脉冲驱动形状和调谐对换能器宽带响应的影响

R. McKeighen
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引用次数: 17

摘要

脉冲发生器驱动波形的形状和对称性及其与换能器及其调谐电路的相互作用对医用换能器探头的脉冲回波性能有深远的影响。传统观点认为,可获得的最短脉冲以及随后可获得的最宽带宽将来自系统的脉冲响应。这项研究有助于解释为什么脉冲发生器不一定总是产生最短的脉冲和最宽的带宽。脉冲响应严重依赖于脉冲发生器驱动的对称性,以及它与组成调谐拓扑的元件的电抗的相互作用。单极脉冲,如尖峰脉冲或半波方单极脉冲驱动,可以在金电极的驱动光谱中产生有害的凹痕,并显着降低可用带宽。本研究中使用的换能器模型为3.5 MHz 96元扇形相控阵。结合一种新的创新换能器声学设计和优化调谐,实验结果产生了超过90%的带宽,干净,短脉冲衰减,已经实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of pulse drive shape and tuning on the broadband response of a transducer
The shape and symmetry of the pulser drive waveform and its interaction with the transducer and its tuning circuitry have a profound effect upon the pulse echo performance achievable from a medical transducer probe. Conventional wisdom has it that the shortest pulse obtainable, and subsequently the widest bandwidth achievable will come from the impulse response of the system. This study helps elucidate why an impulse generator may not always result in the shortest pulse and widest bandwidth. The pulse response is critically dependent upon the pulser drive symmetry, and its interaction with the reactance of the components making up the tuning topology. Unipolar pulses such as the spike impulse, or half wave square unipolar pulse drive, can create notches in the drive spectrum at the gold electrode that are deleterious, and significantly reduce available bandwidth. The transducer model used in this study is a 3.5 MHz 96 element sector phased array. In conjunction with a new innovative transducer acoustic design and optimized tuning, experimental results producing bandwidths of over 90% with clean, short pulse ringdown, have been achieved.
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