Huang Changzheng, Marmarelis Vasilis Z, Zhou Qifa, Shung K Kirk
Alfred Mann Institute for Biomedical Engineering, University of Southern California, Los Angeles, CA 90089, USA.
IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Mar;52(3):469-79. doi: 10.1109/tuffc.2005.1417269.
Inversion layer ultrasonic transducers have been investigated recently as an interesting approach in wideband transducer design. In this paper we present an analytical model of multilayer ultrasonic transducers with an inversion layer. Our analysis of the wave propagation problem of an inversion layer transducer includes a functional decomposition of the electrical input impedance. It becomes clear from this decomposition that an inversion layer transducer can be modeled as three elements in series connection, i.e., a clamped capacitance, a classical motional impedance, and a coupled motional impedance. The first two elements make up the classical model of a single element transducer. The coupled motional impedance describes the coupled interaction between the regular and the inverted piezoelectric sublayers, and thus reflects the effect of an inversion layer. We present examples which show that inversion layer transducers are advantageous in achieving such useful features as dual-frequency operation mode as used in harmonic imaging or broadband performance desired in most ultrasonic applications.
最近,反相层超声换能器作为宽带换能器设计中一种有趣的方法受到了研究。在本文中,我们提出了一种具有反相层的多层超声换能器的分析模型。我们对反相层换能器的波传播问题的分析包括对电输入阻抗的函数分解。从这种分解中可以清楚地看出,反相层换能器可以建模为串联的三个元件,即一个夹持电容、一个经典运动阻抗和一个耦合运动阻抗。前两个元件构成了单元件换能器的经典模型。耦合运动阻抗描述了常规压电子层和反相压电子层之间的耦合相互作用,从而反映了反相层的影响。我们给出的例子表明,反相层换能器在实现诸如谐波成像中使用的双频操作模式或大多数超声应用中所需的宽带性能等有用特性方面具有优势。