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CMUTs for air coupled ultrasound with improved bandwidth

机译:用于空气耦合超声的CMUT,带宽改进

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We present the design, fabrication and characterization of a multi-purpose capacitive micromachined ultrasonic transducer (CMUT) for air coupled ultrasound (∼300–500 kHz), with a focus on improved bandwidth. The focus of this work is to investigate whether and how wafer-bonded CMUTs can be improved in terms of bandwidth for airborne ultrasound by intentionally varying the cell radii across the entire device. Further, we consider the differences in terms of static d.c. operation point for improved frequency response and predictability by using a sensitivity-weighted distribution of cell radii groups. The pitch-catch results from one of our designs, compared to a reference device (all cell radii identical), show that the -6 db fractional bandwidth (FBW) can be improved from 1% up to 2.5%. For many applications, in which the −14 db duration signal (ASTM E1065) plays a role, the improvement goes from 1% to 18.9%. The observed improvements support the argument that such CMUTs will be beneficial for ultrasonic transit-time detection based applications.
机译:我们介绍了用于空气耦合超声(〜300-500 kHz)的多功能电容微机械超声换能器(CMUT)的设计,制造和表征,重点是改善带宽。这项工作的重点是研究是否通过故意改变整个装置的电机半径来改善晶片键合的CMUT的带宽。此外,我们考虑静态D.C的差异。通过使用细胞半导体组的灵敏度加权分布,改善频率响应和可预测性的操作点。与参考装置(所有小区半导体相同)相比,我们的设计之一的距离捕获结果显示,可以从1%提高-6 dB分数带宽(FBW),高达2.5%。对于许多应用,其中-14 dB持续时间信号(ASTM E1065)起作用,改善从1%到18.9%。观察到的改进支持这些CMUT对超声传输时间检测的应用有益的论点。

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