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Equivalent circuit for capacitive micromachined ultrasonic transducers to predict anti-resonances

机译:用于电容式微机械超声换能器的等效电路,以预测防谐振

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摘要

Equivalent circuit models have been long used to evaluate the dynamics of the capacitive micromachined ultrasonic transducer (CMUT). An important parameter in the characterization of a CMUT is the anti-resonance frequency, which limits the immersion bandwidth. However, there is no equivalent circuit model that can accurately determine the anti-resonance frequency of a membrane. In this work, we present an improved lumped element parametric model for immersed CMUT. We demonstrate that the proposed equivalent circuit model accurately predicts anti-resonance and higher order mode frequencies, in addition to that of the fundamental mode. The proposed circuit model is in good agreement with device characteristics calculated using the finite element method and experimentally measured data.
机译:等效电路模型长期以来用于评估电容式微机械超声换能器(CMUT)的动态。 CMUT表征中的一个重要参数是防谐振频率,其限制了沉浸带宽。 然而,没有等效的电路模型可以准确地确定膜的防谐振频率。 在这项工作中,我们为浸没的CMUT提出了一种改进的总分集参数模型。 我们证明,除了基本模式之外,所提出的等效电路模型还准确地预测了反谐振和更高阶模式频率。 所提出的电路模型与使用有限元方法和实验测量数据计算的器件特性吻合良好。

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