Jung Soon In, Ryu Chaehyun, Piazza Gianluca, Kim Hoe Joon
Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, Korea.
Department of Electrical and Computer Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA.
Micromachines (Basel). 2019 Nov 7;10(11):758. doi: 10.3390/mi10110758.
This study presents the effects of bottom electrode designs on the operation of laterally vibrating aluminum nitride (AlN) contour-mode resonators (CMRs). A total of 160 CMRs were analyzed with varying bottom electrode areas at two resonant frequencies () of about 230 MHz and 1.1 GHz. Specifically, we analyzed the impact of bottom electrode coverage rates on the resonator quality factor () and electromechanical coupling (), which are important parameters for Radio Frequency (RF) and sensing applications. From our experiments, exhibited different trends to electrode coverage rates depending on the device resonant frequencies, while increased with the coverage rate regardless of . Along with experimental measurements, our finite element analysis (FEA) revealed that the bottom electrode coverage rate determines the active (or vibrating) region of the resonator and, thus, directly impacts . Additionally, to alleviate thermoelastic damping (TED) and focus on mechanical damping effects, we analyzed the device performance at 10 K. Our findings indicated that a careful design of bottom electrodes could further improve both and of AlN CMRs, which ultimately determines the power budget and noise level of the resonator in integrated oscillators and sensor systems.
本研究展示了底部电极设计对横向振动氮化铝(AlN)轮廓模式谐振器(CMR)运行的影响。总共分析了160个CMR,其底部电极面积不同,谐振频率约为230 MHz和1.1 GHz。具体而言,我们分析了底部电极覆盖率对谐振器品质因数()和机电耦合()的影响,这两个参数对于射频(RF)和传感应用很重要。从我们的实验来看,根据器件谐振频率的不同,呈现出与电极覆盖率不同的趋势,而无论 如何, 都随覆盖率增加。除了实验测量,我们的有限元分析(FEA)表明,底部电极覆盖率决定了谐振器的有源(或振动)区域,因此直接影响 。此外,为了减轻热弹性阻尼(TED)并专注于机械阻尼效应,我们分析了该器件在10 K时的性能。我们的研究结果表明,精心设计底部电极可以进一步提高AlN CMR的 和 ,这最终决定了集成振荡器和传感器系统中谐振器的功率预算和噪声水平。