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    • 3. 发明授权
    • Display device for improving image contrast
    • 用于改善图像对比度的显示装置
    • US07869116B2
    • 2011-01-11
    • US12467074
    • 2009-05-15
    • Jyh-Wen ShiuWei-Yuan ChengPei-Ju SuKuo-Lung LoYu-Hsiang Tsai
    • Jyh-Wen ShiuWei-Yuan ChengPei-Ju SuKuo-Lung LoYu-Hsiang Tsai
    • G02B26/00G02F1/29
    • G02B26/005
    • A light valve unit may include a first conductive layer and a second conductive layer disposed on opposite sides of each other with respect to a plurality of cells in which at least some of the cells include a first material and a second material. The first material may have a lower light transmissivity property than the second material and a position of the first material within a corresponding cell may be changeable responsive to application of an electric field between the first and second conductive layers. The second conductive layer may include at least two electrodes and a gap defined between the two electrodes. A portion of the light valve unit adjacent to the gap may be configured to have a transmissivity that is substantially less than transmissivity of a portion of the light valve unit adjacent to cells across which the electric field is applied, but greater than or equal to transmissivity of a portion of the light valve unit adjacent to cells across which the electric field is not applied.
    • 光阀单元可以包括相对于多个单元设置在彼此的相对侧上的第一导电层和第二导电层,其中至少一些单元包括第一材料和第二材料。 第一材料可以具有比第二材料更低的透光性,并且响应于在第一和第二导电层之间施加电场,第一材料在相应单元内的位置可以是可变的。 第二导电层可以包括至少两个电极和限定在两个电极之间的间隙。 邻近间隙的光阀单元的一部分可以被配置为具有基本上小于与施加电场的单元相邻的光阀单元的一部分的透射率但是大于或等于透射率的透射率 的光阀单元的一部分与未被施加电场的单元相邻。
    • 4. 发明申请
    • DUAL DISPLAY
    • 双显示
    • US20100309541A1
    • 2010-12-09
    • US12691619
    • 2010-01-21
    • Kuo-Lung LoPei-Ju SuWei-Yuan ChengJyh-Wen ShiuHsin-Hung Lee
    • Kuo-Lung LoPei-Ju SuWei-Yuan ChengJyh-Wen ShiuHsin-Hung Lee
    • G02B26/00G02F1/1334G02F1/01
    • G02B26/005G02F2001/133342G02F2001/13775G02F2201/44G02F2203/09G02F2203/62G02F2203/66
    • A dual display is disclosed, including a first electrowetting display device and a second electrowetting display device, and a reflection transmission switching device therebetween, wherein the first electrowetting display device and the second electrowetting display device have a function of displaying images and can be switched to a transmissive mode. The invention further provides a dual display, comprising a first substrate, a second substrate opposite the first substrate, a first patterned electrode and a second patterned electrode disposed on the first substrate, a reflective layer disposed on the first patterned electrode, a first patterned hydrophobic layer over the first patterned electrode, a second patterned hydrophobic layer over the second patterned electrode, a wall defining a pixel of the dual display, a first non-polar liquid disposed on the first patterned hydrophobic layer, and a second non-polar liquid disposed on the second patterned hydrophobic layer.
    • 公开了一种双显示器,包括第一电润湿显示装置和第二电润湿显示装置及其间的反射传输切换装置,其中第一电润湿显示装置和第二电润湿显示装置具有显示图像的功能,并且可以切换到 透射模式。 本发明还提供一种双显示器,包括第一衬底,与第一衬底相对的第二衬底,设置在第一衬底上的第一图案化电极和第二图案化电极,设置在第一图案化电极上的反射层,第一图案化疏水 在第二图案化电极上方的第二图案化疏水层,限定双显示器的像素的壁,设置在第一图案化疏水层上的第一非极性液体和设置在第一图案化电极上的第二非极性液体 在第二图案化疏水层上。
    • 5. 发明授权
    • Display and fabricating method thereof
    • 其显示及制造方法
    • US07813030B2
    • 2010-10-12
    • US12197910
    • 2008-08-25
    • Kuo-Lung LoWei-Yuan ChengJyh-Wen Shiu
    • Kuo-Lung LoWei-Yuan ChengJyh-Wen Shiu
    • G02B26/00G02B26/02G09G3/36
    • G02B26/005Y10T428/24174
    • A display and fabricating method thereof is provided. The display includes a first substrate, a second substrate, a hydrophobic layer, a nonpolar liquid layer, a hydrophilic separator, a polar liquid layer, and a protruding spacer. The first and second substrates respectively include an opposing surface, and are disposed in a way that the opposing surfaces are face-to-face opposing to each other. The hydrophobic layer overlies the opposing surface of the second substrate. The nonpolar liquid layer overlies the hydrophobic layer. The hydrophilic separator overlies the hydrophobic layer and surrounds the nonpolar liquid layer. The polar liquid layer overlies the nonpolar liquid layer. The protruding spacer is disposed between the hydrophilic separator and the first substrate.
