Self-aligned coverage of opaque conductive areas
    1.
    发明授权
    Self-aligned coverage of opaque conductive areas 有权
    不透明导电区域的自对准覆盖

    公开(公告)号:US08865394B2

    公开(公告)日:2014-10-21

    申请号:US13816251

    申请日:2011-07-29

    摘要: The invention relates to a method enabling to apply cheap manufacturing techniques for producing reliable and robust organic thin film device (EL) comprising the steps of providing (P) a transparent substrate (1) at least partly covered with a first layer stack comprising at least one transparent layer (2), preferably an electrically conductive layer, and a pattern of first and second opaque conductive areas (31, 32) deposited on top of the transparent layer (2), depositing (D) a photoresist layer (4) made of an electrically insulating photoresist resist material on top of the first layer stack at least fully covering the second opaque conductive areas (32), illuminating (IL) the photoresist layer (4) through the transparent substrate (1) with light (5) of a suitable wavelength to make the photoresist material soluble in the areas (43) of the photoresist layer (4) having no opaque conductive areas (31, 32) underneath, removing (R) the soluble areas (43) of the photoresist layer (4), heating (B) the areas (42) of the photoresist layer (4) remaining on top of at least the second opaque conductive areas (32) to re-flow the photoresist layer (4) to cover the edges (E) of the second opaque conductive areas (32) in contact to the transparent layer (2), and hardening (H) the remaining areas (42) of the photoresist layer (4). The invention further relates to a conductive component (CC) for use in these organic thin film devices (EL) and to the organic thin film devices (EL) itself.

    摘要翻译: 本发明涉及一种能够应用便宜的制造技术来生产可靠和坚固的有机薄膜器件(EL)的方法,包括以下步骤:提供(P)至少部分地覆盖有至少包括第一层堆叠的第一层堆叠的透明衬底(1) 一个透明层(2),优选导电层,以及沉积在透明层(2)的顶部上的第一和第二不透明导电区域(31,32)的图案,沉积(D)制成的光致抗蚀剂层(4) 至少完全覆盖第二不透明导电区域(32)的第一层堆叠顶部上的电绝缘光致抗蚀剂材料,通过透明衬底(1)照射(IL)光致抗蚀剂层(4),其中光(5) 使光致抗蚀剂材料可溶于光致抗蚀剂层(4)的在其下方没有不透明导电区域(31,32)的区域(43)中的合适波长,去除光致抗蚀剂层(4)的可溶性区域(43) ),他 (B)至少第二不透明导电区域(32)的顶部上的光致抗蚀剂层(4)的区域(42),以再次流过光致抗蚀剂层(4)以覆盖第二不透明导电区域的边缘(E) 与透明层(2)接触的不透明导电区域(32),以及硬化(H)光致抗蚀剂层(4)的剩余区域(42)。 本发明还涉及用于这些有机薄膜器件(EL)和有机薄膜器件(EL)本身的导电元件(CC)。

    SELF-ALIGNED COVERAGE OF OPAQUE CONDUCTIVE AREAS
    2.
    发明申请
    SELF-ALIGNED COVERAGE OF OPAQUE CONDUCTIVE AREAS 有权
    OPAQUE导电区域的自对准覆盖

