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    • 3. 发明授权
    • Light emitting display with optical compensation layer and circularly polarized reflective layer for improved contrast even in high ambient light
    • 具有光学补偿层和圆偏振反射层的发光显示器,即使在高环境光下也能改善对比度
    • US08368080B2
    • 2013-02-05
    • US12629715
    • 2009-12-02
    • Masaya AdachiOsamu Itou
    • Masaya AdachiOsamu Itou
    • H01L33/00
    • H01L27/12H01L27/322H01L27/3244H01L51/5281H01L2251/5315
    • The present invention provides light emitting displays which produce a bright image by efficiently emitting light radiated from a light-emitting thin-film layer to the viewer side, and also produces a high-quality image of high contrast ratio and changing in color to a limited extent over a wide viewing angle range even in a bright atmosphere. The light emitting displays are provided with a plurality of light-emitting devices 70, each device 70 having a light-emitting thin-film layer 100 and a light reflective surface 300 in this order on the back side, and a circularly polarized light reflective layer 500 which separates incident light into two types of circularly polarized components, one being reflected and the other transmitted by the reflective layer, an optical compensation layer 800, a quarter-wave plate 700 and a polarizer 600 on the front side, wherein the optical compensation layer 800 is composed of a transparent body working as an optical indicatrix having little refractive index distribution in the in-plane direction and having a refractive index in the thickness direction different from that in the in-plane direction.
    • 本发明提供了通过从观察者侧有效地发射从发光薄膜层发出的光而产生明亮图像的发光显示器,并且还产生高对比度的高质量图像并且将颜色变化到有限的 即使在明亮的气氛中也能在宽视角范围内进行。 发光显示器设置有多个发光器件70,每个器件70在背面依次具有发光薄膜层100和光反射表面300,并且圆偏振光反射层 500,其将入射光分离成两种类型的圆偏振分量,一个被反射,另一个透射由反射层,光学补偿层800,四分之一波长板700和偏振器600在前侧,其中光学补偿 层800由透明体构成,其作为在面内方向上具有很小的折射率分布并且具有与面内方向不同的厚度方向的折射率的光指示器。
    • 5. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20120176563A1
    • 2012-07-12
    • US13334320
    • 2011-12-22
    • Masaya ADACHIOsamu ItouShigeki Nishizawa
    • Masaya ADACHIOsamu ItouShigeki Nishizawa
    • G02F1/13357
    • G02F1/133555G02F1/133536G02F1/134363G02F2001/134372
    • The TFT substrate includes a pixel electrode and a common electrode laminated one on top of another via an insulating layer, one of the pixel electrode and the common electrode provided farther from the liquid crystal layer being formed into a plane shape, and another of the pixel electrode and the common electrode provided closer to the liquid crystal layer having slits formed therein, each of the plurality of slits having a closed end portion. The liquid crystal display panel further includes a reflection portion for reflecting light, the reflection portion being formed at a surface of the liquid crystal display panel on the illumination device side in a portion which overlaps, in plan view, the end portion of the each of the slits in the long-side direction and a vicinity thereof, and a part of an inner region of the each of the slits.
    • TFT基板包括通过绝缘层一个层叠在一起的像素电极和公共电极,与液晶层相距较远的像素电极和公共电极之一形成为平面形状,另一个像素 电极和公共电极靠近具有形成在其中的狭缝的液晶层,所述多个狭缝中的每一个具有封闭的端部。 液晶显示面板还包括用于反射光的反射部分,反射部分形成在照明装置侧的液晶显示面板的表面上,该部分在俯视下与每个的端部重叠 长边方向的狭缝及其附近,以及每个狭缝的内部区域的一部分。
    • 6. 发明授权
    • Light emitting display
    • 发光显示
    • US08183770B2
    • 2012-05-22
    • US13177099
    • 2011-07-06
    • Masaya AdachiToshihiro SatoNaoki Tokuda
    • Masaya AdachiToshihiro SatoNaoki Tokuda
    • H01J1/62
    • H01L51/5262H01L27/3211H01L27/3244H01L27/3248H01L2251/5315H01L2251/558
    • A color light emitting display includes light-emitting devices of a plurality of red, green and blue pixels disposed in a matrix form. The light-emitting display takes out light from a side opposite to a substrate on which the light-emitting devices are formed. A wavelength of the light, of which an interference intensity to the light emitted from an emissive layer constituting a part of one of said light-emitting devices becomes a maximum value at 0 degree of a viewing angle, is λimax, a wavelength of the light becomes a minimum value in the interference intensity is λimin, a wavelength of the light becomes a maximum in a light intensity in relation to the light emitted from said emissive layer is λemax, and a relationship of λimax
    • 彩色发光显示器包括以矩阵形式布置的多个红色,绿色和蓝色像素的发光器件。 发光显示器从与其上形成有发光器件的衬底相对的一侧取出光。 构成发光元件的一部分的发光层发出的光的干涉强度成为视角0度的最大值的光的波长为λimax,光的波长 成为干涉强度的最小值为λimin时,光的波长相对于从发光层发射的光的光强度为λemax,λimax<λemax与λimin≥λemax+ 70nm的关系成为最大值 对于红色,绿色和蓝色中的至少一种颜色是满意的。
