Multilayer bandpass filter in dual-band applications / Farhanna Razali
A multilayer filter technique is proposed to enhance an existing design of a dual-mode dual-band bandpass filter topology. In this paper the design adapts vias to connect two quarter-wavelength parallel coupled-lines to two half-wavelength lines creating a dual-path structure. The influence of diffe...
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التنسيق: | أطروحة |
اللغة: | English |
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2014
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الوصول للمادة أونلاين: | https://ir.uitm.edu.my/id/eprint/78253/1/78253.pdf |
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my-uitm-ir.782532024-05-16T09:11:45Z Multilayer bandpass filter in dual-band applications / Farhanna Razali 2014 Razali, Farhanna Wireless communication systems. Mobile communication systems. Access control A multilayer filter technique is proposed to enhance an existing design of a dual-mode dual-band bandpass filter topology. In this paper the design adapts vias to connect two quarter-wavelength parallel coupled-lines to two half-wavelength lines creating a dual-path structure. The influence of different impedance parameters such as line impedance, Zr and even- and odd-mode impedances, Zoe and Zoo of the filter topology were analysed, thus showing the control parameters of the dual-band response in terms of the bandwidth and separation between the passbands. The adaptation of multilayer technology in this topology, improves the rejection-band of the dual-band frequency response. The multilayer filter was designed using microstrip technology at 2 GHz using Flame Retardancies 4 (FR4) material. The result shows the filter is suitable in addressing wide band applications and the concept is validated through measurement. 2014 Thesis https://ir.uitm.edu.my/id/eprint/78253/ https://ir.uitm.edu.my/id/eprint/78253/1/78253.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Ismail Khan, Zuhani |
institution |
Universiti Teknologi MARA |
collection |
UiTM Institutional Repository |
language |
English |
advisor |
Ismail Khan, Zuhani |
topic |
Wireless communication systems Mobile communication systems Access control |
spellingShingle |
Wireless communication systems Mobile communication systems Access control Razali, Farhanna Multilayer bandpass filter in dual-band applications / Farhanna Razali |
description |
A multilayer filter technique is proposed to enhance an existing design of a dual-mode dual-band bandpass filter topology. In this paper the design adapts vias to connect two quarter-wavelength parallel coupled-lines to two half-wavelength lines creating a dual-path structure. The influence of different impedance parameters such as line impedance, Zr and even- and odd-mode impedances, Zoe and Zoo of the filter topology were analysed, thus showing the control parameters of the dual-band response in terms of the bandwidth and separation between the passbands. The adaptation of multilayer technology in this topology, improves the rejection-band of the dual-band frequency response. The multilayer filter was designed using microstrip technology at 2 GHz using Flame Retardancies 4 (FR4) material. The result shows the filter is suitable in addressing wide band applications and the concept is validated through measurement. |
format |
Thesis |
qualification_level |
Bachelor degree |
author |
Razali, Farhanna |
author_facet |
Razali, Farhanna |
author_sort |
Razali, Farhanna |
title |
Multilayer bandpass filter in dual-band applications / Farhanna Razali |
title_short |
Multilayer bandpass filter in dual-band applications / Farhanna Razali |
title_full |
Multilayer bandpass filter in dual-band applications / Farhanna Razali |
title_fullStr |
Multilayer bandpass filter in dual-band applications / Farhanna Razali |
title_full_unstemmed |
Multilayer bandpass filter in dual-band applications / Farhanna Razali |
title_sort |
multilayer bandpass filter in dual-band applications / farhanna razali |
granting_institution |
Universiti Teknologi MARA (UiTM) |
granting_department |
Faculty of Electrical Engineering |
publishDate |
2014 |
url |
https://ir.uitm.edu.my/id/eprint/78253/1/78253.pdf |
_version_ |
1804889699751297024 |