A Study of Determining Effective Channel Length and Series Resistance, and Noise Model Comparison for Submicron MOSFETs

碩士 === 國立清華大學 === 電機工程研究所 === 80 ===   An improved method to determine the effective channel length and parasitic drain/source series resistance is presented. The physical-meanings of the gate-voltage dependent effective channel length and series resistance are also described. This improved method...

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Main Authors: Jang, Jeng-Cherng, 章正誠
Other Authors: Gong, Jeng
Format: Others
Language:zh-TW
Published: 1992
Online Access:http://ndltd.ncl.edu.tw/handle/59312503158885899245
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spelling ndltd-TW-080NTHU34420052015-10-13T14:20:25Z http://ndltd.ncl.edu.tw/handle/59312503158885899245 A Study of Determining Effective Channel Length and Series Resistance, and Noise Model Comparison for Submicron MOSFETs 次微米元件之參數萃取及雜訊分析模型的比較 Jang, Jeng-Cherng 章正誠 碩士 國立清華大學 電機工程研究所 80   An improved method to determine the effective channel length and parasitic drain/source series resistance is presented. The physical-meanings of the gate-voltage dependent effective channel length and series resistance are also described. This improved method as well as others are applied to MOSFET's fabricated in a submicrometer CMOS process. The results show the consistency with different methods, but also present some problems to be solved in the future.   A new physics-based MOSFET noise model by Kwok K. Hung et al. that can accurately predict the noise characteristics in all operating regions has been reviewed. How to extract the noise parameters of the two noise models by Hung et al. and by SPICE, respectively, is described in detail. The accuracy of the two noise models is compared. The results show that the new noise model by Hung et al. has better agreement between the measuremet and simulation than the one by SPICE. Gong, Jeng 龔正 1992 學位論文 ; thesis 94 zh-TW
collection NDLTD
language zh-TW
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sources NDLTD
description 碩士 === 國立清華大學 === 電機工程研究所 === 80 ===   An improved method to determine the effective channel length and parasitic drain/source series resistance is presented. The physical-meanings of the gate-voltage dependent effective channel length and series resistance are also described. This improved method as well as others are applied to MOSFET's fabricated in a submicrometer CMOS process. The results show the consistency with different methods, but also present some problems to be solved in the future.   A new physics-based MOSFET noise model by Kwok K. Hung et al. that can accurately predict the noise characteristics in all operating regions has been reviewed. How to extract the noise parameters of the two noise models by Hung et al. and by SPICE, respectively, is described in detail. The accuracy of the two noise models is compared. The results show that the new noise model by Hung et al. has better agreement between the measuremet and simulation than the one by SPICE.
author2 Gong, Jeng
author_facet Gong, Jeng
Jang, Jeng-Cherng
章正誠
author Jang, Jeng-Cherng
章正誠
spellingShingle Jang, Jeng-Cherng
章正誠
A Study of Determining Effective Channel Length and Series Resistance, and Noise Model Comparison for Submicron MOSFETs
author_sort Jang, Jeng-Cherng
title A Study of Determining Effective Channel Length and Series Resistance, and Noise Model Comparison for Submicron MOSFETs
title_short A Study of Determining Effective Channel Length and Series Resistance, and Noise Model Comparison for Submicron MOSFETs
title_full A Study of Determining Effective Channel Length and Series Resistance, and Noise Model Comparison for Submicron MOSFETs
title_fullStr A Study of Determining Effective Channel Length and Series Resistance, and Noise Model Comparison for Submicron MOSFETs
title_full_unstemmed A Study of Determining Effective Channel Length and Series Resistance, and Noise Model Comparison for Submicron MOSFETs
title_sort study of determining effective channel length and series resistance, and noise model comparison for submicron mosfets
publishDate 1992
url http://ndltd.ncl.edu.tw/handle/59312503158885899245
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