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Through-Transmission Scanning Acoustic Tomography Using Capacitive Micromachined Ultrasound Transducer

机译:使用电容式微机械超声换能器的通过传输扫描声学断层扫描

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We present the first through-transmission images in scanning acoustic tomography (SAT) using a capacitive micromachined ultrasound transducer (CMUT) as a receiving probe. A CMUT cell with a narrow gap of 30 nm was used to obtain high receive sensitivity. A 30-MHz receiving CMUT probe with a -3-dB fractional bandwidth of 109 % was used in the through-transmission technique of SAT. In the imaging of artificial linear voids formed in a Si wafer using a 50-MHz piezoelectric transmitting probe, the lateral resolution was approximately 65 μm, In the reception of the transmitted pulse through a 2-mm thick acryl plate, the signal-to-noise ratio of the CMUT probe was 1.7 times higher than that of a 25-MHz piezoelectric one. In the imaging of a 2.3-mm thick ball grid array (BGA) package using the 50-MHz piezoelectric transmitting probe, the CMUT probe was more sensitive than the piezoelectric probe by 10 dB in the frequency range of 20 to 30 MHz. The resolution of the CMUT probe was higher than that of the piezoelectric one.
机译:我们使用电容微机械超声换能器(CMUT)作为接收探针介绍扫描声学断层扫描(SAT)的第一通透过图像。使用具有30nm狭窄间隙的CMUT细胞来获得高接收灵敏度。在SAT的透过传输技术中使用了30MHz接收CMUT探针,具有109 %的-3-dB分数带宽。在使用50MHz压电传递探针中形成的Si晶片中形成的人造线性空隙的成像中,横向分辨率约为65μm,在通过2mm厚的丙烯酸板的透射脉冲的接收中,信号 - 到 - CMUT探针的噪声比率高1.7倍,比25-MHz压电液高1.7倍。在使用50-MHz压电传输探针的2.3mm厚的球栅阵列(BGA)封装的成像中,CMUT探针比电压探针更敏感,在20至30MHz的频率范围内将压电探针10dB更敏感。 CMUT探针的分辨率高于压电探针的分辨率。

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