Simulation and Measurement of Differential Pair of The Tape Meander Line to Reduce Crosstalk

碩士 === 輔仁大學 === 電機工程學系碩士在職專班 === 105 === In this thesis, we discuss the problems of electromagnetic interference and signal quality caused by DDR III differential signal at high speed transmission. By using the meander line and the through holes method, to investigate the mutual inductance and mutua...

Full description

Bibliographic Details
Main Authors: LIAO,LING-HUI, 廖陵輝
Other Authors: Lee,Yuang-Shung
Format: Others
Language:zh-TW
Published: 2017
Online Access:http://ndltd.ncl.edu.tw/handle/2545wh
id ndltd-TW-105FJU01442003
record_format oai_dc
spelling ndltd-TW-105FJU014420032019-05-15T23:24:51Z http://ndltd.ncl.edu.tw/handle/2545wh Simulation and Measurement of Differential Pair of The Tape Meander Line to Reduce Crosstalk 蛇行傳輸線對抑制差分訊號串音干擾模擬與量測 LIAO,LING-HUI 廖陵輝 碩士 輔仁大學 電機工程學系碩士在職專班 105 In this thesis, we discuss the problems of electromagnetic interference and signal quality caused by DDR III differential signal at high speed transmission. By using the meander line and the through holes method, to investigate the mutual inductance and mutual capacitance to suppress the crosstalk caused by far and near crosstalk interference problem. The studied samples are to use the thickness of 0.4 mm printed circuit board and line width 0.1 mm spacing of 3W rules, the use of increasing the length of the meandering line bending and wear through the hole to reduce the crosstalk issue. And the computer simulation and experimental measurements are employed to verify the improved performance of the meandering line to reduce near-far crosstalk interference and without affecting the signal integrity of the premise, to achieve the electromagnetic noise interference reduction for 1.6 GHz. Lee,Yuang-Shung 李永勳 2017 學位論文 ; thesis 59 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 輔仁大學 === 電機工程學系碩士在職專班 === 105 === In this thesis, we discuss the problems of electromagnetic interference and signal quality caused by DDR III differential signal at high speed transmission. By using the meander line and the through holes method, to investigate the mutual inductance and mutual capacitance to suppress the crosstalk caused by far and near crosstalk interference problem. The studied samples are to use the thickness of 0.4 mm printed circuit board and line width 0.1 mm spacing of 3W rules, the use of increasing the length of the meandering line bending and wear through the hole to reduce the crosstalk issue. And the computer simulation and experimental measurements are employed to verify the improved performance of the meandering line to reduce near-far crosstalk interference and without affecting the signal integrity of the premise, to achieve the electromagnetic noise interference reduction for 1.6 GHz.
author2 Lee,Yuang-Shung
author_facet Lee,Yuang-Shung
LIAO,LING-HUI
廖陵輝
author LIAO,LING-HUI
廖陵輝
spellingShingle LIAO,LING-HUI
廖陵輝
Simulation and Measurement of Differential Pair of The Tape Meander Line to Reduce Crosstalk
author_sort LIAO,LING-HUI
title Simulation and Measurement of Differential Pair of The Tape Meander Line to Reduce Crosstalk
title_short Simulation and Measurement of Differential Pair of The Tape Meander Line to Reduce Crosstalk
title_full Simulation and Measurement of Differential Pair of The Tape Meander Line to Reduce Crosstalk
title_fullStr Simulation and Measurement of Differential Pair of The Tape Meander Line to Reduce Crosstalk
title_full_unstemmed Simulation and Measurement of Differential Pair of The Tape Meander Line to Reduce Crosstalk
title_sort simulation and measurement of differential pair of the tape meander line to reduce crosstalk
publishDate 2017
url http://ndltd.ncl.edu.tw/handle/2545wh
work_keys_str_mv AT liaolinghui simulationandmeasurementofdifferentialpairofthetapemeanderlinetoreducecrosstalk
AT liàolínghuī simulationandmeasurementofdifferentialpairofthetapemeanderlinetoreducecrosstalk
AT liaolinghui shéxíngchuánshūxiànduìyìzhìchàfēnxùnhàochuànyīngànrǎomónǐyǔliàngcè
AT liàolínghuī shéxíngchuánshūxiànduìyìzhìchàfēnxùnhàochuànyīngànrǎomónǐyǔliàngcè
_version_ 1719147095205609472