Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element

This paper present the design and performance results of transparent Butler Matrix (BM) using Micro-metal Mesh (MM) conductive film as a conducting element and a glass as a substrate. The transparent Micro-metal Mesh (MM) conductive film have a very remarkable properties. Not only high optical trans...

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Main Authors: Rahim, S. K. A., Samingan, M. L., Saady, B. M.
Format: Conference or Workshop Item
Published: Institute of Electrical and Electronics Engineers Inc. 2016
Subjects:
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author Rahim, S. K. A.
Samingan, M. L.
Saady, B. M.
author_facet Rahim, S. K. A.
Samingan, M. L.
Saady, B. M.
author_sort Rahim, S. K. A.
collection ePrints
description This paper present the design and performance results of transparent Butler Matrix (BM) using Micro-metal Mesh (MM) conductive film as a conducting element and a glass as a substrate. The transparent Micro-metal Mesh (MM) conductive film have a very remarkable properties. Not only high optical transparency, it also high in electrical conductivity. It has a sheet resistance of 0.7 Ω/sq and a visible-light transmission (VBLT) of 75% respectively. The transparent Butler Matrix (BM) operates at 2.45 GHz frequency. These type of Butler Matrix (BM) can be installed to the glass surface of the building for the future 5G wireless communication internally where beam forming is required.
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institution Universiti Teknologi Malaysia - ePrints
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publisher Institute of Electrical and Electronics Engineers Inc.
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spelling utm.eprints-735292017-11-26T03:37:07Z http://eprints.utm.my/73529/ Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element Rahim, S. K. A. Samingan, M. L. Saady, B. M. TK Electrical engineering. Electronics Nuclear engineering This paper present the design and performance results of transparent Butler Matrix (BM) using Micro-metal Mesh (MM) conductive film as a conducting element and a glass as a substrate. The transparent Micro-metal Mesh (MM) conductive film have a very remarkable properties. Not only high optical transparency, it also high in electrical conductivity. It has a sheet resistance of 0.7 Ω/sq and a visible-light transmission (VBLT) of 75% respectively. The transparent Butler Matrix (BM) operates at 2.45 GHz frequency. These type of Butler Matrix (BM) can be installed to the glass surface of the building for the future 5G wireless communication internally where beam forming is required. Institute of Electrical and Electronics Engineers Inc. 2016 Conference or Workshop Item PeerReviewed Rahim, S. K. A. and Samingan, M. L. and Saady, B. M. (2016) Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element. In: 7th IEEE Asia-Pacific Conference on Applied Electromagnetics, APACE 2016, 11-13 Dec 2016, Kedah, Malaysia. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85020252613&doi=10.1109%2fAPACE.2016.7915862&partnerID=40&md5=7defd783f01a493cfe8fddbcf7146465
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Rahim, S. K. A.
Samingan, M. L.
Saady, B. M.
Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element
title Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element
title_full Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element
title_fullStr Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element
title_full_unstemmed Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element
title_short Transparent Butler Matrix using Micro-metal Mesh conductive film as a conducting element
title_sort transparent butler matrix using micro metal mesh conductive film as a conducting element
topic TK Electrical engineering. Electronics Nuclear engineering
work_keys_str_mv AT rahimska transparentbutlermatrixusingmicrometalmeshconductivefilmasaconductingelement
AT saminganml transparentbutlermatrixusingmicrometalmeshconductivefilmasaconductingelement
AT saadybm transparentbutlermatrixusingmicrometalmeshconductivefilmasaconductingelement