    公开(公告)号:US20130146859A1

    公开(公告)日:2013-06-13

    申请号:US13816251

    申请日:2011-07-29

    IPC分类号: H01L21/70 H01L51/00

    摘要: The invention relates to a method enabling to apply cheap manufacturing techniques for producing reliable and robust organic thin film device (EL) comprising the steps of providing (P) a transparent substrate (1) at least partly covered with a first layer stack comprising at least one transparent layer (2), preferably an electrically conductive layer, and a pattern of first and second opaque conductive areas (31, 32) deposited on top of the transparent layer (2), depositing (D) a photoresist layer (4) made of an electrically insulating photoresist resist material on top of the first layer stack at least fully covering the second opaque conductive areas (32), illuminating (IL) the photoresist layer (4) through the transparent substrate (1) with light (5) of a suitable wavelength to make the photoresist material soluble in the areas (43) of the photoresist layer (4) having no opaque conductive areas (31, 32) underneath, removing (R) the soluble areas (43) of the photoresist layer (4), heating (B) the areas (42) of the photoresist layer (4) remaining on top of at least the second opaque conductive areas (32) to re-flow the photoresist layer (4) to cover the edges (E) of the second opaque conductive areas (32) in contact to the transparent layer (2), and hardening (H) the remaining areas (42) of the photoresist layer (4). The invention further relates to a conductive component (CC) for use in these organic thin film devices (EL) and to the organic thin film devices (EL) itself.

    摘要翻译: 本发明涉及一种能够应用便宜的制造技术来生产可靠和坚固的有机薄膜器件(EL)的方法,包括以下步骤:提供(P)至少部分地覆盖有至少包括第一层堆叠的第一层堆叠的透明衬底(1) 一个透明层(2),优选导电层,以及沉积在透明层(2)的顶部上的第一和第二不透明导电区域(31,32)的图案,沉积(D)制成的光致抗蚀剂层(4) 至少完全覆盖第二不透明导电区域(32)的第一层堆叠顶部上的电绝缘光致抗蚀剂材料,通过透明衬底(1)照射(IL)光致抗蚀剂层(4),其中光(5) 使光致抗蚀剂材料可溶于光致抗蚀剂层(4)的在其下方没有不透明导电区域(31,32)的区域(43)中的合适波长,去除光致抗蚀剂层(4)的可溶性区域(43) ),他 (B)至少第二不透明导电区域(32)的顶部上的光致抗蚀剂层(4)的区域(42),以再次流过光致抗蚀剂层(4)以覆盖第二不透明导电区域的边缘(E) 与透明层(2)接触的不透明导电区域(32),以及硬化(H)光致抗蚀剂层(4)的剩余区域(42)。 本发明还涉及用于这些有机薄膜器件(EL)和有机薄膜器件(EL)本身的导电元件(CC)。

    TRANSPARENT LIGHT EMITTING DEVICE WITH CONTROLLED EMISSION
    3.
    发明申请
    TRANSPARENT LIGHT EMITTING DEVICE WITH CONTROLLED EMISSION 有权
    具有控制排放的透明发光装置

    公开(公告)号:US20130092914A1

    公开(公告)日:2013-04-18

    申请号:US13704730

    申请日:2011-06-15

    IPC分类号: H01L51/10 H01L33/42

    摘要: The present invention relates to a light emitting device comprising: a transparent substrate (11); partially transparent an anode layer (12) or layer assembly arranged on said substrate (11); a light emitting layer (13) arranged on said anode layer (12); and a transparent cathode layer (14) arranged on said light emitting layer; (13) wherein said anode layer (12) or layer assembly comprises a first surface (15) facing said substrate (11) and a second surface (16) facing said light emitting layer (13) and is positioned opposite to said first surface (15); said first surface (15) comprises a transparent conductive material; said second surface (16) comprises first (17) and second domains (18); said first domains (17) are conductive and non-transparent; said second domains (18) are transparent and electrically isolating; and said first domains (17) are in direct contact with said light emitting layer (13) and are arranged to allow electrical contact between said first surface (15) and said light emitting layer (13). The light emitting device can be applied in transparent OLED devices to allow for the possibility of controlled emission.

