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基于金刚石的电容式微机械超声换能器在浸没中的应用。

Diamond-based capacitive micromachined ultrasonic transducers in immersion.

机构信息

Department of Electrical and Electronics Engineering, Middle East Technical University, Ankara, Turkey.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Feb;60(2):414-20. doi: 10.1109/TUFFC.2013.2578.

Abstract

Diamond is a superior membrane material for capacitive micromachined ultrasonic transducers (CMUTs). By using ultrananocrystalline diamond (UNCD) membrane and plasma-activated wafer bonding technology, a single diamond-based circular CMUT is demonstrated and operated in immersion for the first time. The diamond-based CMUT, biased at 100 V, is excited with a 10-cycle burst of 36 V(p-p) sine signal at 3.5 MHz. Pressure generated on a 2-D plane coincident with the normal of the CMUT is measured using a broadband hydrophone. Peak-to-peak hydrophone voltage measurements along the scan area clearly indicate the main lobe and the side lobes, as theoretically predicted by our directivity function calculations. The peak-to-peak hydrophone voltage on the axial direction of the CMUT is found to be in agreement with our theoretical calculations in the Fraunhofer region (-45 mm <y <-15 mm). The spectrum of the diamond-based CMUT is measured for a dc bias of 100 V, and ac excitation with 30-cycle bursts of 9, 36, and 54 V(p-p) sine signal. A peak response at 5.6 MHz is measured for all ac amplitudes. Overall, diamond is shown to be an applicable membrane for CMUT devices and applications.

摘要

钻石是电容式微机械超声换能器 (CMUT) 的优异膜材料。通过使用纳米晶金刚石 (UNCD) 膜和等离子体活化晶片键合技术,首次展示并在浸没中操作了基于单个金刚石的圆形 CMUT。基于金刚石的 CMUT 在 100 V 的偏置下,用 3.5 MHz 的 10 个周期的 36 V(p-p) 正弦信号脉冲激励。使用宽带水听器测量与 CMUT 法线重合的二维平面上产生的压力。沿扫描区域的峰值到峰值水听器电压测量清楚地表明了主瓣和旁瓣,这与我们的指向性函数计算理论预测一致。在 CMUT 的轴向方向上的峰值到峰值水听器电压与我们在夫琅禾费区 (-45 mm < y < -15 mm) 的理论计算相符。在 100 V 的直流偏置下测量基于金刚石的 CMUT 的频谱,并使用 9、36 和 54 V(p-p) 正弦信号的 30 个周期脉冲进行交流激励。所有交流幅度均测量到 5.6 MHz 的峰值响应。总体而言,钻石被证明是 CMUT 器件和应用的一种适用的膜材料。

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