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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Designing transmitting CMUT cells for airborne applications
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Designing transmitting CMUT cells for airborne applications

机译:设计用于机载应用的发射CMUT单元

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摘要

We report a new mode of airborne operation for capacitive micromachined ultrasonic transducers (CMUT), in which the plate motion spans the entire gap without collapsing and the transducer is driven by a sinusoidal voltage without a dc bias. We present equivalent-circuit-based design fundamentals for an airborne CMUT cell and verify the design targets using fabricated CMUTs. The performance limits for silicon plates are derived. We experimentally obtain 78.9 dB//20 ??Pa@1 m source level at 73.7 kHz, with a CMUT cell of radius 2.05 mm driven by 71 V sinusoidal drive voltage at half the frequency. The measured quality factor is 120. We also study and discuss the interaction of the nonlinear transduction force and the nonlinearity of the plate compliance.
机译:我们报告了一种用于电容式微机械超声换能器(CMUT)的空运操作新模式,其中,板运动跨越整个间隙而不会塌陷,并且换能器由正弦电压驱动,而没有直流偏置。我们介绍了机载CMUT电池的基于等效电路的设计基础,并使用制造的CMUT验证了设计目标。得出了硅板的性能极限。我们通过73.7 kHz的频率获得78.9 dB // 20ΩPa@ 1 m的源电平,其中半径为2.05 mm的CMUT单元由71 V正弦驱动电压以一半的频率驱动。测得的品质因数为120。我们还研究和讨论了非线性传递力与板柔度非线性之间的相互作用。

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