    摘要翻译: 发光装置技术领域本发明涉及一种发光装置,包括:透明基板(11); 部分透明地布置在所述基底(11)上的阳极层(12)或层组件; 布置在所述阳极层(12)上的发光层(13)。 和布置在所述发光层上的透明阴极层(14); (13),其中所述阳极层(12)或层组件包括面向所述衬底(11)的第一表面(15)和面对所述发光层(13)的第二表面(16)并且与所述第一表面 15); 所述第一表面(15)包括透明导电材料; 所述第二表面(16)包括第一(17)和第二畴(18); 所述第一域(17)是导电和不透明的; 所述第二区域(18)是透明和电隔离的; 并且所述第一区域(17)与所述发光层(13)直接接触并且被布置成允许所述第一表面(15)和所述发光层(13)之间的电接触。 发光器件可以应用于透明OLED器件中以允许受控发射的可能性。

    Transparent light emitting device with controlled emission
    4.
    发明授权
    Transparent light emitting device with controlled emission 有权
    具有受控发射的透明发光装置

    公开(公告)号:US08766306B2

    公开(公告)日:2014-07-01

    申请号:US13704730

    申请日:2011-06-15

    摘要: A light emitting device and a method for manufacturing the light emitting device are disclosed. In one example, the light emitting device includes a transparent substrate, partially transparent an anode layer or layer assembly arranged on said substrate, a light emitting layer arranged on said anode layer, and a transparent cathode layer arranged on said light emitting layer, wherein said anode layer or layer assembly includes a first surface facing said transparent substrate and a second surface facing said light emitting layer and is positioned opposite to said first surface, said first surface includes a transparent conductive material, said second surface includes first and second domains, said first domains are conductive and non-transparent, said second domains are transparent and electrically isolating, and said first domains are in direct contact with said light emitting layer and are arranged to allow electrical contact between said first surface and said light emitting layer.

    摘要翻译: 公开了一种发光器件及其制造方法。 在一个示例中,发光器件包括透明衬底,部分透明的布置在所述衬底上的阳极层或层组件,布置在所述阳极层上的发光层和布置在所述发光层上的透明阴极层,其中所述 阳极层或层组件包括面对所述透明衬底的第一表面和面向所述发光层的第二表面并且与所述第一表面相对定位,所述第一表面包括透明导电材料,所述第二表面包括第一和第二畴,所述 第一域是导电和不透明的,所述第二域是透明和电隔离的,并且所述第一域与所述发光层直接接触并被布置成允许所述第一表面和所述发光层之间的电接触。

    ORGANIC ELECTRONIC DEVICE WITH ENCAPSULATION
    5.
    发明申请
    ORGANIC ELECTRONIC DEVICE WITH ENCAPSULATION 有权
    有机电子设备

    公开(公告)号:US20130217168A1

    公开(公告)日:2013-08-22

    申请号:US13877689

    申请日:2011-10-06

    IPC分类号: H01L51/52 H01L51/44

    摘要: The invention relates to an organic electronic device, particularly an OLED device (100), and to a method for its manufacturing. The device (100) comprises at least one functional unit (LU1, LU2, LU3) with an organic layer (120). On top of this functional unit (LU1, LU2, LU3), at least one inorganic encapsulation layer (140, 141) and at least one organic encapsulation layer (150, 151) are disposed in which at least one conductive line (161, 162) is embedded. In this way an OLED with a thin film encapsulation can be provided that can electrically be contacted at contact points (CL) on its back side.

    摘要翻译: 本发明涉及有机电子器件,特别是OLED器件(100)及其制造方法。 装置(100)包括具有有机层(120)的至少一个功能单元(LU1,LU2,LU3)。 在该功能单元(LU1,LU2,LU3)之上,设置至少一个无机封装层(140,141)和至少一个有机封装层(150,151),其中至少一个导线(161,162 )被嵌入。 以这种方式,可以提供具有薄膜封装的OLED,其可以在其背面的接触点(CL)处电接触。

    Organic electronic device with encapsulation
    6.
    发明授权
    Organic electronic device with encapsulation 有权
    有机电子器件封装

    公开(公告)号:US09219246B2

    公开(公告)日:2015-12-22

    申请号:US13877689

    申请日:2011-10-06

    摘要: The invention relates to an organic electronic device, particularly an OLED device (100), and to a method for its manufacturing. The device (100) comprises at least one functional unit (LU1, LU2, LU3) with an organic layer (120). On top of this functional unit (LU1, LU2, LU3), at least one inorganic encapsulation layer (140, 141) and at least one organic encapsulation layer (150, 151) are disposed in which at least one conductive line (161, 162) is embedded. In this way an OLED with a thin film encapsulation can be provided that can electrically be contacted at contact points (CL) on its back side.

