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In broadband communication such as WiFi and WiMAX, the antenna which has broadside radiation pattern is required. One of antenna types that has broadside radiation pattern is a bifilar helical antenna (BHA) operates in normal mode. This final project focuses on designing a novel normal mode BHA for...

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Main Author: (NIM: 13206151); Pembimbing : Dr. Achmad Munir, HERMANTO
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/15927
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:15927
spelling id-itb.:159272017-09-27T10:18:38Z#TITLE_ALTERNATIVE# (NIM: 13206151); Pembimbing : Dr. Achmad Munir, HERMANTO Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/15927 In broadband communication such as WiFi and WiMAX, the antenna which has broadside radiation pattern is required. One of antenna types that has broadside radiation pattern is a bifilar helical antenna (BHA) operates in normal mode. This final project focuses on designing a novel normal mode BHA for 3.3 GHz WiMAX application, which is including the determination of BHA dimension, impedance matching, and balancing unit (balun) using microstrip. The BHA is made of a copper conductor wire that has diameter of 1 mm and uses 2 numbers of its turns with pitch distance of each turns is 25.80 mm, so the total height is 52.60 mm. The diameter of BHA used is 8.68 mm as of its circumference (C) that is 0.3 λ. The antenna is then fed by a 50 Ω coaxial type terminal and using a microstrip line for its balun as well as matching impedance. A double side FR-4 Epoxy substrate with total size 15 cm x 15 cm is used where the microstrip line is etched on the top side whilst the other side is applied for its ground plane. With this structure, it can produce bandwidth about 230 MHz at 10 dB Return Loss, Gain about 6.02 dBi, and a broadside radiation pattern to operate in 3.3 GHz. This can be an advantage to implement this type of antenna because of its small size which can decrease cost of implementation. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description In broadband communication such as WiFi and WiMAX, the antenna which has broadside radiation pattern is required. One of antenna types that has broadside radiation pattern is a bifilar helical antenna (BHA) operates in normal mode. This final project focuses on designing a novel normal mode BHA for 3.3 GHz WiMAX application, which is including the determination of BHA dimension, impedance matching, and balancing unit (balun) using microstrip. The BHA is made of a copper conductor wire that has diameter of 1 mm and uses 2 numbers of its turns with pitch distance of each turns is 25.80 mm, so the total height is 52.60 mm. The diameter of BHA used is 8.68 mm as of its circumference (C) that is 0.3 λ. The antenna is then fed by a 50 Ω coaxial type terminal and using a microstrip line for its balun as well as matching impedance. A double side FR-4 Epoxy substrate with total size 15 cm x 15 cm is used where the microstrip line is etched on the top side whilst the other side is applied for its ground plane. With this structure, it can produce bandwidth about 230 MHz at 10 dB Return Loss, Gain about 6.02 dBi, and a broadside radiation pattern to operate in 3.3 GHz. This can be an advantage to implement this type of antenna because of its small size which can decrease cost of implementation.
format Final Project
author (NIM: 13206151); Pembimbing : Dr. Achmad Munir, HERMANTO
spellingShingle (NIM: 13206151); Pembimbing : Dr. Achmad Munir, HERMANTO
#TITLE_ALTERNATIVE#
author_facet (NIM: 13206151); Pembimbing : Dr. Achmad Munir, HERMANTO
author_sort (NIM: 13206151); Pembimbing : Dr. Achmad Munir, HERMANTO
title #TITLE_ALTERNATIVE#
title_short #TITLE_ALTERNATIVE#
title_full #TITLE_ALTERNATIVE#
title_fullStr #TITLE_ALTERNATIVE#
title_full_unstemmed #TITLE_ALTERNATIVE#
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url https://digilib.itb.ac.id/gdl/view/15927
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