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    • 1. 发明授权
    • Organic light-emitting diode three-dimensional image display device
    • 有机发光二极管三维图像显示装置
    • US09112186B2
    • 2015-08-18
    • US14108194
    • 2013-12-16
    • Sung-Jung LeeMin-Jung KimKyo-Hyeon Lee
    • Sung-Jung LeeMin-Jung KimKyo-Hyeon Lee
    • H01L51/52G02B27/22G02B27/26
    • H01L51/5293G02B27/2214G02B27/26H01L51/5262
    • An organic light-emitting diode three-dimensional image display device comprises a first substrate, a cathode formed on the first substrate, an electron injection layer formed on the cathode, an electron transfer layer formed on the electron injection layer, an emission layer formed on the electron transfer layer, a hole transfer layer formed on the emission layer, a hole injection layer formed on the hole transfer layer, an anode formed on the hole injection layer, a wire grid polarizer formed on the anode and composed of a metal thin film pattern formed at a first angle and a method thin film pattern formed at a second angle perpendicular to the first angle, which are alternately arranged, and a second substrate arranged on the wire grid polarizer.
    • 有机发光二极管三维图像显示装置包括第一基板,形成在第一基板上的阴极,形成在阴极上的电子注入层,形成在电子注入层上的电子转移层,形成在电子注入层上的发射层 电子转移层,形成在发光层上的空穴传输层,形成在空穴传输层上的空穴注入层,形成在空穴注入层上的阳极,形成在阳极上的线栅偏振器,由金属薄膜 形成为第一角度的图案和以与交替布置的垂直于第一角度的第二角度形成的方法薄膜图案以及布置在线栅偏振器上的第二基板。
    • 2. 发明授权
    • Organic light-emitting diode three-dimensional image display device
    • 有机发光二极管三维图像显示装置
    • US08633477B2
    • 2014-01-21
    • US13054592
    • 2009-07-15
    • Sung-Jung LeeMin-Jung KimKyo-Hyeon Lee
    • Sung-Jung LeeMin-Jung KimKyo-Hyeon Lee
    • H01L51/44
    • H01L51/5293G02B27/2214G02B27/26H01L51/5262
    • Disclosed herein is an organic light-emitting diode three-dimensional image display device which comprises a first substrate, a cathode formed on the first substrate, an electron injection layer formed on the cathode, an electron transfer layer formed on the electron injection layer, an emission layer formed on the electron transfer layer, a hole transfer layer formed on the emission layer, a hole injection layer formed on the hole transfer layer, an anode formed on the hole injection layer, a wire grid polarizer formed on the anode and composed of a metal thin film pattern formed at a first angle and a method thin film pattern formed at a second angle perpendicular to the first angle, which are alternately arranged, and a second substrate arranged on the wire grid polarizer.
    • 本文公开了一种有机发光二极管三维图像显示装置,其包括第一基板,形成在第一基板上的阴极,形成在阴极上的电子注入层,形成在电子注入层上的电子转移层, 形成在电子转移层上的发光层,形成在发光层上的空穴传输层,形成在空穴传输层上的空穴注入层,形成在空穴注入层上的阳极,形成在阳极上的线栅偏振器, 以第一角度形成的金属薄膜图案和以交替布置的垂直于第一角度的第二角度形成的方法薄膜图案和布置在线栅偏振器上的第二基板。
    • 3. 发明申请
    • ORGANIC LIGHT-EMITTING DIODE THREE-DIMENSIONAL IMAGE DISPLAY DEVICE
    • 有机发光二极管三维图像显示装置
    • US20110121327A1
    • 2011-05-26
    • US13054592
    • 2009-07-15
    • Sung-Jung LeeMin-Jung KimKyo-Hyeon Lee
    • Sung-Jung LeeMin-Jung KimKyo-Hyeon Lee
    • H01L51/44
    • H01L51/5293G02B27/2214G02B27/26H01L51/5262
    • Disclosed herein is an organic light-emitting diode three-dimensional image display device which comprises a first substrate, a cathode formed on the first substrate, an electron injection layer formed on the cathode, an electron transfer layer formed on the electron injection layer, an emission layer formed on the electron transfer layer, a hole transfer layer formed on the emission layer, a hole injection layer formed on the hole transfer layer, an anode formed on the hole injection layer, a wire grid polarizer formed on the anode and composed of a metal thin film pattern formed at a first angle and a method thin film pattern formed at a second angle perpendicular to the first angle, which are alternately arranged, and a second substrate arranged on the wire grid polarizer.
