Department of Electronics and Telecommunications,, Norwegian University of Science and Technology, Trondheim, Norway.
IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Dec;56(12):2711-21. doi: 10.1109/TUFFC.2009.1362.
Capacitive micromachined ultrasonic transducers (CMUTs) with 5.7 mum radius, realized by wafer bonding, have been characterized by both optical and electrical measurements. These measurements are performed by our heterodyne interferometer and a network analyzer, respectively. The results from this article will be used to improve the fabrication of next-generation CMUTs. We have investigated the spread in resonance frequency of different CMUT membranes along the array. Q-factors have been obtained using both measurement methods, and the results from the 2 methods have been numerically compared. The relation between applied dc voltage and resonance frequency has been studied. Temperature measurements show that increasing temperature leads to a small decrease in the resonance frequency of the CMUTs; however, the decrease is small enough to ensure stable operation with small variations in room temperature. The heterodyne interferometer is used to inspect the vibration pattern of the CMUTs' higher harmonic modes. These modes are located at approximately 60 MHz in air. To the authors' knowledge, vibration modes at frequencies >40 MHz have not been previously studied.
采用晶圆键合技术制作的半径为 5.7 微米的电容式微机械超声换能器 (CMUT) 通过光学和电学测量进行了特性描述。这些测量分别由我们的外差干涉仪和网络分析仪完成。本文的结果将用于改进下一代 CMUT 的制造。我们研究了不同 CMUT 膜片在阵列中的共振频率分布。两种测量方法都得到了 Q 值,并且对两种方法的结果进行了数值比较。研究了施加的直流电压与共振频率之间的关系。温度测量表明,温度升高会导致 CMUT 共振频率略有下降;然而,这种下降幅度很小,足以确保在室温变化较小的情况下稳定运行。外差干涉仪用于检查 CMUT 更高阶谐波模式的振动模式。这些模式在空气中的频率约为 60MHz。据作者所知,以前没有研究过频率大于 40MHz 的振动模式。