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    • 1. 发明申请
    • System And Method For Tri-state Electro-optical Displays
    • 三态电光显示器的系统和方法
    • US20130141780A1
    • 2013-06-06
    • US13816116
    • 2010-08-09
    • Yoocharn JeonRichard H. HenzeJong-Souk YeoGary GibsonJeffrey Todd MabeckPavel KornilovichGregg Alan CombsZhang-Lin Zhou
    • Yoocharn JeonRichard H. HenzeJong-Souk YeoGary GibsonJeffrey Todd MabeckPavel KornilovichGregg Alan CombsZhang-Lin Zhou
    • G02F1/167
    • G02F1/167G02B26/026G02B26/06G02B26/08G02F1/133371G02F1/1676G09G3/34G09G3/344G09G3/3446G09G3/3453
    • There is provided a display including a display including a number of display cells (400). Each of the display cells (400) includes a first electrode (414), which is transparent and disposed over a front surface of a display cell (400). A second electrode (418) is disposed opposite the first electrode (414). A dielectric layer (404) is disposed between the first electrode (414) and the second electrode (418), and is patterned to create a plurality of recessed volumes (408). A fluid is disposed in a volume defined by the first electrode (414), the dielectric layer (404), and the recessed volumes (408). The fluid (410) comprises a dye of a different color from an adjacent display cell (400). Charged particles (412) are disposed within the fluid (410). The display also includes a display driver configured to pack the charged particles (412) against the front of the display cell to create a first optical state, to pack the charged particles (412) against the back of the display cell (400) to create a second optical state, or to pack the particles into the recessed regions (408) to create a third optical state.
    • 提供了一种显示器,包括包括多个显示单元(400)的显示器。 每个显示单元(400)包括透明并设置在显示单元(400)的前表面上的第一电极(414)。 第二电极(418)与第一电极(414)相对设置。 电介质层(404)设置在第一电极(414)和第二电极(418)之间,并被图案化以产生多个凹陷体积(408)。 流体设置在由第一电极(414),电介质层(404)和凹陷体积(408)限定的体积中。 流体(410)包括与相邻显示单元(400)不同颜色的染料。 带电粒子(412)设置在流体(410)内。 所述显示器还包括显示驱动器,所述显示驱动器被配置为将所述带电粒子(412)抵抗所述显示单元的前部打包以产生第一光学状态,以将所述带电粒子(412)压靠在所述显示单元(400)的背面以产生 第二光学状态,或者将颗粒包装到凹陷区域(408)中以产生第三光学状态。
    • 6. 发明授权
    • Electrophoretic cell and method employing differential mobility
    • 电泳细胞和使用差异迁移率的方法
    • US08491767B2
    • 2013-07-23
    • US12260994
    • 2008-10-29
    • Gary GibsonRichard H. HenzeYoocharn Jeon
    • Gary GibsonRichard H. HenzeYoocharn Jeon
    • G01N27/447G01N27/453
    • G02F1/167G02F2001/1678
    • An electrophoretic cell and methods of switching an electrophoretic cell and moving charged species in an electrophoretic cell employ differential electrophoretic mobilities and a time-varying electric field. The methods include providing first and second charged species that are oppositely charged and have different mobilities. The method of switching further includes inducing a net motion of both of the charged species using the time-varying applied electric field. The induced net motion results in either the first charged species being moved toward the electrode and the second charged species remaining essentially motionless or both of the charged species being moved toward the same electrode. The electrophoretic cell includes the first and second charged species with opposite charge and different mobilities, and further includes the time-varying applied electric field that provides the net motion of the charged species.
    • 电泳单元和电泳单元的切换以及电泳单元中的带电物质的移动方法采用差分电泳迁移率和时变电场。 所述方法包括提供带相反电荷且具有不同迁移率的第一和第二带电物质。 切换方法还包括使用随时间变化的施加电场来诱导两个带电物种的净运动。 诱导的净运动导致第一带电物质朝向电极移动,并且第二带电物质基本上保持不动,或者两个带电物质朝向相同的电极移动。 电泳池包括具有相反电荷和不同迁移率的第一和第二带电物质,并且还包括提供带电物质的净运动的随时间变化的施加电场。
    • 7. 发明申请
    • ELECTROPHORETIC CELL AND METHOD EMPLOYING DIFFERENTIAL MOBILITY
    • 电泳细胞和采用差异移动的方法
    • US20100101952A1
    • 2010-04-29
    • US12260994
    • 2008-10-29
    • Gary GibsonRichard H. HenzeYoocharn Jeon
    • Gary GibsonRichard H. HenzeYoocharn Jeon
    • B01J19/08
    • G02F1/167G02F2001/1678
    • An electrophoretic cell and methods of switching an electrophoretic cell and moving charged species in an electrophoretic cell employ differential electrophoretic mobilities and a time-varying electric field. The methods include providing first and second charged species that are oppositely charged and have different mobilities. The method of switching further includes inducing a net motion of both of the charged species using the time-varying applied electric field. The induced net motion results in either the first charged species being moved toward the electrode and the second charged species remaining essentially motionless or both of the charged species being moved toward the same electrode. The electrophoretic cell includes the first and second charged species with opposite charge and different mobilities, and further includes the time-varying applied electric field that provides the net motion of the charged species.
    • 电泳单元和电泳单元的切换以及电泳单元中的带电物质的移动方法采用差分电泳迁移率和时变电场。 所述方法包括提供带相反电荷且具有不同迁移率的第一和第二带电物质。 切换方法还包括使用随时间变化的施加电场来诱导两个带电物种的净运动。 诱导的净运动导致第一带电物质朝向电极移动,并且第二带电物质基本上保持不动,或者两个带电物质朝向相同的电极移动。 电泳池包括具有相反电荷和不同迁移率的第一和第二带电物质,并且还包括提供带电物质的净运动的随时间变化的施加电场。
    • 9. 发明授权
    • Reflective color display with luminescence and backlighting
    • 具有发光和背光的反光彩色显示
    • US09416944B2
    • 2016-08-16
    • US14356845
    • 2011-12-08
    • Gary GibsonXia ShengRichard H. Henze
    • Gary GibsonXia ShengRichard H. Henze
    • G02F1/133F21V13/08G02F1/1335F21V33/00
    • F21V13/08F21V33/0052G02F1/133617G02F2001/133618
    • A reflective color display has at least a color pixel disposed to receive ambient light for front lighting and has a light source optically coupled to the color pixel to provide back light for backlighting. The color pixel has a first sub-pixel and a second sub-pixel. The first sub-pixel has a first luminescent layer with a luminescent material for converting a portion of the ambient light spectrum into light of a first color. An unpatterned mirror is disposed under the luminescent layer of the first sub-pixel and extends through the first and second sub-pixels. The unpatterned mirror reflects at least light of the first color while transmitting the back light to the first luminescent layer for conversion by the first luminescent material into light of the first color.
    • 反射彩色显示器具有至少一个彩色像素,以便接收用于前照明的环境光,并且具有光学耦合到彩色像素的光源,以提供背光的背光。 彩色像素具有第一子像素和第二子像素。 第一子像素具有带有用于将环境光谱的一部分转换为第一颜色的光的发光材料的第一发光层。 未图案化的镜子设置在第一子像素的发光层下方并且延伸穿过第一和第二子像素。 未图案化的反射镜至少反射第一颜色的光,同时将背光传输到第一发光层,以将第一发光材料转换成第一颜色的光。