Conductive copolymer, conductive copolymer composition, film and opto-electronic device using the same
    41.
    发明授权
    Conductive copolymer, conductive copolymer composition, film and opto-electronic device using the same 有权
    导电共聚物,导电共聚物组合物,薄膜和使用其的光电器件

    公开(公告)号:US07875208B2

    公开(公告)日:2011-01-25

    申请号:US11936843

    申请日:2007-11-08

    CPC classification number: H01B1/125 H01L51/0037 H01L51/5088

    Abstract: Disclosed herein is a conductive copolymer. The conductive copolymer can prevent water-absorbance, lower the concentration of polyacid contained in a molecule and exhibit superior film characteristics and excellent storage stability via a reduction in aggregation between molecules, as well as impart improved efficiency and lifetime to optoelectronic devices. The conductive copolymer includes a conductive polymer doped with a polyacid copolymer represented by Formula 1 below: Further disclosed are a conductive copolymer composition, a conductive copolymer composition film and an organic optoelectronic device, each including the conductive copolymer.

    Abstract translation: 本文公开了导电共聚物。 导电共聚物可以防止吸水率,降低分子中所含的多酸浓度,并且通过减少分子之间的聚集,显示优异的膜特性和优异的储存稳定性,并赋予光电器件更高的效率和寿命。 导电性共聚物包含掺杂有下述式1的多酸共聚物的导电性聚合物。进一步公开了导电性共聚物组合物,导电性共聚物组合物膜和有机光电子器件,各自含有导电性共聚物。

    Method of fabricating thin film transistor
    42.
    发明授权
    Method of fabricating thin film transistor 有权
    制造薄膜晶体管的方法

    公开(公告)号:US07834352B2

    公开(公告)日:2010-11-16

    申请号:US11972847

    申请日:2008-01-11

    Abstract: A method of fabricating a thin film transistor, in which source and drain electrodes are formed through a solution process, even all stages which include formation of electrodes on a substrate, formation of an insulator layer, and formation of an organic semiconductor layer are conducted through the solution process. In the method, the fabrication is simplified and a fabrication cost is reduced. It is possible to apply the organic thin film transistor to integrated circuits requiring high speed switching because of high charge mobility.

    Abstract translation: 制造薄膜晶体管的方法,其中源极和漏极通过溶液处理形成,甚至包括在衬底上形成电极的所有阶段,形成绝缘体层以及形成有机半导体层通过 解决过程。 在该方法中,简化了制造并降低了制造成本。 由于高电荷迁移率,有机薄膜晶体管可能需要高速切换的集成电路。

    USB Driver Apparatus, USB External Apparatus, USB System Having the Same and USB Connect Apparatus Using Light Guide
    44.
    发明申请
    USB Driver Apparatus, USB External Apparatus, USB System Having the Same and USB Connect Apparatus Using Light Guide 审中-公开
    USB驱动器设备,USB外部设备,具有相同功能的USB系统和使用光导的USB连接设备

    公开(公告)号:US20090216922A1

    公开(公告)日:2009-08-27

    申请号:US12344387

    申请日:2008-12-26

    CPC classification number: G06F13/4045 G06F13/385

    Abstract: Provided are a USB driver apparatus using an optical waveguide, a USB external apparatus connected to the same, and a USB system and a USB connection apparatus including the same. The USB driver apparatus includes an optical USB port connected to the USB terminal of the external apparatus and configured to exchange data with the USB terminal using an optical signal; a USB interface part configured to input and output data through the optical USB port; and a photoelectric converter connected between the optical USB port and the USB interface part and configured to convert an optical signal into an electrical signal and vice versa, wherein the optical USB port and the photoelectric converter are connected to each other through the optical waveguide to transmit data as an optical signal. Therefore, it is possible to largely increase a data transmission speed of the USB system.

