A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung
A design of a microstrip bandstop filter (BSF) is presented in this paper. The filter is designed to give a bandwidth of 70 percent, centered at 3.7 GHz with lower and upper cut-off frequency of 2.4 GHz and 5 GHz respectively. The filter is required to have an insertion loss of at least 60 dB with p...
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my.uitm.ir.444042023-10-02T03:34:34Z https://ir.uitm.edu.my/id/eprint/44404/ A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung Rosleh Fung, Azizah A design of a microstrip bandstop filter (BSF) is presented in this paper. The filter is designed to give a bandwidth of 70 percent, centered at 3.7 GHz with lower and upper cut-off frequency of 2.4 GHz and 5 GHz respectively. The filter is required to have an insertion loss 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 (UE)s which a quarter-wave long at mid-stop-band frequency. The proposed bandstop filter was simulated by using Genesys CAD package and 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. Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/44404/2/44404.PDF A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung. pp. 1-5. |
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A design of a microstrip bandstop filter (BSF) is presented in this paper. The filter is designed to give a bandwidth of 70 percent, centered at 3.7 GHz with lower and upper cut-off frequency of 2.4 GHz and 5 GHz respectively. The filter is required to have an insertion loss 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 (UE)s which a quarter-wave long at mid-stop-band frequency. The proposed bandstop filter was simulated by using Genesys CAD package and 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. |
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Rosleh Fung, Azizah |
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Rosleh Fung, Azizah A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung |
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Rosleh Fung, Azizah |
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Rosleh Fung, Azizah |
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A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung |
title_short |
A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung |
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A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung |
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A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung |
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A design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / Azizah Rosleh Fung |
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design of 2.4 giga hertz to 5 giga hertz microstrip bandstop filter / azizah rosleh fung |
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https://ir.uitm.edu.my/id/eprint/44404/2/44404.PDF https://ir.uitm.edu.my/id/eprint/44404/ |
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