Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region

PCB level shield cans had been widely used in electronic industry to mitigate electromagnetic interference and to comply with Electromagnetic Compatibility (EMC) standard. However, the thinner, smaller, and faster, operating up to Giga-Hertz range devices led to electromagnetic interference among tr...

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Main Author: Chuah, Yih Jian
Format: Thesis
Language:English
Published: 2017
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Online Access:http://eprints.usm.my/47402/1/Evaluation%20And%20Characterization%20Of%20Pcb%20Shielding%20Effectiveness%20In%20Near%20Field%20Region.pdf
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spelling my.usm.eprints.47402 http://eprints.usm.my/47402/ Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region Chuah, Yih Jian T Technology TK1-9971 Electrical engineering. Electronics. Nuclear engineering PCB level shield cans had been widely used in electronic industry to mitigate electromagnetic interference and to comply with Electromagnetic Compatibility (EMC) standard. However, the thinner, smaller, and faster, operating up to Giga-Hertz range devices led to electromagnetic interference among traces and components. To the best of author’s knowledge, most of the shielding effectiveness in PCB level was done in far field evaluation. Thus, measurement method in near field for PCB level shielding effectiveness by using electromagnetic 3D scanner is proposed in this thesis. Several test boards were designed with different shields’ dimension, evaluated for shielding effectiveness. Comparable results between the measurement and simulation justified the reliability of the measurement method in near field. Besides that, the evaluation of the impact of shield’s characteristic such as shield’s height and thickness, were modeled through simulation. Results suggested that shielding effectiveness could be improved by having greater shield’s height with smaller ground via spacing in shielding ground tracks. With every step of 0.5 mm increase in shield’s height, shielding effectiveness can be improved by 1 dB. On the other hand, shielding effectiveness would be degraded by 0.5 dB for every step of 1 mm increase in ground via spacing. In addition, greater shield’s thickness can contribute better shielding effectiveness for operating frequency below 300 MHz. 2017-07-01 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/47402/1/Evaluation%20And%20Characterization%20Of%20Pcb%20Shielding%20Effectiveness%20In%20Near%20Field%20Region.pdf Chuah, Yih Jian (2017) Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region. Masters thesis, Universiti Sains Malaysia.
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
language English
topic T Technology
TK1-9971 Electrical engineering. Electronics. Nuclear engineering
spellingShingle T Technology
TK1-9971 Electrical engineering. Electronics. Nuclear engineering
Chuah, Yih Jian
Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region
description PCB level shield cans had been widely used in electronic industry to mitigate electromagnetic interference and to comply with Electromagnetic Compatibility (EMC) standard. However, the thinner, smaller, and faster, operating up to Giga-Hertz range devices led to electromagnetic interference among traces and components. To the best of author’s knowledge, most of the shielding effectiveness in PCB level was done in far field evaluation. Thus, measurement method in near field for PCB level shielding effectiveness by using electromagnetic 3D scanner is proposed in this thesis. Several test boards were designed with different shields’ dimension, evaluated for shielding effectiveness. Comparable results between the measurement and simulation justified the reliability of the measurement method in near field. Besides that, the evaluation of the impact of shield’s characteristic such as shield’s height and thickness, were modeled through simulation. Results suggested that shielding effectiveness could be improved by having greater shield’s height with smaller ground via spacing in shielding ground tracks. With every step of 0.5 mm increase in shield’s height, shielding effectiveness can be improved by 1 dB. On the other hand, shielding effectiveness would be degraded by 0.5 dB for every step of 1 mm increase in ground via spacing. In addition, greater shield’s thickness can contribute better shielding effectiveness for operating frequency below 300 MHz.
format Thesis
author Chuah, Yih Jian
author_facet Chuah, Yih Jian
author_sort Chuah, Yih Jian
title Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region
title_short Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region
title_full Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region
title_fullStr Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region
title_full_unstemmed Evaluation And Characterization Of Pcb Shielding Effectiveness In Near Field Region
title_sort evaluation and characterization of pcb shielding effectiveness in near field region
publishDate 2017
url http://eprints.usm.my/47402/1/Evaluation%20And%20Characterization%20Of%20Pcb%20Shielding%20Effectiveness%20In%20Near%20Field%20Region.pdf
http://eprints.usm.my/47402/
_version_ 1717094490518323200
score 13.214268