Multilayer coupled ring resonator filter / Nurul Fazleena Muhamad Arif

The purpose of this project is to design and simulation of multilayer microstrip bandpass filter based on coupled ring resonator. This filter is presented by cascading a ring resonator for a results of a wider bandwidth used for wideband applications. This filter is centered at 2.58 GHz with fractio...

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Main Author: Muhamad Arif, Nurul Fazleena
Format: Thesis
Language:English
Published: 2011
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/68746/1/68746.pdf
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spelling my-uitm-ir.687462023-07-21T03:02:50Z Multilayer coupled ring resonator filter / Nurul Fazleena Muhamad Arif 2011 Muhamad Arif, Nurul Fazleena Filters (Electric) The purpose of this project is to design and simulation of multilayer microstrip bandpass filter based on coupled ring resonator. This filter is presented by cascading a ring resonator for a results of a wider bandwidth used for wideband applications. This filter is centered at 2.58 GHz with fractional bandwidth of 7.13% from 2.4752 GHz to 2.6589 GHz on 0.75 mm thick Rogers RO3003 substrate with dielectric constant of 3, loss tangent of 0.0013 and 0.035 copper thickness. Multilayer filter technology used to meet the challenges of meeting size, performances and cost requirements. The Computer Simulation Technology (CST) is used to simulate filter responses. Results from the simulation filter involving return loss, Sn and insertion loss, S21 are revealed through this project. The value of Sn and S21 are -27.299 dB and -0.5246 dB respectively at the operated center frequency. The proposed filter has the advantages of broader fractional bandwidth greater than 5%, small dimensions and sharper rejection. 2011 Thesis https://ir.uitm.edu.my/id/eprint/68746/ https://ir.uitm.edu.my/id/eprint/68746/1/68746.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Awang, Robi'atun Adayiah
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Awang, Robi'atun Adayiah
topic Filters (Electric)
spellingShingle Filters (Electric)
Muhamad Arif, Nurul Fazleena
Multilayer coupled ring resonator filter / Nurul Fazleena Muhamad Arif
description The purpose of this project is to design and simulation of multilayer microstrip bandpass filter based on coupled ring resonator. This filter is presented by cascading a ring resonator for a results of a wider bandwidth used for wideband applications. This filter is centered at 2.58 GHz with fractional bandwidth of 7.13% from 2.4752 GHz to 2.6589 GHz on 0.75 mm thick Rogers RO3003 substrate with dielectric constant of 3, loss tangent of 0.0013 and 0.035 copper thickness. Multilayer filter technology used to meet the challenges of meeting size, performances and cost requirements. The Computer Simulation Technology (CST) is used to simulate filter responses. Results from the simulation filter involving return loss, Sn and insertion loss, S21 are revealed through this project. The value of Sn and S21 are -27.299 dB and -0.5246 dB respectively at the operated center frequency. The proposed filter has the advantages of broader fractional bandwidth greater than 5%, small dimensions and sharper rejection.
format Thesis
qualification_level Bachelor degree
author Muhamad Arif, Nurul Fazleena
author_facet Muhamad Arif, Nurul Fazleena
author_sort Muhamad Arif, Nurul Fazleena
title Multilayer coupled ring resonator filter / Nurul Fazleena Muhamad Arif
title_short Multilayer coupled ring resonator filter / Nurul Fazleena Muhamad Arif
title_full Multilayer coupled ring resonator filter / Nurul Fazleena Muhamad Arif
title_fullStr Multilayer coupled ring resonator filter / Nurul Fazleena Muhamad Arif
title_full_unstemmed Multilayer coupled ring resonator filter / Nurul Fazleena Muhamad Arif
title_sort multilayer coupled ring resonator filter / nurul fazleena muhamad arif
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2011
url https://ir.uitm.edu.my/id/eprint/68746/1/68746.pdf
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