Novel Low-Pass Microwave Filter Based on Rectangular Ring DGS

Author:

Li Bao Ping1,Zhang Yan Liang1

Affiliation:

1. Henan Polytechnic University

Abstract

Due to the frequency response periodicity of distributed transmission line, microstrip band-pass filter usually produces parasitic pass-band and outputs harmonics away from the center frequency of main pass-band. Based on the study of rectangular ring defected ground structure, a 5-order microstrip LPF(low-pass filter) was designed using the single-pole band-stop and slow-wave characteristics of the rectangular ring DGS(Defected Ground Structure) and SISS(Step-Impedance Shunt Stub) structure. Compared with traditional LPF, this LPF presents the advantages of compact size, low insertion loss, broad stop-band and high steep. It also validates the requirements of miniaturization and high performance for filters.

Publisher

Trans Tech Publications, Ltd.

Reference6 articles.

1. PARK J I, KIM C S, KIM J, et al. 1999. Modeling of a photonic band gap and its application for the low-pass filter design [C]. Asia-Pacific Microwave Conference. Singapore, 1999: 331–334.

2. Rahman A B A, Verma A K, Boutejdar A, et al. 2004. Control of Bandstop Response of Hi-Lo Microstrip Low-Pass Filter Using Slot in Ground Plane [J]. IEEE Trans. Microwave Theory Tech. 2004, 52: 1008–1013.

3. Roy S M, Karmakar N C, Balbin I. 2007. Dumbbell-shaped defected ground structure [J]. Jnt J RF Microwave Compute-Aided Eng, 2007, 17(2): 210–224.

4. Park J, Kim J P, Nam S, et al. 2007. Design of a Novel Harmonic Suppressed Microstrip Low-Pass Filter [J]. IEEE Microw Wireless Compon Lett, 2007, 17(6): 424–426.

5. MENG Yang, YOU Bin. 2011. Design of Harmonic-Suppressed Microstrip Filter Using Novel Defected Ground Structure [J]. Chinese Journal of Electron Devices, Dec. 2011 Vol. 34 No. 6: 668–671.

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