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http://dx.doi.org/10.6109/jkiice.2013.17.11.2512

Design of the T-SRR and Low Loss Band-pass Filter Using MNG Metamaterial  

Yoon, Ki-Cheol (RFIC Research Center, Kwangwoon University)
Kim, Seong-Cheol (Department of Railroad Electrical System Engineering, Woosong University)
Abstract
In this paper, the T-SRR (Triple Split Ring Resonator) using MNG (mu-Negative) meta-material adapted in a low-loss bandpass filter with 3-stages is suggested. The size of the T-SRR in the proposed bandpass filter with low dielectric constant PCB can be easily controlled. And the ${\lambda}/4$ transmission line theory is applied. The proposed T-SRR and filter have the center frequency of 10 GHz with QL value of 184 for military-satellite communication system in I band. The experimental results of the filter show that the insertion and return losses are 1.44 dB and 17.3 dB with bandwidth of 10 %, respectively. The proposed filter will be redesigned by IPD material etc. should be placed here. These instructions give you guidelines for preparing papers for JICCE.
Keywords
Adjustable size; Bandpass filter; MNG; meta-material; T-SRR;
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1 J. Risko, J. Thomas, H. J. Prager, and K. K. N. Chang, "I Band (8-10 GHz) Trapatt-diode Sources," Electronics Lett., vol. 9, no. 24, pp. 572-573, Nov. 1973.   DOI   ScienceOn
2 J. H. Choi, M. H. Chen, and A. Mortazawi, "An X-band Low Phase Noise Oscillator Employing a Four-pole Elliptic-Response Microstrip Bandpass Filter," IEEE Int. Microwave Symp., pp. 1529-1532, Jun. 2007.
3 H. K. Pang, K. M. Ho, K. W. Tam, and R. P. Martin, "A Compact Microstrip λ/4-SIR Interdigital Bandpass Filter with Extended Stopband," IEEE MTT-S Int. Micorwave Symp. Dig., vol. 3, pp. 1621-1624, June 2004.
4 H. J. Lee, H. S. Lee, K. H. Yoo, and J. G. Yook, "On the Possibility of Biosensors Based on Split Ring Resonators," Proc. European Microwave Conf., pp. 1222-1225, Oct. 2008.
5 Z. Chen, W. Hong, J. Chen, and J. Zhou, "Design of High-Q Tunable SIW Resonator and Its Application to Low Phase Noise VCO," IEEE Microwave and Wireless Comp. Letts., vol. 23, no. 1, pp. 43-45, Jan. 2013.   DOI   ScienceOn
6 C. Caloz and T. Itoh, Electromagnetic Metamaterials Transmission Line Theory and Microwave Applications, John Wiley & Sons, 2006.
7 B. Dong, Q. Feng, and S. Yang, "Research and Design of X-band SIR Microstrip Filters," Proc. Int. Conf. E-Business and Inform. System Security, pp. 1-4, June 2009.
8 J. B. Pendry, A. J. Holden, D. J. Robbins, and W. J. Stewart, "Magnetism from Conductors and Enhanced Nonlinear Phenomena," IEEE Trans. Microwave Theory Tech, vol. 47, no. 11, pp. 2075-2084, Nov. 1999.   DOI   ScienceOn
9 S. Maslovski, P. Ikonen, I. Kolmakov, and S. Tretyakov, "Artificial Magnetic Materials Based on the New Mabnetic Particle:Matasolenoid," Progress in Electromagnetics Research, vol. 54, pp. 61-81, 2005.   DOI
10 M. Kafesaki, T. Koschny, R. S. Penciu, T. F. Jundogdu, E. N. Economou, and C. M. Soukoulis, "Left-handed Metamaterials : Detailed Numerical Studies of the Transmission Properties," J. Optics A: and Applied Optics, pp. 12-22, June 2005.
11 J. Choi and C. Seo, "Microstrip Square Open-Loop Multiple Split-Ring Resonator for Low-Phase-Noise VCO," IEEE Trans. on Microwave Theory and Techniques, vol. 56, no. 12, pp. 3245-3252, Dec. 2008.   DOI   ScienceOn
12 G. Lubkowski, R. Schuhmann, and T. Weiland, "Extraction of Effective Metamaterial Parameters by Parameter Fitting of Dispersive Models," Microwave and Optical Technol. Lett., vol. 49, no. 2, pp. 285-288, Feb. 2007.   DOI   ScienceOn
13 A. P. S. Khanna and Y. Garault, "Determination of Loaded, Unloaded and External Quality Factors of a Dielectric Resonator Coupled to a Microstrip Line," IEEE Trans. Microwave Theory Technology, vol. MTT-31, pp. 261-264, Mar. 1983.
14 D. M. Pozar, Microwave Engineering 3rd, John Wiley & Sons, 2005.
15 J. S. Hong and M. J. Lancaster, Microstrip Filters for RF/Microwave Applications, John Wiley & Sons, 2001.
16 X. Zou, C. M. Tong, D. W. Yi, "Design of an X-band Symmetrical Window Bandpass Filter Based on Substrate Integrated Waveguide," Conf. on Cross Strait Quad- Regional Radio Sci. and Wireless Tech., pp. 571-574, Jul. 2011.
17 J. J. Shi, H. S. Chen, X. C. Wu, A Design of Ku-band Slow-wave Bandpass Filter," Int. conf. on Microwave and Millimeterwave Tech., pp.2063-2066, May 2010.
18 Y. Li, L. Hu, J. Chen, and Y. Fei, "A Ku-band Hairpin Filter Based on LTCC Technology," Conf. on Microwave Joint China-Japan (CJMW), pp. 478-480, Sep. 2008.
19 S. S. Sabri, B. H. Ahmad, and A. R. Othman, "A review of Substrate Integrated Waveguide (SIW) Bandpass Filter Based on Different Method and Design," Asia-Pacific Conf. on Applied Electromagnetics, pp. 210-215, Dec. 2012.