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    • 1. 发明授权
    • Method for crystallizing a silicon substrate
    • 硅衬底结晶方法
    • US09087697B2
    • 2015-07-21
    • US13890476
    • 2013-05-09
    • Sung-Ho KimMin-Hwan ChoiMin-Ji BaekSang-Kyung LeeSang-Ho JeonJong-Moo Huh
    • Sung-Ho KimMin-Hwan ChoiMin-Ji BaekSang-Kyung LeeSang-Ho JeonJong-Moo Huh
    • H01L21/02H01L21/66
    • H01L21/02686H01L21/02532H01L22/12H01L22/20
    • A method for crystallizing a silicon substrate includes manufacturing a crystallized silicon test substrate that is crystallized by scanning excimer laser annealing beams with different energy densities on respective areas of an amorphous silicon test substrate, irradiating a surface of the crystallized silicon test substrate using a light source, and measuring reflectivity corresponding to the respective areas of the crystallized silicon test substrate in a visible light wavelength range, extracting average reflectivities of the respective areas of the crystallized silicon test substrate in wavelength ranges corresponding to respective colors, calculating an optimum energy density (OPED) index per energy density by using a value acquired by subtracting average reflectivity of red-based colors from average reflectivity of blue-based colors, selecting an optimal energy density, and crystallizing an amorphous silicon substrate using the optimal energy density.
    • 一种硅衬底的结晶方法包括:制造结晶硅测试衬底,其通过在非晶硅测试衬底的各个区域上扫描具有不同能量密度的准分子激光退火光束而被结晶,使用光源照射结晶硅测试衬底的表面 ,并且在可见光波长范围内测量对应于结晶硅测试衬底的各个区域的反射率,提取结晶硅测试衬底的各个区域的平均反射率,其对应于各种颜色的波长范围,计算最佳能量密度(OPED )通过使用通过从基于蓝色的颜色的平均反射率减去红色颜色的平均反射率而获得的值,选择最佳能量密度,并使用最佳能量密度结晶非晶硅衬底而获得的值。
    • 7. 发明申请
    • AUTOMOTIVE HEADLAMP SYSTEM AND METHOD OF CONTROLLING THE SAME
    • 汽车头灯系统及其控制方法
    • US20120299478A1
    • 2012-11-29
    • US13478618
    • 2012-05-23
    • Jong Ryoul ParkSung Ho Kim
    • Jong Ryoul ParkSung Ho Kim
    • B60Q1/08
    • B60Q1/143B60Q2300/054B60Q2300/056B60Q2300/42F21S41/663
    • Disclosed is an automotive headlamp system which can control an illumination pattern of headlamps by rotating a headlamp unit and/or adjusting the light intensity of a light source included in the headlamp unit based on the position of a front vehicle located ahead in a driving direction, and a method of controlling the automotive headlamp system. The automotive headlamp system includes an image capture unit capturing an image of an area ahead of a vehicle in a driving direction of the vehicle, a position determination unit determining a position of a front vehicle based on the captured image, a headlamp unit comprising an array of a plurality of light sources, and a control unit controlling an illumination pattern of the headlamp unit by rotating the headlamp unit and/or adjusting a light intensity of a light source based on the determined position of the front vehicle.
    • 公开了一种汽车前照灯系统,其可以基于前方车辆在行驶方向上的位置来旋转前照灯单元和/或调整包含在前照灯单元中的光源的光强度来控制前照灯的照明图案, 以及控制汽车前照灯系统的方法。 汽车前照灯系统包括:图像捕获单元,其在车辆的行驶方向上捕获车辆前方的区域的图像;基于拍摄图像确定前方车辆的位置的位置确定单元;包括阵列的前照灯单元 以及控制单元,其通过基于前车辆的确定位置旋转前照灯单元和/或调整光源的光强度来控制前照灯单元的照明图案。
    • 8. 发明授权
    • Organic light-emitting display apparatus and method of manufacturing the same
    • 有机发光显示装置及其制造方法
    • US08319221B2
    • 2012-11-27
    • US13102419
    • 2011-05-06
    • Jong-Hyun ChoiSung-Ho KimJoon-Hoo Choi
    • Jong-Hyun ChoiSung-Ho KimJoon-Hoo Choi
    • H01L29/04H01L31/20
    • H01L51/5215H01L27/124H01L27/1288H01L27/3246H01L27/3248H01L29/4908H01L51/0554H01L51/56H01L2227/323H01L2251/308
    • An organic light-emitting display apparatus and a method of manufacturing the same are disclosed. The organic light-emitting display apparatus includes: an active layer formed on a substrate, a gate electrode including: a first gate electrode layer insulated from the active layer and including a semi-transmissive conductive material, a second gate electrode layer formed on the first gate electrode layer configured to protect the first gate electrode layer, a third gate electrode layer formed on the second gate electrode layer and including a transparent conductive material, and a fourth gate electrode layer formed on the third gate electrode layer and including a conductive material, a pixel electrode including: a first electrode layer formed in the same layer level as the first gate electrode layer and including a semi-transmissive conductive material, a second electrode layer formed on the first electrode layer configured to protect the first electrode layer, a third electrode layer formed on the second electrode layer and including a transparent conductive material, and a fourth electrode layer formed on the third electrode layer and including a conductive material, source and drain electrodes insulated from the gate electrode and electrically connected to the active layer and the pixel electrode, an intermediate layer formed on the pixel electrode and including an organic light-emitting layer, and an opposite electrode formed on the intermediate layer.
