Measurement and Analysis of Radio Frequency Circuit on PCB

碩士 === 義守大學 === 電子工程學系 === 89 === The rise time of signals in PCB (Printed Circuit Board) circuits become shorter, and high speed transmission and high density packaging have become the trend of PCB development. Therefore, when designing a PCB circuit, the electrical characteristics under high frequ...

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Main Authors: KuoMing Huang, 黃國銘
Other Authors: 黃榮生
Format: Others
Language:zh-TW
Published: 2001
Online Access:http://ndltd.ncl.edu.tw/handle/40486203620352023021
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spelling ndltd-TW-089ISU004280122016-07-06T04:10:42Z http://ndltd.ncl.edu.tw/handle/40486203620352023021 Measurement and Analysis of Radio Frequency Circuit on PCB PCB上射頻電路之量測與分析 KuoMing Huang 黃國銘 碩士 義守大學 電子工程學系 89 The rise time of signals in PCB (Printed Circuit Board) circuits become shorter, and high speed transmission and high density packaging have become the trend of PCB development. Therefore, when designing a PCB circuit, the electrical characteristics under high frequency circumstance and noise-control can not be ignored. One of the most common noise sources in digital systems is the crosstalk noise, and the crosstalk noise is very significant within high frequency PCB circuits. Thus, in this thesis, a PCB circuit is simulated by a corresponding coupling multiconductor transmission line model. The unit length parameters of the transmission line can be determined by analytical calculations or numerical simulations. However, analytical solutions are satisfied only under simple circuit and homogeneous medium conditions. If the geometry of PCB circuits is complex and the medium is nonhomogeneous, then these parameters are extracted through numerical methods. However, numerical simulations usually take a lot of time. Thus, in this thesis, these unit length parameters(self-inductance, self-capacitance, mutual-inductance, and mutual-capacitance) are extracted by frequency-domain and time domain measurement methods. A distributed SPICE model is proposed, and the measured parameters are used to simulate the crosstalk. The SPICE model is verified by comparison with experimental measurements,IE3D numerical simulations and analytical results in frequency and time domains. At last, the effects influence crosstalk noise on PCB circuits is investigated. 黃榮生 邱煌仁 2001 學位論文 ; thesis 0 zh-TW
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language zh-TW
format Others
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description 碩士 === 義守大學 === 電子工程學系 === 89 === The rise time of signals in PCB (Printed Circuit Board) circuits become shorter, and high speed transmission and high density packaging have become the trend of PCB development. Therefore, when designing a PCB circuit, the electrical characteristics under high frequency circumstance and noise-control can not be ignored. One of the most common noise sources in digital systems is the crosstalk noise, and the crosstalk noise is very significant within high frequency PCB circuits. Thus, in this thesis, a PCB circuit is simulated by a corresponding coupling multiconductor transmission line model. The unit length parameters of the transmission line can be determined by analytical calculations or numerical simulations. However, analytical solutions are satisfied only under simple circuit and homogeneous medium conditions. If the geometry of PCB circuits is complex and the medium is nonhomogeneous, then these parameters are extracted through numerical methods. However, numerical simulations usually take a lot of time. Thus, in this thesis, these unit length parameters(self-inductance, self-capacitance, mutual-inductance, and mutual-capacitance) are extracted by frequency-domain and time domain measurement methods. A distributed SPICE model is proposed, and the measured parameters are used to simulate the crosstalk. The SPICE model is verified by comparison with experimental measurements,IE3D numerical simulations and analytical results in frequency and time domains. At last, the effects influence crosstalk noise on PCB circuits is investigated.
author2 黃榮生
author_facet 黃榮生
KuoMing Huang
黃國銘
author KuoMing Huang
黃國銘
spellingShingle KuoMing Huang
黃國銘
Measurement and Analysis of Radio Frequency Circuit on PCB
author_sort KuoMing Huang
title Measurement and Analysis of Radio Frequency Circuit on PCB
title_short Measurement and Analysis of Radio Frequency Circuit on PCB
title_full Measurement and Analysis of Radio Frequency Circuit on PCB
title_fullStr Measurement and Analysis of Radio Frequency Circuit on PCB
title_full_unstemmed Measurement and Analysis of Radio Frequency Circuit on PCB
title_sort measurement and analysis of radio frequency circuit on pcb
publishDate 2001
url http://ndltd.ncl.edu.tw/handle/40486203620352023021
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AT huángguómíng pcbshàngshèpíndiànlùzhīliàngcèyǔfēnxī
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