Vol. 8
Latest Volume
All Volumes
PIERL 119 [2024] PIERL 118 [2024] PIERL 117 [2024] PIERL 116 [2024] PIERL 115 [2024] PIERL 114 [2023] PIERL 113 [2023] PIERL 112 [2023] PIERL 111 [2023] PIERL 110 [2023] PIERL 109 [2023] PIERL 108 [2023] PIERL 107 [2022] PIERL 106 [2022] PIERL 105 [2022] PIERL 104 [2022] PIERL 103 [2022] PIERL 102 [2022] PIERL 101 [2021] PIERL 100 [2021] PIERL 99 [2021] PIERL 98 [2021] PIERL 97 [2021] PIERL 96 [2021] PIERL 95 [2021] PIERL 94 [2020] PIERL 93 [2020] PIERL 92 [2020] PIERL 91 [2020] PIERL 90 [2020] PIERL 89 [2020] PIERL 88 [2020] PIERL 87 [2019] PIERL 86 [2019] PIERL 85 [2019] PIERL 84 [2019] PIERL 83 [2019] PIERL 82 [2019] PIERL 81 [2019] PIERL 80 [2018] PIERL 79 [2018] PIERL 78 [2018] PIERL 77 [2018] PIERL 76 [2018] PIERL 75 [2018] PIERL 74 [2018] PIERL 73 [2018] PIERL 72 [2018] PIERL 71 [2017] PIERL 70 [2017] PIERL 69 [2017] PIERL 68 [2017] PIERL 67 [2017] PIERL 66 [2017] PIERL 65 [2017] PIERL 64 [2016] PIERL 63 [2016] PIERL 62 [2016] PIERL 61 [2016] PIERL 60 [2016] PIERL 59 [2016] PIERL 58 [2016] PIERL 57 [2015] PIERL 56 [2015] PIERL 55 [2015] PIERL 54 [2015] PIERL 53 [2015] PIERL 52 [2015] PIERL 51 [2015] PIERL 50 [2014] PIERL 49 [2014] PIERL 48 [2014] PIERL 47 [2014] PIERL 46 [2014] PIERL 45 [2014] PIERL 44 [2014] PIERL 43 [2013] PIERL 42 [2013] PIERL 41 [2013] PIERL 40 [2013] PIERL 39 [2013] PIERL 38 [2013] PIERL 37 [2013] PIERL 36 [2013] PIERL 35 [2012] PIERL 34 [2012] PIERL 33 [2012] PIERL 32 [2012] PIERL 31 [2012] PIERL 30 [2012] PIERL 29 [2012] PIERL 28 [2012] PIERL 27 [2011] PIERL 26 [2011] PIERL 25 [2011] PIERL 24 [2011] PIERL 23 [2011] PIERL 22 [2011] PIERL 21 [2011] PIERL 20 [2011] PIERL 19 [2010] PIERL 18 [2010] PIERL 17 [2010] PIERL 16 [2010] PIERL 15 [2010] PIERL 14 [2010] PIERL 13 [2010] PIERL 12 [2009] PIERL 11 [2009] PIERL 10 [2009] PIERL 9 [2009] PIERL 8 [2009] PIERL 7 [2009] PIERL 6 [2009] PIERL 5 [2008] PIERL 4 [2008] PIERL 3 [2008] PIERL 2 [2008] PIERL 1 [2008]
2009-05-11
Compact Lowpass Filter with Sharp Transition Band Based on Defected Ground Structures
By
Progress In Electromagnetics Research Letters, Vol. 8, 83-92, 2009
Abstract
A lowpass filter with a very sharp transition band using defected ground structures (DGS) is described. The lowpass filter was designed by using three dumbbell slots at the ground plane. Two of those dumbbell slots are the reshaped rectangular and the third dumbbell slot is an inverted triangle. The lowpass filter esigned at cutoff frequency of 3.0 GHz, which is suitable for GSM900, GSM1800 and UMTS applications of the mobile communications. The equivalent circuits for the proposed lowpass filter and its corresponding LC parameters are given. The proposed lowpass filter provides a size of 33x30 mm2, and have good transition band with good performance in the passband and have wide rejection up to 9.25 GHz plus harmonic suppression in the stopband. Measurements results show good agreements with the simulated results.
Citation
Ashraf Shouki Seliem Mohra, "Compact Lowpass Filter with Sharp Transition Band Based on Defected Ground Structures," Progress In Electromagnetics Research Letters, Vol. 8, 83-92, 2009.
doi:10.2528/PIERL09041406
References

1. Ahn, D., J. S. Park, et al. "A design of the low pass filter using novel microstrip defected ground structures," IEEE Trans. on Microwave Theory Techniques, Vol. 49, No. 1, 86-92, 2001.
doi:10.1109/22.899965

2. Liu, H., et al. "An improved 1-D periodic defected ground structure for microstrip line," IEEE Trans. on Microwave and Wireless Components Letters, Vol. 14, No. 4, 180-182, Apr. 2004.
doi:10.1109/LMWC.2004.827097

3. Hong, J.-S. and B. Karyamapudi, "A general circuit model for defected ground structures in planar transmission line," IEEE Trans. on Microwave and Wireless Components Letters, Vol. 15, No. 10, 706-708, 2005.
doi:10.1109/LMWC.2005.856832

4. Boutejdar, A., A. Ramadan, M. Makkey, and A. S. Omar, "Design of compact Microstrip lowpass filters using a U-shaped defected ground structure and compensated microstrip line," Proceedings of the 36th European Microwave Conference, 267-270, 2006.

5. Parui, S. K. and S. Das, "A simple defected ground structures with elliptical lowpass filtering response," Proceeding of Asia Pacific Microwave Conference, 2007.

6. Vagner, P. and M. Kasal, "Design of novel microstrip low-pass filter usingdefected ground structures," Microwave and Optical Technology Letter, Vol. 50, No. 1, 10-13, 2007.
doi:10.1002/mop.22982

7. Yang, J. and W. Wu, "Compact elliptic-function lowpass filter using defected ground structure," IEEE Microwave and Wireless Components Letters, Vol. 18, No. 9, 578-580, Sep. 2008.
doi:10.1109/LMWC.2008.2002447

8. Boutejdar, A., M. Makkey, A. Elsherbini, O. Luxor, and A. Omar, "Design of compact extended-stopband microstrip low pass filters by employing new mutual coupling technique for defected ground structures (DGSs)," Proceeding of the 37th European Microwave Conference, 71-74, Munich Germany, Oct. 9-12, 2007.

9. Ting, S. W., K. W. Tam, and R. P. Martins, "Miniaturized microstrip low pass filter with wide stopband using double equilateral U-shaped defected ground structures," IEEE Microwave and Wirless Components, Vol. 16, No. 5, 240-242, May 2006.
doi:10.1109/LMWC.2006.873592

10. Mohan, A. and A. Biswas, "A novel compact defected ground structure (DGS) lowpas filter," Proceeding of Asia-Pacific Microwave Conference, 2006.

11. Boutejdar, A., J.Mochac, L. Haiwen, and A. Omar, "Miniaturized lowpass filter with wide stopband using suspended layers and defected ground structures," 14th Conference on Microwave Technique (COMTE), 1-4, Apr. 23-24, 2008.

12., Zeland software Inc., IE3D software package, Ver.9.35, Zeland Softeare Inc., 2002.

13. Rahman, A., A. Boutjedar, A. K. Verma, G. Nadim, and A. S. Omar, "Improved circuit model for DGS based lowpass filter," Antenna and Propagation Society International Symposium, 2004, Vol. 1, 998-1001, June 20-25, 2004.