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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Radiation impedance of an array of circular capacitive micromachined ultrasonic transducers
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Radiation impedance of an array of circular capacitive micromachined ultrasonic transducers

机译:圆形电容微加工超声换能器阵列的辐射阻抗

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The radiation impedance of a capacitive micromachined ultrasonic transducer (cMUT) with a circular membrane is calculated analytically using its velocity profile for the frequencies up to its parallel resonance frequency for both the immersion and the airborne applications. The results are verified by finite element simulations. The work is extended to calculate the radiation impedance of an array of cMUT cells positioned in a hexagonal pattern. A higher radiation resistance improves the bandwidth as well as the efficiency of the cMUT. The radiation resistance is determined to be a strong function of the cell spacing. It is shown that a center-to-center cell spacing of 1.25 wavelengths maximizes the radiation resistance, if the membranes are not too thin. It is also found that excitation of nonsymmetric modes may reduce the radiation resistance in immersion applications.
机译:具有圆形膜的电容式微机械超声换能器(cMUT)的辐射阻抗是通过使用其速度曲线对频率进行分析计算的,该频率直至在浸入和机载应用中均达到其平行共振频率。通过有限元模拟验证了结果。这项工作被扩展为计算以六边形图案定位的cMUT单元阵列的辐射阻抗。较高的抗辐射性可改善带宽以及cMUT的效率。确定抗辐射性是单元间距的强函数。结果表明,如果膜不太薄,则1.25个波长的中心到中心的间距将使辐射抗性最大化。还发现非对称模式的激发可能会降低浸入应用中的辐射电阻。

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