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一种具有反向偏置功能的空气耦合多移动膜微机械超声换能器。

An Air-Coupled Multiple Moving Membrane Micromachined Ultrasonic Transducer With Inverse Biasing Functionality.

作者信息

Emadi Arezoo, Buchanan Douglas A

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2016 Aug;63(8):1140-7. doi: 10.1109/TUFFC.2016.2574336. Epub 2016 May 30.

Abstract

A novel air-coupled multiple moving membrane-capacitive micromachined ultrasonic transducer ( [Formula: see text]-CMUT) with individually biased deflectable plates has been developed. Unlike the conventional capacitive micromachined ultrasonic transducer, this device cell structure includes an additional deflectable plate that is suspended underneath the transducer top plate. This added flexible plate contributes to the device signal transmission and reception. It is demonstrated that due to the presence of this added moving plate, the transducer is capable of operating under inverse bias condition, where the driving voltage is sandwiched between two grounded electrodes. COMSOL electromechanical simulations were conducted to investigate the influence of the transducer additional moving plate. A set of three individuals and an array of [Formula: see text]-CMUT transducers were fabricated using a sacrificial technique and with resonant frequencies ranging from 0.8 to 2.1 MHz. Electrical, optical, and pitch-catch acoustic measurements were performed to characterize the transducers properties under inverse bias condition. The experimental results are shown to be in good agreement with the simulation results for all of the fabricated transducers. It is shown that these transducers are fully functional under both normal and inverse bias conditions without any degradation in the transducer performance.

摘要

一种新型的空气耦合多移动膜电容式微机电超声换能器([公式:见正文]-CMUT)已被开发出来,其具有单独偏置的可偏转板。与传统的电容式微机电超声换能器不同,该器件单元结构包括一个额外的可偏转板,该板悬挂在换能器顶板下方。这个增加的柔性板有助于器件的信号发射和接收。结果表明,由于这个增加的移动板的存在,该换能器能够在反向偏置条件下工作,即驱动电压夹在两个接地电极之间。进行了COMSOL机电模拟,以研究换能器额外移动板的影响。使用牺牲技术制造了一组三个单独的以及一个[公式:见正文]-CMUT换能器阵列,其谐振频率范围为0.8至2.1 MHz。进行了电学、光学和俯仰-捕捉声学测量,以表征反向偏置条件下换能器的特性。实验结果表明,对于所有制造的换能器,实验结果与模拟结果吻合良好。结果表明,这些换能器在正常和反向偏置条件下均能完全正常工作,且换能器性能没有任何下降。

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