Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan

This paper presents the design of a Butterworth microstrip parallel couple band-pass filter (BBPF) for GPS application. Butterworth approach was used in designing the filter and the simulation was carried out using CST simulation software. The operating frequency range from 1559MHz to 1610MHz with t...

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Main Author: Malek Riduan, Mohd Fadzli
Format: Article
Language:English
Published: 2010
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/110044/1/110044.pdf
https://ir.uitm.edu.my/id/eprint/110044/
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spelling my.uitm.ir.1100442025-02-10T23:54:19Z https://ir.uitm.edu.my/id/eprint/110044/ Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan Malek Riduan, Mohd Fadzli Filters (Electric) This paper presents the design of a Butterworth microstrip parallel couple band-pass filter (BBPF) for GPS application. Butterworth approach was used in designing the filter and the simulation was carried out using CST simulation software. The operating frequency range from 1559MHz to 1610MHz with the cut-off frequency 1575MHz with the consideration of 24MHz bandwidth It wil demonstrate the third order of the Butterworth elements. The specified pass band insertion loss must not exceed 3dB while the pass band return loss was to be more than 20dB. The filter were fabricated on RT/Duroid 4350B having a relative permittivity of 3.48, and substrate thickness 1.542mm characteristic were respectively. then The measured filters using Rhodes&Schwarz ZVR-40 vector network analyzer. The simulation result show a good agreement. 2010-05 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/110044/1/110044.pdf Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan. (2010) pp. 1-5.
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Filters (Electric)
spellingShingle Filters (Electric)
Malek Riduan, Mohd Fadzli
Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan
description This paper presents the design of a Butterworth microstrip parallel couple band-pass filter (BBPF) for GPS application. Butterworth approach was used in designing the filter and the simulation was carried out using CST simulation software. The operating frequency range from 1559MHz to 1610MHz with the cut-off frequency 1575MHz with the consideration of 24MHz bandwidth It wil demonstrate the third order of the Butterworth elements. The specified pass band insertion loss must not exceed 3dB while the pass band return loss was to be more than 20dB. The filter were fabricated on RT/Duroid 4350B having a relative permittivity of 3.48, and substrate thickness 1.542mm characteristic were respectively. then The measured filters using Rhodes&Schwarz ZVR-40 vector network analyzer. The simulation result show a good agreement.
format Article
author Malek Riduan, Mohd Fadzli
author_facet Malek Riduan, Mohd Fadzli
author_sort Malek Riduan, Mohd Fadzli
title Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan
title_short Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan
title_full Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan
title_fullStr Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan
title_full_unstemmed Design a Butterworth band-pass filter (BBPF) for GPS application: article / Mohd Fadzli Malek Riduan
title_sort design a butterworth band-pass filter (bbpf) for gps application: article / mohd fadzli malek riduan
publishDate 2010
url https://ir.uitm.edu.my/id/eprint/110044/1/110044.pdf
https://ir.uitm.edu.my/id/eprint/110044/
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score 13.239859