标题: 高效率与色彩饱和度之液晶模组
Liquid Crystal Display with High Efficiency and Color Gamut
作者: 郑永强
Cheng, Yung-Chiang
田仲豪
Chih, Ming-Huang
电机学院电子与光电学程
关键字: 高亮度;高色彩饱和度;High brightness;High Color Gamut
公开日期: 2013
摘要: 本论文之目的在找出简易的方式在增加液晶显示器模组的色彩
饱和度之外还能够维持原来的亮度。
目前大部分的背光使用的光源都已经改为蓝色二极体激发黄色
萤光粉的方式,其中黄色萤光粉主要有Nichia 公司的钇铝石榴石
(Yttrium Aluminum Garnet;YAG)以及欧司朗光电半导体所申请的
TAG萤光粉为主流,而在发光效率上YAG萤光粉的发光效率还是比
TAG 萤光粉较佳,但两者因为在频谱当中缺少绿色与红色光谱,因
此在显示器的色域上无法提升。
在一般业界使用增加色域的方式是以蓝色晶片加上红、绿萤
光粉,补上频谱的红色以及绿色,不过也因为将能量分散给红色以
及绿色萤光粉造成整体发光效率变低,因此在本论文中提出以YAG
萤光粉为主要发光架构,加上红色晶片。经过实验之后与原本YAG
萤光粉相比,在不影响发光效率的前提下,还可提高色饱和度。
The purpose of this study is to find a simple method to increase color gamut while keeping high brightness in current LCM module. Most industrial approach, applies R, G, B LED or blue chip with R, G phosphor to deal with color gamut issue. However, R, G, B multi-chips need complex circuit to control color temperature. The blue chip with R, G phosphor LED will improve color gamut, but sacrifice of brightness efficiency.
Recently, most LCDs replaced backlight by LED. There are two yellow phosphor applied in white LED. One is YAG phosphor patented by Nichia, while TAG phosphor was patented by Osram. Both approaches suffer from low color gamut due to the lack of R, G spectra.
In order to overcome this issue, we add additional red LEDs with current YAG-Based LED. This method was validated by experiment through brightness and color test.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079867512
http://hdl.handle.net/11536/74431
显示于类别:Thesis