    • 提供了其显示和制造方法。 显示器包括第一基板,第二基板,疏水层,非极性液体层,亲水隔板,极性液体层和突出间隔件。 第一基板和第二基板分别包括相对表面,并且以相对表面彼此相对的方式设置。 疏水层覆盖在第二衬底的相对表面上。 非极性液体层覆盖疏水层。 亲水性隔离物覆盖疏水层并且包围非极性液体层。 极性液体层覆盖非极性液体层。 突出的间隔件设置在亲水性隔离物和第一基底之间。
    • 6. 发明授权
    • Dual display
    • 双显示
    • US08472101B2
    • 2013-06-25
    • US13196428
    • 2011-08-02
    • Kuo-Lung LoPei-Ju SuWei-Yuan ChengJyh-Wen ShiuHsin-Hung Lee
    • Kuo-Lung LoPei-Ju SuWei-Yuan ChengJyh-Wen ShiuHsin-Hung Lee
    • G02B26/02G02F1/03
    • G02B26/005G02F1/1334G02F2001/133342G02F2201/44G02F2203/09G02F2203/12
    • A dual display is disclosed, including a first substrate and a second substrate comprising a plurality of pixels, wherein each pixel comprises a plurality of subpixels. The first substrate comprises a reflective region and a transmissive region for each subpixel, and a first color fluid is movable by an electric field on the reflective region and the transmissive region of a first subpixel, wherein when the first color fluid covers the transmissive region, the dual display provides a first viewing side at the first substrate side under a transmissive mode, and when the first color fluid covers the reflective region or covers the reflective region and the transmissive region, the dual display provides a second viewing side at the second substrate side under a reflective mode.
    • 公开了一种双显示器,包括第一基板和包括多个像素的第二基板,其中每个像素包括多个子像素。 第一基板包括每个子像素的反射区域和透射区域,并且第一颜色流体可以通过第一子像素的反射区域和透射区域上的电场移动,其中当第一颜色流体覆盖透射区域时, 双显示器在透射模式下在第一基板侧提供第一观察侧,并且当第一颜色流体覆盖反射区域或覆盖反射区域和透射区域时,双显示器在第二基板处提供第二观察侧 一侧在反射模式下。
    • 7. 发明授权
    • Dual display
    • 双显示
    • US08014054B2
    • 2011-09-06
    • US12691619
    • 2010-01-21
    • Kuo-Lung LoPei-Ju SuWei-Yuan ChengJyh-Wen ShiuHsin-Hung Lee
    • Kuo-Lung LoPei-Ju SuWei-Yuan ChengJyh-Wen ShiuHsin-Hung Lee
    • G02F1/03
    • G02B26/005G02F2001/133342G02F2001/13775G02F2201/44G02F2203/09G02F2203/62G02F2203/66
    • A dual display is disclosed, including a first electrowetting display device and a second electrowetting display device, and a reflection transmission switching device therebetween, wherein the first electrowetting display device and the second electrowetting display device have a function of displaying images and can be switched to a transmissive mode. The invention further provides a dual display, comprising a first substrate, a second substrate opposite the first substrate, a first patterned electrode and a second patterned electrode disposed on the first substrate, a reflective layer disposed on the first patterned electrode, a first patterned hydrophobic layer over the first patterned electrode, a second patterned hydrophobic layer over the second patterned electrode, a wall defining a pixel of the dual display, a first non-polar liquid disposed on the first patterned hydrophobic layer, and a second non-polar liquid disposed on the second patterned hydrophobic layer.
