期刊文献+

一种横向耦合改进型结构极窄带声表面波滤波器研究 被引量:1

Study on Ultra-Narrow Band Surface Acoustic Wave Filter with Improved Transversely Coupled Structure
在线阅读 下载PDF
导出
摘要 该文采用波导法分析了横向耦合极窄带声表面波滤波器速度变化模式,并用多物理场COMSOL软件对横向耦合声表面波滤波器的中心耦合条结构和耦合距离的变化建模进行计算,并分析频响特性。采用石英晶体作为底衬,设计了频率为898.144 MHz,插入损耗约为6 dB的极窄带声表面波滤波器并进行验证。结果表明,中心耦合条开腔结构的声表面波滤波器的相对带宽达到7.2‰,与不开腔结构5.2‰相对带宽相比,提升了2‰。这说明横向耦合声表面波滤波器的中心耦合条结构变化,能改变极窄带声表面波滤波器的相对带宽。 In this study,the velocity change mode of a transversely coupled ultra-narrow band surface acoustic wave filter is analyzed using the waveguide method.The changes in the central coupling strip structure and coupling distance of the transversely coupled surface acoustic wave filter are modeled and calculated using the multi-physics COMSOL software,and the frequency response characteristics are analyzed.An ultra-narrow band SAW filter with frequency of 898.144 MHz and insertion loss of 6 dB has been designed and verified.The results show that the fractional bandwidth of surface acoustic wave filter using the center coupled bar with an open cavity reaches 7.2‰,which is 2‰higher than that of the non-open cavity structure of 5.2‰.This indicates that the change of the center coupled bar structure of a transversely coupled surface acoustic wave filter can change the fractional bandwidth of ultra-narrow band surface acoustic wave filters.
作者 张显洪 杨卫东 肖强 蒋道军 张晟 施建峰 ZHANG Xianhong;YANG Weidong;XIAO Qiang;JIANG Daojun;ZHANG Sheng;SHI Jianfeng(The 26th Institute of China Electronics Technology Group Corporation,Chongqing 400060,China)
出处 《压电与声光》 CAS 北大核心 2024年第3期306-309,共4页 Piezoelectrics & Acoustooptics
基金 国家重大预研项目(31512030307,31512030304)。
关键词 横向耦合 极窄带 声表面波滤波器 物理场COMSOL软件 相对带宽 lateral coupled ultra-narrow band SAW filter multi-physics COMSOL software fractional bandwidth
  • 相关文献

参考文献3

二级参考文献13

  • 1TIERSTEN H F,SMYTHE R C. Guided acoustic-sur-face wave filters[C]//Los Angeles: Ultrasonics Sym- posium Proceedings, 1975 : 293-294.
  • 2TANAKA M, MORITA T, ONO K, et al. Narrowbandpass filter using double-mode SAW resonators on quartz [C]//Pennsylvania: 38th Annual FrequencyControl Symposium, 1984:286-293.
  • 3TSUTSUMI J, IKATA O, SATOH Y. Transversely coupled resonator filters with 0. 1% fractional band-width in quartz [C]//San Antonio: IEEE Ultrasonics Symposium, 1996 : 65-69.
  • 4WANG R,ZHANG D. COM parameters of sortie cora- l r monly used subs rates[J]. Journal of Nanjing Universi-ty( Natural Sciences), 2000,36 (4) : 474-478.
  • 5CHEN Dongpei, HAUS H A. AnNysis of metal-strip SAW grating and transducer[J]. IEEE Transactionson Sonics and Ultrasonics, 1985, SU-32(3) : 395-408.
  • 6HUNT W D,CAMERON T,SAW J C B, et al. Mode profiles in waveguide-eoupled resonators [j ]. J Appl Phys, 1993, 74(8):4886-4893.
  • 7XU Y F, PETER M S. Modeling of waveguide-eou-pled SAW resonators[J ]. IEEE Tran UFFC, 1994,41 (2) ~256-259.
  • 8秦廷辉,周平,朱勇,谢睦宽.声表面波横向耦合谐振滤波器[J].压电与声光,1998,20(6):361-363. 被引量:4
  • 9郭艳明,何世堂,汪承灏.声表面波低插入损耗滤波器的研制(Ⅱ)──横向耦合谐振滤波器[J].声学学报,1998,23(5):473-477. 被引量:3
  • 10欧黎,黄广伦,吕翼.应用声表面波技术的救生接收机[J].压电与声光,1999,21(3):161-163. 被引量:1

共引文献7

同被引文献4

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部