Capineri Lorenzo
Dipartimento Ingegneria dell'Informazione, Università degli Studi di Firenze, 50139 Firenze, Italy.
Sensors (Basel). 2025 Sep 1;25(17):5401. doi: 10.3390/s25175401.
Ultrasonic guided wave interdigital transducers realized with piezoelectric materials are of interest for structural health monitoring systems because of their capability of performing Lamb wave mode selection with respect to single-element transducers. Besides this advantage, the coverage of large areas with a minimum number of elements is an important challenge and the problem of efficient excitation with integrated electronics must be solved. This work proposes an electrical matching network topology made of L and C passive components that can be designed for the trade-off between electrical to mechanical conversion efficiency and bandwidth. The network circuit is analyzed considering the equivalent transducer impedance and the output impedance of the driving electronics. The design rules derived by the transfer function analysis are described and a case study for a piezopolymer IDT is presented. Finally, with the implementation of the integrated matching network with the connector of the IDT, the effect of cable capacitance is minimized. In conclusion this article is a contribution to the study of using IDT efficiently and in a versatile mode for different electronic front-ends that usually operate at low power supply voltage.
由压电材料实现的超声导波叉指换能器因其相对于单元素换能器执行兰姆波模式选择的能力而在结构健康监测系统中受到关注。除了这一优势外,用最少数量的元件覆盖大面积是一项重要挑战,并且必须解决与集成电子器件高效激励相关的问题。这项工作提出了一种由L和C无源元件组成的电匹配网络拓扑结构,该结构可针对机电转换效率和带宽之间的权衡进行设计。考虑等效换能器阻抗和驱动电子器件的输出阻抗对网络电路进行了分析。描述了通过传递函数分析得出的设计规则,并给出了一个压电聚合物叉指换能器的案例研究。最后,通过将集成匹配网络与叉指换能器的连接器相结合,电缆电容的影响被最小化。总之,本文为研究如何以高效且通用的方式将叉指换能器用于通常在低电源电压下工作的不同电子前端做出了贡献。