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    • 5. 发明授权
    • Polarization element, method for manufacturing the same, and liquid crystal display device
    • 极化元件及其制造方法以及液晶显示装置
    • US08570462B2
    • 2013-10-29
    • US12759086
    • 2010-04-13
    • Takato HiratsukaMasaya AdachiMiharu OtaniJun TanakaChie Yoshizawa
    • Takato HiratsukaMasaya AdachiMiharu OtaniJun TanakaChie Yoshizawa
    • G02F1/13G02F1/1335G02F1/1347
    • G02F1/133528G02B5/305
    • Provided is a liquid crystal display device including: a liquid crystal cell (15) including a first substrate (110), a second substrate (111), and a liquid crystal layer (160) sealed between the first substrate and the second substrate; a first polarization member (210) for transmitting light in a predetermined polarization direction; and a second polarization member (220) for transmitting light in another polarization direction which is orthogonal to the predetermined polarization direction. At least one of the first polarization member and the second polarization member includes a multilayer thin film polarizer including a plurality of thin film polarizers which are stacked so that transmission axes of the plurality of thin film polarizers are aligned. The multilayer thin film polarizer includes a thin film polarizer formed in a predetermined film thickness by coating with dye molecules which are aligned by a shear stress.
    • 提供一种液晶显示装置,包括:液晶单元(15),包括密封在第一基板和第二基板之间的第一基板(110),第二基板(111)和液晶层(160) 用于以预定的偏振方向透射光的第一偏振构件(210) 以及用于透射与所述预定偏振方向正交的另一偏振方向的光的第二偏振构件(220)。 第一偏振构件和第二偏振构件中的至少一个包括多个薄膜偏振器,该多层薄膜偏振器包括多个薄膜偏振器,这些多个薄膜偏振器被层叠,使得多个薄膜偏振器的透射轴对准。 多层薄膜偏振片包括通过用剪切应力对准的染料分子涂覆而以预定膜厚度形成的薄膜偏振片。
    • 6. 发明申请
    • Liquid Crystal Display Device and Method of Manufacturing the Same
    • 液晶显示装置及其制造方法
    • US20090153781A1
    • 2009-06-18
    • US12336570
    • 2008-12-17
    • Miharu OtaniJun TanakaKazuhito MasudaMasaya AdachiTakato Hiratsuka
    • Miharu OtaniJun TanakaKazuhito MasudaMasaya AdachiTakato Hiratsuka
    • G02F1/1347G02F1/13
    • G02B5/3016G02F1/133528G02F1/133555
    • In a transflective liquid crystal display device including a transmission display portion and a reflection display portion, a dichroic ratio of a polarizing layer contained in a reflection region is increased to enhance display performance. The liquid crystal display device includes: the transmission display portion and the reflection display portion which are formed for each pixel; a reflective layer formed in the reflection display portion; a first substrate having a principal surface opposed to a liquid crystal layer; a second substrate opposed to the first substrate via the liquid crystal layer; and a polarizing layer formed above the reflective layer via an underlying layer thereof on the principal surface of the first substrate. The polarizing layer is made of chromonic liquid crystalline molecules, and an interface between the polarizing layer and the underlying layer has one of a siloxane structure and a silazane structure.
    • 在包括透射显示部分和反射显示部分的半透射型液晶显示装置中,增加包含在反射区域中的偏振层的二色性比,以提高显示性能。 液晶显示装置包括:为每个像素形成的透射显示部分和反射显示部分; 形成在所述反射显示部中的反射层; 具有与液晶层相对的主表面的第一基板; 经由所述液晶层与所述第一基板相对的第二基板; 以及在第一基板的主表面上经由其下层形成在反射层上方的偏振层。 偏振层由发色液晶分子构成,偏振层与下层之间的界面具有硅氧烷结构和硅氮烷结构之一。
    • 8. 发明授权
    • Organic light emitting diode display with porous insulation film containing SiO
    • 有机发光二极管显示屏,带有多孔绝缘膜,含有SiO
    • US07830082B2
    • 2010-11-09
    • US11826959
    • 2007-07-19
    • Jun TanakaKiyoshi OgataMasaya AdachiMiharu Otani
    • Jun TanakaKiyoshi OgataMasaya AdachiMiharu Otani
    • H01L51/50C08G77/00
    • H01L27/3244H01L51/5262H01L51/5268
    • An active matrix type organic light emitting diode display serving as a bottom emission type device coupling out emission of an organic electroluminescence layer from a substrate where thin film transistors are formed or as a top emission type device coupling out the emission on the opposite side to the substrate. In a suitable layer (102, 106, 107) in each device, an insulating film containing SiO is formed. The insulating film is porous with nano pores in the film. The porous insulating film is controlled as to film density, film refractive index, nano pore diameter in film, average nano pore diameter in film and maximum nano pore diameter in film so that the refractive index is lower than that of a transparent electrode or a transparent substrate of the display holding the organic electroluminescence layer therebetween, and nano pores are present in the film. Light scattering effect can be obtained so that emission from the organic electroluminescence layer (110) can be coupled out to the outside efficiently.
