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    • 1. 发明授权
    • Organic photoelectric device
    • 有机光电器件
    • US08530924B2
    • 2013-09-10
    • US12947621
    • 2010-11-16
    • Jan HesseJoerg AmelungChristian Kirchhof
    • Jan HesseJoerg AmelungChristian Kirchhof
    • H01L51/50
    • H01L51/525H01L27/301H01L51/448H01L51/5203H01L51/5243H01L51/5246H01L2251/5361Y02B10/12Y02E10/549Y02P70/521
    • An organic photoelectric device includes a substrate, a base electrode, an electrode terminal, a roof electrode, an organic functional layer, and a self-supporting cover member. The base electrode is configured above a first surface of the substrate, and the electrode terminal is accessible from above the first surface of the substrate. The self-supporting cover member serves to encapsulate the organic functional layer, which is arranged between the substrate and the self-supporting cover member, the self-supporting cover member being formed from conductive material or being coated with a conductive material on a side facing the substrate. The conductive material is locally coupled, in an electrically conductive manner, to the base electrode or the roof electrode at laterally distributed locations, and is further coupled to the electrode terminal in an electrically conductive manner.
    • 有机光电装置包括基板,基极,电极端子,屋顶电极,有机功能层和自支撑盖构件。 基极配置在基板的第一表面上方,电极端子可从基板的第一表面的上方进入。 自支撑盖构件用于封装布置在基板和自支撑盖构件之间的有机功能层,自支撑盖构件由导电材料形成或者在面向侧的面侧涂覆有导电材料 底物。 导电材料以导电的方式在横向分布的位置处局部耦合到基极或屋顶电极,并且还以导电方式耦合到电极端子。
    • 6. 发明申请
    • Organic Photoelectric Device
    • 有机光电器件
    • US20110121352A1
    • 2011-05-26
    • US12947621
    • 2010-11-16
    • Jan HesseJoerg AmelungChristian Kirchhof
    • Jan HesseJoerg AmelungChristian Kirchhof
    • H01L51/50
    • H01L51/525H01L27/301H01L51/448H01L51/5203H01L51/5243H01L51/5246H01L2251/5361Y02B10/12Y02E10/549Y02P70/521
    • An organic photoelectric device includes a substrate, a base electrode, an electrode terminal, a roof electrode, an organic functional layer, and a self-supporting cover member. The base electrode is configured above a first surface of the substrate, and the electrode terminal is accessible from above the first surface of the substrate. The self-supporting cover member serves to encapsulate the organic functional layer, which is arranged between the substrate and the self-supporting cover member, the self-supporting cover member being formed from conductive material or being coated with a conductive material on a side facing the substrate. The conductive material is locally coupled, in an electrically conductive manner, to the base electrode or the roof electrode at laterally distributed locations, and is further coupled to the electrode terminal in an electrically conductive manner.
    • 有机光电装置包括基板,基极,电极端子,屋顶电极,有机功能层和自支撑盖构件。 基极配置在基板的第一表面上方,电极端子可从基板的第一表面的上方进入。 自支撑盖构件用于封装布置在基板和自支撑盖构件之间的有机功能层,自支撑盖构件由导电材料形成或者在面向侧的面侧涂覆有导电材料 底物。 导电材料以导电的方式在横向分布的位置处局部耦合到基极或屋顶电极,并且还以导电方式耦合到电极端子。
    • 7. 发明授权
    • Method and system for inspecting surfaces
    • 检查表面的方法和系统
    • US07639349B2
    • 2009-12-29
    • US10587641
    • 2005-02-10
    • Enis ErsueJoerg Amelung
    • Enis ErsueJoerg Amelung
    • G01N21/00
    • G01N21/9515G01N2021/8825
    • The method of inspecting the surface of a three-dimensional body, includes moving at least one camera and at least one illuminating device relative to the surface of the three-dimensional body, taking pictures of the areas of the surface to be inspected during the movement of the at least one camera relative to the areas of the surface to be inspected, transmitting the pictures taken to a computer and evaluating the pictures in the computer to find any defects that are present. A system for performing the method is also described. In order to obtain high inspection quality, the camera, illumination device and the surface to be inspected are brought into plural different defined geometric relationships with each other during the inspecting of each of the areas on the surface, at least for a time period required to take one picture.
    • 检查三维体的表面的方法包括相对于三维体的表面移动至少一个照相机和至少一个照明装置,在运动期间拍摄待检查的表面的区域 相对于要检查的表面的区域的至少一个照相机,将所拍摄的照片发送到计算机并评估计算机中的图像以发现存在的任何缺陷。 还描述了用于执行该方法的系统。 为了获得较高的检验质量,在检查表面上的每个区域时,将要检查的照相机,照明装置和待检查的表面彼此之间形成多个不同的限定的几何关系,至少在 拍一张照片
    • 10. 发明授权
    • Organic opto-electric device and a method for manufacturing an organic opto-electric device
    • 有机光电装置及有机光电装置的制造方法
    • US08766286B2
    • 2014-07-01
    • US13071604
    • 2011-03-25
    • Joerg Amelung
    • Joerg Amelung
    • H01L29/18
    • H01L27/3204H01L51/0021H01L51/441H01L51/5206H01L51/5237H01L2251/5361
    • An organic opto-electric device has a layer stack with a base electrode, an organic layer assembly, a cover electrode and a contact layer. The organic layer assembly is arranged between the base electrode and the cover electrode and the cover electrode is arranged between the organic layer assembly and the contact layer. The cover electrode and the base electrode are structured to form several laterally adjacent optically active areas and the base electrode, the organic layer assembly, the cover electrode and the contact layer are interconnected by vias such that at least two optically active areas are connected in series so that a current flow through the at least two optically active areas passes in a direction between the base electrode and a cover electrode. The current flow between the at least two optically active areas passes through the contact layer, wherein the contact layer contacts the base electrode above one of the vias laterally in the interior of the two optically active areas.
    • 有机光电装置具有层叠体,其具有基极,有机层组件,覆盖电极和接触层。 有机层组件布置在基极和覆盖电极之间,盖电极设置在有机层组件和接触层之间。 覆盖电极和基极被构造成形成几个横向相邻的光学有源区域,并且基极,有机层组件,覆盖电极和接触层通过通孔相互连接,使得至少两个光学有源区域串联连接 使得通过至少两个光学有源区域的电流流过基极和覆盖电极之间的方向。 所述至少两个光学有源区域之间的电流通过所述接触层,其中所述接触层在所述两个光学活性区域的内部中的所述通孔中的一个之上接触所述基极。