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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Large-Scale Nonlinear Lumped and Integrated Field Simulations of Top-Orthogonal-to-Bottom-Electrode CMUT Architectures
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Large-Scale Nonlinear Lumped and Integrated Field Simulations of Top-Orthogonal-to-Bottom-Electrode CMUT Architectures

机译:顶部正交到底部CMUT体系结构的大规模非线性集总和集成场仿真

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摘要

Capacitive micromachined ultrasonic transducers (CMUTs) promise many advantages over traditional piezoelectric transducers such as the potential to construct large, cost-effective 2-D arrays. To avoid wiring congestion issues associated with fully wired arrays, top-orthogonal-to-bottom electrode (TOBE) CMUT array architectures have proven to be a more practical alternative, using only 2N wires for an N×N array. Optimally designing a TOBE CMUT array is a significant challenge due to the range of parameters from the device level up to the operating conditions of the entire array. Since testing many design variations can be prohibitively expensive, a simulation approach accounting for both the small and large-scale array characteristics of TOBE arrays is essential. In this paper, we demonstrate large-scale TOBE CMUT array simulations using a nonlinear CMUT lumped-circuit model. We investigate the performance of the array with different CMUT design parameters and array operating conditions. These simulated results are then compared with measurements of TOBE arrays fabricated using a sacrificial release process.
机译:电容式微加工超声换能器(CMUT)与传统的压电换能器相比,具有许多优势,例如可以构建大型,经济高效的二维阵列。为了避免与全布线阵列相关的布线拥塞问题,事实证明,上下正交电极(TOBE)CMUT阵列架构是更实用的替代方案,对于N×N阵列仅使用2N线。由于参数范围从器件级别到整个阵列的工作条件,优化设计TOBE CMUT阵列是一项重大挑战。由于测试许多设计变化的费用可能会过高,因此,考虑到TOBE阵列的小型和大型阵列特性的仿真方法必不可少。在本文中,我们演示了使用非线性CMUT集总电路模型的大规模TOBE CMUT阵列仿真。我们研究具有不同CMUT设计参数和阵列工作条件的阵列性能。然后将这些模拟结果与使用牺牲释放工艺制造的TOBE阵列的测量结果进行比较。

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