Using Six Sigma Methodology to Enhance Color Filter Black Matrix Process Capability
碩士 === 中原大學 === 工業與系統工程研究所 === 105 === This thesis improves the process capability of high-resolution products of color filter factory. By the Six Sigma Methodology which follows the steps including define, measure, analyze, improve, and control, the Black Matrix Process of Color Filter process capa...
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ndltd-TW-105CYCU50300092017-08-20T04:07:37Z http://ndltd.ncl.edu.tw/handle/69186196139046219065 Using Six Sigma Methodology to Enhance Color Filter Black Matrix Process Capability 應用六標準差手法提升彩色濾光片黑色矩陣製程良率 Chen-Kang Liu 劉振綱 碩士 中原大學 工業與系統工程研究所 105 This thesis improves the process capability of high-resolution products of color filter factory. By the Six Sigma Methodology which follows the steps including define, measure, analyze, improve, and control, the Black Matrix Process of Color Filter process capability is thus enhanced. Firstly, the key quality characteristics are defined and the accuracy of the measurement system is confirmed. Then, the key factors which affect the quality characteristics are found. Finally, L8 orthogonal table from Taguchi method is applied to reduce experimental times and the optimal parameters via Taguchi’s two-stage optimization are found. The experimental results showed that after the improvement of the optimal parameters, we can make high-resolution products with the black matrix line width stability in the 7 ± 1.5μm range and the Black matrix process capability index improvement from 1.38 to 1.89 that is better than the expected value (Cpk > 1.67). The experimental results showed that the method improves the black matrix process capability effectively. Ling-Huey Su 蘇玲慧 2017 學位論文 ; thesis 42 zh-TW |
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碩士 === 中原大學 === 工業與系統工程研究所 === 105 === This thesis improves the process capability of high-resolution products of color filter factory. By the Six Sigma Methodology which follows the steps including define, measure, analyze, improve, and control, the Black Matrix Process of Color Filter process capability is thus enhanced.
Firstly, the key quality characteristics are defined and the accuracy of the measurement system is confirmed. Then, the key factors which affect the quality characteristics are found. Finally, L8 orthogonal table from Taguchi method is applied to reduce experimental times and the optimal parameters via Taguchi’s two-stage optimization are found. The experimental results showed that after the improvement of the optimal parameters, we can make high-resolution products with the black matrix line width stability in the 7 ± 1.5μm range and the Black matrix process capability index improvement from 1.38 to 1.89 that is better than the expected value (Cpk > 1.67). The experimental results showed that the method improves the black matrix process capability effectively.
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Ling-Huey Su |
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Ling-Huey Su Chen-Kang Liu 劉振綱 |
author |
Chen-Kang Liu 劉振綱 |
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Chen-Kang Liu 劉振綱 Using Six Sigma Methodology to Enhance Color Filter Black Matrix Process Capability |
author_sort |
Chen-Kang Liu |
title |
Using Six Sigma Methodology to Enhance Color Filter Black Matrix Process Capability |
title_short |
Using Six Sigma Methodology to Enhance Color Filter Black Matrix Process Capability |
title_full |
Using Six Sigma Methodology to Enhance Color Filter Black Matrix Process Capability |
title_fullStr |
Using Six Sigma Methodology to Enhance Color Filter Black Matrix Process Capability |
title_full_unstemmed |
Using Six Sigma Methodology to Enhance Color Filter Black Matrix Process Capability |
title_sort |
using six sigma methodology to enhance color filter black matrix process capability |
publishDate |
2017 |
url |
http://ndltd.ncl.edu.tw/handle/69186196139046219065 |
work_keys_str_mv |
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