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3-D imaging using row???column-addressed arrays with integrated apodization??? part ii: transducer fabrication and experimental results

机译:使用行的3D成像?具有集成变迹的列寻址阵列???第二部分:换能器的制造和实验结果

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This paper demonstrates the fabrication, characterization, and experimental imaging results of a 62+62 element λ/2-pitch row???column-addressed capacitive micromachined ultrasonic transducer (CMUT) array with integrated apodization. A new fabrication process was used to manufacture a 26.3 mm by 26.3 mm array using five lithography steps. The array includes an integrated apodization, presented in detail in Part I of this paper, which is designed to reduce the amplitude of the ghost echoes that are otherwise prominent for row???column-addressed arrays. Custom front-end electronics were produced with the capability of transmitting and receiving on all elements, and the option of disabling the integrated apodization. The center frequency and ???6-dB fractional bandwidth of the array elements were 2.77 ?? 0.26 MHz and 102 ?? 10%, respectively. The surface transmit pressure at 2.5 MHz was 590 ?? 73 kPa, and the sensitivity was 0.299 ?? 0.090 V/Pa. The nearest neighbor crosstalk level was ???23.9 ?? 3.7 dB, while the transmit???to???receive-elements crosstalk level was ???40.2 ?? 3.5 dB. Imaging of a 0.3-mm-diameter steel wire using synthetic transmit focusing with 62 single-element emissions demonstrated axial and lateral FWHMs of 0.71 mm and 1.79 mm (f-number: 1.4), respectively, compared with simulated axial and lateral FWHMs of 0.69 mm and 1.76 mm. The dominant ghost echo was reduced by 15.8 dB in measurements using the integrated apodization compared with the disabled configuration. The effect was reproduced in simulations, showing a ghost echo reduction of 18.9 dB.
机译:本文展示了具有集成变迹的62 + 62元素λ/ 2节距行的列寻址电容微加工超声换能器(CMUT)阵列的制造,表征和实验成像结果。使用五个光刻步骤,使用一种新的制造工艺来制造26.3 mm x 26.3 mm的阵列。该阵列包括一个集成的变迹,将在本文的第一部分中详细介绍,该阵列的设计用于减小虚假回波的幅度,否则,对于行列寻址阵列,该回声会突出。定制的前端电子产品具有在所有元素上进行发送和接收的功能,并且可以禁用集成切趾功能。阵列元件的中心频率和6-dB分数带宽为2.77Ω。 0.26 MHz和102 ??分别为10%。 2.5 MHz时的表面透射压力为590Ω。 73 kPa,灵敏度为0.299 ?? 0.090伏/帕最近的邻居串扰电平为23.9Ω。发射元件与接收元件的串扰电平为3.7dB,而串扰电平为40.2Ω。 3.5分贝。使用具有62个单元素发射的合成发射聚焦对直径为0.3 mm的钢丝进行成像后,轴向和横向FWHM分别为0.71 mm和1.79 mm(f值:1.4),而模拟的轴向和横向FWHM为0.69。毫米和1.76毫米。与禁用配置相比,使用集成切趾技术在测量中,主要幻像回声降低了15.8 dB。在模拟中再现了该效果,显示重影回声降低了18.9 dB。

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