    • 8. 发明授权
    • Liquid crystal display device and manufacturing method for same
    • 液晶显示装置及其制造方法
    • US08154693B2
    • 2012-04-10
    • US12496695
    • 2009-07-02
    • Miharu OtaniJun TanakaKazuhito MasudaMasaya AdachiTakato Hiratsuka
    • Miharu OtaniJun TanakaKazuhito MasudaMasaya AdachiTakato Hiratsuka
    • G02F1/1335
    • G02F1/133555G02F1/133528G02F1/134363
    • An object of the present invention is to increase the dichroic ratio of the built-in polarizing layer in reflective regions so that the display performance improves in a semi-transmission type liquid crystal display device having a transmissive display portion and a reflective display portion. The present invention provides a liquid crystal display device having first and second substrates which face each other with a liquid crystal layer in between, where a transmissive region and a reflective region are formed in each pixel on the above described first substrate, as well as: a reflective layer formed in the above described reflective region on the above described first substrate; a polarizing layer formed on the above described first substrate on the liquid crystal layer side of the above described reflective layer from chromonic liquid crystal molecules; a pixel electrode formed on the above described first substrate on the liquid crystal layer side of the above described reflective layer and electrically connected to a source electrode of a thin film transistor; and a protective layer formed in the reflective region between the above described polarizing layer and the above described pixel electrode which makes contact with the above described polarizing layer.
    • 本发明的目的在于提高反射区域内置的偏振层的分色比,从而在具有透射型显示部和反射型显示部的半透射型液晶显示装置中显示性能提高。 本发明提供一种液晶显示装置,其具有在上述第一基板的各像素中形成有透射区域和反射区域的液晶层彼此面对的第一和第二基板,以及: 在上述第一基板上形成在上述反射区域中的反射层; 在发色液晶分子上形成在上述反射层的液晶层一侧的上述第一基板上的偏光层; 形成在上述反射层的液晶层侧的上述第一基板上的电连接于薄膜晶体管的源电极的像素电极; 以及形成在与上述偏振层接触的上述偏振层和上述像素电极之间的反射区域中的保护层。
    • 9. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20120069272A1
    • 2012-03-22
    • US13227700
    • 2011-09-08
    • Tatsuya SUGITAMasaya ADACHI
    • Tatsuya SUGITAMasaya ADACHI
    • G02F1/1335
    • G02F1/133536G02B5/0257G02F1/133606G02F1/13363
    • The backlight has an anisotropic diffusion sheet disposed between the reflective polarizing plate and the optical path converter. The anisotropic diffusion sheet includes a refractive index anisotropic diffusion sheet stretched in an absorption axis direction in which a concave-convex portion is formed on a surface of the reflective polarized plate, and an isotropic material part laminated on a surface of the concave-convex part. The isotropic material part has an isotropic reflective index. The refractive index of the isotropic material part is the same as the refractive index in the transmission axis direction perpendicular to a stretching direction of the refractive index anisotropic sheet.
    • 背光源具有设置在反射偏光板和光路转换器之间的各向异性扩散片。 各向异性扩散片包括在反射偏振板的表面上形成凹凸部的吸收轴方向上拉伸的折射率各向异性扩散片,以及层叠在凹凸部的表面上的各向同性材料部 。 各向同性材料部分具有各向同性的反射指数。 各向同性材料部分的折射率与垂直于折射率各向异性片材的拉伸方向的透射轴方向的折射率相同。
    • 10. 发明授权
    • Optical element and display device using the same
    • 光学元件及使用其的显示装置
    • US08111357B2
    • 2012-02-07
    • US11271802
    • 2005-11-14
    • Masaya AdachiOsamu ItouShinichi Komura
    • Masaya AdachiOsamu ItouShinichi Komura
    • G02F1/1335
    • G02F1/1323G02F1/133524G02F1/133632G02F1/13471
    • An optical element is arranged in such a manner that a screen thereof can be hardly observed from a predetermined direction, and a deterioration of an image quality caused by moire does not occur. The optical element is constituted by a first polarizing layer, a second polarizing layer, and a liquid crystal layer arranged between these two polarizing layers. In the optical element, absorption axes of the first polarizing layer and the second polarizing layer are located parallel to each other; the liquid crystal layer is made of hybrid-aligned discotic liquid crystal; and an alignment axis of the liquid crystal layer is located parallel to, or perpendicular to both absorption axes of the first polarizing layer and of the second polarizing layer.
    • 光学元件被布置成使得从预定方向几乎不能观察到其屏幕,并且不会发生由莫尔条纹引起的图像质量的劣化。 光学元件由第一偏振层,第二偏振层和布置在这两个偏振层之间的液晶层构成。 在光学元件中,第一偏振层和第二偏振层的吸收轴彼此平行; 液晶层由混合对准盘状液晶制成; 并且液晶层的对准轴与第一偏振层和第二偏振层的吸收轴平行或垂直。