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    • 1. 发明申请
    • TILED OLED DISPLAY
    • 倾斜OLED显示屏
    • WO2006057801A2
    • 2006-06-01
    • PCT/US2005040273
    • 2005-11-07
    • EASTMAN KODAK COCOK RONALD STEVENARNOLD ANDREW DANIEL
    • COK RONALD STEVENARNOLD ANDREW DANIEL
    • H01L27/3293H01L27/3281
    • A tiled display structure having one or more first light emitting tiles having a substrate with a first display area with spaced-apart electrodes. At least one layer of light-emitting material is provided between the spaced apart electrodes. A non-display area is provided with conductors for electrically connecting the spaced-apart electrodes in the display area to a connection point at the edge of the display substrate. The spaced apart electrodes producing light-emitting pixel element when subjected to a current. One or more second light emitting tiles are also provided having a substrate with a second display area with spaced-apart electrodes and at least one layer of light-emitting material between the spaced apart electrodes. The second light emitting tiles are stacked above the non-display area of another tile substrate and in registration with the other first display area, the spaced apart electrodes of the second display producing light-emitting pixel elements when subjected to a current.
    • 一种具有一个或多个第一发光砖的平铺显示结构,其具有带有间隔开的电极的具有第一显示区域的基板。 在间隔开的电极之间设置至少一层发光材料。 非显示区域设置有用于将显示区域中的间隔开的电极电连接到显示器基板的边缘处的连接点的导体。 间隔开的电极在经受电流时产生发光像素元件。 还提供了一个或多个第二发光瓦片,其具有具有间隔开的电极的第二显示区域和在间隔开的电极之间的至少一层发光材料的基板。 第二发光瓦片堆叠在另一个瓦片基板的非显示区域上方并与另一个第一显示区域对准,当经受电流时,第二显示器的间隔开的电极产生发光像素元件。
    • 5. 发明申请
    • EMISSIVE DEVICE WITH CHIPLETS
    • 具有电路的电磁装置
    • WO2010056358A3
    • 2010-08-26
    • PCT/US2009006132
    • 2009-11-16
    • EASTMAN KODAK COCOK RONALD STEVENHAMER JOHN W
    • COK RONALD STEVENHAMER JOHN W
    • H01L51/52H01L27/32
    • H01L27/3276H01L27/3255H01L51/524
    • An emissive device includes a substrate having a substrate surface; a chiplet adhered to the substrate surface, the chiplet having one or more connection pads; a bottom electrode formed on the substrate surface, one or more organic or inorganic light-emitting layers formed over the bottom electrode, and a top electrode formed over the one or more organic or inorganic light-emitting layers; an electrical conductor including a transition layer formed over only a portion of the chiplet and only a portion of the substrate surface, the transition layer exposing at least one connection pad, the electrical conductor formed in electrical contact with the exposed connection pad and the bottom electrode; and an LED spaced from the chiplet and including a layer of light-emissive material formed over the bottom electrode and a top electrode formed over the light-emissive layer.
    • 发射装置包括具有基板表面的基板; 小瞳附着在基底表面上,小瞳具有一个或多个连接垫; 形成在所述基板表面上的底部电极,形成在所述底部电极上方的一个或多个有机或无机发光层,以及形成在所述一个或多个有机或无机发光层上的顶部电极; 包括仅在所述小芯片的一部分上形成的过渡层和所述衬底表面的一部分的电导体,所述过渡层暴露至少一个连接衬垫,所述电导体与所暴露的连接衬垫和所述底部电极形成电接触 ; 以及与小灯间隔开的LED并且包括在底部电极上形成的发光材料层和形成在发光层上的顶部电极。
    • 8. 发明申请
    • BROAD COLOR GAMUT DISPLAY
    • BROAD COLOR GAMUT显示
    • WO2008106020A2
    • 2008-09-04
    • PCT/US2008002042
    • 2008-02-15
    • EASTMAN KODAK COKANE PAUL JAMESCOK RONALD STEVEN
    • KANE PAUL JAMESCOK RONALD STEVEN
    • H01L51/56H01L27/32
    • H05B33/10H01L27/3213H01L51/56
    • A method of making a color electroluminescent display device that includes determining a number of light emitting elements per pixel; and providing a substantially continually variable wavelength set of inorganic light-emitters having a spectral width. The same number of different inorganic light emitters is selected to emit light at the same determined number of different wavelengths and that provide the maximum color gamut area within a perceptually uniform two-dimensional color space. The color electroluminescent display device is formed having the same determined number of light emitting elements per pixel, wherein the light emitting elements in each pixel employ the same determined number of different inorganic light emitters.
    • 一种制造彩色电致发光显示装置的方法,包括:确定每像素的发光元件的数量; 并且提供具有光谱宽度的基本上连续可变的无机发光体组。 选择相同数量的不同的无机发光体以相同确定数量的不同波长发光,并且在感知上均匀的二维色彩空间内提供最大色域面积。 彩色电致发光显示装置形成为具有与每个像素相同的确定数量的发光元件,其中每个像素中的发光元件采用相同的确定数目的不同无机发光体。
    • 10. 发明申请
    • UNIFORMITY AND BRIGHTNESS CORRECTION IN OLED DISPLAYS
    • OLED显示屏的均匀性和亮度校正
    • WO2006020034A3
    • 2006-07-27
    • PCT/US2005025173
    • 2005-07-15
    • EASTMAN KODAK COCOK RONALD STEVENFORD JAMES HADLEY
    • COK RONALD STEVENFORD JAMES HADLEY
    • G09G3/32
    • G09G3/3216G09G3/3225G09G2320/0233G09G2320/0285G09G2320/029G09G2320/0295G09G2320/043G09G2360/147
    • A system for the correction of brightness and uniformity variations in OLED displays is described, comprising: a) an OLED display including a plurality of light-emitting elements; b) a non-volatile memory having uniformity correction information for the OLED display stored therein and permanently associated with and physically attached to the OLED display; and c) a controller connected to the OLED display and to the non-volatile memory for reading the information from the non-volatile memory, receiving an input signal, correcting the input signal using the information to form a corrected input signal, and transmitting the corrected input signal to the OLED display. Also described are OLED display device units comprising an OLED display and a permanently associated non-volatile memory, and a method for the correction of brightness and uniformity variations in OLED displays.
    • 描述了用于校正OLED显示器中的亮度和均匀性变化的系统,其包括:a)包括多个发光元件的OLED显示器; b)非易失性存储器,其具有存储在其中的OLED显示器的均匀性校正信息并且与OLED显示器永久关联并物理连接到所述OLED显示器; 以及c)连接到OLED显示器和非易失性存储器的控制器,用于读取来自非易失性存储器的信息,接收输入信号,使用该信息校正输入信号以形成校正的输入信号, 校正了输入到OLED显示器的输入信号。 还描述了包括OLED显示器和永久关联的非易失性存储器的OLED显示装置单元以及用于校正OLED显示器中的亮度和均匀性变化的方法。