    • 用作底部发射型器件的有源矩阵型有机发光二极管显示器,其从形成薄膜晶体管的衬底耦合出有机电致发光层的发射,或者作为顶部发射型器件将在相反侧的发射耦合到 基质。 在每个器件中的合适的层(102,106,107)中,形成含有SiO的绝缘膜。 绝缘膜在膜中具有多孔的纳米孔。 多孔绝缘膜的膜密度,膜折射率,膜中的纳米孔径,膜中的平均纳米孔径和膜中的最大纳米孔径被控制,使得折射率低于透明电极或透明电极的折射率 在其间保持有机电致发光层的显示器的基板,并且在膜中存在纳米孔。 可以获得光散射效果,使得有机电致发光层(110)的发射能够有效地耦合到外部。
    • 9. 发明申请
    • Organic light emitting diode display with insulation film which contains SiO
    • 带有绝缘膜的有机发光二极管显示屏,含有SiO
    • US20070262708A1
    • 2007-11-15
    • US11826959
    • 2007-07-19
    • Jun TanakaKiyoshi OgataMasaya AdachiMiharu Otani
    • Jun TanakaKiyoshi OgataMasaya AdachiMiharu Otani
    • H01J1/62
    • H01L27/3244H01L51/5262H01L51/5268
    • An active matrix type organic light emitting diode display serving as a bottom emission type device coupling out emission of an organic electroluminescence layer from a substrate where thin film transistors are formed or as a top emission type device coupling out the emission on the opposite side to the substrate. In a suitable layer (102, 106, 107) in each device, an insulating film containing SiO is formed. The insulating film is porous with nano pores in the film. The porous insulating film is controlled as to film density, film refractive index, nano pore diameter in film, average nano pore diameter in film and maximum nano pore diameter in film so that the refractive index is lower than that of a transparent electrode or a transparent substrate of the display holding the organic electroluminescence layer therebetween, and nano pores are present in the film. Light scattering effect can be obtained so that emission from the organic electroluminescence layer (110) can be coupled out to the outside efficiently.
    • 用作底部发射型器件的有源矩阵型有机发光二极管显示器,其从形成薄膜晶体管的衬底耦合出有机电致发光层的发射,或者作为顶部发射型器件将在相反侧的发射耦合到 基质。 在每个器件中的合适的层(102,106,107)中,形成含有SiO的绝缘膜。 绝缘膜在膜中具有多孔的纳米孔。 多孔绝缘膜的膜密度,膜折射率,膜中的纳米孔径,膜中的平均纳米孔径和膜中的最大纳米孔径被控制,使得折射率低于透明电极或透明电极的折射率 在其间保持有机电致发光层的显示器的基板,并且在膜中存在纳米孔。 可以获得光散射效果,使得有机电致发光层(110)的发射能够有效地耦合到外部。
    • 10. 发明申请
    • Organic light emitting diode display and method for manufacturing the same
    • 有机发光二极管显示器及其制造方法
    • US20050156520A1
    • 2005-07-21
    • US10898593
    • 2004-07-26
    • Jun TanakaKiyoshi OgataMasaya AdachiMiharu Otani
    • Jun TanakaKiyoshi OgataMasaya AdachiMiharu Otani
    • H05B33/22C09K11/00C09K11/06G09F9/30H01L27/32H01L51/52H05B33/00H05B33/06H05B33/10H05B33/12H05B33/14H05B33/26
    • H01L27/3244H01L51/5262H01L51/5268
    • An active matrix type organic light emitting diode display serving as a bottom emission type device coupling out emission of an organic electroluminescence layer from a substrate where thin film transistors are formed or as a top emission type device coupling out the emission on the opposite side to the substrate. In a suitable layer (102, 106, 107) in each device, an insulating film containing SiO is formed. The insulating film is porous with nano pores in the film. The porous insulating film is controlled as to film density, film refractive index, nano pore diameter in film, average nano pore diameter in film and maximum nano pore diameter in film so that the refractive index is lower than that of a transparent electrode or a transparent substrate of the display holding the organic electroluminescence layer therebetween, and nano pores are present in the film. Light scattering effect can be obtained so that emission from the organic electroluminescence layer (110) can be coupled out to the outside efficiently.
    • 用作底部发射型器件的有源矩阵型有机发光二极管显示器,其从形成有薄膜晶体管的基板耦合出有机电致发光层的发射,或者作为顶部发射型器件将在相对侧的发射耦合到 基质。 在每个器件中的合适的层(102,106,107)中,形成含有SiO的绝缘膜。 绝缘膜在膜中具有多孔的纳米孔。 多孔绝缘膜的膜密度,膜折射率,膜中的纳米孔径,膜中的平均纳米孔径和膜中的最大纳米孔径被控制,使得折射率低于透明电极或透明电极的折射率 在其间保持有机电致发光层的显示器的基板,并且在膜中存在纳米孔。 可以获得光散射效果,使得有机电致发光层(110)的发射能够有效地耦合到外部。