283
Views
6
CrossRef citations to date
0
Altmetric
Articles

Tri-band bandpass filter with wide stop-band using stub-loaded triple-mode resonator

, , , , &
Pages 439-447 | Received 21 Sep 2012, Accepted 31 Oct 2012, Published online: 03 Dec 2012

References

  • Weng M-H, Wu H-W. A novel triple-band bandpass filter using multilayer-based substrates for WiMAX. In: Europe Microwave Conference. Proceedings; 2007 Oct; Munich, Germany. p. 325–328..
  • Zhang, XY, Xue, Q, and Hu, BJ, 2010. Planar tri-band bandpass filter with compact size, IEEE Microwave Compon. Lett. 20 (2010), pp. 262–264.
  • Liu, Y, Dou, W-B, and Zhao, Y-J, 2010. A tri-band bandpass filter realized using tri-mode T-shaped branches, Prog. Electromagnet. Res. 105 (2010), pp. 425–444.
  • Li, J, and Wei, CL, 2011. Compact dual-mode tri-band transversal mi-crostrip bandpass filter, Prog. Electromagnet. Res. 26 (2011), pp. 161–168.
  • Lee, C-H, Hsu, C-IG, and Jhuang, HK, 2006. Design of a new tri-band microstrip BPF using combined quarter-wavelength SIRs, IEEE Microw. Wireless Compon. Lett. 16 (2006), pp. 594–596.
  • Chen, F-C, Chu, Q-X, and Tu, ZH, 2008. Tri-band bandpass filter using stub loaded resontors, Electron. Lett. 44 (2008), pp. 747–749.
  • Chu, Q-X, Chen, F-C, Tu, ZH, and Wang, H, 2009. A novel crossed resonator and its applications to bandpass filters, IEEE Trans. Microwave Theory Tech. 57 (2009), pp. 1753–1759.
  • Chu, Q-X, Wu, X-H, and Chen, F-C, 2011. Novel compact tri-band bandpass filter with controllable bandwidths, IEEE Microwave Compon. Lett. 21 (2011), pp. 655–657.
  • Hsu, C-IG, Lee, C-H, and Hsieh, Y-H, 2008. Tri-band bandpass filter with sharp passband skirts designed using tri-section SIRs, IEEE Microw. Wireless Compon. Lett. 18 (2008), pp. 19–21.
  • Doan, MT, Che, WQ, and Feng, WJ, 2012. Tri-band bandpass filter using square ring short stub loaded resonators, Electron. Lett. 48 (2012), pp. 106–107.
  • Lin, X-M, 2010. Design of compact tri-band bandpass filter using A/4 and stub-loaded resonators, J. Electromagn. Waves Appl. 24 (2010), pp. 2029–2035.
  • Liu, S-K, and Zheng, F-Z, 2012. A new compact tri-band bandpass filter using step impedance resonators with open stubs, J. Electromagn. Waves Appl. 26 (2012), pp. 130–139.
  • Ren, L-Y, 2010. Tri-band bandpass filters based on dual-plane microstrip/DGS slot structure, IEEE Microw. Wireless Compon. Lett. 20 (2010), pp. 429–431.
  • Zhang, XY, Chen, JX, Shi, J, and Xue, Q, 2009. High-selectivity dual-band bandpass filter using asymmetric stepped-impedance resonators, Electron. Lett. 45 (2009), pp. 63–64.
  • Zhao, H, and Cui, T-J, 2007. Novel triple-mode resonators using split-ring resonator, Microwave Opt. Tech. Lett. 49 (29) (2007), pp. 182–922.
  • Ma, D-C, Xiao, Z-Y, Xiang, L-L, Wu, X-H, Huang, C-Y, and Kou, X, 2011. Compact dual-band bandpass filter using folded sir with two stubs for WLAN, Prog. Electromagnet. Res. 117 (2011), pp. 357–364.
  • Ma, D-C, Xiao, Z-Y, Xiang, L-L, Wu, X-H, Huang, C-Y, and Kou, X, 2011. Compact dual-band bandpass filter using folded SIR with two stubs for WLAN, Prog. Electromagnet. Res. 117 (2011), pp. 357–364.
  • Zhang, XY, Chen, JX, Xue, Q, and Li, SM, 2007. Dual-band bandpass filters using stub-loaded resonators, IEEE Microwave Compon. Lett. 17 (2007), pp. 583–585.
  • Lin, WJ, Chang, CS, Li, JY, Lin, DB, and Chen, LS, 2009. A new approach of dual-band filters by stepped impedance simplified cascaded quadruplet resonators with slot coupling, Prog. Electromagn. Res. 9 (2009), pp. 19–28.
  • Velazquez-Ahumada, MDC, Martel-Villagr, J, Medina, F, and Mesa, F, 2010. Application of stub loaded folded stepped impedance resonators to dual-band filter design, Prog. Electromagn. Res. 102 (2010), pp. 107–124.
  • Yin, Q, Wu, L-S, Zhou, L, and Yin, W-Y, 2010. Compact dual-band bandpass filter using asymmetrical dual stub loaded open-loops, J. Electromagn. Waves Appl. 24 (2010), pp. 2397–2406.
  • Yang, C-F, Chen, Y-C, Kung, C-Y, Lin, J-J, and Sun, T-P, 2011. Design and fabrication of a compact quad-band bandpass filter using two different parallel positioned resonators, Prog. Electromagn. Res. 115 (2011), pp. 159–172.
  • Pozar, DM, 1998. Microwave Engineering. New York, NY: Wiley; 1998.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.