荡器。它是由静电力沿纵向激发的半波长长条,通过与四分之一波长长的条交替而与基板隔离。这种结构引起谐振器和衬底之间的大阻抗失配,因此大大降低了锚固损耗。谐振器的性能由有限元模拟确定。我们引入了等效电路来预测谐振器的性能。电气模型给出的结果与有限元仿真结果一致。预期所提出的谐振器具有非常小的锚固损耗,从而导致非常高的Q。

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