DocumentCode :
1330983
Title :
Compact Wideband Microstrip Bandpass Filter Using Quasi-Spiral Loaded Multiple-Mode Resonator
Author :
Nosrati, Mehdi ; Mirzaee, Milad
Author_Institution :
Islamic Azad Univ. (IAU), Ilam, Iran
Volume :
20
Issue :
11
fYear :
2010
Firstpage :
607
Lastpage :
609
Abstract :
In this letter, a new model for further reducing the size and increasing the bandwidth (BW) of a class of bandpass filter (BPF) utilizing multi-mode resonator is presented. A new technique based on spiral transmission line loading to achieve higher BW and further size reduction is analyzed for this class of BPF. A compact ultra wideband microstrip BPF is proposed by using this technique. The capability of tuning the transmission zeroes in the proposed model is also studied. Estimates for the frequencies of these transmission zeroes are directly presented. The overall BW of the proposed BPF is shown to be increased more than 12.6% and its size to be reduced more than 70% compared with the conventional ones. The proposed BPF provides a relatively wide 3 dB fractional bandwidth of 72.6% frequency response with two transmission zeros at the lower and upper stop-bands to provide a very sharp cutoff and low passband insertion-loss and good return-loss characteristics.
Keywords :
band-pass filters; band-stop filters; frequency estimation; frequency response; microstrip filters; resonator filters; transmission line theory; compact ultra wideband microstrip BPF; compact wideband microstrip bandpass filter; fractional bandwidth; frequency estimation; frequency response; passband insertion-loss; quasi-spiral loaded multiple-mode resonator; return-loss characteristics; size reduction; spiral transmission line loading; stop-bands; transmission zeroes; Band pass filters; Filtering theory; Microstrip filters; Wideband; Wireless communication; Quasi-spiral loaded multi-mode resonator; transmission zeroes;
fLanguage :
English
Journal_Title :
Microwave and Wireless Components Letters, IEEE
Publisher :
ieee
ISSN :
1531-1309
Type :
jour
DOI :
10.1109/LMWC.2010.2068570
Filename :
5582110
Link To Document :
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