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具有高发射性能的大阵列耦合压电微机械超声换能器的等效电路模型。

Equivalent Circuit Model for a Large Array of Coupled Piezoelectric Micromachined Ultrasonic Transducers With High Emission Performance.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Mar;68(3):718-733. doi: 10.1109/TUFFC.2020.3008179. Epub 2021 Feb 25.

Abstract

In this article, an analytical equivalent circuit model is established for the piezoelectric micromachined ultrasonic transducer (PMUT) cell and array with a combination of the annular and circular diaphragms used for structural optimization and complex array design. Based on this model, a comprehensive analysis is conducted on the acoustic-structural coupling of an annular and circular diaphragm-coupled PMUT (AC-PMUT) with a new excitation method. The model-derived results are in good agreement with the simulation and experimental results. Then, an optimized design has been presented to achieve high-output pressure and a good array working performance. In summary, a comparison of the array working performance is conducted between the arrays that consist of AC-PMUTs and traditional circular diaphragm PMUTs (C-PMUTs). The results indicate that the AC-PMUT array has a much lower crosstalk effect than that of the traditional C-PMUT array. By this means, the AC-PMUT array can fully use the high vibration amplitude achieved by each AC-PMUT cell to improve its output ability. As a result, the highest ultrasonic output pressure generated by the AC-PMUT array in its resonant condition can achieve an increase of 155%, compared with that generated by the C-PMUT array.

摘要

本文针对采用环形和圆形换能器的压电微机械超声换能器(PMUT)单元和阵列,建立了一种分析等效电路模型,用于结构优化和复杂阵列设计。基于该模型,采用新的激励方法,对环形和圆形换能器耦合的 PMUT(AC-PMUT)的声-结构耦合进行了全面分析。模型推导的结果与仿真和实验结果吻合较好。然后,提出了优化设计方案,以实现高输出压力和良好的阵列工作性能。总之,对由 AC-PMUT 和传统圆形换能器 PMUT(C-PMUT)组成的阵列的工作性能进行了比较。结果表明,AC-PMUT 阵列的串扰效应明显低于传统的 C-PMUT 阵列。通过这种方式,AC-PMUT 阵列可以充分利用每个 AC-PMUT 单元实现的高振动幅度来提高其输出能力。因此,在谐振状态下,AC-PMUT 阵列产生的最高超声输出压力可提高 155%,相比于 C-PMUT 阵列。

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