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    • 2. 发明申请
    • OPTIC FILM AND BACKLIGHT MODULE USING SAME
    • 使用相同的光学胶片和背光模组
    • US20100046248A1
    • 2010-02-25
    • US12193762
    • 2008-08-19
    • Chien-Chin MAIJui-Tang YinYeong-Feng Wang
    • Chien-Chin MAIJui-Tang YinYeong-Feng Wang
    • G02B5/02F21V8/00F21V3/04
    • G02B6/0051G02B6/0053
    • An optic film includes a substrate and a condensation layer. The substrate has a light incidence surface and a light emission surface. The light incidence surface is treated to form a roughened frosted surface. The condensation layer is arranged on the light emission surface of the substrate and forms prism-like micro-structures. With the light incidence surface of the substrate being directly subjected to knurling or sand blasting to form the roughened frosted surface, when light enters the substrate through the light incidence surface, the light is diffused first by the frosted surface of the light incidence surface and is then subjected to condensation by the condensation layer, whereby when the optic film is applied to a backlight module, the optic film can effect both diffusion and condensation of light, so that the number of optic films used in the backlight module can be reduced.
    • 光学膜包括基底和冷凝层。 基板具有光入射面和发光面。 光入射表面被处理以形成粗糙的磨砂表面。 冷凝层配置在基板的发光面上,形成棱镜状微结构。 当基板的光入射面直接进行滚花或喷砂处理以形成粗糙化的磨砂表面时,当光通过光入射表面进入基板时,光首先被光入射表面的磨砂表面扩散,并且是 然后通过冷凝层进行冷凝,由此当将光学膜应用于背光模块时,光学膜可以实现光的扩散和冷凝,从而可以减少背光模块中使用的光学膜的数量。
    • 3. 发明申请
    • METHOD FOR DISPLAYING MULTIPLE VIEWS
    • 显示多个视图的方法
    • US20100157625A1
    • 2010-06-24
    • US12342085
    • 2008-12-23
    • Chien-Chin MaiJui-Tang YinYeong-Feng Wang
    • Chien-Chin MaiJui-Tang YinYeong-Feng Wang
    • F21V7/04
    • G02B6/0036G02B6/0053G02B6/0055G02F2001/133607H04N13/32
    • Disclosed is a method for displaying multiple views, including forming a light guide plate having edge faces forming different-direction light incidence surfaces, setting light sources corresponding to the different-direction light incidence surfaces respectively, operating the light sources that correspond to the different-direction light incidence surfaces to respectively give off lights in a fast and intermittently alternating manner, deflecting the lights to respective predetermined orientations with the light guide plate, further deflecting the lights to desired orientations with optic films set on the light emission surface of the light guide plate, and operating a liquid crystal panel to realize control of signals for different images so as to show multiple views with the light sources that give off lights in different directions and the signals of the different images.
    • 公开了一种用于显示多个视图的方法,包括形成具有形成不同方向光入射面的边缘面的导光板,分别设置与不同方向光入射面对应的光源,操作对应于不同方向光入射面的光源, 方向光入射表面分别以快速和间歇地交替的方式发出光线,将光线与导光板偏转到相应的预定取向,进一步使光线偏转到期望的取向,其中光学膜设置在光导体的光发射表面上 并操作液晶面板,以实现对不同图像的信号的控制,以便以不同方向发出光的光源和不同图像的信号显示多个视图。
    • 4. 发明申请
    • STRUCTURE OF OPTIC FILM
    • 光膜结构
    • US20100046903A1
    • 2010-02-25
    • US12193770
    • 2008-08-19
    • Chien-Chin MAIJui-Tang YINYeong-Feng Wang
    • Chien-Chin MAIJui-Tang YINYeong-Feng Wang
    • G02B6/10
    • G02B6/0053
    • An optic film has a surface on which a plurality of rib-like micro light guides is formed. Each micro light guide includes a plurality of ridges, which are of different heights and show variation of height. Either a high ridge or a low ridge of the micro light guide is made a continuous left-and-right wavy configuration and/or a continuous up-and-down height-variation configuration. The high ridge has a top that is rounded, whereby by means of the rounded top of the high ridge, the high ridge of the optic film is protected from abrasion and wear or is prevented from causing damage to other parts of an optic device. Thus, protection of the optic film and other parts can be realized.
    • 光学膜具有形成多个肋状微光导的表面。 每个微导光体包括多个不同高度的脊,并显示出高度变化。 微导光体的高脊或低脊都被制成连续的左右波浪形状和/或连续的上下高度变化构造。 高脊具有圆形的顶部,由此通过高脊的圆形顶部,保护光学膜的高脊不受磨损和磨损,或者被防止对光学装置的其它部分造成损坏。 因此,可以实现对光学膜和其它部件的保护。
    • 9. 发明授权
    • Three-dimensional display device
    • 三维显示设备
    • US08514474B2
    • 2013-08-20
    • US13221321
    • 2011-08-30
    • Chia-Yen LeeChing-Tung HsuMing-Wei TsaiYeong-Feng WangYen-I ChouRong-Chang Liang
    • Chia-Yen LeeChing-Tung HsuMing-Wei TsaiYeong-Feng WangYen-I ChouRong-Chang Liang
    • G02B26/02
    • G02B27/225G02B26/005Y10T29/4998
    • A 3D image display device with high resolution is disclosed. The device may deflect left and right eye images to a left and right eye of a viewer, respectively. As such, the viewer may see 3D images. The 3D image display device includes a plurality of electrically switchable light modulating cells containing two incompatible light modulating mediums. When a voltage is applied to electrodes of the electrically switchable light modulating cell, the interface between the incompatible light modulating mediums non-horizontally deforms corresponding to the electrowetting or electrostatic concept. The geometrical shape, size, and material of partition walls in the electrically switchable light modulating cells may reduce or eliminate misplacement of incompatible light modulating mediums while voltages are applied thereto. In addition, the method of manufacturing the 3D image display device is also disclosed.
    • 公开了一种具有高分辨率的3D图像显示装置。 该装置可以分别将左眼图像和右眼图像偏转到观看者的左眼和右眼。 这样,观看者可以看到3D图像。 3D图像显示装置包括包含两个不兼容的光调制介质的多个可电开关的光调制单元。 当电压被施加到电气可切换光调制单元的电极时,不兼容的光调制介质之间的界面对应于电润湿或静电概念非水平变形。 电可开关光调制单元中的分隔壁的几何形状,尺寸和材料可以在施加电压的同时减少或消除不兼容的光调制介质的误放。 此外,还公开了制造3D图像显示装置的方法。