Design of microstrip patch antenna with LTCC substrate for K-Band application / Nurdiyana M. Mahamud

This thesis presented the design model and simulation of 2x1 microstrip patch antenna with multilayer LTCC substrate. The antenna was design and simulation for K-band application for the range from 18GHz to 27GHz. Design of this antenna consists a circular microstrip patch antenna array with multila...

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Main Author: M. Mahamud, Nurdiyana
Format: Thesis
Language:English
Published: 2013
Online Access:https://ir.uitm.edu.my/id/eprint/81854/1/81854.pdf
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spelling my-uitm-ir.818542023-11-08T09:46:38Z Design of microstrip patch antenna with LTCC substrate for K-Band application / Nurdiyana M. Mahamud 2013 M. Mahamud, Nurdiyana This thesis presented the design model and simulation of 2x1 microstrip patch antenna with multilayer LTCC substrate. The antenna was design and simulation for K-band application for the range from 18GHz to 27GHz. Design of this antenna consists a circular microstrip patch antenna array with multilayer LTCC substrate in order to minimize the size of antenna and increase the gain and bandwidth for antenna performance. The specification for the proposed array antenna is it has a frequency of 22GHz, Ferro A6S LTCC substrate, an epsilon 5.9, a substrate thickness of 0.096mm and copper thickness of 0.01mm. LTCC Ferro A6S was chosen as substrate compares to other because it has high relative permittivity and multilayer structure which result in a compact size antenna. This design was simulated using Computer Simulation Tool Microwave Environment Software. The performance of the antenna was evaluated in terms of bandwidth, gain, directivity, return loss, and Voltage Standing Ratio (VSWR). 2013 Thesis https://ir.uitm.edu.my/id/eprint/81854/ https://ir.uitm.edu.my/id/eprint/81854/1/81854.pdf text en public degree Universiti Teknologi MARA (UiTM) Faculty of Electrical Engineering Baba, Noor Hasimah
institution Universiti Teknologi MARA
collection UiTM Institutional Repository
language English
advisor Baba, Noor Hasimah
description This thesis presented the design model and simulation of 2x1 microstrip patch antenna with multilayer LTCC substrate. The antenna was design and simulation for K-band application for the range from 18GHz to 27GHz. Design of this antenna consists a circular microstrip patch antenna array with multilayer LTCC substrate in order to minimize the size of antenna and increase the gain and bandwidth for antenna performance. The specification for the proposed array antenna is it has a frequency of 22GHz, Ferro A6S LTCC substrate, an epsilon 5.9, a substrate thickness of 0.096mm and copper thickness of 0.01mm. LTCC Ferro A6S was chosen as substrate compares to other because it has high relative permittivity and multilayer structure which result in a compact size antenna. This design was simulated using Computer Simulation Tool Microwave Environment Software. The performance of the antenna was evaluated in terms of bandwidth, gain, directivity, return loss, and Voltage Standing Ratio (VSWR).
format Thesis
qualification_level Bachelor degree
author M. Mahamud, Nurdiyana
spellingShingle M. Mahamud, Nurdiyana
Design of microstrip patch antenna with LTCC substrate for K-Band application / Nurdiyana M. Mahamud
author_facet M. Mahamud, Nurdiyana
author_sort M. Mahamud, Nurdiyana
title Design of microstrip patch antenna with LTCC substrate for K-Band application / Nurdiyana M. Mahamud
title_short Design of microstrip patch antenna with LTCC substrate for K-Band application / Nurdiyana M. Mahamud
title_full Design of microstrip patch antenna with LTCC substrate for K-Band application / Nurdiyana M. Mahamud
title_fullStr Design of microstrip patch antenna with LTCC substrate for K-Band application / Nurdiyana M. Mahamud
title_full_unstemmed Design of microstrip patch antenna with LTCC substrate for K-Band application / Nurdiyana M. Mahamud
title_sort design of microstrip patch antenna with ltcc substrate for k-band application / nurdiyana m. mahamud
granting_institution Universiti Teknologi MARA (UiTM)
granting_department Faculty of Electrical Engineering
publishDate 2013
url https://ir.uitm.edu.my/id/eprint/81854/1/81854.pdf
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