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    • 1. 发明申请
    • MULTI-DEVICE OLED
    • 多器件OLED
    • WO2012049580A1
    • 2012-04-19
    • PCT/IB2011/054292
    • 2011-09-29
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHWAB, HolgerVAN ELSBERGEN, VolkerBOERNER, Herbert, FriedrichRAASCH, DetlefHARTMANN, Sören
    • SCHWAB, HolgerVAN ELSBERGEN, VolkerBOERNER, Herbert, FriedrichRAASCH, DetlefHARTMANN, Sören
    • H01L27/32H01L51/52
    • H01L51/52H01L27/3209H01L51/5203H01L51/56
    • 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).
    • 本发明描述了一种多器件OLED(1),其包括包括底电极(11),顶电极(14),至少一个内电极(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); 从顶部电极(14)延伸到器件层叠层(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)。
    • 3. 发明申请
    • ORGANIC ELECTROLUMINESCENT DEVICE
    • 有机电致发光器件
    • WO2012025867A1
    • 2012-03-01
    • PCT/IB2011/053673
    • 2011-08-22
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHWAB, HolgerBOERNER, Herbert FriedrichVAN ELSBERGEN, VolkerRAASCH, DetlefHARTMANN, Soeren
    • SCHWAB, HolgerBOERNER, Herbert FriedrichVAN ELSBERGEN, VolkerRAASCH, DetlefHARTMANN, Soeren
    • H01L27/32
    • H01L51/56H01L27/3204H01L51/524H01L51/5243
    • The invention relates to OLED devices (1) operational at high voltages providing a good life time performance, which can be manufactured with reduced effort and costs. The organic electroluminescent device (1) comprising a substrate (2) carrying multiple electroluminescent layer stacks (3) connected in series each comprising a first and a second electrode (31, 33) and an organic light emitting layer stack (32) arranged between the first and second electrode (31, 33), a cover lid (4) sealed to the substrate (2) to encapsulate the electroluminescent layer stacks (3) providing a gap (5) between the electroluminescent layer stacks (3) and an inner side (41) of the cover lid (4), where the connection in series is established by connecting the first electrode (31) of at least one of the electroluminescent layer stacks (3) involved in the serial connection via a conductive bridge (6) to the second electrode (33) of another electroluminescent layer stack (3) involved in the serial connection, preferably the adjacent electroluminescent layer stack (3), where the conductive bridge (6) comprises an conductive path (62) arranged on the inner side (41) of the cover lid (4), a first electrical connection (61) connecting the first electrode (31) to the conductive path (62) and a second electrical connection (63) connecting the conductive path (62) with the second electrode (33) of the other electroluminescent layer stack (3), preferably the adjacent electroluminescent layer stack (3). The invention further relates to a method providing the organic electroluminescent device (1) with process steps leading to a reduced effort and costs.
    • 本发明涉及在高电压下工作的OLED器件(1),其提供良好的寿命性能,其可以以减少的努力和成本来制造。 有机电致发光器件(1)包括具有串联连接的多个电致发光层堆叠(3)的衬底(2),每个包括第一和第二电极(31,33)和有机发光层堆叠(32) 第一和第二电极(31,33),密封到基板(2)的盖盖(4),以封装在电致发光层堆叠(3)之间提供间隙(5)的电致发光层堆叠(3) (4)中的至少一个电致发光层堆叠(3)的第一电极(31)经由导电桥(6)连接而形成串联的连接, 涉及串联连接的另一电致发光层堆叠(3)的第二电极(33),优选地为相邻的电致发光层叠层(3),其中导电桥(6)包括布置在内侧的导电路径(62) (41) (4),将第一电极(31)连接到导电路径(62)的第一电连接(61)和将导电路径(62)与第二电极(33)连接的第二电连接(63) 另一个电致发光层堆叠(3),优选相邻的电致发光层叠层(3)。 本发明还涉及提供有机电致发光器件(1)的方法,其方法步骤减少了工作量和成本。
    • 5. 发明申请
    • SELF-ALIGNED COVERAGE OF OPAQUE CONDUCTIVE AREAS
    • OPAQUE导电区域的自对准覆盖
    • WO2012025847A1
    • 2012-03-01
    • PCT/IB2011/053382
    • 2011-07-29
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHHARTMANN, SörenRICKERS, ChristophBOERNER, Herbert, FriedrichLIFKA, HerbertSCHWAB, Holger
    • HARTMANN, SörenRICKERS, ChristophBOERNER, Herbert, FriedrichLIFKA, HerbertSCHWAB, Holger
    • H01L51/52
    • H01L21/707H01L51/00H01L51/5212
    • 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.
