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Development Technique of NTSC Color Gamut More than 107 within Full HD Resolution in LED TV Display Using Quantum Dot Film Based Direct Type Back Light Structure

机译:NTSC色域的开发技术在LED电视显示器中的全高清分辨率内超过107 %,使用量子点膜的直接型背光结构

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In order to achieve wide NTSC color Gamut, advanced Quantum Dot (QD) based optical films and blue LED sources are used into a direct type backlight source for FHD resolution based LED Television. After receiving blue light from backlight source, QD film produces highly saturated narrowband RGB color spectral. QD films are made of Nano semiconductor (eg. Cadmium selenide (CdSe)), a chemical compound which condense into PET elements works as highly efficient phosphor Nano-crystals that produces this RGB Color. Conventional LED TV & monitor with white LED source can produce only 70% of NTSC. Within this research platform, QD film is optically placed between the blue (444nm) LED light source, different backlight films and liquid crystal module (LCM) to improve the color conversion efficiency of a TV or monitor to achieved more than 107% of NTSC.
机译:为了实现宽的NTSC色域,高级量子点(QD)的光学薄膜和蓝色LED源用于基于FHD分辨率的LED电视的直接型背光源。在从背光源接收蓝光之后,QD膜产生高度饱和的窄带RGB颜色光谱。 QD膜由纳米半导体(例如硒化镉(Cdse))制成,一种化学化合物,其冷凝在PET元件中的用作产生该RGB颜色的高效磷光体纳米晶体。具有白色LED源的传统LED电视和监视器只能产生70 %NTSC。在该研究平台内,QD薄膜光学放置在蓝色(444nm)LED光源,不同的背光膜和液晶模块(LCM)之间,以提高电视或监视器的颜色转换效率,以实现超过107的NTSC% 。

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