High-Q Piezoelectric Lamb Wave Resonators based on AlN Plates with Chamfered Corners

被引:6
作者
Lin, Chih-Ming [1 ]
Zou, Jie [1 ]
Chen, Yung-Yu [2 ]
Pisano, Albert P. [3 ]
机构
[1] Univ Calif Berkeley, Dept Mech Engn, Berkeley, CA 94720 USA
[2] Tatung Univ, Dept Mech Engn, Taipei 10452, Taiwan
[3] Univ Calif San Diego, Dept Mech & Aerosp Engn, San Diego, CA 92093 USA
来源
2015 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IUS) | 2015年
关键词
AlN; aluminum nitride; Lamb wave resonators; chamfered plate; finite element analysis; perfectly matched layer; anchor loss; quality factor; ANCHOR;
D O I
10.1109/ULTSYM.2015.0360
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A novel approach to the boost quality factor (Q) of Lamb wave resonators by chamfering the aluminum nitride (AlN) plate is investigated for the first time. It is well-known that the Q's of the AlN Lamb wave resonators are degraded due to energy dissipation through the support tethers. In this work, similar to the beveled edges used in AT-cut quartz resonators, the chamfered corners are utilized to trap vibration energy in the AlN plate to enhance the anchor Q's. Based on finite element analysis (FEA) simulated results, the AlN plate with chamfered corners can efficiently reduce mechanical vibrations in support tethers and trap more mechanical energy in the plate. The experimental results demonstrate that the loaded Q of the Lamb wave resonator is boosted from 2,041 to 3,016 and the minimum impedance is reduced from 87.4 Omega to 61.6 Omega by simply chamfering the AlN rectangular plate, showing a 1.48x increase in measured Q's.
引用
收藏
页数:4
相关论文
共 50 条
  • [41] High performance piezoelectric AlN MEMS resonators for precise sensing in liquids
    Schneider, Michael
    Pfusterschmied, Georg
    Patocka, Florian
    Schmid, Ulrich
    [J]. ELEKTROTECHNIK UND INFORMATIONSTECHNIK, 2020, 137 (03): : 121 - 127
  • [42] Crystallographic Effects on Energy Dissipation in High-Q Silicon Bulk-Mode Resonators
    Tu, Cheng
    Lee, Joshua E. -Y.
    [J]. JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, 2013, 22 (02) : 262 - 264
  • [43] High-Q Silicon Nitride Drum Resonators Strongly Coupled to Gates
    Zhou, Xin
    Venkatachalam, Srisaran
    Zhou, Ronghua
    Xu, Hao
    Pokharel, Alok
    Fefferman, Andrew
    Zaknoune, Mohammed
    Collin, Eddy
    [J]. NANO LETTERS, 2021, 21 (13) : 5738 - 5744
  • [44] Nonlinear photonics with high-Q whispering-gallery-mode resonators
    Lin, Guoping
    Coillet, Aurelien
    Chembo, Yanne K.
    [J]. ADVANCES IN OPTICS AND PHOTONICS, 2017, 9 (04): : 828 - 890
  • [45] Demonstration of compact high-Q silicon microring resonators suspended in air
    Jiang, Wei C.
    Zhang, Jidong
    Lin, Qiang
    [J]. 2014 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2014,
  • [46] Theoretical and Experimental Analysis of the Spurious Modes and Quality Factors for Dual-Mode AlN Lamb-Wave Resonators
    Sun, Haiyan
    Wang, Xingyu
    Zhu, Zheng
    Zhao, Jicong
    [J]. IEICE TRANSACTIONS ON ELECTRONICS, 2023, E106C (03) : 76 - 83
  • [47] Recent Advances in AlN-Based Acoustic Wave Resonators
    Lu, Hao
    Hao, Xiaorun
    Yang, Ling
    Hou, Bin
    Zhang, Meng
    Wu, Mei
    Dong, Jie
    Ma, Xiaohua
    [J]. MICROMACHINES, 2025, 16 (02)
  • [48] A high-Q wavelength filter based on buried heterostructure ring resonators integrated with a semiconductor optical amplifier
    Choi, SJ
    Peng, Z
    Yang, Q
    Hwang, EH
    Dapkus, PD
    [J]. IEEE PHOTONICS TECHNOLOGY LETTERS, 2005, 17 (10) : 2101 - 2103
  • [49] QUALITY FACTOR ENHANCEMENT OF ALN-ON-SI LAMB WAVE RESONATORS USING A HYBRID OF PHONONIC CRYSTAL SHAPES IN ANCHORING BOUNDARIES
    Siddiqi, Muhammad Wajih Ullah
    Lee, Joshua E-Y
    [J]. 2019 20TH INTERNATIONAL CONFERENCE ON SOLID-STATE SENSORS, ACTUATORS AND MICROSYSTEMS & EUROSENSORS XXXIII (TRANSDUCERS & EUROSENSORS XXXIII), 2019, : 913 - 916
  • [50] Structural design and experimental analysis for AlN Lamb-wave resonators with different electrical boundary conditions
    Sun, Haiyan
    Lv, Shitao
    Long, Fei
    Song, Chenguang
    Sun, Xinyi
    Tan, Fazeng
    Zhao, Jicong
    [J]. SOLID-STATE ELECTRONICS, 2022, 195