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    • 2. 发明授权
    • Template type electrophoretic display and method of manufacturing the same
    • 模板型电泳显示器及其制造方法
    • US07292222B2
    • 2007-11-06
    • US10715774
    • 2003-10-14
    • Seong Deok AhnKyung Soo SuhSeung Youl KangYong Eui LeeChul Am KimMeyoung Ju JoungMi Kyung KimGun Hong Lee
    • Seong Deok AhnKyung Soo SuhSeung Youl KangYong Eui LeeChul Am KimMeyoung Ju JoungMi Kyung KimGun Hong Lee
    • G09G3/34
    • G02F1/167
    • An electrophoretic display and a method of manufacturing the electrophoretic display are provided. The electrophoretic display includes an lower electrode formed on an under layer, an lower electrode protection layer formed on the lower electrode, an insulating template formed on the lower electrode protection layer and having a plurality of holes of smaller size than the wavelength of visible rays region, a dielectric fluid filling the holes and having a color, a plurality of charged particles suspended in the dielectric fluid filling each of the plurality of holes having a color different from the color of the dielectric fluid, and an upper electrode formed on the insulating template in sequential order. Accordingly, a problem of agglomeration of the charged particles can be solved by the insulating template having holes of smaller size than the wavelength of visible rays region, and thus a reliable electrophoretic display emitting light of one color or natural colors is achieved.
    • 提供电泳显示器和制造电泳显示器的方法。 电泳显示器包括形成在下层上的下电极,形成在下电极上的下电极保护层,形成在下电极保护层上的绝缘模板,并且具有比可见光区域的波长小的多个孔 填充所述孔并具有颜色的电介质流体,悬浮在所述介电流体中的多个带电粒子填充所述多个孔中的每一个具有不同于所述介电流体的颜色的颜色;以及形成在所述绝缘模板上的上电极 按顺序排列。 因此,可以通过具有比可见光区域的波长小的孔的绝缘模板来解决带电粒子的聚集问题,从而实现发出一种颜色或自然色的光的可靠的电泳显示。
    • 3. 发明授权
    • Electrophoretic display
    • 电泳显示
    • US06980351B2
    • 2005-12-27
    • US10334409
    • 2002-12-31
    • Seong-Deok AhnYong Eui LeeSeung-Youl KangKyung-Soo Suh
    • Seong-Deok AhnYong Eui LeeSeung-Youl KangKyung-Soo Suh
    • G02F1/167G02B26/00
    • G02F1/167
    • An electrophoretic display utilizing a phenomenon of electrophoresis is provided. The electrophoretic display includes an lower electrode located on an under layer, an lower electrode protection layer formed on the lower electrode, a plurality of microcapsules located on the lower electrode protection layer, coated or encapsulated in a micro size and not operating in an electric field, a particle and/or a fluid included within the microcapsule and having a single visual color, a charged particle existed among the plurality of microcapsules, having different visual colors, operating according to an electric field and suspended in a dielectric fluid, and an upper electrode protection layer and an upper electrode located on the plurality of microcapsule in sequential order. Accordingly, a reliable electrophoretic display with one color or natural colors is achieved.
    • 提供了利用电泳现象的电泳显示器。 电泳显示器包括位于下层的下电极,形成在下电极上的下电极保护层,位于下电极保护层上的多个微胶囊,以微尺寸涂覆或封装而不在电场中操作 ,包含在微胶囊内并具有单一视觉颜色的颗粒和/或流体,并且具有单一视觉颜色,在多个微胶囊中存在带电粒子,具有不同的视觉颜色,根据电场操作并悬浮在介电流体中,并且上部 电极保护层和位于多个微胶囊上的上电极。 因此,实现了具有一种颜色或自然色的可靠的电泳显示。
    • 10. 发明授权
    • Thin film electroluminescent device having thin-film current control layer
    • 具有薄膜电流控制层的薄膜电致发光器件
    • US06674234B2
    • 2004-01-06
    • US09978456
    • 2001-10-16
    • Yong-Shin KimSun Jin YunSang-Hee ParkYong Eui Lee
    • Yong-Shin KimSun Jin YunSang-Hee ParkYong Eui Lee
    • H05B3302
    • H05B33/22
    • The inventive thin-film DC-driving electroluminescent device (ELD) is characterized by the thin-film current control layer which is inserted between a thin film phosphor layer and metal electrodes. This kind of ELD has the advantages of having a lower operation voltage than that of the conventional thin-film AC ELD and a higher resolution than that of the conventional thin-film/powder hybrid DC ELD. The thin-film current control layer acts as an energy barrier layer which supplies energetic electrons into said phosphor layer by a field-assistant injection of electron, and a current-limiting layer which prevents an electric field breakdown of said electroluminescent device caused by an excess current flow. The current control layer is embodied with a multilayered thin film laminated by an alternate deposition of metal oxides. In another embodiment, the current control layer consists of both an energy barrier layer and a current-limiting layer, separately formed.
    • 本发明的薄膜直流驱动电致发光器件(ELD)的特征在于薄膜电流控制层,其插入在薄膜荧光体层和金属电极之间。 这种ELD具有比常规薄膜AC ELD低的操作电压和比常规薄膜/粉末混合DC ELD更高的分辨率的优点。 薄膜电流控制层用作通过场辅助电子注入向高能电子提供能量电子的能量阻挡层,以及限制所述电致发光器件由过量的电场引起的电场击穿的限流层 当前流。 电流控制层由通过金属氧化物的交替沉积层压的多层薄膜来实现。 在另一个实施例中,电流控制层由分别形成的能量阻挡层和限流层组成。