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Improved Ring-Down Time and Axial Resolution of pMUTs via a Phase-Shift Excitation Scheme

机译:通过相移激励方案改进了PMUT的倒闭时间和轴向分辨率

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We have proposed a phase-shift cancellation scheme to reduce the ring down period of ultrasonic transducers and increase axial resolutions. A piezoelectric micromachined ultrasonic transducer (pMUT) consisting of 80 elements with circular diaphragms of 415 μm in radius made of 2 μm-thick AlN layer has a measured resonant frequency of 160 kHz. The ring down period is minimized by emitting ten pulses followed by six additional pulses with a 180° phase difference. Results show the ring down period is shortened by 13% and 7.5% for a single element and the 80-element array, respectively. In addition, the axial distance sensing resolution is increased by 30% and 25% for the single element and the array structure, respectively. These results demonstrate the effectiveness of the proposed scheme for applications at a short distance and/or high axial resolution, including short-distance medical ultrasonic imaging, fingerprints, gesture identifications, and 3D imaging.
机译:我们提出了相移取消方案,以减少超声换能器的倒计时期并增加轴向分辨率。压电微机械超声换能器(Pmut)由80元元素组成,其半径为415μm的圆形隔膜,由2μm厚的AlN层制成的半径具有测量的谐振频率为160kHz。通过发射十个脉冲之后的六个附加脉冲具有180°差异的脉冲来最小化。结果表明,单个元素和80元元阵列分别缩短了倒退周期13%和7.5%。另外,单个元件和阵列结构的轴向距离感测分辨率分别增加了30%和25%。这些结果证明了所提出的方案在短距离和/或高轴向分辨率下的应用程序的有效性,包括短距离医用超声成像,指纹,手势识别和3D成像。

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