    摘要翻译: 本发明涉及有机电子器件,特别是OLED器件(100)及其制造方法。 装置(100)包括具有有机层(120)的至少一个功能单元(LU1,LU2,LU3)。 在该功能单元(LU1,LU2,LU3)之上,设置至少一个无机封装层(140,141)和至少一个有机封装层(150,151),其中至少一个导线(161,162 )被嵌入。 以这种方式,可以提供具有薄膜封装的OLED,其可以在其背面的接触点(CL)处电接触。

    MULTI-DEVICE OLED
    7.
    发明申请
    MULTI-DEVICE OLED 有权
    多器件OLED

    公开(公告)号:US20130187148A1

    公开(公告)日:2013-07-25

    申请号:US13877665

    申请日:2011-09-29

    IPC分类号: H01L51/52 H01L51/56

    摘要: The invention describes a multi-device OLED (1) comprising a device layer stack (100) comprising a bottom electrode (11), a top electrode (14), at least one inter electrode (13) and plurality of active layers (120, 121), wherein the bottom electrode (11) is applied to a substrate (10), and each active layer (120, 121) is enclosed between two electrodes (11, 13, 14); a current distribution means (500) comprising a current distribution layer (51, 53, 54) for each electrode (11, 13, 14) of the device layer stack (100); a plurality of openings (110, 130) extending from the top electrode (14) into the device layer stack (100), wherein each opening (110, 130) exposes a contact region (111, 131) of an electrode (11, 13); and a plurality of electrical connectors (41, 42), wherein an electrical connector (41, 42) extends into an opening (110, 130) to electrically connect the electrode (11, 13) exposed by that opening (110, 130) to the current distribution layer (53, 54) for that electrode (11, 13). The invention also describes a method of manufacturing such a multi-device OLED. The invention further describes a method of driving such a multi-device OLED, which method comprises applying a voltage across at least one pair (51, 53, 53, 54) of current distribution layers (51, 53, 54) of the current distribution means (500) to stimulate the corresponding active layer (120, 121) of a device of the multi-device OLED (1).

    摘要翻译: 本发明描述了一种多器件OLED(1),其包括包括底部电极(11),顶部电极(14),至少一个内部电极(13)和多个有源层(120)的器件层堆叠(100) 121),其中所述底部电极(11)被施加到基板(10),并且每个有源层(120,121)被包围在两个电极(11,13,14)之间; 电流分布装置(500),其包括用于装置层堆叠(100)的每个电极(11,13,14)的电流分布层(51,53,54); 从所述顶部电极(14)延伸到所述器件层叠层(100)中的多个开口(110,130),其中每个开口(110,130)暴露电极(11,13)的接触区域(111,131) ); 以及多个电连接器(41,42),其中电连接器(41,42)延伸到开口(110,130)中以将由该开口(110,130)暴露的电极(11,13)电连接到 用于该电极(11,13)的电流分布层(53,54)。 本发明还描述了制造这种多器件OLED的方法。 本发明还描述了一种驱动这种多器件OLED的方法,该方法包括在电流分布的电流分布层(51,53,54)的至少一对(51,53,53,54)上施加电压 用于刺激多器件OLED(1)的器件的相应有源层(120,121)的装置(500)。

    ORGANIC ELECTROLUMINESCENT DEVICE
    8.
    发明申请
    ORGANIC ELECTROLUMINESCENT DEVICE 审中-公开
    有机电致发光器件

