用于输入阻抗匹配开发的钛酸铅声学换能器的建模和测量

K. Son, Chin C. Lee
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引用次数: 0

摘要

钛酸铅(PbTiO3)具有较高的机电耦合系数,是一种常用的声换能器压电材料。为了有效地驱动换能器,其输入阻抗必须与发电机输出阻抗很好地匹配,通常为50Ω。为了发展阻抗匹配技术,建立了等效电路模型。PT压电板分别粘接在铋、Lucite和LCP上形成换能器。对换能器的输入阻抗进行了计算,并对频率进行了测量。发现有两个非谐振频率,在此频率下输入阻抗的电抗部分为零,称为过零频率。这是可能的,因为换能器固有的电气特性,板电容的存在。较高的过零频率接近谐振频率。输入电阻通常很高。在较低的过零频率,输入电阻接近50Ω的实际板尺寸。因此,在此频率下工作可以实现良好的阻抗匹配。通过调整换能器电极尺寸和控制键合层厚度,可以对匹配进行微调。在不使用任何外部组件的情况下,实现了近乎完美的匹配。模拟和测量的响应曲线随频率的变化也显示了换能器的带宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and measurements of lead titanate acoustic transducers for input impedance matching development
Lead titanate (PbTiO3) is a popular piezoelectric material for acoustic transducers because of its high electromechanical coupling coefficient. To drive a transducer effectively, its input impedance must match well to the generator output impedance, usually 50Ω. To develop impedance matching technique, an equivalent circuit model is established. PT piezoelectric plates are bonded on bismuth, Lucite and LCP, respectively to form transducers. The input impedance of the transducers is calculated and also measure versus frequency. It is discovered that there are two off-resonant frequencies at which the reactance part of the input impedance is zero, referred to as the zero-crossing frequency. This is possible because of an inherent electrical property of the transducer, the existence of the plate capacitance. The higher zero-crossing frequency is close to the resonant frequency. The input resistance is usually very high. At the lower zero-crossing frequency, the input resistance is close to 50Ω for practical plate sizes. Thus, good impedance matching can be achieved by operating at this frequency. The matching can be fine tuned by adjusting transducer electrode size and controlling the bonding layer thickness. Nearly perfect matching is demonstrated without using any external component. The simulated and measurement response curves versus frequency also show the transducer bandwidth.
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