DocumentCode :
108119
Title :
Transparent Branch-Line Coupler Using Micro-Metal Mesh Conductive Film
Author :
Sa´ad, Bashir Muhammad ; Rahim, S.K.A. ; Peter, Tom ; Bin Abdul Rani, Mohd Subri ; Ausordin, Siti Fatimah ; Zaidel, Dayang Norulfairuz Abang ; Krishnan, Chandarasekaran
Author_Institution :
Wireless Commun. Centre, Univ. Teknol. Malaysia, Skudai, Malaysia
Volume :
24
Issue :
12
fYear :
2014
fDate :
Dec. 2014
Firstpage :
857
Lastpage :
859
Abstract :
This letter presents the design of a novel transparent 3 dB Branch-Line Coupler (BLC) using a proprietary self-assembling nano-particle technology based Micro-metal Mesh (MM) conductive film. The transparent MM conductive film has a sheet resistance of 0.7 Ω/sq and a visible-light transmission (VBLT) of 75%, resulting in good conductivity and high transparency, respectively. The proposed transparent BLC is mounted on a 2 mm-thick soda-lime glass substrate of dielectric 5.7 and designed to operate at 2.45 GHz. A layer of MM film on the back of the glass serves as a ground. The transparent BLC delivered measured coupling and transmission values of 3.9 and 4.3 dB, respectively. The transparent BLC can be used as a building block for realizing a transparent Butler Matrix (BM) Beam Forming Network (BFN) for Inter/Intra-Vehicle Wireless Communication (IIVWC) in Intelligent Transport System (ITS). Besides being transparent, the proposed BLC has a measured fractional bandwidth of 38.8% and 0.25 mm profile excluding the glass substrate. These advantages greatly enhance the BLC´s potential to be used also as a BM building component that can be mounted onto the glass surfaces of buildings for future 5G indoor wireless communications where beam forming is required.
Keywords :
glass; self-assembly; waveguide couplers; beam forming network; intelligent transport system; intervehicle wireless communication; intravehicle wireless communication; micrometal mesh conductive film; self-assembling nanoparticle technology; sheet resistance; size 2 mm; soda lime glass substrate; transparent Butler matrix; transparent branch line coupler; transparent conductive film; visible light transmission; Array signal processing; Butler matrices; Conductive films; Couplers; Glass; Substrates; Wireless communication; Beam forming network; Butler matrices (BMs); branch-line couplers (BLCs); intelligent transport systems (ITS); transparent;
fLanguage :
English
Journal_Title :
Microwave and Wireless Components Letters, IEEE
Publisher :
ieee
ISSN :
1531-1309
Type :
jour
DOI :
10.1109/LMWC.2014.2361655
Filename :
6923483
Link To Document :
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