Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band

Yıl: 2020 Cilt: 4 Sayı: 1 Sayfa Aralığı: 29 - 33 Metin Dili: İngilizce İndeks Tarihi: 15-06-2020

Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band

Öz:
Split-ring resonator is a popular research topic in literature. As known, it may be used in thedesign of electromagnetic metamaterials. Additionally, these structures can be preferred inmicrowave filter devices. In this study, a band-stop filter was designed for GSM-900 and 2.4GHz ISM band by using split-ring resonators. Two split-ring arrays (sizes of one of these arrayswere larger than the other) were loaded on the transmission line and each array consisted of fouridentical rings. Thus, a dual-band pass filter was obtained and this filter covered the frequency of0.91 (GSM) and 2.43 (ISM) GHz. Then, this proposed design was fabricated and measured.According to the measurement results, the fabricated structure operated at 0.93 GHz and 2.47.The experimental results were consistent with the simulation results. As a result, thanks to theproposed structure, two frequencies can be stopped at the same time. There is no need to design adifferent filter structure for each frequency.
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APA ÇINAR A, BİÇER S (2020). Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. , 29 - 33.
Chicago ÇINAR Alparslan,BİÇER Sinan Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. (2020): 29 - 33.
MLA ÇINAR Alparslan,BİÇER Sinan Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. , 2020, ss.29 - 33.
AMA ÇINAR A,BİÇER S Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. . 2020; 29 - 33.
Vancouver ÇINAR A,BİÇER S Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. . 2020; 29 - 33.
IEEE ÇINAR A,BİÇER S "Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band." , ss.29 - 33, 2020.
ISNAD ÇINAR, Alparslan - BİÇER, Sinan. "Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band". (2020), 29-33.
APA ÇINAR A, BİÇER S (2020). Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. International Advanced Researches and Engineering Journal, 4(1), 29 - 33.
Chicago ÇINAR Alparslan,BİÇER Sinan Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. International Advanced Researches and Engineering Journal 4, no.1 (2020): 29 - 33.
MLA ÇINAR Alparslan,BİÇER Sinan Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. International Advanced Researches and Engineering Journal, vol.4, no.1, 2020, ss.29 - 33.
AMA ÇINAR A,BİÇER S Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. International Advanced Researches and Engineering Journal. 2020; 4(1): 29 - 33.
Vancouver ÇINAR A,BİÇER S Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band. International Advanced Researches and Engineering Journal. 2020; 4(1): 29 - 33.
IEEE ÇINAR A,BİÇER S "Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band." International Advanced Researches and Engineering Journal, 4, ss.29 - 33, 2020.
ISNAD ÇINAR, Alparslan - BİÇER, Sinan. "Band-stop filter design based on split ring resonators loaded on the microstrip transmission line for GSM-900 and 2.4 GHz ISM band". International Advanced Researches and Engineering Journal 4/1 (2020), 29-33.