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    • 12. 发明授权
    • Organic light emitting display device
    • 有机发光显示装置
    • US08338832B2
    • 2012-12-25
    • US11599670
    • 2006-11-14
    • Eun Ah Kim
    • Eun Ah Kim
    • H01L27/14
    • H01L27/3244H01L27/3202H01L27/3211H01L2251/558
    • An organic light emitting display device, which may maximize aperture ratio of a pixel while also reducing the perception of a dark spot when a sub-pixel is partially short-circuited. The organic light emitting display device includes a plurality of pixels having sub-pixels. Some of the sub-pixels may have a thin organic emission layer which makes them likely to short-circuit across the thin organic emission layer. These sub-pixels are formed as divided sub-pixels including at least two drive transistors and operate such that even if one part of the divided sub-pixel has a short circuit, the other part will continue to emit light. Accordingly, while luminance is reduced as a result of short circuiting, a completely dark spot will not appear in the place of the pixel including the short circuit.
    • 一种有机发光显示装置,其可以使像素的开口率最大化,同时在子像素部分短路的同时还减少暗点的感知。 有机发光显示装置包括具有子像素的多个像素。 一些子像素可能具有薄的有机发射层,这使得它们可能跨薄层有机发射层短路。 这些子像素被形成为包括至少两个驱动晶体管的分割子像素,并且操作使得即使分割子像素的一部分具有短路,另一部分将继续发光。 因此,在由于短路而亮度降低的同时,在包含短路的像素的位置不会出现完全暗点。
    • 14. 发明授权
    • Polysulfide-rubber-coated activated carbon (PSR-AC) as a multi-sorbent for mercury and polychlorinated biphenyls (PCBS)
    • 多硫化橡胶包覆的活性炭(PSR-AC)作为汞和多氯联苯(PCBS)的多吸附剂
    • US08748338B2
    • 2014-06-10
    • US13317555
    • 2011-10-21
    • Richard G. LuthyEun Ah Kim
    • Richard G. LuthyEun Ah Kim
    • B01J20/26
    • B01J20/20B01J20/262B01J20/3204B01J20/3272
    • A toxin immobilization particle and method of fabrication is provided that includes a polysulfide-rubber polymer coated activated carbon particle that provides enhanced toxin adsorption. A porous activated carbon particle have a size range up to 2 mm is used. The polysulfide-rubber polymer coated activated carbon particle includes a polymer-dose range of up to 1.64 grams of sulfur per gram of activated carbon particles, where the toxins can include mercury, PCBs, chlorinated pesticides or polycyclic aromatic hydrocarbons. The method of forming the toxin immobilization particle includes condensing a polymer in a sulfide mixture to form a polysulfide-rubber polymer compound and coating an activated carbon particle with the polysulfide-rubber polymer. The levels of sulfur loading in the toxin immobilization particles are controlled by the polymer dose during the coating process, where the polysulfide polymer coated activated carbon particle provides enhanced toxin adsorption.
    • 提供毒素固定颗粒和制造方法,其包括提供增强的毒素吸附的聚硫醚橡胶聚合物涂覆的活性炭颗粒。 使用尺寸范围高达2mm的多孔活性炭颗粒。 聚硫化橡胶聚合物涂覆的活性炭颗粒包括每克活性炭颗粒高达1.64克硫的聚合物 - 剂量范围,其中毒素可以包括汞,多氯联苯,氯化农药或多环芳烃。 形成毒素固定化颗粒的方法包括在硫化物混合物中聚合聚合物以形成聚硫化橡胶聚合物化合物,并用多硫化橡胶聚合物涂覆活性炭颗粒。 毒素固定化颗粒中的硫负荷水平由涂覆过程中的聚合物剂量控制,其中多硫化物聚合物涂覆的活性炭颗粒提供增强的毒素吸附。
    • 15. 发明授权
    • Method and system for interworking a plurality of applications
    • 用于互联多个应用的​​方法和系统
    • US08695017B2
    • 2014-04-08
    • US11813295
    • 2006-01-10
    • Yun Ho JeonEun Ah KimSu Jin Kim
    • Yun Ho JeonEun Ah KimSu Jin Kim
    • G06F3/00G06F9/44G06F9/46G06F13/00
    • G06F3/0482G06F3/04842G06F9/4843G06F9/543G06F2209/482
    • An application interoperation method includes: maintaining a handler table including data type information, function information and calling information associated with each application installed in a portable device; receiving input information on a menu key of the portable device, from a user, while a first application is active; extracting, in response to the receipt of the input information, at least one function information associated with data type information, which is being processed or requested by the first application, from the handler table; dynamically generating a menu including the extracted function information to provide the user with the generated menu; receiving selection information on particular function information among the provided menu, from the user; and identifying calling information associated with the selected particular function information by referring to the handler table and executing a second application on the basis of the identified calling information.