    公开(公告)号:US20130126858A1

    公开(公告)日:2013-05-23

    申请号:US13813962

    申请日:2011-08-01

    IPC分类号: H01L51/52 H01L33/52

    摘要: The invention relates to an organic electroluminescent device (1), which is easily connectable to a socket in a cost-effective and reliable way. The organic electroluminescent device (1) comprising an electroluminescent layer stack (3, 4, 5) on top of a substrate (2) and a cover lid (6) encapsulating the electroluminescent layer stack (3, 4, 5), wherein the cover lid (6) comprises a least one electrical feedthrough (61) to electrically contact the electroluminescent layer stack (3, 4, 5) and at least one fastening element (62), where the at least one fastening element (62) is arranged to fasten the organic electroluminescent device (1) to a housing (8) such that forces to a backside of the cover lid (6b) during fastening of the housing (8) are minimized.

    摘要翻译: 本发明涉及有机电致发光器件(1),其以成本有效且可靠的方式容易地连接到插座。 所述有机电致发光器件(1)包括在衬底(2)的顶部上的电致发光层堆叠(3,4,5)和封装所述电致发光层叠层(3,4,5)的盖盖(6),其中所述盖 盖(6)包括至少一个电馈通(61)以电接触电致发光层堆叠(3,4,5)和至少一个紧固元件(62),其中至少一个紧固元件(62)布置成 将有机电致发光器件(1)固定到壳体(8),使得在紧固壳体(8)期间到盖盖(6b)的后侧的力最小化。

    Multi-device OLED
    9.
    发明授权
    Multi-device OLED 有权
    多器件OLED

    公开(公告)号:US09240563B2

    公开(公告)日:2016-01-19

    申请号:US13877665

    申请日:2011-09-29

    摘要: The invention describes a multi-device OLED (1) comprising a device layer stack (100) comprising a bottom electrode (11), a top electrode (14), at least one inter electrode (13) and plurality of active layers (120, 121), wherein the bottom electrode (11) is applied to a substrate (10), and each active layer (120, 121) is enclosed between two electrodes (11, 13, 14); a current distribution means (500) comprising a current distribution layer (51, 53, 54) for each electrode (11, 13, 14) of the device layer stack (100); a plurality of openings (110, 130) extending from the top electrode (14) into the device layer stack (100), wherein each opening (110, 130) exposes a contact region (111, 131) of an electrode (11, 13); and a plurality of electrical connectors (41, 42), wherein an electrical connector (41, 42) extends into an opening (110, 130) to electrically connect the electrode (11, 13) exposed by that opening (110, 130) to the current distribution layer (53, 54) for that electrode (11, 13). The invention also describes a method of manufacturing such a multi-device OLED. The invention further describes a method of driving such a multi-device OLED, which method comprises applying a voltage across at least one pair (51, 53, 53, 54) of current distribution layers (51, 53, 54) of the current distribution means (500) to stimulate the corresponding active layer (120, 121) of a device of the multi-device OLED (1).

    摘要翻译: 本发明描述了一种多器件OLED(1),其包括包括底部电极(11),顶部电极(14),至少一个内部电极(13)和多个有源层(120)的器件层堆叠(100) 121),其中所述底部电极(11)被施加到基板(10),并且每个有源层(120,121)被包围在两个电极(11,13,14)之间; 电流分布装置(500),其包括用于装置层堆叠(100)的每个电极(11,13,14)的电流分布层(51,53,54); 从所述顶部电极(14)延伸到所述器件层叠层(100)中的多个开口(110,130),其中每个开口(110,130)暴露电极(11,13)的接触区域(111,131) ); 以及多个电连接器(41,42),其中电连接器(41,42)延伸到开口(110,130)中以将由该开口(110,130)暴露的电极(11,13)电连接到 用于该电极(11,13)的电流分布层(53,54)。 本发明还描述了制造这种多器件OLED的方法。 本发明还描述了一种驱动这种多器件OLED的方法,该方法包括在电流分布的电流分布层(51,53,54)的至少一对(51,53,53,54)上施加电压 用于刺激多器件OLED(1)的器件的相应有源层(120,121)的装置(500)。