    Abstract translation: 提供了使用光波导的USB驱动器装置,与其连接的USB外部装置,以及包括该USB驱动器装置的USB系统和USB连接装置。 USB驱动器装置包括连接到外部设备的USB端子并被配置为使用光信号与USB端口交换数据的光学USB端口; 配置为通过光学USB端口输入和输出数据的USB接口部件; 以及光电转换器,连接在光学USB端口和USB接口部分之间,并被配置为将光信号转换为电信号,反之亦然,其中光学USB端口和光电转换器通过光波导彼此连接以传输 数据作为光信号。 因此,可以大幅提高USB系统的数据传输速度。

    Electroluminescent device and method for preparing the same

    公开(公告)号:US20090021153A1

    公开(公告)日:2009-01-22

    申请号:US12155842

    申请日:2008-06-10

    CPC classification number: H01L51/5203 B82Y30/00 H01L51/5293

    Abstract: An electroluminescent device comprises a substrate, a first electrode, a second electrode, and an organic layer disposed between the first electrode and the second electrode, and including at least a light-emitting layer. A metal nano pattern which enables emission of polarized light is provided on one surface of at least one of the first electrode and the second electrode, wherein a grating period of the metal nano pattern satisfies the relation of Formula 1 below. A method of preparing the electroluminescent device comprises providing a substrate, first and second electrodes, and an organic layer including a light-emitting layer, with a metal nano pattern being provided on at least one of the first and second electrodes. Formula 1 is described in more detail in the description of the invention. The electroluminescent device can achieve emission of polarized light, without reforming materials used in forming the organic layer. D

    Method of Fabricating Thin Film Transistor
    48.
    发明申请
    Method of Fabricating Thin Film Transistor 有权
    制造薄膜晶体管的方法

    公开(公告)号:US20080135839A1

    公开(公告)日:2008-06-12

    申请号:US11972847

    申请日:2008-01-11

    Abstract: A method of fabricating a thin film transistor, in which source and drain electrodes are formed through a solution process, even all stages which include formation of electrodes on a substrate, formation of an insulator layer, and formation of an organic semiconductor layer are conducted through the solution process. In the method, the fabrication is simplified and a fabrication cost is reduced. It is possible to apply the organic thin film transistor to integrated circuits requiring high speed switching because of high charge mobility.

    Abstract translation: 制造薄膜晶体管的方法,其中源极和漏极通过溶液处理形成,甚至包括在衬底上形成电极的所有阶段,形成绝缘体层以及形成有机半导体层通过 解决过程。 在该方法中,简化了制造并降低了制造成本。 由于高电荷迁移率,有机薄膜晶体管可能需要高速切换的集成电路。

    Conductive Copolymer, Conductive Copolymer Composition, Film and Opto-Electronic Device Using the Same
    49.
    发明申请
    Conductive Copolymer, Conductive Copolymer Composition, Film and Opto-Electronic Device Using the Same 有权
    导电共聚物,导电共聚物组合物,薄膜和使用其的光电子器件

    公开(公告)号:US20080105854A1

    公开(公告)日:2008-05-08

    申请号:US11936843

    申请日:2007-11-08

    CPC classification number: H01B1/125 H01L51/0037 H01L51/5088

    Abstract: Disclosed herein is a conductive copolymer. The conductive copolymer can prevent water-absorbance, lower the concentration of polyacid contained in a molecule and exhibit superior film characteristics and excellent storage stability via a reduction in aggregation between molecules, as well as impart improved efficiency and lifetime to optoelectronic devices. The conductive copolymer includes a conductive polymer doped with a polyacid copolymer represented by Formula 1 below: Further disclosed are a conductive copolymer composition, a conductive copolymer composition film and an organic optoelectronic device, each including the conductive copolymer.

    Abstract translation: 本文公开了导电共聚物。 导电共聚物可以防止吸水率,降低分子中所含的多酸浓度,并且通过减少分子之间的聚集,显示优异的膜特性和优异的储存稳定性,并赋予光电器件更高的效率和寿命。 导电性共聚物包含掺杂有下述式1的多酸共聚物的导电性聚合物。进一步公开了导电性共聚物组合物,导电性共聚物组合物膜和有机光电子器件,各自含有导电性共聚物。

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