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    • 14. 发明授权
    • Display panel assembly and method of manufacturing the same
    • 显示面板组装及其制造方法
    • US08298033B2
    • 2012-10-30
    • US12629079
    • 2009-12-02
    • Sung Hee Kim
    • Sung Hee Kim
    • H01J9/26H01J9/32
    • H01L51/5246
    • A display panel assembly includes a first substrate having an effective display region for displaying an image and a non-effective display region positioned at a peripheral region outside of the effective display region, a second substrate facing the first substrate, a sealing member disposed along a boundary between the effective display region and the non-effective display region between the first and second substrates, the sealing member including a thermosetting material, and an exothermic member interposed between the sealing member and the first substrate to generate heat for curing the sealing member.
    • 显示面板组件包括具有用于显示图像的有效显示区域和位于有效显示区域外侧周边区域的非有效显示区域的第一基板,面对第一基板的第二基板,沿着第一基板设置的密封构件 有效显示区域和第一和第二基板之间的非有效显示区域之间的边界,密封构件包括热固性材料,以及插入在密封构件和第一基板之间的放热构件,以产生用于固化密封构件的热量。
    • 15. 发明申请
    • ORGANIC ELECTROLUMINESCENT DEVICE AND METHOD FOR MANUFACTURING THE SAME
    • 有机电致发光器件及其制造方法
    • US20110057561A1
    • 2011-03-10
    • US12945559
    • 2010-11-12
    • Gee Sung CHAESung Hee Kim
    • Gee Sung CHAESung Hee Kim
    • H01J1/63
    • H01L27/3211B82Y20/00B82Y30/00H01L51/5012H01L51/56
    • A method for manufacturing an organic electroluminescent device includes forming a first electrode and a first carrier transport layer on a substrate having sub-pixels that include a first light emitting area for a first color, a second light emitting area for a second color, and a third light emitting area for a third color, forming a first color light emitting layer in the first light emitting area using a first hydrophobic material, forming a second color light emitting layer in the second light emitting area using a second hydrophobic material, forming a third color light emitting layer in the first, second and third light emitting areas or in the third light emitting area, forming a second carrier transport layer on the third light emitting area; and forming a second electrode on the second carrier transport layer.
    • 一种制造有机电致发光器件的方法包括在具有第一颜色的第一发光区域和第二颜色的第二发光区域的子像素的衬底上形成第一电极和第一载流子传输层,以及 第三颜色的第三发光区域,使用第一疏水材料在第一发光区域中形成第一颜色发光层,使用第二疏水材料在第二发光区域中形成第二彩色发光层,形成第三发光区域 在第一,第二和第三发光区域或第三发光区域中的彩色发光层,在第三发光区域上形成第二载流子传输层; 以及在所述第二载流子传输层上形成第二电极。
    • 16. 发明授权
    • Organic electroluminescent device and method for manufacturing the same
    • 有机电致发光器件及其制造方法
    • US07833569B2
    • 2010-11-16
    • US11819824
    • 2007-06-29
    • Gee Sung ChaeSung Hee Kim
    • Gee Sung ChaeSung Hee Kim
    • B05D5/06B05D5/04
    • H01L27/3211B82Y20/00B82Y30/00H01L51/5012H01L51/56
    • A method for manufacturing an organic electroluminescent device includes forming a first electrode and a first carrier transport layer on a substrate having sub-pixels that include a first light emitting area for a first color, a second light emitting area for a second color, and a third light emitting area for a third color, forming a first color light emitting layer in the first light emitting area using a first hydrophobic material, forming a second color light emitting layer in the second light emitting area using a second hydrophobic material, forming a third color light emitting layer in the first, second and third light emitting areas or in the third light emitting area, forming a second carrier transport layer on the third light emitting area; and forming a second electrode on the second carrier transport layer.
    • 一种制造有机电致发光器件的方法包括在具有第一颜色的第一发光区域和第二颜色的第二发光区域的子像素的衬底上形成第一电极和第一载流子传输层,以及 第三颜色的第三发光区域,使用第一疏水材料在第一发光区域中形成第一颜色发光层,使用第二疏水材料在第二发光区域中形成第二彩色发光层,形成第三发光区域 在第一,第二和第三发光区域或第三发光区域中的彩色发光层,在第三发光区域上形成第二载流子传输层; 以及在所述第二载流子传输层上形成第二电极。
    • 19. 发明授权
    • Organic electroluminescent device and method for manufacturing the same
    • 有机电致发光器件及其制造方法
    • US08344615B2
    • 2013-01-01
    • US12945559
    • 2010-11-12
    • Gee Sung ChaeSung Hee Kim
    • Gee Sung ChaeSung Hee Kim
    • H01L51/00
    • H01L27/3211B82Y20/00B82Y30/00H01L51/5012H01L51/56
    • An organic electroluminescent device includes: a first electrode and a first carrier transport layer (CTL) on a substrate having sub-pixels that include a first light emitting area (LEA) for a first color, a second LEA for a second color, and a third LEA for a third color, a first hydrophilic material on the first CTL in the first LEA, a first color light emitting layer (LEL) on the first hydrophilic material in the first LEA, a second hydrophilic material on the first CTL in the second LEA, a second color LEL on the second hydrophilic material in the second LEA, a third hydrophilic material on the first and second color LELs and on the first CTL in the third LEA, a third color LEL on the third hydrophilic material, a second CTL on the third color LEL, and a second electrode on the second CTL.
    • 一种有机电致发光器件包括:第一电极和第一载流子传输层(CTL),其具有包括第一颜色的第一发光区域(LEA),第二颜色的第二发光区域(LEA),以及第二颜色的第二发光区域 在第一LEA中的第一CTL上的第一亲水材料,第一LEA中的第一亲水材料上的第一颜色发光层(LEL),第二LEA中的第一CTL上的第二亲水材料 LEA,在第二LEA中的第二亲水材料上的第二颜色LEL,第一和第二颜色LEL上的第三亲水材料和第三LEA中的第一CTL上的第三亲水材料,第三亲水材料上的第三颜色LEL,第二亲水材料上的第二颜色LEL 在第三颜色LEL上,以及在第二CTL上的第二电极。
    • 20. 发明授权
    • Method of forming virtual endoscope image of uterus
    • 形成子宫虚拟内窥镜图像的方法
    • US08237784B2
    • 2012-08-07
    • US12608721
    • 2009-10-29
    • Sung Hee KimSung Yoon Kim
    • Sung Hee KimSung Yoon Kim
    • H04N9/47
    • A61B8/14A61B8/483
    • A method of forming a virtual endoscope image of a uterus is disclosed. The virtual image showing an inner wall of a uterus is formed from a three-dimensional ultrasound uterus image obtained by hysterosalpingography with a solution. An inner wall of the uterus in the 3D virtual image is inspected and a virtual endoscope image of the uterus is formed by reflecting the inspection result on the 3D virtual uterus image. Also, the virtual endoscope images in every aspect are provided according to the positions of a view point or virtual light source. Thus, the inner wall of the uterus can be inspected more easily.
    • 公开了一种形成子宫虚拟内窥镜图像的方法。 显示子宫内壁的虚像由通过子宫输注法用溶液获得的三维超声子宫图像形成。 检查3D虚拟图像中的子宫的内壁,并通过将检查结果反映在3D虚拟子宫图像上来形成子宫的虚拟内窥镜图像。 此外,根据视点或虚拟光源的位置来提供各方面的虚拟内窥镜图像。 因此,可以更容易地检查子宫的内壁。