期刊文献+

折线形哑铃缺陷地结构与微波滤波器设计 被引量:1

Folding dumb-bell defected ground structure and microwave filter design
下载PDF
导出
摘要 提出一种新型的折线形哑铃缺陷地结构(FDGS)。该FDGS对普通哑铃形DGS进行了改进,加入折线结构,从而在不增加蚀刻面积的情况下,大大增加其等效并联电容,获得较低的谐振频率。仿真结果显示,当某一特定尺寸的普通DGS的谐振频率位于4.7GHz时,同样大小的FDGS的谐振频率只有2,25GHz。制作了一个由三个相同的FDGS级联构成的带阻滤波器。结果表明:该带阻滤波器在1.8—2.78GHz之间,对信号的抑制从-26dB到-41dB。 A novel folding dumb-bell defected ground structure (FDGS) was presented. The FDGS applied folding structure to the general dumb-bell FDGS in order to improve the performances. The equivalent capacitance of the FDGS was enhanced efficiently by the folding structure thus lower resonance frequency was achieved. Simulating results show the resonance frequency of the FDGS is 2.25 GHz, general dumb-bell DGS is 4,7 GHz with the same area. A band-reject filter built by three cascade FDGS and measured. The results show that the filter rejects signals from -26 to - 41 dB in 1.8 GHz - 2.78 GHz.
出处 《电子元件与材料》 CAS CSCD 北大核心 2008年第9期22-25,共4页 Electronic Components And Materials
基金 国家自然科学基金资助项目(No.60601021)
关键词 电子技术 折线形哑铃缺陷地结构 滤波器 仿真 electron technology FDGS filter simulation
  • 相关文献

参考文献1

二级参考文献6

  • 1Park J I, Kim C S, Kim J, et al. Modeling of a photonic bandgap and its application for the low-pass filter design [C]. Singapore: Asia Pacific Microwave Conference. 1999.
  • 2Lim J S, Kim H S, Alan D, et al. A power amplifier with efficiency improved using defected ground structure[J]. IEEE Microwave Guided Wave Lett, 2001, 11(4): 170-172.
  • 3Lee Y T, Lim J K, Park J S, et al. A novel phase noise reduction technique in oscillator using defected ground structure[J]. IEEE Microwave Guided Wave Lett, 2002, 12(2): 39-41.
  • 4Kim C S, Park J S, Dal A, et al. A novel 1-D periodic defected ground structure for planar circuits[J]. IEEE Microwave Guided Wave Lett, 2000,10(4): 131-133.
  • 5Lim J S, Kim C S, Lee Y T, et al. Vertically periodic defected ground structure for planar transmission lines[J]. Electron Lett, 2002, 38(8):803-804.
  • 6Liu H W, Li Z E Sun X W, et al. An improved 1-D periodic defected ground structure for microstrip line[J]. IEEE Microwave Wireless Compon Lett, 2004, 14(4): 180-182.

共引文献3

同被引文献12

  • 1PARK J I,KIM C S,PARK J S,et al.Modeling of a photonic bandgap and its application for the low-pass filter design[C]//Singapore:Asia-Pacific Microwave Conference,1999:331-334.
  • 2FU Shuhong,TONG Chuangming,SHEN Kai.An improved asymmetric defected ground structure cell and its application to lowpass filter[J].Microwave and Optical Technology Letters,2009,51(12):2933-2935.
  • 3YASUZUMI T,UWANO T,HASHIMOTO O.Microstrip high-pass fitler with attenuation poles using cross-coupling[C]//Yokohama:Asia-Pacific Microwave Conference Proceedings,2010:107-110.
  • 4BAENA J D,BONACHE J,MARTíN F,et al.Equivalent circuit models for split ring resonators and complementary split rings resonators coupled to planar transmission lines[J].IEEE Transactions on Microwave Theory and Techniques,2005,53(4):1451-1461.
  • 5LIU Y,LIANG C H,WANG Y J.Ultra-wideband bandpass filter using hybrid quasi-lumped elements and defected ground structure[J].Electronics Letters,2009,45(17):899-900.
  • 6TING S W,TAM K W,MARTINS R P.Compact microstrip quasi-elliptic bandpass filter using open-loop dumbbell shaped defected ground structure[C]//San Francisco:IEEE MTT-S International Microwave Symposium Digest,2006:527-530.
  • 7THOMSON N,Hong J S.Compact ultra-wideband microstrip/coplanar waveguide bandpass filter[J].IEEE Microwave and Wireless Components Letters,2007,17(3):184-186.
  • 8LUO X,QIAN H,MA J G,et al.Wideband bandpass filter with excellent selectivity using new CSRR-based resonator[J].Electronics Letters,2010,46(20):1390-1391.
  • 9LIU J C,SHU D S,ZENG B H,et al.Improved equivalent circuits for cmplementray split-ring resonatorbased high-pass filter with C-shaped couplings[J].Microwaves Antennas&Propagation,2008,2(6):622-626.
  • 10杨海峰,邢孟江.具有三阶谐振腔的S波段LTCC带通滤波器设计[J].重庆理工大学学报(自然科学),2012,26(6):98-101. 被引量:10

引证文献1

二级引证文献2

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