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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Input impedance matching of acoustic transducers operating at off-resonant frequencies
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Input impedance matching of acoustic transducers operating at off-resonant frequencies

机译:在非谐振频率下运行的声换能器的输入阻抗匹配

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摘要

The input impedance matching technique of acoustic transducers at off-resonant frequencies is reported. It uses an inherent impedance property of transducers and thus does not need an external electric matching circuit or extra acoustic matching section. The input electrical equivalent circuit includes a radiation component and a dielectric capacitor. The radiation component consists of a radiation resistance and a radiation reactance. The total reactance is the sum of the radiation reactance and the dielectric capacitive reactance. This reactance becomes zero at two frequencies where the impedance is real. The transducer size can be properly chosen so that the impedance at one of the zero-crossing frequencies is close to 50 :9;, the output impedance of signal generators. At this off-resonant operating frequency, the reflection coefficient of the transducer is minimized without using any matching circuit. Other than the size, the impedance can also be fine tuned by adjusting the thickness of material that bonds the transducer plate to the substrates. The acoustic impedance of the substrate and that of the bonding material can also be used as design elements in the transducer structure to achieve better transducer matching. Lead titanate piezoelectric plates were bonded on Lucite, liquid crystal polymer (LCP), and bismuth (Bi) substrates to produce various transducer structures. Their input impedance was simulated using a transducer model and compared with measured values to illustrate the matching principle.
机译:报告了声学传感器在非谐振频率下的输入阻抗匹配技术。它利用了换能器的固有阻抗特性,因此不需要外部电匹配电路或额外的声匹配部分。输入等效电路包括辐射分量和介电电容器。辐射成分由辐射电阻和辐射电抗组成。总电抗是辐射电抗和介电电容电抗的总和。在阻抗为实数的两个频率下,该电抗变为零。可以适当地选择换能器的尺寸,以使过零频率之一处的阻抗接近50:9,即信号发生器的输出阻抗。在此非谐振工作频率下,无需使用任何匹配电路即可使换能器的反射系数最小。除了尺寸之外,还可以通过调整将换能器板粘合到基板的材料的厚度来微调阻抗。基板的声阻抗和结合材料的声阻抗也可以用作换能器结构中的设计元素,以实现更好的换能器匹配。将钛酸铅压电板粘结在Lucite,液晶聚合物(LCP)和铋(Bi)基板上,以产生各种换能器结构。使用换能器模型模拟了它们的输入阻抗,并将其与测量值进行比较以说明匹配原理。

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