Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator

In this paper, a comparison microwave method between Transmission and Reflection using a Coaxial Cable and complimentary double split ring resonator (CDSRR) for characterization of magneto-dielectric material is proposed. This method enables the determination of both relative permittivity and permea...

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Main Authors: Fatin H. Ikhsan, Fatin H. Ikhsan, Yee S. Khee, Yee S. Khee, Samsul H. Dahlan, Samsul H. Dahlan, Fahmiruddin Esa, Fahmiruddin Esa, Vahid Nayyeri, Vahid Nayyeri
Format: Article
Language:English
Published: 2024
Subjects:
Online Access:http://eprints.uthm.edu.my/11016/1/J17520_a99f01ceb8532be9b58bc55fa34a7819.pdf
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author Fatin H. Ikhsan, Fatin H. Ikhsan
Yee S. Khee, Yee S. Khee
Samsul H. Dahlan, Samsul H. Dahlan
Fahmiruddin Esa, Fahmiruddin Esa
Vahid Nayyeri, Vahid Nayyeri
author_facet Fatin H. Ikhsan, Fatin H. Ikhsan
Yee S. Khee, Yee S. Khee
Samsul H. Dahlan, Samsul H. Dahlan
Fahmiruddin Esa, Fahmiruddin Esa
Vahid Nayyeri, Vahid Nayyeri
author_sort Fatin H. Ikhsan, Fatin H. Ikhsan
collection UTHM
description In this paper, a comparison microwave method between Transmission and Reflection using a Coaxial Cable and complimentary double split ring resonator (CDSRR) for characterization of magneto-dielectric material is proposed. This method enables the determination of both relative permittivity and permeability of magneto-dielectric material. The CDSRR resonates at 3.46 GHz with a quality factor of 127 in unloaded condition. To determine the effects of permittivity and permeability on the shift of resonant frequency, the electric and magnetic fields are localized in two separate zones in the CDSRR sensor. Prediction formulas are proposed to extract the value of real permittivity and permeability from S21 parameter. For Transmission/Reflection Method, to extract the dielectric and magnetic properties, Nicolson-Ross-Weir (NRW) are used. The prototypes of proposed sensors are fabricated on a ROGERS 3003 and tested for validation of their functionality. A good agreement between the measured data using Transmission/Reflection Method and CDSRR sensor is observed.
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spelling uthm.eprints-110162024-06-04T02:42:03Z http://eprints.uthm.edu.my/11016/ Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator Fatin H. Ikhsan, Fatin H. Ikhsan Yee S. Khee, Yee S. Khee Samsul H. Dahlan, Samsul H. Dahlan Fahmiruddin Esa, Fahmiruddin Esa Vahid Nayyeri, Vahid Nayyeri TA Engineering (General). Civil engineering (General) In this paper, a comparison microwave method between Transmission and Reflection using a Coaxial Cable and complimentary double split ring resonator (CDSRR) for characterization of magneto-dielectric material is proposed. This method enables the determination of both relative permittivity and permeability of magneto-dielectric material. The CDSRR resonates at 3.46 GHz with a quality factor of 127 in unloaded condition. To determine the effects of permittivity and permeability on the shift of resonant frequency, the electric and magnetic fields are localized in two separate zones in the CDSRR sensor. Prediction formulas are proposed to extract the value of real permittivity and permeability from S21 parameter. For Transmission/Reflection Method, to extract the dielectric and magnetic properties, Nicolson-Ross-Weir (NRW) are used. The prototypes of proposed sensors are fabricated on a ROGERS 3003 and tested for validation of their functionality. A good agreement between the measured data using Transmission/Reflection Method and CDSRR sensor is observed. 2024 Article PeerReviewed text en http://eprints.uthm.edu.my/11016/1/J17520_a99f01ceb8532be9b58bc55fa34a7819.pdf Fatin H. Ikhsan, Fatin H. Ikhsan and Yee S. Khee, Yee S. Khee and Samsul H. Dahlan, Samsul H. Dahlan and Fahmiruddin Esa, Fahmiruddin Esa and Vahid Nayyeri, Vahid Nayyeri (2024) Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator. Progress In Electromagnetics Research, 141. pp. 79-87. https://doi.org/10.2528/PIERC23091402
spellingShingle TA Engineering (General). Civil engineering (General)
Fatin H. Ikhsan, Fatin H. Ikhsan
Yee S. Khee, Yee S. Khee
Samsul H. Dahlan, Samsul H. Dahlan
Fahmiruddin Esa, Fahmiruddin Esa
Vahid Nayyeri, Vahid Nayyeri
Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator
title Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator
title_full Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator
title_fullStr Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator
title_full_unstemmed Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator
title_short Synthesis and Characterization of Polymer (PDMS-Fe3O4) Magneto-Dielectric Material Based on Complementary Double Split Ring Resonator
title_sort synthesis and characterization of polymer pdms fe3o4 magneto dielectric material based on complementary double split ring resonator
topic TA Engineering (General). Civil engineering (General)
url http://eprints.uthm.edu.my/11016/1/J17520_a99f01ceb8532be9b58bc55fa34a7819.pdf
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