Micromachined capacitive transducers with improved optical detection for ultrasound applications in air

N. Hall, W. Lee, J. Dervan, F. Degertekin
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引用次数: 11

Abstract

Diffraction based integrated optical detection method for capacitive micromachined ultrasonic transducers (cMUTs) can provide better receiver sensitivity without compromising transmit power as compared to conventional capacitance detection schemes especially for transducers operating below 1 MHz. This makes the method suitable for ultrasound applications and implementation of transducer arrays operating in air. The detection sensitivity of the method is improved by 11 dB forming a Fabry-Perot cavity structure in the transducer membrane-substrate gap, as predicted by calculations. The cavity is fabricated by depositing approximately 20 nm thick semi transparent silver layer under the grated bottom electrode. The optical detection scheme also allows one to obtain signals from individual elements of 1-D and 2-D cMUT membrane arrays for ultrasonic array imaging. This capability is demonstrated by imaging wire targets at 750 kHz using receive only synthetic aperture reconstruction.
改进光学检测的微机械电容式换能器在空气中的超声波应用
与传统的电容检测方案相比,基于衍射的电容式微机械超声换能器(cMUTs)集成光学检测方法可以提供更好的接收灵敏度而不影响发射功率,特别是对于工作频率低于1 MHz的换能器。这使得该方法适用于超声波应用和在空气中操作的换能器阵列的实现。与计算结果一致,该方法的检测灵敏度提高了11 dB,在换能器膜-衬底间隙形成了法布里-珀罗腔结构。该空腔是通过在栅格底电极下沉积约20 nm厚的半透明银层来制备的。光学检测方案还允许人们从一维和二维cMUT膜阵列的单个元件获得信号,用于超声波阵列成像。这种能力通过使用仅接收合成孔径重建成像750 kHz的电线目标来证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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