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    • 5. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE, LIGHT CONTROL FILM, AND DISPLAY DEVICE
    • 液晶显示装置,光控制膜和显示装置
    • US20140354927A1
    • 2014-12-04
    • US14368565
    • 2012-12-25
    • Sharp Kabushiki Kaisha
    • Toru KannoEmi YamamotoTsuyoshi Maeda
    • G02F1/1335G02B5/02
    • G02F1/133504G02B5/02G02B5/0257
    • In a liquid crystal display device including a light control film utilizing total reflection, a liquid crystal panel, and a directional backlight, the light control film includes a transparent base material, a light blocking layer, and a light diffusing portion. The light diffusing portion has a light output end surface on side closer to the transparent base material and a light input end surface on side opposite to the transparent base material, the light input end surface having a larger area than the light output end surface. A film thickness of the light diffusing portion is larger than a thickness of the light blocking layer. A material having a smaller refractive index than the light diffusing portion is present in a cavity defined by the light diffusing portion, and the film anisotropically diffuses light.
    • 在包括使用全反射的光控制膜,液晶面板和方向性背光的液晶显示装置中,光控制膜包括透明基材,遮光层和光漫射部。 光扩散部具有靠近透明基材的一侧的光输出端面和与透明基材相反一侧的光输入端面,光输入端面的面积比光输出端面大。 光扩散部的膜厚比遮光层的厚度大。 具有比光扩散部折射率小的材料存在于由光扩散部限定的空腔中,并且膜各向异性扩散光。
    • 6. 发明申请
    • DISPLAY APPARATUS
    • 显示设备
    • US20140253843A1
    • 2014-09-11
    • US14353050
    • 2012-10-23
    • Sharp Kabushiki Kaisha
    • Toru KannoEmi YamamotoTsuyoshi Maeda
    • G02B5/02G02F1/1335
    • G02B5/0278G02B5/0242G02F1/133504G02F1/133526G02F1/133606
    • A display apparatus includes at least a light source, a display element, and an isotropic diffusion layer. When θ0 is an emission angle at which light from the light source has a maximum luminous flux ratio, θ1 is an average traveling angle at which light incident on the display element at the angle θ0 travels to the isotropic diffusion layer, T is a distance from an image formation surface to an interface between a light diffusing member and the isotropic diffusion layer, n0 is a refractive index of air, n1 is an average refractive index in a region between the image formation surface and the isotropic diffusion layer, P is a pixel pitch, and P′ is a distance between a position at which a portion of light emitted from an end portion of one of the pixels reaches the isotropic diffusion layer in a direction perpendicular to the isotropic diffusion layer and a position at which another portion of the light emitted from the end portion of the one of the pixels reaches the isotropic diffusion layer at the traveling angle θ1, the following Expressions (1), (2), and (3) are satisfied.
    • 显示装置至少包括光源,显示元件和各向同性扩散层。 当θ= 0时,来自光源的光具有最大的光通量比,θ是以角度θ入射到显示元件上的光到各向同性扩散层的平均行进角度 T是从图像形成表面到光漫射构件和各向同性扩散层之间的界面的距离,n0是空气的折射率,n1是图像形成表面和各向同性扩散之间的区域中的平均折射率 P是像素间距,P'是从一个像素的端部射出的光的一部分在垂直于各向同性扩散层的方向到达各向同性扩散层的位置与位置之间的距离, 其中从一个像素的端部发射的光的另一部分以行进角度到达各向同性扩散层; 1,以下表达式(1),(2)和 (3)。