    • 本文公开了一种有机发光二极管三维图像显示装置,其包括第一基板,形成在第一基板上的阴极,形成在阴极上的电子注入层,形成在电子注入层上的电子转移层, 形成在电子转移层上的发光层,形成在发光层上的空穴传输层,形成在空穴传输层上的空穴注入层,形成在空穴注入层上的阳极,形成在阳极上的线栅偏振器, 以第一角度形成的金属薄膜图案和以交替布置的垂直于第一角度的第二角度形成的方法薄膜图案和布置在线栅偏振器上的第二基板。
    • 4. 发明授权
    • Multi-mode 3-dimensional image display apparatus
    • 多模式三维图像显示装置
    • US08711294B2
    • 2014-04-29
    • US13510054
    • 2010-09-02
    • Sung-Jung LeeMin-Jung KimEui-Taek Shim
    • Sung-Jung LeeMin-Jung KimEui-Taek Shim
    • G02F1/1335G02F1/133G02F1/1333
    • G02F1/133509G02B27/2214G02F2001/133565H04N13/315H04N13/366
    • A multi-mode 3-dimensional image display apparatus comprises a backlight for emitting light; an image liquid crystal panel for displaying an image using the light emitted from the backlight; and a parallax barrier liquid crystal panel including a first transparent substrate, a first transparent electrode plate disposed on the first transparent substrate and having a front surface formed as a transparent electrode, a first insulation plate disposed on the first transparent electrode plate, a second transparent electrode plate disposed on the first insulation plate and having a transparent electrode material patterned in parallel in a vertical direction, a first alignment layer disposed on the second transparent electrode plate, a liquid crystal layer disposed on the first alignment layer, a second alignment layer disposed on the liquid crystal layer, a third transparent electrode plate disposed on the second alignment layer and having a transparent electrode material patterned in parallel in a vertical direction, in which the transparent electrode material is patterned so as to overlap a certain area with an area of the second transparent electrode plate patterned with the transparent electrode material, a second insulation plate disposed on the third transparent electrode plate, a fourth transparent electrode plate disposed on the second insulation plate and having a front surface formed as a transparent electrode, a second transparent substrate disposed on the fourth transparent electrode plate, and a polarizer plate disposed on the second transparent substrate.
    • 多模式三维图像显示装置包括用于发光的背光源; 使用从背光发出的光来显示图像的图像液晶面板; 以及视差屏障液晶面板,其包括第一透明基板,设置在第一透明基板上并具有形成为透明电极的正面的第一透明电极板,设置在第一透明电极板上的第一绝缘板,第二透明电极板 电极板,其设置在所述第一绝缘板上,具有在垂直方向上平行地图案化的透明电极材料,设置在所述第二透明电极板上的第一取向层,设置在所述第一取向层上的液晶层, 在所述液晶层上形成第三透明电极板,所述第三透明电极板设置在所述第二取向层上,并且具有在垂直方向上平行地图案化的透明电极材料,其中所述透明电极材料被图案化以与某一区域重叠, 图案化的第二透明电极板 透明电极材料,设置在第三透明电极板上的第二绝缘板,设置在第二绝缘板上并具有形成为透明电极的正面的第四透明电极板,设置在第四透明电极板上的第二透明基板, 以及设置在第二透明基板上的偏光板。
    • 5. 发明申请
    • MULTI-MODE 3-DIMENSIONAL IMAGE DISPLAY APPARATUS
    • 多模式三维图像显示设备
    • US20120229720A1
    • 2012-09-13
    • US13510054
    • 2010-09-02
    • Sung-Jung LeeMin-Jung KimEui-Taek Shim
    • Sung-Jung LeeMin-Jung KimEui-Taek Shim
    • G02F1/1335
    • G02F1/133509G02B27/2214G02F2001/133565H04N13/315H04N13/366
    • A multi-mode 3-dimensional image display apparatus comprises a backlight for emitting light; an image liquid crystal panel for displaying an image using the light emitted from the backlight; and a parallax barrier liquid crystal panel including a first transparent substrate, a first transparent electrode plate disposed on the first transparent substrate and having a front surface formed as a transparent electrode, a first insulation plate disposed on the first transparent electrode plate, a second transparent electrode plate disposed on the first insulation plate and having a transparent electrode material patterned in parallel in a vertical direction, a first alignment layer disposed on the second transparent electrode plate, a liquid crystal layer disposed on the first alignment layer, a second alignment layer disposed on the liquid crystal layer, a third transparent electrode plate disposed on the second alignment layer and having a transparent electrode material patterned in parallel in a vertical direction, in which the transparent electrode material is patterned so as to overlap a certain area with an area of the second transparent electrode plate patterned with the transparent electrode material, a second insulation plate disposed on the third transparent electrode plate, a fourth transparent electrode plate disposed on the second insulation plate and having a front surface formed as a transparent electrode, a second transparent substrate disposed on the fourth transparent electrode plate, and a polarizer plate disposed on the second transparent substrate.
