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Articles

Ultra-wideband bandpass filters with triple and quad frequency notched bands

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Pages 1624-1630 | Received 10 May 2012, Accepted 18 Jun 2012, Published online: 19 Jul 2012

References

  • FCC, Revision of Part 15, The commission’s rules regarding to ultra-wide-band transmission system, First Note and Order Federal Communication Commission, ET-Docket; 2002: 98–153.
  • Li , C-M and Ye , L-H . 2011 . Improved dual band-notched UWB slot antenna with controllable notched bandwidths . Progress in Electromagnetics Research , 115 : 477 – 493 .
  • Xu , HY , Zhang , H , Lu , K and Zeng , X-F . 2011 . A holly-leaf-shaped monopole antenna with low RCS for UWB application . Progress in Electromagnetics Research , 117 : 35 – 50 .
  • Saleem , R and Brown , AK . 2011 . Empirical miniaturization analysis of inverse parabolic step sequence based UWB antennas . Progress in Electromagnetics Research , 114 : 369 – 381 .
  • Russo , I , Boccia , L , Amendola , G and Schumacher , H . 2012 . Compact hybrid coaxial architecture for 3 GHz–10 GHz UWB quasi-optical power combiners . Progress in Electromagnetics Research , 122 : 77 – 92 .
  • Wong , S.-K. , Kung Wai Lee , F. , Maisurah , S. and Osman , M.N.B. 2011 . A wimedia compliant CMOS RF power amplifier for ultra-wideband (UWB) transmitter . Progress in Electromagnetics Research , 112 : 329 – 347 .
  • Li , Y , Jing , X , Lv , H and Wang , J . 2012 . Analysis of characteristics of two close stationary human targets detected by impulse radio UWB radar . Progress in Electromagnetics Research , 126 : 429 – 447 .
  • Crowgey , BR , Rothwell , EJ , Kempel , LC and Mokole , EL . 2010 . Comparison of UWB short-pulse and stepped-frequency radar systems for imaging through barriers . Progress in Electromagnetics Research , 110 : 403 – 419 .
  • Yang , Y , Roy , SM , Karmakar , NC and Zhu , X . 2012 . A novel narrow bandpass filter for image rejection and channel selection in a wireless sleep apnoea monitoring system . Progress in Electromagnetics Research , 125 : 483 – 501 .
  • Kuo , J-T , Fan , C-Y and Tang , S-C . 2012 . Dual-wideband bandpass filters with extended stopband based on coupled-line and coupled three-line resonators . Progress in Electromagnetics Research , 124 : 1 – 15 .
  • Chaudhary , G , Jeong , Y , Kim , K and Ahn , D . 2012 . Design of dual-band bandpass filters with controllable bandwidths using new mapping function . Progress in Electromagnetics Research , 124 : 17 – 34 .
  • Chen , W-Y , Weng , M-H , Chang , S-J , Kuan , H and Su , Y-H . 2012 . A new tri-band bandpass filter for GSM, WiMAX and ultra-wideband responses by using asymmetric stepped impedance resonators . Progress in Electromagnetics Research , 124 : 365 – 381 .
  • Kuo , J-T and Lai , S-W . 2012 . New dual-band bandpass filter with wide upper rejection band . Progress in Electromagnetics Research , 123 : 371 – 384 .
  • Chen , H and Zhang , Y-X . 2007 . A novel and compact UWB bandpass filter using microstrip fork-form resonators . Progress in Electromagnetics Research , 77 : 273 – 280 .
  • Hao , ZC , Hong , JS , Parry , JP and Hand , DP . 2009 . Ultra-wideband bandpass filter with multiple notch bands using nonuniform periodical slotted ground structure . IEEE Transactions on Microwave Theory and Techniques , 59 ( 12 ) : 3080 – 3088 .
  • Huang , JQ , Chu , Q-X and Liu , C-Y . 2010 . Compact UWB filter based on surface-coupled structure with dual notched bands . Progress in Electromagnetics Research , 106 : 311 – 319 .
  • Hsiao , PY and Weng , R-M . 2010 . Compact tri-layer ultra-wideband bandpass filter with dual notch bands . Progress in Electromagnetics Research , 106 : 49 – 60 .
  • Wei , F , Wu , QY , Shi , XW and Chen , L . 2011 . Compact UWB bandpass filter with dual notched bands based on SCRLH resonator . IEEE Microwave and Wireless Components Letters , 21 ( 1 ) : 28 – 30 .
  • Gao , MJ , Wu , L-S and Mao , J-F . 2012 . Compact notched ultra-wideband bandpass filter with improved out-of-band performance using quasi electromagnetic bandgap structure . Progress in Electromagnetics Research , 125 : 137 – 150 .
  • Ghatak , R , Sarkar , P , Mishra , RK and Poddar , DR . 2011 . A compact UWB bandpass filter with embedded SIR as band notch structure . IEEE Microwave and Wireless Components Letters , 21 ( 5 ) : 261 – 263 .
  • Song , KJ and Xue , Q . 2010 . Compact ultra-wideband (UWB) bandpass filters with multiple notched bands . IEEE Microwave and Wireless Components Letters , 20 ( 8 ) : 447 – 449 .
  • Shaman , H and Hong , JS . 2007 . Asymmetric parallel-coupled lines for notch implementation in UWB filters . IEEE Microwave and Wireless Components Letters , 17 ( 3 ) : 516 – 518 .
  • Liu , CY , Jiang , T , Li , Y-S and resonators , A novel UWB filter with notchband characteristic using radial-UIR/SIR loaded stub . 2011 . Journal of Electromagnetic Waves and Applications , 25 ( 2–3 ) : 233 – 245 .
  • Sekar , V and Entesari , K . 2011 . Miniaturized UWB bandpass filters with notch using slow-wave CPW multiple-mode resonators . IEEE Microwave and Wireless Components Letters , 21 ( 2 ) : 80 – 82 .
  • Luo , X , Ma , JG , Ma , KX and Yeo , KS . 2010 . Compact UWB bandpass filter with ultra narrow notched band . IEEE Microwave and Wireless Components Letters , 20 ( 3 ) : 145 – 147 .
  • Patin , JM , Labadie , NR and Sharma , SK . 2010 . Investigations on an H-fractal wideband microstrip filter with multi-passbands and a tuned notch band . Progress in Electromagnetics Research B , 22 : 285 – 303 .
  • Zhu , L , Bu , H and Wu , K . 2000 . Aperture compensation technique for innovative design of ultra-broadband microstrip bandpass filter . IEEE MTT-S International Microwave Symposium Digest , 1 : 315 – 318 .
  • Zhu , L , Sun , S and Menzel , W . 2005 . Ultra-wideband (UWB) bandpass filters using multiple-mode resonator . IEEE Microwave and Wireless Components Letters , 15 ( 11 ) : 796 – 798 .

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