    • 公开了一种有机发光显示装置及其制造方法。 有机发光显示装置包括:形成在基板上的有源层,栅电极,包括:与有源层绝缘并且包括半透射导电材料的第一栅电极层,形成在第一栅极上的第二栅电极层 被配置为保护第一栅电极层的栅电极层,形成在第二栅极电极层上并包括透明导电材料的第三栅电极层和形成在第三栅电极层上并包括导电材料的第四栅电极层, 像素电极,包括:第一电极层,其形成在与第一栅极电极层相同的层级,并且包括半透射导电材料;第二电极层,形成在第一电极层上,被配置为保护第一电极层;第三电极层, 电极层,形成在第二电极层上,并且包括透明导电材料,第四 电极层,其形成在所述第三电极层上并且包括导电材料,与所述栅电极绝缘并电连接到所述有源层和所述像素电极的源极和漏极,形成在所述像素电极上并包括有机发光 层和形成在中间层上的相对电极。
    • 9. 发明授权
    • Organic light emitting display device
    • 有机发光显示装置
    • US08227816B2
    • 2012-07-24
    • US12694517
    • 2010-01-27
    • Sung-ho KimJu-won YoonSu-Mi LeeIl-Jeong LeeKwan-Hee Lee
    • Sung-ho KimJu-won YoonSu-Mi LeeIl-Jeong LeeKwan-Hee Lee
    • H01J1/62H01L33/00
    • H01L51/5218H01L27/3211H01L51/5088H01L51/5265
    • An organic light emitting display device (OLED) including: a substrate including a plurality of pixel units; first electrodes disposed in the pixel units; first subsidiary electrodes completely covering the top surfaces of corresponding ones of the first electrodes; first electrode protection units disposed on edges of the first electrodes on which the first subsidiary electrodes are not disposed; a pixel defining layer disposed on the substrate, having holes to expose the first electrodes; a light emission layer; and a second electrode disposed on the light emission layer. The light emission layer includes organic emission layers (EMLs) disposed on the first electrodes. The light emission layer may include subsidiary hole injection layers disposed on selected ones of the first electrodes, to vary a distance between the first electrodes and portions of the second electrode.
    • 一种有机发光显示装置(OLED),包括:包括多个像素单元的基板; 设置在像素单元中的第一电极; 第一辅助电极完全覆盖相应的第一电极的顶表面; 第一电极保护单元设置在不设置第一辅助电极的第一电极的边缘上; 设置在所述基板上的像素限定层,具有用于露出所述第一电极的孔; 发光层; 以及设置在发光层上的第二电极。 发光层包括设置在第一电极上的有机发射层(EML)。 发光层可以包括设置在所选择的第一电极上的辅助空穴注入层,以改变第一电极和第二电极的部分之间的距离。
    • 10. 发明申请
    • ORGANIC LIGHT-EMITTING DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME
    • 有机发光显示装置及其制造方法
    • US20120097957A1
    • 2012-04-26
    • US13209290
    • 2011-08-12
    • Sung-Ho Kim
    • Sung-Ho Kim
    • H01L29/786
    • H01L51/5265H01L27/3258
    • An organic light-emitting display device includes: a buffer layer including sequentially stacked materials having different refractive indexes on a substrate; source and drain electrodes on the buffer layer; a first active layer of a thin film transistor between the source and drain electrodes, and a second active layer spaced from the first active layer at a same layer as and including a same material as the first active layer; a first insulation layer on the buffer layer, the source and drain electrodes, the first and second active layers, and including sequentially stacked materials having different refractive indexes; a first gate electrode corresponding to a center region of the first and second active layers with the first insulation layer therebetween, and a pixel electrode at a same layer as and comprising a same material as the first gate electrode; and a second gate electrode on the first gate electrode.
    • 一种有机发光显示装置,包括:缓冲层,包括在基板上具有不同折射率的顺序层叠的材料; 缓冲层上的源极和漏极; 源极和漏极之间的薄膜晶体管的第一有源层,以及与第一有源层在与第一有源层相同的层并与第一有源层相同的材料间隔开的第二有源层; 缓冲层上的第一绝缘层,源极和漏极,第一和第二有源层,并且包括具有不同折射率的顺序层叠的材料; 对应于第一和第二有源层的中心区域的第一栅极电极,其间具有第一绝缘层,以及与第一栅极电极相同并且包含相同材料的像素电极; 和第一栅电极上的第二栅电极。