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Reseach Article

Design and Development of Wideband Band Pass Filter using Signal Interference Technique for 2.4 Ghz Applications

Published on None 2011 by G. A. Fatima Rani, K. Sridhar, M. Ganesh Madhan, J. Sathish Kumar
International Symposium on Devices MEMS, Intelligent Systems & Communication
Foundation of Computer Science USA
ISDMISC - Number 5
None 2011
Authors: G. A. Fatima Rani, K. Sridhar, M. Ganesh Madhan, J. Sathish Kumar
af202839-10b2-4018-bcb3-0897cd421ec7

G. A. Fatima Rani, K. Sridhar, M. Ganesh Madhan, J. Sathish Kumar . Design and Development of Wideband Band Pass Filter using Signal Interference Technique for 2.4 Ghz Applications. International Symposium on Devices MEMS, Intelligent Systems & Communication. ISDMISC, 5 (None 2011), 27-30.

@article{
author = { G. A. Fatima Rani, K. Sridhar, M. Ganesh Madhan, J. Sathish Kumar },
title = { Design and Development of Wideband Band Pass Filter using Signal Interference Technique for 2.4 Ghz Applications },
journal = { International Symposium on Devices MEMS, Intelligent Systems & Communication },
issue_date = { None 2011 },
volume = { ISDMISC },
number = { 5 },
month = { None },
year = { 2011 },
issn = 0975-8887,
pages = { 27-30 },
numpages = 4,
url = { /proceedings/isdmisc/number5/3475-isdm127/ },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Proceeding Article
%1 International Symposium on Devices MEMS, Intelligent Systems & Communication
%A G. A. Fatima Rani
%A K. Sridhar
%A M. Ganesh Madhan
%A J. Sathish Kumar
%T Design and Development of Wideband Band Pass Filter using Signal Interference Technique for 2.4 Ghz Applications
%J International Symposium on Devices MEMS, Intelligent Systems & Communication
%@ 0975-8887
%V ISDMISC
%N 5
%P 27-30
%D 2011
%I International Journal of Computer Applications
Abstract

A wideband band pass filter with a centre frequency of 2.3 GHz and 3-dB bandwidth of approximately 640 MHz, is designed and fabricated. Transmission line section based circuit configuration is used to design the filter. The critical advantage of this scheme is simple structure and easy realization. The designed filter structure is simulated using Agilent ADS tool and the results are in good agreement with the measurement.

References
  1. MATHAEI G.L., YOUNG L., JONES E.M.T: ‘Microwave filters, impedance-matching network, and coupling structures’ (Artech House, Norwood, MA, 1980)
  2. GOMEZ-GARCIA R., ALONSO J.I.: ‘Design of sharp-rejection and low-loss wide-band planar filters using signal-interference techniques’, IEEE Microw. Wirel. Compon. Lett., 2005, 15, (8),pp. 530-532.
  3. HSIEH L.H., CHANG K.: ‘Compact, low insertion-loss, sharp-rejection, and wide-band microstrip bandpass filters’, IEEE Trans. Microw. Theory Tech., 2003, 51, (4), pp. 1241–1246.
  4. MANDAL M.K., MONDAL P.: ‘Design of sharp-rejection, compact, wideband bandstop filters’, IET Microw. Antennas Propag., 2008, Vol. 2, No. 4, pp. 389-393.
  5. MANDAL M.K., MONDAL P., SANYAL S: ‘Low Insertion Loss, Wideband Bandpass Filters with Sharp Rejection Characteristics’, IET Microw. Antennas Propag., 2010, vol. 4, lss. 1, pp. 99-105.
  6. MANDAL M.K., SANYAL S.: ‘Compact bandstop filter using signal interference technique’, IET Electr. Lett., 2007, Vol.43, No.2 pp. 110–111.
  7. MANDAL M.K., DIVYABRAMHAM K., SANYAL S.: ‘Design of compact, wide-band bandstop filters with sharp-rejection Characteristics’, Wiley Microw Opt. Tech. Lett., 2008, Vol.50, pp. 1244–1248.
  8. GOMEZ-GARCIA R.: ‘High-rejection wideband signal-interference microstrip filters using retrace couplers’, IET Electr. Lett., 2007, Vol. 42, No.24, pp. 1162–1163
  9. DIVYABRAMHAM K., MANDAL M.K., SANYAL S.: ‘Sharp-rejection wideband bandstop filters’, IEEE Microw. Wirel. Compon.Lett., 2008, Vol.18, No.10, pp. 662–664.
  10. POZAR D.M: Microwave engineering, 3rd, John Wiley, New york .2004
  11. Inder Bahl: Lumped elements for RF and Microwave circuits, Artech House Inc,Norwood,M.A.2003
  12. I.J.Bahland K.C.Gupta,“Average power handling capacity of Microstrip lines”, Microwaves,Optics and Acoustics,Vol.3,No.1,pp.1-4.
Index Terms

Computer Science
Information Sciences

Keywords

Microwave filters band pass filter transmission line sections ADS micro strip line