    • 公开了一种双显示器,包括第一电润湿显示装置和第二电润湿显示装置及其间的反射传输切换装置,其中第一电润湿显示装置和第二电润湿显示装置具有显示图像的功能,并且可以切换到 透射模式。 本发明还提供一种双显示器,包括第一衬底,与第一衬底相对的第二衬底,设置在第一衬底上的第一图案化电极和第二图案化电极,设置在第一图案化电极上的反射层,第一图案化疏水 在第二图案化电极上方的第二图案化疏水层,限定双显示器的像素的壁,设置在第一图案化疏水层上的第一非极性液体和设置在第一图案化电极上的第二非极性液体 在第二图案化疏水层上。
    • 9. 发明申请
    • DISPLAY DEVICE FOR IMPROVING IMAGE CONTRAST
    • 用于改善图像对比度的显示装置
    • US20100149621A1
    • 2010-06-17
    • US12467074
    • 2009-05-15
    • Jyh-Wen ShiuWei-Yuan ChengPei-Ju SuKuo-Lung LoYu-Hsiang Tsai
    • Jyh-Wen ShiuWei-Yuan ChengPei-Ju SuKuo-Lung LoYu-Hsiang Tsai
    • G02B26/00
    • G02B26/005
    • A light valve unit may include a first conductive layer and a second conductive layer disposed on opposite sides of each other with respect to a plurality of cells in which at least some of the cells include a first material and a second material. The first material may have a lower light transmissivity property than the second material and a position of the first material within a corresponding cell may be changeable responsive to application of an electric field between the first and second conductive layers. The second conductive layer may include at least two electrodes and a gap defined between the two electrodes. A portion of the light valve unit adjacent to the gap may be configured to have a transmissivity that is substantially less than transmissivity of a portion of the light valve unit adjacent to cells across which the electric field is applied, but greater than or equal to transmissivity of a portion of the light valve unit adjacent to cells across which the electric field is not applied.
    • 光阀单元可以包括相对于多个单元设置在彼此的相对侧上的第一导电层和第二导电层,其中至少一些单元包括第一材料和第二材料。 第一材料可以具有比第二材料更低的透光性,并且响应于在第一和第二导电层之间施加电场,第一材料在相应单元内的位置可以是可变的。 第二导电层可以包括至少两个电极和限定在两个电极之间的间隙。 邻近间隙的光阀单元的一部分可以被配置为具有基本上小于与施加电场的单元相邻的光阀单元的一部分的透射率但是大于或等于透射率的透射率 的光阀单元的一部分与未被施加电场的单元相邻。
    • 10. 发明申请
    • DISPLAY AND FABRICATING METHOD THEREOF
    • 其显示和制作方法
    • US20090169806A1
    • 2009-07-02
    • US12197910
    • 2008-08-25
    • Kuo-Lung LoWei-Yuan ChengJyh-Wen Shiu
    • Kuo-Lung LoWei-Yuan ChengJyh-Wen Shiu
    • B32B7/04B32B37/00B32B38/14
    • G02B26/005Y10T428/24174
    • A display and fabricating method thereof is provided. The display includes a first substrate, a second substrate, a hydrophobic layer, a nonpolar liquid layer, a hydrophilic separator, a polar liquid layer, and a protruding spacer. The first and second substrates respectively include an opposing surface, and are disposed in a way that the opposing surfaces are face-to-face opposing to each other. The hydrophobic layer overlies the opposing surface of the second substrate. The nonpolar liquid layer overlies the hydrophobic layer. The hydrophilic separator overlies the hydrophobic layer and surrounds the nonpolar liquid layer. The polar liquid layer overlies the nonpolar liquid layer. The protruding spacer is disposed between the hydrophilic separator and the first substrate.
    • 提供了其显示和制造方法。 显示器包括第一基板,第二基板,疏水层,非极性液体层,亲水隔板,极性液体层和突出间隔件。 第一基板和第二基板分别包括相对表面,并且以相对表面彼此相对的方式设置。 疏水层覆盖在第二衬底的相对表面上。 非极性液体层覆盖疏水层。 亲水性隔离物覆盖疏水层并且包围非极性液体层。 极性液体层覆盖非极性液体层。 突出的间隔件设置在亲水性隔离物和第一基底之间。