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Design, modelling, and characterization of display compatible pMUT device

机译:显示兼容PMUT设备的设计,建模和表征

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摘要

In this paper, the design, modeling, and characterization of a display compatible pMUT platform are presented. A FEM model is built using COMSOL Multiphysics for evaluating the frequency response, mechanical performance, acoustic pressure, and driving efficiency of our pMUT device across all vibration modes of circular plates. In parallel with it, a first mode analytical model has been developed including electrical, mechanical, and acoustic domains to provide fast estimation for future design. A laser Doppler vibrometer is used to measure the frequency response, displacement, velocity as well as mode shapes of pMUTs with different designs in air. The measured resonance frequency of first mode range from 121.5kHz to 1.1MHz with radius from 500μm to 120μm and fits the prediction of FEM and analytical models. A standard reference microphone is used to measure the acoustic pressure of pMUT inside its frequency range (<;125 kHz). The measured acoustic pressure on transverse axis of a 500μm radius pMUT also fits the values from analytical model on acoustic domain.
机译:在本文中,提出了显示兼容PMUT平台的设计,建模和表征。使用COMSOL Multiphysics建造有限元模型,用于评估我们在所有振动模式的圆形板上的PMUT装置的频率响应,机械性能,声压力和驱动效率。与之并行,已经开发了一种第一模式分析模型,包括电气,机械和声学域,以便为未来设计提供快速估计。激光多普勒振动计用于测量频率响应,位移,速度以及空气中不同设计的PMUT的模式形状。第一模式的测量频率范围为121.5kHz至1.1MHz,半径为500μm至120μm,并符合有限元和分析模型的预测。标准参考麦克风用于测量其频率范围内的PMUT的声压(<; 125 kHz)。 500μm半径Pmut的横轴上的测量声压也适合来自声学域的分析模型的值。

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