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An improved lumped element nonlinear circuit model for a circular CMUT cell

机译:圆形CMUT单元的改进的集总元件非线性电路模型。

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摘要

This paper describes a correction and an extension in the previously published large signal equivalent circuit model for a circular capacitive micromachined ultrasonic transducer (CMUT) cell. The force model is rederived so that the energy and power is preserved in the equivalent circuit model. The model is able to predict the entire behavior of CMUT until the membrane touches the substrate. Many intrinsic properties of the CMUT cell, such as the collapse condition, collapse voltage, the voltage–displacement interrelation and the force equilibrium before and after collapse voltage in the presence of external static force, are obtained as a direct consequence of the model. The small signal equivalent circuit for any bias condition is obtained from the large signal model. The model can be implemented in circuit simulation tools and model predictions are in excellent agreement with finite element method simulations.
机译:本文介绍了对圆形电容式微加工超声换能器(CMUT)单元的先前发布的大信号等效电路模型的校正和扩展。重新设计力模型,以便在等效电路模型中保留能量和功率。该模型能够预测CMUT的整个行为,直到膜接触到基材为止。该模型的直接结果是,获得了CMUT电池的许多固有属性,例如坍塌条件,坍塌电压,电压-位移相互关系以及在存在外部静态力的情况下崩溃电压前后的力平衡。从大信号模型中可以获得任何偏置条件下的小信号等效电路。该模型可以在电路仿真工具中实现,并且模型预测与有限元方法仿真非常吻合。

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