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    • Thesis & Design Report, BSc (Electrical and Electronic Engineering)
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    •   BracU IR
    • School of Engineering (SoE)
    • Department of Electrical and Electronic Engineering (EEE)
    • Thesis & Design Report, BSc (Electrical and Electronic Engineering)
    • View Item
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    Transparent microstrip patch antenna using indium tin oxide for telecommunication applications

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    11210004,09110057,12110023,10310009_EEE.pdf (1.800Mb)
    Date
    2017
    Publisher
    BRAC Univeristy
    Author
    Hasan, Md. Rashedul
    Abdullah, Shabab
    Kanon, F. M. Mehedi Hassan
    Lakra, Mrittunjoy
    Metadata
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    URI
    http://hdl.handle.net/10361/8413
    Abstract
    Transparent microstrip patch antenna has been the main focus of this thesis work. The use of transparent antennas for stealth and telecommunication purpose has been the incitement of this research. Lately the urge for high data rate communication, very fast speed and shorter distance have triggered engineers and scientists to work in the large scale of frequency range. On the other hand top mobile manufacturing companies are giving significant effort to build transparent devices which is a good sign for stepping into the promising futuristic works. These facts have been the main motivation of this research. Such antennas are being assembled on the materials which are highly conductive, discreet and conformal. Moreover which has the quality to delivery decent antenna performance on glass in the latest generation communication like 3G,4G or 5G. Our proposed microstrip patch antenna offers a good solution for the multiband areas in the frequency range of 0-35GHz which we have noticed by comparing other researches done before. In this research, we have investigated the result of the patch antenna using indium tin oxide (ITO) with glass substrate. Parametric studies in this work has been calculated and simulated by CST microwave studio. This contention has shown the radiation parameters, S-parameters of the transparent microstrip patch antenna.
    Keywords
    Radiation; Microstrip; Antenna; Antenna design
     
    Description
    This thesis report is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Electrical and Electronic Engineering, 2017.
     
    Cataloged from PDF version of thesis.
     
    Includes bibliographical references (page 55-58).
    Department
    Department of Electrical and Electronic Engineering, BRAC University
    Collections
    • Thesis & Design Report, BSc (Electrical and Electronic Engineering)

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