    • 本发明涉及一种能够应用便宜的制造技术来制造可靠和有力的有机薄膜器件(EL)的方法,该方法包括以下步骤:提供(P)至少部分被第一层堆叠覆盖的透明衬底(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) 至少完全覆盖所述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,通过所述透明基板(1)照射(IL)所述光致抗蚀剂层(4),所述光(5) 使光致抗蚀剂材料溶解在下面没有不透明导电区域(31,32)的光致抗蚀剂层(4)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),以重新流过光致抗蚀剂层(4)以覆盖第二不透明导电区域(32)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)光刻胶层(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)。
    • 6. 发明申请
    • METHOD FOR CREATING SERIAL CONNECTED OLED-DEVICES
    • 用于创建串联连接的OLED器件的方法
    • WO2011073856A1
    • 2011-06-23
    • PCT/IB2010/055665
    • 2010-12-08
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHWAB, Holger
    • SCHWAB, Holger
    • H01L51/52H01L51/56
    • H01L51/56H01L27/3204H01L2251/5361
    • By the invention it is proposed a method of preparing a serial connection of OLED-devices, comprising the steps of providing a carrier substrate; depositing a first electrode material layer on said carrier substrate; depositing a layer of an organic optoelectronic active material on said first electrode material layer; depositing a second electrode material layer on said organic optoelectronic active material layer; ablating at least the second electrode material layer and the organic optoelectronic active material layer at least in selected areas to build a trench forming separated OLED-devices on the carrier surface; electrically interconnecting neighboring OLED-devices by connecting the anode of a first OLED-device to the cathode of a neighboring second OLED-device, wherein in the steps of depositing the organic optoelectronic active material layer and the cathode layer, the carrier substrate surface is covered over its entire functional area with said layers, and wherein the electrical interconnection of the neighboring OLED-devices is performed by at least partially filling the trenches built in the ablating step with an electrical conductive material. Furthermore, an illuminant is provided comprising serial connected OLED-devices.
    • 通过本发明,提出了一种制备OLED器件的串行连接的方法,包括以下步骤:提供载体衬底; 在所述载体衬底上沉积第一电极材料层; 在所述第一电极材料层上沉积有机光电活性材料层; 在所述有机光电活性材料层上沉积第二电极材料层; 至少在选定的区域中至少烧蚀所述第二电极材料层和所述有机光电活性材料层,以在所述载体表面上建立形成分离的OLED器件的沟槽; 通过将第一OLED器件的阳极连接到相邻的第二OLED器件的阴极来电连接相邻的OLED器件,其中在沉积有机光电活性材料层和阴极层的步骤中,覆盖载体衬底表面 在其整个功能区域上具有所述层,并且其中相邻OLED器件的电互连通过用导电材料至少部分地填充在烧蚀步骤中内置的沟槽来进行。 此外,提供了包括串联连接的OLED器件的发光体。
    • 7. 发明申请
    • AN OLED DEVICE AND A METHOD OF MANUFACTURING THE SAME
    • 一种OLED器件及其制造方法
    • WO2012007893A1
    • 2012-01-19
    • PCT/IB2011/053071
    • 2011-07-11
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHWAB, Holger
    • SCHWAB, Holger
    • H01L51/52H01L51/00H05K3/04
    • H01L51/0022H01L51/0021H01L51/5203H01L51/5246H01L51/5253H01L2251/5361H05K3/28
    • The invention describes a method of manufacturing an OLED device (10), which method comprises applying a number of conductive strips (4) onto a substrate (1); depositing an organic layer (2) onto the substrate (1) within a region bounded by the conductive strips (4); applying a sealant onto the conductive strips (4) to encapsulate the OLED device (10); and depositing a conductive protective layer (6) at least partially onto each conductive strip (4) such that a surface of a conductive strip (4) external to the sealant is protected by the conductive protective layer (6). The invention also describes an OLED device (10) comprising a number of conductive strips (4) applied onto a substrate (1); an organic layer (2) deposited on the substrate (1) within a region bounded by the conductive strips (4); a conductive protective layer (6) deposited at least partially onto the conductive strips (4); and a sealant for encapsulating the OLED device (10), which sealant is applied to the conductive strips (4) such that a surface of the conductive strips (4) external to the sealant is protected by the conductive protective layer (6).
