The Research of SMT Printing By Applying Taguchi Design of Experiment Optimization

碩士 === 國立虎尾科技大學 === 工業工程與管理研究所 === 101 === Surface Mount Technology (SMT) of memory module products has been trending to light, thin, short, small, high-capacity and high-speed operation in recently. For printing process of printed circuit board, it has been becoming increasingly important when it m...

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Main Authors: Chia-Hsiang Liao, 廖家祥
Other Authors: Ruey-Shiang Guh
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/k68y6q
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spelling ndltd-TW-101NYPI50300012019-09-21T03:32:24Z http://ndltd.ncl.edu.tw/handle/k68y6q The Research of SMT Printing By Applying Taguchi Design of Experiment Optimization 應用田口實驗設計法最佳化於SMT印刷之研究 Chia-Hsiang Liao 廖家祥 碩士 國立虎尾科技大學 工業工程與管理研究所 101 Surface Mount Technology (SMT) of memory module products has been trending to light, thin, short, small, high-capacity and high-speed operation in recently. For printing process of printed circuit board, it has been becoming increasingly important when it meets advanced SMT. In this study, it focuses on SMT printing process of printed circuit board and proposes Taguchi design of experiment (DOE), in order to enhance the stability of the print quality and reduce production lead-time wasted. First use Measurement Systems Analysis (MSA) to evaluate the SPI machine thickness of the solder paste measurement capability to confirm the measurement system repeatability and reproducibility (Gauge Repeatability & Reproducibility, GR&R) meets requirements. Then use Taguchi method to work out print experiment, and then observes solder paste thickness factor, combines with the analysis of variance (ANOVA) to design the best combination of parameters, and in the end verify the results of the overall solder paste thickness CPK improvement increased from the original 1.132 to 1.775. The solder paste printing will obtain the best combination of parameters available to the manufacturers of reference. Ruey-Shiang Guh 顧瑞祥 2013 學位論文 ; thesis 131 zh-TW
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language zh-TW
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description 碩士 === 國立虎尾科技大學 === 工業工程與管理研究所 === 101 === Surface Mount Technology (SMT) of memory module products has been trending to light, thin, short, small, high-capacity and high-speed operation in recently. For printing process of printed circuit board, it has been becoming increasingly important when it meets advanced SMT. In this study, it focuses on SMT printing process of printed circuit board and proposes Taguchi design of experiment (DOE), in order to enhance the stability of the print quality and reduce production lead-time wasted. First use Measurement Systems Analysis (MSA) to evaluate the SPI machine thickness of the solder paste measurement capability to confirm the measurement system repeatability and reproducibility (Gauge Repeatability & Reproducibility, GR&R) meets requirements. Then use Taguchi method to work out print experiment, and then observes solder paste thickness factor, combines with the analysis of variance (ANOVA) to design the best combination of parameters, and in the end verify the results of the overall solder paste thickness CPK improvement increased from the original 1.132 to 1.775. The solder paste printing will obtain the best combination of parameters available to the manufacturers of reference.
author2 Ruey-Shiang Guh
author_facet Ruey-Shiang Guh
Chia-Hsiang Liao
廖家祥
author Chia-Hsiang Liao
廖家祥
spellingShingle Chia-Hsiang Liao
廖家祥
The Research of SMT Printing By Applying Taguchi Design of Experiment Optimization
author_sort Chia-Hsiang Liao
title The Research of SMT Printing By Applying Taguchi Design of Experiment Optimization
title_short The Research of SMT Printing By Applying Taguchi Design of Experiment Optimization
title_full The Research of SMT Printing By Applying Taguchi Design of Experiment Optimization
title_fullStr The Research of SMT Printing By Applying Taguchi Design of Experiment Optimization
title_full_unstemmed The Research of SMT Printing By Applying Taguchi Design of Experiment Optimization
title_sort research of smt printing by applying taguchi design of experiment optimization
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/k68y6q
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