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    • 2. 发明授权
    • Display panel and display device
    • 显示面板和显示设备
    • US08830144B2
    • 2014-09-09
    • US12661248
    • 2010-03-12
    • Kazuo NakamuraKatsuhide UchinoNobutoshi AsaiHiroshi Sagawa
    • Kazuo NakamuraKatsuhide UchinoNobutoshi AsaiHiroshi Sagawa
    • G09G3/30H01L27/32H01L51/52
    • H01L27/3269G09G3/20G09G3/3208G09G2300/0421H01L27/322H01L51/5284H01L2227/32
    • A display panel includes: a plurality of pixel circuits formed in a matrix on a substrate; an insulating layer covering the plurality of pixel circuits; a plurality of light emitting elements connected to the plurality of pixel circuits, and arranged in a matrix on the insulating layer; a filtering layer including a light transmitting section at least in a part of a region facing the light emitting element and a light shielding section formed in a same plane as the light transmitting section, and formed on an opposite side from the pixel circuit in relation to the light emitting element; a light reflecting section formed in a region facing the light shielding section, and between the light emitting element and the filtering layer; and a light receiving element formed in a region facing the light shielding section, and on the pixel circuit side in relation to the light emitting element.
    • 显示面板包括:在基板上以矩阵形成的多个像素电路; 覆盖所述多个像素电路的绝缘层; 连接到所述多个像素电路的多个发光元件,并且以矩阵形式布置在所述绝缘层上; 滤光层,其至少在面向发光元件的区域的一部分中具有透光部,以及形成在与透光部相同的平面中的遮光部,并且形成在与像素电路相反的一侧 发光元件; 在与所述遮光部对置的区域中形成的光反射部以及所述发光元件与所述滤光层之间的光反射部; 以及形成在面对遮光部的区域中的光接收元件,并且在像素电路侧相对于发光元件形成。
    • 3. 发明申请
    • Display panel and display device
    • 显示面板和显示设备
    • US20100245216A1
    • 2010-09-30
    • US12661248
    • 2010-03-12
    • Kazuo NakamuraKatsuhide UchinoNobutoshi AsaiHiroshi Sagawa
    • Kazuo NakamuraKatsuhide UchinoNobutoshi AsaiHiroshi Sagawa
    • G09G3/30
    • H01L27/3269G09G3/20G09G3/3208G09G2300/0421H01L27/322H01L51/5284H01L2227/32
    • A display panel includes: a plurality of pixel circuits formed in a matrix on a substrate; an insulating layer covering the plurality of pixel circuits; a plurality of light emitting elements connected to the plurality of pixel circuits, and arranged in a matrix on the insulating layer; a filtering layer including a light transmitting section at least in a part of a region facing the light emitting element and a light shielding section formed in a same plane as the light transmitting section, and formed on an opposite side from the pixel circuit in relation to the light emitting element; a light reflecting section formed in a region facing the light shielding section, and between the light emitting element and the filtering layer; and a light receiving element formed in a region facing the light shielding section, and on the pixel circuit side in relation to the light emitting element.
    • 显示面板包括:在基板上以矩阵形成的多个像素电路; 覆盖所述多个像素电路的绝缘层; 连接到所述多个像素电路的多个发光元件,并且以矩阵形式布置在所述绝缘层上; 滤光层,其至少在面向发光元件的区域的一部分中具有透光部,以及形成在与透光部相同的平面中的遮光部,并且形成在与像素电路相反的一侧 发光元件; 在与所述遮光部对置的区域中形成的光反射部以及所述发光元件与所述滤光层之间的光反射部; 以及形成在面对遮光部的区域中的光接收元件,并且在像素电路侧相对于发光元件形成。
    • 5. 发明授权
    • Active-matrix organic electroluminescent display device
    • 有源矩阵有机电致发光显示装置
    • US07545350B2
    • 2009-06-09
    • US10982907
    • 2004-11-08
    • Kazuo NakamuraKatsuhide UchinoNobutoshi Asai
    • Kazuo NakamuraKatsuhide UchinoNobutoshi Asai
    • G09G3/30
    • G06F3/042G06F3/0412G09G3/3233G09G2300/0408G09G2300/0809G09G2300/0842G09G2300/0861H04M2250/22
    • An organic electroluminescent display device includes scanning lines, signal lines, and pixels formed in a matrix, each pixel being at an intersection of each of the scanning lines and each of the signal lines. Each pixel includes a light-emitting element, a light-emitting circuit composed of a thin-film transistor, and a light-receiving circuit composed of a thin-film transistor. When the light-emitting circuit is selected by the scanning line, the light-emitting circuit drives the light-emitting element according to a video signal that is input from the signal line, thereby displaying an image on the pixels formed in the matrix. The light-receiving circuit is selected in a period of time during which the light-emitting circuit does not operate, and outputs a light-receiving signal in accordance with the amount of light incident on the pixel to a different signal line.
