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A top-crossover-to-bottom addressed segmented annular array using piezoelectric micromachined ultrasonic transducers

机译:使用压电微加工超声换能器的从上到下寻址的分段环形阵列

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We design and fabricate segmented annular arrays (SAAs) using piezoelectric micromachined ultrasonic transducers (pMUTs) to demonstrate the feasibility of acoustic focusing of ultrasound. The fabricated SAAs have 25 concentric top-electrode signal lines and eight bottom-electrodes for grounding to enable electronic steering of selectively grouped ultrasonic transducers from 2393 pMUT elements. Each element in the array is connected by top-crossover- to-bottom metal bridges, which reduce the parasitic capacitance. Circular-shaped pMUT elements, 120 mu m in diameter, are fabricated using 1 mu m-thick sol-gel lead zirconate titanate on a silicon wafer. To utilize the high-density pMUT array, a deep reactive ion etching process is used for anisotropic silicon etching to realize the transducer membranes. The resonant frequency and effective coupling coefficient of the elements, measured with an impedance analyzer, yields 1.517 MHz and 1.29%, respectively, in air. The SAAs using pMUTs are packaged on a printed circuit board and coated with parylene C for acoustic intensity measurements in water. The ultrasound generated by each segmented array is focused on a selected point in space. When a 5 V-pp, 1.5 MHz square wave is applied, the maximum spatial peak temporal average intensity (I-spta) is found to be 79 mW cm(-2) 5 mm from the SAAs' surface without beamforming. The beam widths (-3 dB) of ultrasonic radiation patterns in the elevation and azimuth directions are recorded as 3 and 3.4 mm, respectively. The results successfully show the feasibility of focusing ultrasound on a small area with SAAs using pMUTs.
机译:我们使用压电微机械超声换能器(pMUT)设计和制造分段环形阵列(SAA),以演示超声声聚焦的可行性。所制造的SAA具有25条同心的顶部电极信号线和8条底部电极用于接地,以实现对2393 pMUT元件中的选择性分组超声换能器的电子控制。阵列中的每个元件都通过顶部跨接至底部的金属桥连接,从而减小了寄生电容。直径为120μm的圆形pMUT元件是使用1μm厚的溶胶凝胶钛酸锆钛酸铅在硅片上制成的。为了利用高密度pMUT阵列,将深度反应离子刻蚀工艺用于各向异性硅刻蚀,以实现换能器膜。用阻抗分析仪测得的元件的谐振频率和有效耦合系数分别在空气中产生1.517 MHz和1.29%。使用pMUT的SAA封装在印刷电路板上,并涂有聚对二甲苯C,用于水中的声强测量。由每个分段阵列产生的超声聚焦在空间中的选定点上。当施加5 V-pp,1.5 MHz方波时,发现最大空间峰值时间平均强度(I-spta)为距SAA表面5 mm处的79 mW cm(-2),而没有波束成形。超声辐射图在仰角和方位角方向的波束宽度(-3 dB)分别记录为3和3.4 mm。结果成功地表明了使用pMUT将SAA聚焦在小范围内的超声的可行性。

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