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双侧 CMUT 单元与阵列:等效电路、衍射常数和基底阻抗。

Bilateral CMUT Cells and Arrays: Equivalent Circuits, Diffraction Constants, and Substrate Impedance.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Feb;64(2):414-423. doi: 10.1109/TUFFC.2016.2628882. Epub 2016 Nov 15.

Abstract

We introduce the large-signal and small-signal equivalent circuit models for a capacitive micromachined ultrasonic transducer (CMUT) cell, which has radiating plates on both sides. We present the diffraction coefficient of baffled and unbaffled CMUT cells. We show that the substrate can be modeled as a very thick radiating plate on one side, which can be readily incorporated in the introduced model. In the limiting case, the reactance of this backing impedance is entirely compliant for substrate materials with a Poisson's ratio less than 1/3. We assess the dependence of the radiation performance of the front plate on the thickness of the back plate by simulating an array of bilateral CMUT cells. We find that the small-signal linear model is sufficiently accurate for large-signal excitation, for the purpose of the determining the fundamental component. To determine harmonic distortion, the large-signal model must be used with harmonic balance analysis. Rayleigh-Bloch waves are excited at the front and back surfaces similar to conventional CMUT arrays.

摘要

我们为具有双面辐射板的电容式微机械超声换能器 (CMUT) 单元引入了大信号和小信号等效电路模型。我们提出了带和不带挡板的 CMUT 单元的衍射系数。我们表明,衬底可以在一侧建模为非常厚的辐射板,这可以很容易地包含在引入的模型中。在极限情况下,对于泊松比小于 1/3 的衬底材料,该背衬阻抗的电抗完全是顺应的。我们通过模拟双边 CMUT 单元阵列来评估前板的辐射性能对背板厚度的依赖关系。我们发现,对于确定基本分量的目的,小信号线性模型对于大信号激励来说已经足够准确。为了确定谐波失真,必须使用大信号模型和谐波平衡分析。与传统的 CMUT 阵列类似,在前后表面激发瑞利-布洛赫波。

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