New Compact Microstrip Filters Based on Quasi Fractal Resonator

This paper presents new microstrip devices  as single band bandpass and multi band bandstop filters. The proposed filters use  slotted patch microstrip resonator based on quasi fractal geometry, simulated by AWR12 software package. Both filters have quasi elliptic frequency response, designed at cen...

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Main Authors: Y. S. Mezaal, H. H. Saleh, H. Al-saedi
Format: Article
Language:English
Published: Advanced Electromagnetics 2018-09-01
Series:Advanced Electromagnetics
Subjects:
Online Access:https://aemjournal.org/index.php/AEM/article/view/883
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spelling doaj-4f61785d9ee540cdbf649f21258b3ab22020-11-24T21:55:24ZengAdvanced ElectromagneticsAdvanced Electromagnetics2119-02752018-09-01749310210.7716/aem.v7i4.883883New Compact Microstrip Filters Based on Quasi Fractal ResonatorY. S. Mezaal0H. H. Saleh1H. Al-saedi2Al-Esraa University CollegeUniversity of Turkish Aeronautical AssociationUniversity of WaterlooThis paper presents new microstrip devices  as single band bandpass and multi band bandstop filters. The proposed filters use  slotted patch microstrip resonator based on quasi fractal geometry, simulated by AWR12 software package. Both filters have quasi elliptic frequency response, designed at centre frequency of  2.437 GHz for bandpass filter and at band frequencies of  2.434, 4.032, 4.976 and 5.638 GHz GHz respectively, for multi bandstop filter. All filters are employed using RT/Duroid 6010.8 LM substrate of  dielectric constant and 1.27 mm dielectric thickness. Simulation results show that the designed quasi fractal bandpass filter has very narrow fractional bandwidth of 0.38 %  which is very rare in microstrip filter design. On the other hand,  the projected bandstop filter offers multi  narrow rejection bands that is  useful in broadband wireless schemes influencing from fixed interferences. Both filters  present satisfactory S11 and S21 responses besides smallness properties that stand for interesting features of the newest wireless applications. The simulated and measured frequency responses for both designed filters are in good agreement.https://aemjournal.org/index.php/AEM/article/view/883quasi fractal resonatorbandpass and bandstop filtersnarrow band frequency response,compactness
collection DOAJ
language English
format Article
sources DOAJ
author Y. S. Mezaal
H. H. Saleh
H. Al-saedi
spellingShingle Y. S. Mezaal
H. H. Saleh
H. Al-saedi
New Compact Microstrip Filters Based on Quasi Fractal Resonator
Advanced Electromagnetics
quasi fractal resonator
bandpass and bandstop filters
narrow band frequency response,
compactness
author_facet Y. S. Mezaal
H. H. Saleh
H. Al-saedi
author_sort Y. S. Mezaal
title New Compact Microstrip Filters Based on Quasi Fractal Resonator
title_short New Compact Microstrip Filters Based on Quasi Fractal Resonator
title_full New Compact Microstrip Filters Based on Quasi Fractal Resonator
title_fullStr New Compact Microstrip Filters Based on Quasi Fractal Resonator
title_full_unstemmed New Compact Microstrip Filters Based on Quasi Fractal Resonator
title_sort new compact microstrip filters based on quasi fractal resonator
publisher Advanced Electromagnetics
series Advanced Electromagnetics
issn 2119-0275
publishDate 2018-09-01
description This paper presents new microstrip devices  as single band bandpass and multi band bandstop filters. The proposed filters use  slotted patch microstrip resonator based on quasi fractal geometry, simulated by AWR12 software package. Both filters have quasi elliptic frequency response, designed at centre frequency of  2.437 GHz for bandpass filter and at band frequencies of  2.434, 4.032, 4.976 and 5.638 GHz GHz respectively, for multi bandstop filter. All filters are employed using RT/Duroid 6010.8 LM substrate of  dielectric constant and 1.27 mm dielectric thickness. Simulation results show that the designed quasi fractal bandpass filter has very narrow fractional bandwidth of 0.38 %  which is very rare in microstrip filter design. On the other hand,  the projected bandstop filter offers multi  narrow rejection bands that is  useful in broadband wireless schemes influencing from fixed interferences. Both filters  present satisfactory S11 and S21 responses besides smallness properties that stand for interesting features of the newest wireless applications. The simulated and measured frequency responses for both designed filters are in good agreement.
topic quasi fractal resonator
bandpass and bandstop filters
narrow band frequency response,
compactness
url https://aemjournal.org/index.php/AEM/article/view/883
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AT halsaedi newcompactmicrostripfiltersbasedonquasifractalresonator
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