    • 有机电致发光显示装置包括扫描线,信号线和以矩阵形成的像素,每个像素位于每条扫描线和每条信号线的交点处。 每个像素包括发光元件,由薄膜晶体管组成的发光电路和由薄膜晶体管组成的光接收电路。 当通过扫描线选择发光电路时,发光电路根据从信号线输入的视频信号来驱动发光元件,从而在矩阵中形成的像素上显示图像。 光接收电路在发光电路不工作的时间段内被选择,并且将入射到像素上的光量的光接收信号输出到不同的信号线。
    • 8. 发明授权
    • Display unit and its manufacturing method
    • 显示单元及其制造方法
    • US07009340B2
    • 2006-03-07
    • US10691406
    • 2003-10-22
    • Nobutoshi AsaiTetsuo UrabeYuichi Iwase
    • Nobutoshi AsaiTetsuo UrabeYuichi Iwase
    • H01J1/62
    • H01L51/5275H01L27/322H01L51/5265
    • The invention provides a display unit which can improve emission efficiency of lights for image display, and assure luminance of display images. The display unit comprises micro prisms which are arranged in the positions corresponding to organic EL devices, and which have a high refraction index to refract a light, and auxiliary prisms with a low refraction index which are embedded in voids between each micro prism. A light volume of the light viewed as an image in the direction facing an organic EL display (facing direction) is a total of a light volume of a light essentially emitted from the organic EL device in the facing direction, and lights which are directed in the facing direction by utilizing refraction phenomenon based on differences of refraction index between the micro prism and the auxiliary prism. Compared to the case wherein the micro prisms and the auxiliary prisms are not provided, an emission volume of the light in the facing direction is increased by the light volumes of the lights.
    • 本发明提供一种显示单元,其可以提高用于图像显示的光的发射效率,并且确保显示图像的亮度。 显示单元包括布置在与有机EL器件相对应的位置并且具有高折射率以折射光的微棱镜以及嵌入每个微棱镜之间的空隙中的具有低折射率的辅助棱镜。 在面向有机EL显示器(朝向方向)的方向上作为图像观看的光的光体积是从有机EL器件沿相对方向基本发射的光的总体积,以及指向 基于微棱镜和辅助棱镜之间的折射率差异的利用折射现象的面向方向。 与未设置微型棱镜和辅助棱镜的情况相比,通过光的光量增大了朝向方向的光的发射体积。
    • 9. 发明授权
    • Optical recording medium
    • 光记录介质
    • US5474874A
    • 1995-12-12
    • US196470
    • 1994-02-15
    • Nobutoshi AsaiKouichi Yasuda
    • Nobutoshi AsaiKouichi Yasuda
    • G11B7/24G11B7/244G11B7/245G11B7/248G11B7/258
    • G11B7/248G11B7/24G11B7/244G11B7/245G11B7/258Y10S428/913Y10S428/914Y10S430/146
    • An optical recording medium has a transparent substrate with a recorded pattern formed thereon and a saturable absorption dye containing layer disposed on the recorded pattern and containing at least a saturable absorption dye. The saturable absorption dye has a molecular extinction coefficient .epsilon. of 10.sup.4 or greater at the wavelength of reproducing light, and a relaxation time .tau. in the range of 1 ns.ltoreq..tau..ltoreq. 100 ns. A reflecting layer having a reflectivity of 70% or higher on an air boundary thereof may be disposed on the saturable absorption dye containing layer. The saturable absorption dye containing layer may have such a thickness that substantially minimizes the intensity of reflected light due to interference with respect to the intensity of the reproducing light. The saturable absorption dye may comprise a naphthalocyanine-based dye.
    • 光学记录介质具有形成在其上的记录图案的透明基板和设置在记录图案上并且至少包含可饱和吸收染料的可饱和吸收染料含有层。 可饱和吸收染料在再现光波长下的分子消光系数ε为104或更大,弛豫时间τ在1ns≤100ns的范围内。 在可饱和的吸收染料含有层上可以设置在其空气边界具有70%以上的反射率的反射层。 可饱和吸收染料含有层可以具有使得由于相对于再现光的强度的干涉而使反射光的强度基本上最小化的厚度。 可饱和吸收染料可以包含萘酞菁染料。