A Compact Bandpass Filter with Enhanced Stopband Characteristics by an Asymmetric Cross-Shape Defected Ground Structure

Han-Jan Chen, Tsung-Hui Huang, Chin-Sheng Chang, Lih-Shan Chen, Jui-Hong Horng, Yeong-Her Wang, and Mau-Phon Houng

ABSTRACT In this paper, we present an effective technique to enhance stopband bandwidth for a bandpass filter by using an asymmetric, cross-shape defected ground structure (CSDGS). A single CSDGS can provide a higher attenuation rate near passband and broader stopband bandwidth. Moreover, with the asymmetric CSDGS, two different resonant frequencies can be excited and controlled independently, resulting in synthesizing a passband. The synthesized bandpass filter can be modeled by parallel LC resonant circuits in connection with T-networks. The bandwidth and insertion loss of this bandpass filter at 4.2 GHz is 28.6% and -1.44 dB, respectively, and 20 dB rejection in the stopband is up to four times the central frequency. All the synthesized bandpass filters have been measured and are in good agreement with simulated results.

Digital Object Identifier 10.1109/TUFFC.2006.158

© 2006, by The Institute of Electrical and Electronics Engineers, Inc. All rights reserved.

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