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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Experiment and simulation validated analytical equivalent circuit model for piezoelectric micromachined ultrasonic transducers
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Experiment and simulation validated analytical equivalent circuit model for piezoelectric micromachined ultrasonic transducers

机译:实验和仿真验证的压电微机械超声换能器解析等效电路模型

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摘要

An analytical Mason equivalent circuit is derived for a circular, clamped plate piezoelectric micromachined ultrasonic transducer (pMUT) design in 31 mode, considering an arbitrary electrode configuration at any axisymmetric vibration mode. The explicit definition of lumped parameters based entirely on geometry, material properties, and defined constants enables straightforward and wide-ranging model implementation for future pMUT design and optimization. Beyond pMUTs, the acoustic impedance model is developed for universal application to any clamped, circular plate system, and operating regimes including relevant simplifications are identified via the wave number-radius product ka. For the single-electrode fundamental vibration mode case, sol-gel Pb(Zr)TiO (PZT) pMUT cells are microfabricated with varying electrode size to confirm the derived circuit model with electrical impedance measurements. For the first time, experimental and finite element simulation results are successfully applied to validate extensive electrical, mechanical, and acoustic analytical modeling of a pMUT cell for wide-ranging applications including medical ultrasound, nondestructive testing, and range finding.
机译:考虑到在任意轴对称振动模式下的任意电极配置,对于31模下的圆形夹紧板压电微加工超声换能器(pMUT)设计,得出了梅森分析等效电路。完全基于几何形状,材料特性和定义的常数的集总参数的明确定义,可以为将来的pMUT设计和优化提供简单,广泛的模型实现。除pMUT之外,还开发了声阻抗模型,可普遍应用于任何夹紧的圆形板系统,并且通过波数-半径乘积ka确定包括相关简化在内的工作方式。对于单电极基本振动模式情况,可通过改变电极尺寸来微制造溶胶-凝胶Pb(Zr)TiO(PZT)pMUT电池,以通过电阻抗测量确认导出的电路模型。首次将实验和有限元仿真结果成功应用于验证pMUT电池的广泛电学,机械学和声学分析模型,从而广泛应用于医疗超声,无损检测和测距等领域。

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