Effect of experimental parameters using Nd:YAG laser on the physical properties of color photoresist for liquid crystal display

碩士 === 國立中興大學 === 材料科學與工程學系所 === 97 === Color filter is a key part of Liquid crystal display (LCD) to achieve high color saturation. R, G, B pixels play a role of colorful LCD. If R, G, B pixels suffered abnormal process, it will affect the brightness and contrast ratio of LCD. We use 1064 nm Nd:YG...

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Main Authors: Kuo-Pen Chiang, 江國本
Other Authors: 吳宗明
Format: Others
Language:zh-TW
Online Access:http://ndltd.ncl.edu.tw/handle/41715453978906089376
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spelling ndltd-TW-097NCHU51590572016-09-25T04:04:14Z http://ndltd.ncl.edu.tw/handle/41715453978906089376 Effect of experimental parameters using Nd:YAG laser on the physical properties of color photoresist for liquid crystal display Nd:YAG雷射加工參數對液晶顯示器彩色光阻之特性研究 Kuo-Pen Chiang 江國本 碩士 國立中興大學 材料科學與工程學系所 97 Color filter is a key part of Liquid crystal display (LCD) to achieve high color saturation. R, G, B pixels play a role of colorful LCD. If R, G, B pixels suffered abnormal process, it will affect the brightness and contrast ratio of LCD. We use 1064 nm Nd:YG Laser to treat R, G, B photoresist by thermal effect, to let R, G, B photoresist surface charring, and shield the abnormal pixels, it will be useful for LCD process. Green and Blue photoresist can get good surface charring by the suitable laser parameter, but Red photoresist get unstable laser light absorption, it couldn’t get good charring result. Blue photoresist need larger laser energy to get surface charring than others. We use Color analyzer to measure charring difference, the brightness is darker when the larger laser energy treat on Red, Green and Blue photoresist. For ablation width and depth, the width and the depth of photoresist is wider and deeper by the larger laser energy, it caused from laser thermal diffusing effect. 吳宗明 學位論文 ; thesis 79 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中興大學 === 材料科學與工程學系所 === 97 === Color filter is a key part of Liquid crystal display (LCD) to achieve high color saturation. R, G, B pixels play a role of colorful LCD. If R, G, B pixels suffered abnormal process, it will affect the brightness and contrast ratio of LCD. We use 1064 nm Nd:YG Laser to treat R, G, B photoresist by thermal effect, to let R, G, B photoresist surface charring, and shield the abnormal pixels, it will be useful for LCD process. Green and Blue photoresist can get good surface charring by the suitable laser parameter, but Red photoresist get unstable laser light absorption, it couldn’t get good charring result. Blue photoresist need larger laser energy to get surface charring than others. We use Color analyzer to measure charring difference, the brightness is darker when the larger laser energy treat on Red, Green and Blue photoresist. For ablation width and depth, the width and the depth of photoresist is wider and deeper by the larger laser energy, it caused from laser thermal diffusing effect.
author2 吳宗明
author_facet 吳宗明
Kuo-Pen Chiang
江國本
author Kuo-Pen Chiang
江國本
spellingShingle Kuo-Pen Chiang
江國本
Effect of experimental parameters using Nd:YAG laser on the physical properties of color photoresist for liquid crystal display
author_sort Kuo-Pen Chiang
title Effect of experimental parameters using Nd:YAG laser on the physical properties of color photoresist for liquid crystal display
title_short Effect of experimental parameters using Nd:YAG laser on the physical properties of color photoresist for liquid crystal display
title_full Effect of experimental parameters using Nd:YAG laser on the physical properties of color photoresist for liquid crystal display
title_fullStr Effect of experimental parameters using Nd:YAG laser on the physical properties of color photoresist for liquid crystal display
title_full_unstemmed Effect of experimental parameters using Nd:YAG laser on the physical properties of color photoresist for liquid crystal display
title_sort effect of experimental parameters using nd:yag laser on the physical properties of color photoresist for liquid crystal display
url http://ndltd.ncl.edu.tw/handle/41715453978906089376
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