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    • 11. 发明授权
    • Structure for optical device and method of fabricating the same
    • 光学装置的结构及其制造方法
    • US07338825B2
    • 2008-03-04
    • US11190284
    • 2005-07-26
    • Sang Hyeob KimKi Chul KimHye Jin Kim
    • Sang Hyeob KimKi Chul KimHye Jin Kim
    • H01L21/00
    • G11B7/26B82Y10/00G11B7/00454G11B7/00455G11B7/0052G11B7/1275H01L2933/0091
    • Provided are a structure for an optical device and method of fabricating the same. The structure includes: a light scattering layer producing nanoparticles due to externally provided thermal energy; a protective layer protecting the light scattering layer; and a capping layer disposed between the light scattering layer and the protective layer. As the light scattering layer is formed of nitride-oxide, an energy gap is increased to make the structure suitable for a high-speed electronic circuit, and a desired stoichiometric ratio can be easily obtained. Also, the capping layer prevents crystalline mismatch, thus the non-uniformity of elements is inhibited to maintain a stoichiometric state. As a result, a high-integrated high-speed electronic circuit, which is excellent in uniformity and reproducibility, can be easily embodied.
    • 提供了一种用于光学器件的结构及其制造方法。 该结构包括:由外部提供的热能产生纳米颗粒的光散射层; 保护光散射层的保护层; 以及设置在光散射层和保护层之间的覆盖层。 由于光散射层由氮化物氧化物形成,因此能量间隙增大,使得该结构适合于高速电子电路,并且可以容易地获得所需的化学计量比。 此外,封盖层防止晶体失配,因此元件的不均匀性被抑制以维持化学计量状态。 结果,可以容易地实现均匀性和再现性优异的高集成度高速电子电路。
    • 14. 发明授权
    • Method for setting compensation region for irregular defect region in manage display device
    • 在管理显示装置中设置不规则缺陷区域的补偿区域的方法
    • US08085278B2
    • 2011-12-27
    • US12318267
    • 2008-12-23
    • Jong Hee HwangHye Jin KimJu Seong Park
    • Jong Hee HwangHye Jin KimJu Seong Park
    • G09G5/00G09G3/30G09G5/10G02F1/13
    • G09G3/3648G09G3/006G09G2320/0233G09G2320/0285
    • The present invention relates to a method for setting a compensation region for an irregular defect region in an image display device, including the steps of detecting an irregular display defect, setting a horizontal width of the irregular defect region detected thus, generating a plurality of guide lines which divide the irregular defect region in a horizontal direction along the horizontal width set thus automatically, setting upper and lower side boundary lines to the irregular defect region at every interval of the plurality of the guide lines to generate a plurality of main compensation regions defined by the plurality of guide lines and the upper and lower side boundary lines, and generating a plurality of upper, lower, left, and right supplementary compensation regions at upper, lower, left, and right sides of the plurality of main compensation regions, which maintain a gap of each of the plurality of the guide lines, automatically.