    • 多模式三维图像显示装置包括用于发光的背光源; 使用从背光发出的光来显示图像的图像液晶面板; 以及视差屏障液晶面板,其包括第一透明基板,设置在第一透明基板上并具有形成为透明电极的正面的第一透明电极板,设置在第一透明电极板上的第一绝缘板,第二透明电极板 电极板,其设置在所述第一绝缘板上,具有在垂直方向上平行地图案化的透明电极材料,设置在所述第二透明电极板上的第一取向层,设置在所述第一取向层上的液晶层, 在所述液晶层上形成第三透明电极板,所述第三透明电极板设置在所述第二取向层上,并且具有在垂直方向上平行地图案化的透明电极材料,其中所述透明电极材料被图案化以与某一区域重叠, 图案化的第二透明电极板 透明电极材料,设置在第三透明电极板上的第二绝缘板,设置在第二绝缘板上并具有形成为透明电极的正面的第四透明电极板,设置在第四透明电极板上的第二透明基板, 以及设置在第二透明基板上的偏光板。
    • 6. 发明授权
    • Stereoscopic TFT-LCD with wire grid polarizer affixed to internal surfaces substrates
    • 具有线栅偏振器的立体TFT-LCD固定在内表面基板上
    • US08184216B2
    • 2012-05-22
    • US13073979
    • 2011-03-28
    • Sung-Jung Lee
    • Sung-Jung Lee
    • G02F1/1335
    • G02B27/26G02F1/133528H04N13/337H04N13/356
    • A stereoscopic TFT-LCD with a wire grid polarizer affixed to internal surfaces substrates, applies to a LCD device having a thin polarizing film and a thin phase retardation film to display a 2D image and a 3D image, a thin film polarizing film formed by accurately processing a thin aluminum film, a polarizing film of a nano imprint lithography method that uses polymer, and a polarizing film and a liquid crystal material that form a polarizing nano material thin film by uniformly coating a polarizing nano material (TCF), wherein a 1/4 phase retardation plate is disposed at a front surface of the second transparent substrate so as to produce circularly-polarized light.
    • 具有固定在内表面基板上的线栅偏振片的立体TFT-LCD适用于具有薄偏光膜和薄相位延迟膜的LCD装置,以显示2D图像和3D图像,精确形成的薄膜偏光膜 处理薄铝膜,使用聚合物的纳米压印光刻方法的偏振膜以及通过均匀涂覆偏振纳米材料(TCF)形成偏振纳米材料薄膜的偏振膜和液晶材料,其中1 / 4相位差板设置在第二透明基板的前表面,以产生圆偏振光。
    • 7. 发明授权
    • 3D display apparatus
    • 3D显示装置
    • US07268943B2
    • 2007-09-11
    • US10995152
    • 2004-11-24
    • Sung-Jung Lee
    • Sung-Jung Lee
    • G02B27/22H04N9/47
    • G02B27/2214H04N13/31H04N13/312
    • The present invention relates to a 3D image display apparatus of a parallax barrier method. In the 3D image display apparatus of a parallax barrier method, a parallax barrier of which a transparent slit portion is formed in a tooth shape is adapted, so that it is possible to decrease an optical bad feeling due to Moire pattern. When designing the pitch S of the parallax barrier, in the case that the parallax barrier is disposed behind the image panel the pitch S is S=2Pk(V+D)/V, and in the case that the parallax barrier is disposed in front of the image panel, the pitch S is S=2Ph(V−D)/V. In the 3D image reproducing apparatus according to the present invention, an excellent performance can be achieved as compared to the simple 3D image. The common image can be easily converted into a 3D image using an on and off operation using the electronic shutter.
