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    • 2. 发明授权
    • Electro-optical device
    • 电光装置
    • US08400593B2
    • 2013-03-19
    • US12765642
    • 2010-04-22
    • Shih-Kang FanCheng-Pu Chiu
    • Shih-Kang FanCheng-Pu Chiu
    • G02F1/1333G02F1/133
    • G02F1/1334G02B26/004G02F1/167G02F2201/44
    • An electro-optical device includes a body of fluid, a lower conductor layer disposed below the body of fluid, and a dielectric layer disposed between the body of fluid and the lower conductor layer, connected to the lower conductor layer and supporting the body of fluid. The dielectric layer includes a matrix and a liquid crystal material disposed in the matrix and including liquid crystal molecules. The dielectric layer has a segment disposed adjacent to the fluid. When the segment of the dielectric layer is exposed to an electric field, the body of fluid undergoes electrowetting or dielectrophoresis mechanism, and the orientation of the liquid crystal molecules that are disposed in the segment of the dielectric layer is changed.
    • 电光装置包括流体主体,布置在流体主体下方的下导体层和设置在流体体和下导体层之间的介电层,连接到下导体层并支撑流体 。 电介质层包括配置在基体中的基体和液晶材料,并含有液晶分子。 电介质层具有邻近流体设置的段。 当电介质层的区段暴露于电场时,流体经受电润湿或介电电泳机理,并且设置在电介质层的段中的液晶分子的取向发生变化。
    • 4. 发明授权
    • Color display device
    • 彩色显示设备
    • US08451301B2
    • 2013-05-28
    • US12872914
    • 2010-08-31
    • Shih-Kang FanCheng-Pu ChiuShih-Chiang Chen
    • Shih-Kang FanCheng-Pu ChiuShih-Chiang Chen
    • G09G5/10G09G5/00
    • G09G3/344G02F1/167G02F2001/1678G09G2310/06
    • A color display device includes a plurality of pixel display elements and a driving circuit. Each of the pixel display elements includes a plurality of sub-pixel display elements. Each of the sub-pixel display elements includes first and second supports, first and second electrodes attached to inner faces of the first and second supports, respectively, a solution disposed between the first and second electrodes, and particles dispersed in the solution. The particles of the sub-pixel display elements of a same one of the pixel display elements are electrically polarizable by voltage signals supplied by the driving circuit, the voltage signals having the same predetermined driving frequency.
    • 彩色显示装置包括多个像素显示元件和驱动电路。 每个像素显示元件包括多个子像素显示元件。 每个子像素显示元件包括第一和第二支撑件,分别附接到第一和第二支撑件的内表面的第一和第二电极,设置在第一和第二电极之间的溶液以及分散在溶液中的颗粒。 像素显示元件中的相同一个像素显示元件的粒子由驱动电路提供的电压信号可电极化,电压信号具有相同的预定驱动频率。
    • 7. 发明授权
    • Microfluidic system and method for creating an encapsulated droplet with a removable shell
    • 微流体系统和用可移除壳体创建封装液滴的方法
    • US08287708B2
    • 2012-10-16
    • US12815580
    • 2010-06-15
    • Shih-Kang FanYao-Wen HsuChiun-Hsun Chen
    • Shih-Kang FanYao-Wen HsuChiun-Hsun Chen
    • B01D57/02B01D59/42B01D59/50C02F1/469C07K1/26C08F2/58C25B7/00C25B15/00G01F1/64G01L1/20G01L9/18
    • B01J13/04Y10T436/2575
    • A microfluidic system for creating encapsulated droplets whose shells can be further removed comprises: two electrode plates and a spacing structure disposed between the two electrode plates. One of the electrode plates has three reservoir electrodes and a plurality of channel electrodes. The three electrodes are respectively used for accommodating a shell liquid, a core liquid, and a removing liquid which is able to remove the shell liquid. The channel electrodes are used for communicating droplets among the three reservoir electrodes. Via these arrangements, the microfluidic system can create a quantitative shell droplet and a quantitative core droplet, and then merge the shell and core droplets to form an encapsulated droplet. Moreover, the shell of the encapsulated droplet can be removed by mixing it with the removing liquid. This invention is further provided with a method for creating an encapsulated droplet with a removable shell.
