A design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / Azizah Rosleh Fung

This thesis describes the design of 2.4 GHz and 5 GHz microstrip bandstop filter. The filter is designed to give a bandwidth of 70 percent, with center frequency of 3.7 GHz. The filter is required to have an attenuation of at least 60 dB with passband ripple of 0.1 dB. The design involves a Tschebyc...

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Main Author: Rosleh Fung, Azizah
Format: Thesis
Language:English
Published: 2006
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/69012/1/69012.pdf
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spelling my-uitm-ir.690122023-03-16T04:09:01Z A design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / Azizah Rosleh Fung 2006 Rosleh Fung, Azizah Microstrip antennas Filters (Electric) This thesis describes the design of 2.4 GHz and 5 GHz microstrip bandstop filter. The filter is designed to give a bandwidth of 70 percent, with center frequency of 3.7 GHz. The filter is required to have an attenuation of at least 60 dB with passband ripple of 0.1 dB. The design involves a Tschebychev third order bandstop filter whose input to output is matched to 50 Q impedance. The bandstop filter was realized to an open-circuited transmission lines and spaced by unit elements (UEs) which a quarter-wave long at midstop- band frequency. The proposed bandstop filter was simulated by using Genesys CAD package and was fabricated on a microstrip that have relative permittivity of 2.33, and substrate and copper thickness of 0.5 mm and 0.0356 mm respectively. The filter is then measured using a Scalar Network Analyzer and lastly a data analysis is done to compare both result from simulation and measurement. 2006 Thesis https://ir.uitm.edu.my/id/eprint/69012/ https://ir.uitm.edu.my/id/eprint/69012/1/69012.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Awang, Aziati Husna
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Awang, Aziati Husna
topic Microstrip antennas
Filters (Electric)
spellingShingle Microstrip antennas
Filters (Electric)
Rosleh Fung, Azizah
A design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / Azizah Rosleh Fung
description This thesis describes the design of 2.4 GHz and 5 GHz microstrip bandstop filter. The filter is designed to give a bandwidth of 70 percent, with center frequency of 3.7 GHz. The filter is required to have an attenuation of at least 60 dB with passband ripple of 0.1 dB. The design involves a Tschebychev third order bandstop filter whose input to output is matched to 50 Q impedance. The bandstop filter was realized to an open-circuited transmission lines and spaced by unit elements (UEs) which a quarter-wave long at midstop- band frequency. The proposed bandstop filter was simulated by using Genesys CAD package and was fabricated on a microstrip that have relative permittivity of 2.33, and substrate and copper thickness of 0.5 mm and 0.0356 mm respectively. The filter is then measured using a Scalar Network Analyzer and lastly a data analysis is done to compare both result from simulation and measurement.
format Thesis
qualification_level Bachelor degree
author Rosleh Fung, Azizah
author_facet Rosleh Fung, Azizah
author_sort Rosleh Fung, Azizah
title A design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / Azizah Rosleh Fung
title_short A design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / Azizah Rosleh Fung
title_full A design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / Azizah Rosleh Fung
title_fullStr A design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / Azizah Rosleh Fung
title_full_unstemmed A design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / Azizah Rosleh Fung
title_sort design of 2.4 giga heartz to 5 giga heartz microstrip bandstop filter / azizah rosleh fung
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2006
url https://ir.uitm.edu.my/id/eprint/69012/1/69012.pdf
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