    • 本发明涉及视差屏障方法的3D图像显示装置。 在视差屏障法的3D图像显示装置中,适于形成有齿形的透明狭缝部的视差屏障,从而可以降低由于纹理图案引起的光学不良感。 当设计视差屏障的间距S时,在视差屏障设置在图像面板之后的情况下,间距S为S = 2Pk(V + D)/ V,并且在视差屏障设置在前面的情况下 的间距S为S = 2Ph(VD)/ V。 在根据本发明的3D图像再现装置中,与简单的3D图像相比可以获得优异的性能。 通过使用电子快门的打开和关闭操作,可以容易地将公共图像转换成3D图像。
    • 8. 发明授权
    • Stereoscopic TFT-LCD with wire grid polarizer affixed to internal surfaces substrates
    • 具有线栅偏振器的立体TFT-LCD固定在内表面基板上
    • US08269904B2
    • 2012-09-18
    • US13411466
    • 2012-03-02
    • Sung-Jung Lee
    • Sung-Jung Lee
    • G02F1/335
    • G02B27/26G02F1/133528H04N13/337H04N13/356
    • A stereoscopic TFT-LCD with a wire grid polarizer affixed to internal surfaces substrates is provided wherein a thin film polarizing film formed by accurately processing a thin aluminum film, a polarizing film of a nano imprint lithography method that uses polymer, and a polarizing film and a liquid crystal material that form a polarizing nano material thin film by uniformly coating a polarizing nano material (TCF), wherein a second 1/2 phase retardation plate and a transparent unit are formed integrally with each other on the same plane in a chessboard shape, wherein a third polarizing region and a fourth polarizing region are formed integrally with each other on the same plane in a chessboard shape, and wherein a 1/4 phase retardation plate is disposed at a front surface of the second transparent substrate so as to produce circularly-polarized light.
    • 本发明提供一种具有附着在内表面基板上的线栅偏振片的立体TFT-LCD,其中,通过精细加工薄铝膜形成的薄膜偏光膜,使用聚合物的纳米压印光刻方法的偏光膜和偏振膜以及 通过均匀涂布偏振纳米材料(TCF)形成偏振纳米材料薄膜的液晶材料,其中第二1/2相位差板和透明单元在棋盘形状的同一平面上彼此一体地形成 其特征在于,在棋盘形状的同一平面上一体地形成第三偏振光区域和第四偏振光区域,其中,在所述第二透明基板的前表面配置有1/4相位延迟板,以产生 圆偏振光。
    • 9. 发明授权
    • Stereoscopic TFT-LCD with wire grid polarizer affixed to internal surfaces substrates
    • 具有线栅偏振器的立体TFT-LCD固定在内表面基板上
    • US08233104B2
    • 2012-07-31
    • US13411442
    • 2012-03-02
    • Sung-Jung Lee
    • Sung-Jung Lee
    • G02F1/1335
    • G02B27/26G02F1/133528H04N13/337H04N13/356
    • A stereoscopic TFT-LCD with a wire grid polarizer affixed to internal surfaces substrates, applies to a LCD device having a thin polarizing film and a thin phase retardation film to display a 2D image and a 3D image, a thin film polarizing film formed by accurately processing a thin aluminum film, a polarizing film of a nano imprint lithography method that uses polymer, and a polarizing film and a liquid crystal material that form a polarizing nano material thin film by uniformly coating a polarizing nano material (TCF), wherein a ¼ phase retardation plate is disposed at a front surface of the second transparent substrate so as to produce circularly-polarized light.
    • 具有固定在内表面基板上的线栅偏振片的立体TFT-LCD适用于具有薄偏光膜和薄相位延迟膜的LCD装置,以显示2D图像和3D图像,精确形成的薄膜偏光膜 加工薄铝膜,使用聚合物的纳米压印光刻方法的偏振膜以及通过均匀涂覆偏振纳米材料(TCF)形成偏振纳米材料薄膜的偏振膜和液晶材料,其中¼ 相位延迟板设置在第二透明基板的前表面,以产生圆偏振光。