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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Characterization of micromachined ultrasonic transducers using light diffraction tomography
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Characterization of micromachined ultrasonic transducers using light diffraction tomography

机译:使用光衍射层析成像表征微机械超声换能器

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This paper demonstrates that light diffraction tomography can be used to measure the acoustic field of micromachined ultrasonic transducers (MUT) in cases in which standard methods like hydrophone arid microphone measurements fail. Two types of MUTs have been characterized with the method, one air-coupled capacitive MUT (cMUT) and one waterloaded continuous wave (CW) miniature multilayer lead zirconate titanate (PZT) transducer. Light diffraction tomography is an ultrasound measurement method with some special characteristics. Based on the interaction of light and ultrasound, it combines light intensity measurements with tomography algorithms to produce a measurement system. The method offers nonperturbing pressure measurements with high spatial resolution. It has been shown that, under certain circumstances, light diffraction tomography can be used as an absolute pressure measurement method with accuracy in the order of 10% in water and 13% in air. The results show that air-coupled cMUTs in the frequency range of about 1 MHz as well as the extreme near field of a miniaturized CW 10 MHz waterloaded transducer were successfully characterized with light diffraction tomography.
机译:本文证明,在水听器和传声器测量等标准方法失败的情况下,光衍射断层扫描可用于测量微机械超声换能器(MUT)的声场。该方法已表征了两种类型的MUT,一种是空气耦合电容MUT(cMUT),另一种是水载连续波(CW)微型多层锆钛酸铅(PZT)传感器。光衍射层析成像是一种具有某些特殊特征的超声测量方法。基于光和超声的相互作用,它将光强度测量结果与层析成像算法结合在一起,以生成测量系统。该方法提供具有高空间分辨率的无干扰压力测量。已经表明,在某些情况下,光衍射断层摄影术可以用作绝对压力测量方法,其精度在水中为10%,在空气中为13%。结果表明,在约1 MHz的频率范围内,空气耦合的cMUT以及微型CW 10 MHz载水换能器的极端近场都可以通过光衍射层析成像技术成功表征。

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