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    • 5. 发明授权
    • Liquid crystal display
    • 液晶显示器
    • US07868862B2
    • 2011-01-11
    • US11607306
    • 2006-12-02
    • Dong Hoon LeeSun Hwa LeeYong Woo Choi
    • Dong Hoon LeeSun Hwa LeeYong Woo Choi
    • G09G3/36
    • G09G3/3607G02F2201/52G09G3/3648G09G2300/0452G09G2310/0297
    • A liquid crystal display is provided. The liquid crystal display includes a plurality of first pixels provided with RGB color filters and a plurality of second pixels provided with CMY color filters are formed at a liquid crystal display panel. A video processing part is inputted with RGB data to generate CMY data, and selectively outputs RGB data inputted in accordance with a clock signal and CMY data generated in accordance with a clock signal. A control part controls a supply of RGB data or CMY data inputted from the video processing part in accordance with the clock signal. In accordance with a control part, a data driving part converts RGB data or CMY data outputted from the control part into an analog data, and then supplies it to the plurality of first pixel or the plurality of second pixel.
    • 提供液晶显示器。 液晶显示器包括设置有RGB滤色器的多个第一像素,并且在液晶显示面板上形成设置有CMY滤色器的多个第二像素。 视频处理部分输入RGB数据以产生CMY数据,并且选择性地输出根据时钟信号输入的RGB数据和根据时钟信号生成的CMY数据。 控制部分根据时钟信号控制从视频处理部分输入的RGB数据或CMY数据的供给。 根据控制部分,数据驱动部分将从控制部分输出的RGB数据或CMY数据转换为模拟数据,然后将其提供给多个第一像素或多个第二像素。
    • 6. 发明申请
    • SOLAR CELL MANUFACTURED USING AMORPHOUS AND NANOCRYSTALLINE SILICON COMPOSITE THIN FILM, AND PROCESS FOR MANUFACTURING THE SAME
    • 使用非晶态和纳米晶硅复合薄膜制造的太阳能电池及其制造方法
    • US20090071539A1
    • 2009-03-19
    • US12040465
    • 2008-02-29
    • Yong Woo ChoiYoung Ho ChoeHyung Seok KimYoung Hee Lee
    • Yong Woo ChoiYoung Ho ChoeHyung Seok KimYoung Hee Lee
    • H01L31/00
    • H01L31/03762B82Y20/00B82Y30/00H01L21/228H01L31/035281H01L31/03845H01L31/075H01L31/202Y02E10/548Y02P70/521
    • Disclosed are a solar cell manufactured using a composite thin film comprising amorphous silicon and nanocrystalline silicon, a method of manufacturing the solar cell, and a composition for the composite thin film used in manufacturing the solar cell. More particularly, a silicon semiconductor layer in the solar cell is fabricated by using the composite thin film comprising the amorphous silicon and the nanocrystalline silicon, the composite thin film being formed by dispersing nanoparticles of the crystalline silicon in a liquid silicon precursor and modifying them.The solar cell of the present invention is manufactured by dispersing the crystalline silicon nanoparticles in the liquid silicon precursor, coating the dispersion on a substrate or printing the substrate with the dispersion, and heating the coated or printed substrate to modify the liquid silicon precursor into the amorphous silicon.According to the present invention, any expensive equipment requiring alternative complicated installations is not needed to form a composite thin film comprising both of amorphous silicon and crystalline silicon. In addition, it is possible to form a composite thin film comprising plural materials with different band gap energy which can remarkably improve conversion efficiency of a solar cell by using a liquid precursor and nanocrystalline particles in a solution process with low production cost.
    • 公开了使用包含非晶硅和纳米晶硅的复合薄膜制造的太阳能电池,制造太阳能电池的方法和用于制造太阳能电池的复合薄膜的组合物。 更具体地,通过使用包含非晶硅和纳米晶硅的复合薄膜来制造太阳能电池中的硅半导体层,复合薄膜通过将晶体硅的纳米颗粒分散在液态硅前体中并进行修饰来形成。 本发明的太阳能电池通过将晶体硅纳米粒子分散在液态硅前体中,将分散体涂布在基板上或用分散体印刷基板来制造,并加热涂布或印刷的基板以将液态硅前体改性为 非晶硅。 根据本发明,不需要任何需要替代复杂安装的昂贵的设备来形成包括非晶硅和晶体硅两者的复合薄膜。 此外,可以形成包含具有不同带隙能量的多种材料的复合薄膜,其可以通过在低生产成本的溶液工艺中使用液体前体和纳米晶体颗粒显着提高太阳能电池的转换效率。