    • 应用互操作方法包括:维护处理器表,其包括与安装在便携式设备中的每个应用相关联的数据类型信息,功能信息和呼叫信息; 在第一应用有效时,从用户接收便携式设备的菜单键上的输入信息; 响应于所述输入信息的接收,从所述处理程序表中提取与正在被所述第一应用程序处理或请求的数据类型信息相关联的至少一个功能信息; 动态地生成包括所提取的功能信息的菜单,以向用户提供生成的菜单; 从所述用户接收所提供的菜单中的特定功能信息的选择信息; 以及通过参考所述处理程序表并基于所识别的呼叫信息来执行第二应用来识别与所选择的特定功能信息相关联的呼叫信息。
    • 16. 发明申请
    • Polysulfide-rubber-coated activated carbon (PSR-AC) as a multi-sorbent for mercury and polychlorinated biphenyls (PCBS)
    • 多硫化橡胶包覆的活性炭(PSR-AC)作为汞和多氯联苯(PCBS)的多吸附剂
    • US20120108420A1
    • 2012-05-03
    • US13317555
    • 2011-10-21
    • Richard G. LuthyEun Ah Kim
    • Richard G. LuthyEun Ah Kim
    • B01J20/26
    • B01J20/20B01J20/262B01J20/3204B01J20/3272
    • A toxin immobilization particle and method of fabrication is provided that includes a polysulfide-rubber polymer coated activated carbon particle that provides enhanced toxin adsorption. A porous activated carbon particle have a size range up to 2 mm is used. The polysulfide-rubber polymer coated activated carbon particle includes a polymer-dose range of up to 1.64 grams of sulfur per gram of activated carbon particles, where the toxins can include mercury, PCBs, chlorinated pesticides or polycyclic aromatic hydrocarbons. The method of forming the toxin immobilization particle includes condensing a polymer in a sulfide mixture to form a polysulfide-rubber polymer compound and coating an activated carbon particle with the polysulfide-rubber polymer. The levels of sulfur loading in the toxin immobilization particles are controlled by the polymer dose during the coating process, where the polysulfide polymer coated activated carbon particle provides enhanced toxin adsorption.
    • 提供毒素固定颗粒和制造方法,其包括提供增强的毒素吸附的聚硫醚橡胶聚合物涂覆的活性炭颗粒。 使用尺寸范围高达2mm的多孔活性炭颗粒。 聚硫化橡胶聚合物涂覆的活性炭颗粒包括每克活性炭颗粒高达1.64克硫的聚合物剂量范围,其中毒素可以包括汞,多氯联苯,氯化农药或多环芳烃。 形成毒素固定化颗粒的方法包括在硫化物混合物中聚合聚合物以形成聚硫化橡胶聚合物化合物,并用多硫化橡胶聚合物涂覆活性炭颗粒。 毒素固定化颗粒中的硫负荷水平由涂覆过程中的聚合物剂量控制,其中多硫化物聚合物涂覆的活性炭颗粒提供增强的毒素吸附。