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Three-dimensional modelling of micromachined-ultrasonic-transducer arrays operating in water

机译:在水中运行的微机械超声换能器阵列的三维建模

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We report on the 3-D modelling of periodic arrays of capacitive micromachined ultrasonic transducers (cMUTs) operating in fluid. Specific developments have been performed to model biperiodic transducer arrays and to take into account radiation into any stratified media at the front-side as well as the back-side of the device. The model is based on a periodic finite-element-analysis/boundary-element-method (FEA/BEM). It is applied to micromachined ultrasonic transducers (MUTs), based on silicon-nitride-circular-membrane arrays on a silicon substrate, and operating in water. The spectrum characteristics of MUTs excited in phase are investigated, showing that very-large-band emission is achievable as previously demonstrated by many authors. However, other contributions are also found, depending on the excitation conditions, that do not radiate in the fluid. These contributions are identified as guided modes that could generate significant cross-talk effects. The origin and the nature of these modes is analyzed to gain insight in the actual operation of MUTs. © 2004 Elsevier B.V. All rights reserved.
机译:我们报告在流体中运行的电容式微加工超声换能器(cMUT)的周期性阵列的3-D建模。已经进行了特定的开发以对双周期换能器阵列进行建模,并考虑到进入设备正面和背面的任何分层介质中的辐射。该模型基于周期性有限元分析/边界元素方法(FEA / BEM)。它被应用于微加工超声换能器(MUT),该换能器基于硅基板上的氮化硅-圆形膜阵列,并且可以在水中运行。研究了同相激发的MUT的频谱特性,表明可以实现非常大的波段发射,正如许多作者先前所证明的那样。但是,根据激发条件,还发现了其他不辐射在流体中的贡献。这些贡献被确定为可能产生重大串扰影响的引导模式。分析了这些模式的起源和性质,以了解MUT的实际操作。 &复制; 2004 Elsevier B.V.保留所有权利。

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