    • 本发明涉及一种用于设置图像显示装置中的不规则缺陷区域的补偿区域的方法,包括以下步骤:检测不规则显示缺陷,设置由此检测到的不规则缺陷区域的水平宽度,产生多个引导件 沿着自动设定的水平宽度在水平方向上划分不规则缺陷区域的线条,将多个引导线的每个间隔的上下边界线设置到不规则缺陷区域,以生成多个主要补偿区域 通过多根引导线和上下侧边界线,并且在多个主补偿区域的上,下,左,右侧产生多个上,下,左和右补充补偿区域,其中 自动地保持多条引导线中的每一条的间隙。
    • 15. 发明授权
    • Method of controlling picture quality in flat panel display for compensating brightness of a display stain of indeterminate shape
    • 控制平板显示器画面质量的方法,用于补偿不确定形状的显示污点的亮度
    • US07932917B2
    • 2011-04-26
    • US11881736
    • 2007-07-27
    • Sang Chul HanJong Hee HwangHye Jin Kim
    • Sang Chul HanJong Hee HwangHye Jin Kim
    • G09G5/10
    • G09G3/006G09G3/2055G09G3/2092G09G3/3648G09G2320/0285G09G2320/0693G09G2370/047Y10S345/904
    • A method of controlling a picture quality of a flat panel display for automatically analyzing a shape, a size, and brightness of a display stain of indeterminate shape having an irregular pattern, and compensating brightness of the display stain of indeterminate shape on the basis of the analyzed result is disclosed. The method of controlling a picture quality of the flat panel display comprises measuring brightness of a display stain, which is generated on a flat display panel, at a vertical direction and a horizontal direction, respectively; imaginarily dividing the display stain in a predetermined distance along a direction that a brightness change is large among the vertical direction and the horizontal direction in accordance with the measured result; detecting edge points where divided border lines of the divided display stains and an edge of the display stain are joined; determining compensation values, which are applied to a plurality of compensation applying surfaces that are defined by the edge points and the divided border lines within the display stain; and adjusting digital video data to be displayed at the compensation applying surfaces using the compensation values.
    • 一种控制平板显示器的图像质量的方法,用于自动分析具有不规则图案的不确定形状的显示污点的形状,尺寸和亮度,以及基于不确定形状补偿不确定形状的显示污点的亮度 分析结果披露。 控制平板显示器的图像质量的方法包括分别在垂直方向和水平方向上测量在平面显示面板上产生的显示污点的亮度; 根据测量结果,沿着垂直方向和水平方向上的亮度变化大的方向将显示污点分割成预定距离; 检测划分的显示污渍的划分的边界线和显示污点的边缘连接的边缘点; 确定补偿值,其应用于由所述边缘点和所述显示污点中的所述划分的边界线限定的多个补偿施加表面; 以及使用所述补偿值来调整要在所述补偿施加表面处显示的数字视频数据。
    • 20. 发明申请
    • INTERDIGITATED ELECTRODE FOR ELECTRONIC DEVICE AND ELECTRONIC DEVICE USING THE SAME
    • 用于电子器件的电极和使用该电极的电子器件
    • US20080134792A1
    • 2008-06-12
    • US11865427
    • 2007-10-01
    • Sung Q. LEEHye Jin KimKang Ho ParkJong Dae Kim
    • Sung Q. LEEHye Jin KimKang Ho ParkJong Dae Kim
    • H01B7/00G01H11/08G01L9/06
    • G01L9/0022H01L41/047H01L41/0825H01L41/0973H01L41/1138
    • Provided are an interdigitated electrode (IDE) for an electronic device, which includes a plurality of anodes and a plurality of cathodes arranged radially in an alternating fashion for electrical insulation from one another, and an electronic device using the same. The IDE in which the anodes and the cathodes are arranged radially in an alternating fashion is fabricated and applied to the electronic device, so that the entire fabrication process can be simplified compared to that of a typical electronic device in which an upper electrode is different from a lower electrode. Also, circular or polygonal IDEs can be applied to systems that are driven or measure values on their central axes, thereby enhancing the performance and efficiency of the systems. Furthermore, the circular or polygonal IDEs can be employed in systems such as acoustic sensors, pressure sensors, micro-speakers, biological sensors, and acceleration sensors, so that the structure and operation of the systems can be simplified.
    • 提供了一种用于电子设备的叉指电极(IDE),其包括多个阳极和以交替方式径向排列的用于彼此电绝缘的多个阴极和使用该阴极的电子设备。 阳极和阴极以交替的方式径向排列的IDE被制造并施加到电子器件,使得与上电极不同于其中的典型电子器件的整个制造工艺相比,可以简化整个制造工艺 下电极。 此外,圆形或多边形IDE可以应用于驱动或测量其中心轴上的值的系统,从而提高系统的性能和效率。 此外,圆形或多边形IDE可用于诸如声学传感器,压力传感器,微型扬声器,生物传感器和加速度传感器的系统中,从而可以简化系统的结构和操作。