Design of a 5.8 GHz rat-race coupler on the RO4003C� substrate
This paper describes design of a rat-race coupler for operation at centering frequency of 5.8 GHz. The coupler is designed to have an equal power split outputs of 3 dB between output ports. Two types of power divider circuit configurations have been designed and analyzed. The coupler is designed usi...
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my.uniten.dspace-298392024-10-14T09:12:23Z Design of a 5.8 GHz rat-race coupler on the RO4003C� substrate Hock G.C. Chakrabarty C.K. 16021614500 6701755282 Dielectric constant Phase difference and power splitter Rat-race coupler Computer aided design Microwaves Circuit configurations Circuit designs Circuit performances Electronics design automation (EDA) International (CO) Microstrip (MSL) Output ports Physical dimensions power dividers Power splits Rat race couplers Two types Integrated circuit manufacture This paper describes design of a rat-race coupler for operation at centering frequency of 5.8 GHz. The coupler is designed to have an equal power split outputs of 3 dB between output ports. Two types of power divider circuit configurations have been designed and analyzed. The coupler is designed using the Electronics Design Automation (EDA) tool that has tuning and optimization features. The circuit design iteration and the time required have been significantly reduced as the physical dimension of the circuit is tunable. The effects of the microwave artwork on circuit performance are observed. The rat-race coupler is implemented in the microstrip line and RO4003C� substrate is used. �2006 IEEE. Final 2023-12-28T08:57:52Z 2023-12-28T08:57:52Z 2006 Conference paper 10.1109/RFM.2006.331080 2-s2.0-46249090145 https://www.scopus.com/inward/record.uri?eid=2-s2.0-46249090145&doi=10.1109%2fRFM.2006.331080&partnerID=40&md5=74173d03b2a08c405bfb5e9eaa187a9f https://irepository.uniten.edu.my/handle/123456789/29839 4133595 253 257 Scopus |
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Dielectric constant Phase difference and power splitter Rat-race coupler Computer aided design Microwaves Circuit configurations Circuit designs Circuit performances Electronics design automation (EDA) International (CO) Microstrip (MSL) Output ports Physical dimensions power dividers Power splits Rat race couplers Two types Integrated circuit manufacture |
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Dielectric constant Phase difference and power splitter Rat-race coupler Computer aided design Microwaves Circuit configurations Circuit designs Circuit performances Electronics design automation (EDA) International (CO) Microstrip (MSL) Output ports Physical dimensions power dividers Power splits Rat race couplers Two types Integrated circuit manufacture Hock G.C. Chakrabarty C.K. Design of a 5.8 GHz rat-race coupler on the RO4003C� substrate |
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This paper describes design of a rat-race coupler for operation at centering frequency of 5.8 GHz. The coupler is designed to have an equal power split outputs of 3 dB between output ports. Two types of power divider circuit configurations have been designed and analyzed. The coupler is designed using the Electronics Design Automation (EDA) tool that has tuning and optimization features. The circuit design iteration and the time required have been significantly reduced as the physical dimension of the circuit is tunable. The effects of the microwave artwork on circuit performance are observed. The rat-race coupler is implemented in the microstrip line and RO4003C� substrate is used. �2006 IEEE. |
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16021614500 |
author_facet |
16021614500 Hock G.C. Chakrabarty C.K. |
format |
Conference paper |
author |
Hock G.C. Chakrabarty C.K. |
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Hock G.C. |
title |
Design of a 5.8 GHz rat-race coupler on the RO4003C� substrate |
title_short |
Design of a 5.8 GHz rat-race coupler on the RO4003C� substrate |
title_full |
Design of a 5.8 GHz rat-race coupler on the RO4003C� substrate |
title_fullStr |
Design of a 5.8 GHz rat-race coupler on the RO4003C� substrate |
title_full_unstemmed |
Design of a 5.8 GHz rat-race coupler on the RO4003C� substrate |
title_sort |
design of a 5.8 ghz rat-race coupler on the ro4003c� substrate |
publishDate |
2023 |
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1814061142744498176 |