    • 用于产生可以进一步去除其外壳的封装液滴的微流体系统包括:两个电极板和设置在两个电极板之间的间隔结构。 一个电极板具有三个储存电极和多个通道电极。 三个电极分别用于容纳壳体液体,核心液体和能够去除壳液体的去除液体。 通道电极用于在三个储存器电极之间连通液滴。 通过这些布置,微流体系统可以产生定量的壳滴和定量核心液滴,然后合并壳核和液滴以形成包封的液滴。 此外,可以通过将其与除去液体混合来除去包封液滴的壳。 本发明进一步提供了一种用可移除的外壳形成包封的液滴的方法。
    • 8. 发明授权
    • Pixel driving structure of displaying three colors of particle display and its displaying colors method
    • 显示三种颜色的粒子显示的像素驱动结构及其显示颜色方法
    • US08232961B2
    • 2012-07-31
    • US12542673
    • 2009-08-17
    • Shih-Kang FanCheng-Pu ChiuChing-Hsiang HsuChi-Neng MoMei-Tsao Chiang
    • Shih-Kang FanCheng-Pu ChiuChing-Hsiang HsuChi-Neng MoMei-Tsao Chiang
    • G09G3/34
    • G09G3/344G09G3/2003G09G2380/02
    • A pixel driving structure of a particle display displaying three colors and a method for displaying colors thereof are provided. The pixel driving structure includes a first substrate; a first electrode layer disposed on a surface of the first substrate; a second substrate disposed opposite to the first substrate; a second electrode layer on the second substrate; a particle solution disposed between the first electrode layer and the second electrode layer and having a first color solution, a plurality of second color positive particles, and a plurality of third color negative particles; and an alternating/direct power supply connecting with the first and second electrode layers. A method for displaying color includes steps of applying an alternating voltage to display a first color; applying a first direct voltage to display a third color; and applying a second direct voltage to display a second color.
    • 提供了显示三种颜色的粒子显示器的像素驱动结构和显示颜色的方法。 像素驱动结构包括:第一基板; 设置在所述第一基板的表面上的第一电极层; 与所述第一基板相对设置的第二基板; 第二基板上的第二电极层; 设置在第一电极层和第二电极层之间并具有第一颜色溶液,多个第二彩色正极粒子和多个第三颜色负极粒子的粒子溶液; 以及与第一和第二电极层连接的交流/直接电源。 用于显示颜色的方法包括施加交流电压以显示第一颜色的步骤; 施加第一直流电压以显示第三颜色; 以及施加第二直流电压以显示第二颜色。
    • 10. 发明申请
    • Dielectrophoresis-based microfluidic system
    • 基于电泳的微流体系统
    • US20110056834A1
    • 2011-03-10
    • US12591693
    • 2009-11-30
    • Shih-Kang Fan
    • Shih-Kang Fan
    • B03C5/02
    • B03C5/026
    • A dielectrophoresis-based microfluidic system includes a first electrode plate, a second electrode plate and a spacing structure. The first electrode plate comprises a first substrate and an electrode layer disposed on one side surface of the first substrate. The second electrode plate comprises a second substrate and a plurality of electrodes. The electrodes are disposed on one side surface of the second substrate which is opposite to the electrode layer, and arranged in a microchannel pattern. The spacing structure is disposed between the first electrode plate and the second electrode plate so that a space is defined between the first electrode plate and the second electrode plate. Accordingly, users can inject microfluid into the space and apply voltage to different electrodes to drive the microfluid to flow towards different directions.
    • 基于介电电泳的微流体系统包括第一电极板,第二电极板和间隔结构。 第一电极板包括第一基板和设置在第一基板的一个侧表面上的电极层。 第二电极板包括第二基板和多个电极。 电极设置在与电极层相对的第二基板的一个侧表面上,并且布置在微通道图案中。 间隔结构设置在第一电极板和第二电极板之间,使得在第一电极板和第二电极板之间限定空间。 因此,用户可以将微流体注入空间并向不同的电极施加电压以驱动微流体向不同方向流动。