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    • 1. 发明授权
    • Header-replaceable hybrid waveguide sensor
    • 头可更换混合波导传感器
    • US07512293B2
    • 2009-03-31
    • US11896309
    • 2007-08-30
    • Soo Jin JungIl Kweon JoungDong Ho ShinWon Hoe KooGwan Su Lee
    • Soo Jin JungIl Kweon JoungDong Ho ShinWon Hoe KooGwan Su Lee
    • G02B6/26
    • G02B6/1221B82Y20/00G02B6/1226G02B6/26G02B2006/12138G02B2006/12147
    • A header-replaceable hybrid waveguide sensor comprises a header coupling section including a dielectric layer having an optical signal input section and an optical signal output section formed in one end thereof, the dielectric layer having two lines of protrusions formed on the upper surface thereof; and a polymer layer formed on and under the dielectric layer; and a sensor header including a dielectric layer having a protrusion formed on the upper surface thereof and a predetermined size of thin metal film provided therein; a polymer layer formed on and under the dielectric layer and having an opening formed in a portion corresponding to the thin metal film, the opening having a larger width than the thin metal film; and a receptor layer formed on the upper surface of the dielectric layer exposed by the opening.
    • 标题可替换的混合波导传感器包括一个头部耦合部分,其包括具有光信号输入部分的介质层和在其一端形成的光信号输出部分,该电介质层具有形成在其上表面上的两条突起线; 以及形成在电介质层上和下面的聚合物层; 以及传感器头,其包括在其上表面上形成有突起的介电层和设置在其中的预定尺寸的金属薄膜; 所述聚合物层形成在所述电介质层上和下面,并且具有形成在与所述薄金属膜相对应的部分中的开口,所述开口具有比所述薄金属膜宽的宽度; 以及形成在由开口暴露的电介质层的上表面上的受体层。
    • 4. 发明申请
    • Header-replaceable hybrid waveguide sensor
    • 头可更换混合波导传感器
    • US20080056641A1
    • 2008-03-06
    • US11896309
    • 2007-08-30
    • Soo Jin JungKweon Joung IlDong Ho ShinWon Hoe KooGwan Su Lee
    • Soo Jin JungKweon Joung IlDong Ho ShinWon Hoe KooGwan Su Lee
    • G02B6/26
    • G02B6/1221B82Y20/00G02B6/1226G02B6/26G02B2006/12138G02B2006/12147
    • A header-replaceable hybrid waveguide sensor comprises a header coupling section including a dielectric layer having an optical signal input section and an optical signal output section formed in one end thereof, the dielectric layer having two lines of protrusions formed on the upper surface thereof; and a polymer layer formed on and under the dielectric layer; and a sensor header including a dielectric layer having a protrusion formed on the upper surface thereof and a predetermined size of thin metal film provided therein; a polymer layer formed on and under the dielectric layer and having an opening formed in a portion corresponding to the thin metal film, the opening having a larger width than the thin metal film; and a receptor layer formed on the upper surface of the dielectric layer exposed by the opening.
    • 标题可替换的混合波导传感器包括一个头部耦合部分,其包括具有光信号输入部分的介质层和在其一端形成的光信号输出部分,该电介质层具有形成在其上表面上的两条突起线; 以及形成在电介质层上和下面的聚合物层; 以及传感器头,其包括在其上表面上形成有突起的介电层和设置在其中的预定尺寸的金属薄膜; 所述聚合物层形成在所述电介质层上和下面,并且具有形成在与所述薄金属膜相对应的部分中的开口,所述开口具有比所述薄金属膜宽的宽度; 以及形成在由开口暴露的电介质层的上表面上的受体层。
    • 10. 发明授权
    • Display device and manufacturing method thereof
    • 显示装置及其制造方法
    • US07671959B2
    • 2010-03-02
    • US11753259
    • 2007-05-24
    • Won Hoe KooHoon KimJung Mi Choi
    • Won Hoe KooHoon KimJung Mi Choi
    • G02F1/1339H01J1/62
    • H01L51/5246H01L2224/81
    • The invention provides display devices that minimize permeation of oxygen and moisture, as well as methods of manufacturing such display devices. A display device according to the present invention includes an insulating substrate, a cover substrate connected to the insulating substrate, and a display element positioned between the insulating substrate and the cover substrate. The display device further includes a first sealant along an edge of one of the insulating substrate and the cover substrate, the first sealant including a first part and a second part spaced apart from each other, a second sealant provided along the edge of the other of the insulating substrate and the cover substrate, the second sealant being arranged between the first part of the first sealant and the second part of the first sealant, and an encapsulation film interposed between the first sealants and the second sealant.
    • 本发明提供了使氧气和水分的渗透最小化的显示装置,以及制造这种显示装置的方法。 根据本发明的显示装置包括绝缘基板,连接到绝缘基板的盖基板和位于绝缘基板和盖基板之间的显示元件。 所述显示装置还包括沿所述绝缘基板和所述盖基板之一的边缘的第一密封剂,所述第一密封剂包括彼此间隔开的第一部分和第二部分,沿着所述第二密封剂 绝缘基板和盖基板,第二密封剂布置在第一密封剂的第一部分和第一密封剂的第二部分之间,以及插入在第一密封剂和第二密封剂之间的密封膜。