    • 本发明描述了一种制造OLED器件(10)的方法,该方法包括将多个导电条(4)施加到衬底(1)上; 在由所述导电条(4)限定的区域内将有机层(2)沉积到所述基板(1)上; 在所述导电条(4)上施加密封剂以封装所述OLED装置(10); 以及至少部分地将导电保护层(6)沉积到每个导电条(4)上,使得密封剂外部的导电条(4)的表面被导电保护层(6)保护。 本发明还描述了一种OLED器件(10),其包括施加到衬底(1)上的多个导电条(4); 在由导电条(4)限定的区域内沉积在基底(1)上的有机层(2); 至少部分地沉积到导电条(4)上的导电保护层(6); 以及用于封装所述OLED器件(10)的密封剂,所述密封剂施加到所述导电条(4),使得所述密封剂外部的所述导电条(4)的表面被所述导电保护层(6)保护。
    • 8. 发明申请
    • METHOD OF MANUFACTURING AN OLED DEVICE WITH SPATIALLY ISOLATED LIGHT-EMITTING AREAS
    • 制造具有空间隔离发光区域的OLED器件的方法
    • WO2011117771A1
    • 2011-09-29
    • PCT/IB2011/051053
    • 2011-03-14
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHWAB, Holger
    • SCHWAB, Holger
    • H01L51/52H01L51/00
    • H01L51/5203H01L27/3239H01L51/0022H01L51/5225H01L51/5234
    • The invention describes a method of forming spatially isolated light- emitting areas (R 1 , R 2 , R 3 ) on a common substrate (11) of an OLED device (1) comprising a plurality of device layers (12, 15, 16), which device layers (12, 15, 16) comprise an active layer (15) enclosed between a first electrode (12) and a second electrode (16), which method comprises the steps of applying an insulating bridge (20) between a contact pad (13) and the isolated region (R 1 , R 2 , R 3 ) of the second electrode (16); and subsequently applying a conductor (30) from a contact pad (13) to the isolated region (R 1 , R 2 , R 3 ) of the second electrode (16) to form an electrical connection between the contact pad (13) and the isolated region (R 1 , R 2 , R 3 ). The invention further describes an OLED device (1) comprising a number of spatially isolated light-emitting areas (R 1 , R 2 , R 3 ) on a common substrate (11), wherein a plurality of device layers (12, 15, 16) of the OLED device initially comprises an active layer (15) enclosed between a first electrode (12) and a second electrode (16), and wherein the OLED device (1) comprises at least one spatially and electrically isolated region (R 1 , R 2 , R 3 ) of the second electrode (16); an insulating bridge (20) applied between a contact pad (13) and the isolated region (R 1 , R 2 , R 3 ) of the second electrode (16); and a conductor (30) applied onto the insulating bridge (20) for electrically connecting the contact pad (13) and the isolated region (R 1 , R 2 , R 3 ) of the second electrode (16).
    • 本发明描述了在包括多个器件层(12,15,16)的OLED器件(1)的公共衬底(11)上形成空间隔离的发光区域(R1,R2,R3)的方法,该器件 层(12,15,16)包括封闭在第一电极(12)和第二电极(16)之间的有源层(15),该方法包括以下步骤:在接触焊盘(13) )和第二电极(16)的隔离区域(R1,R2,R3); 并且随后将来自接触焊盘(13)的导体(30)施加到所述第二电极(16)的隔离区域(R1,R2,R3),以在所述接触焊盘(13)和所述隔离区域(13)之间形成电连接 R1,R2,R3)。 本发明还描述了一种OLED器件(1),其在公共衬底(11)上包括多个空间隔离的发光区域(R1,R2,R3),其中多个器件层(12,15,16) OLED器件最初包括封闭在第一电极(12)和第二电极(16)之间的有源层(15),并且其中OLED器件(1)包括至少一个空间和电隔离区域(R1,R2,R3) 的第二电极(16); 施加在接触垫(13)和第二电极(16)的隔离区域(R1,R2,R3)之间的绝缘桥(20); 以及施加到所述绝缘桥(20)上以将所述接触焊盘(13)和所述第二电极(16)的隔离区域(R1,R2,R3)电连接的导体(30)。
    • 9. 发明申请
    • OLED DEVICE AND METHOD OF MANUFACTURING THE SAME
    • OLED器件及其制造方法
    • WO2011101766A1
    • 2011-08-25
    • PCT/IB2011/050481
    • 2011-02-04
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHWAB, Holger
    • SCHWAB, Holger
    • H01L51/52
    • H01L51/5228H01L51/5234H01L2251/5315H01L2251/5361
    • The invention describes an OLED device (1) comprising a carrier (10); a first electrode (11) applied onto the carrier (10); an active layer (12) applied onto the first electrode (11); a second electrode (13) applied onto the active layer (12); and a conductivity augmentation means (2) for essentially homogeneously distributing an electric potential over the area of the second electrode (13) during operation of the OLED device (1), which conductivity augmentation means (2) comprises at least one printed line (20, 21, 22) of electrically conductive material on an outer surface of the second electrode (13), and which conductivity augmentation means (2) is arranged to project outward from the second electrode (13). The invention further describes a method of manufacturing an OLED device (1), which method comprises applying a first electrode (11) to a carrier (10); applying an active layer (12) onto the first electrode (11); applying a second electrode (13) onto the active layer (12); and augmenting the electrical conductivity of the second electrode (13) by printing at least one line (20, 21, 22) of electrically conductive material on the outer surface of the second electrode (13) to essentially homogeneously distribute an electric potential over the area of the second electrode (13) during operation of the OLED device (1), which printed line (20, 21, 22) is realised to project outward from the second electrode (13).
    • 本发明描述了一种包括载体(10)的OLED装置(1)。 施加到载体(10)上的第一电极(11); 施加到所述第一电极(11)上的有源层(12); 施加到有源层(12)上的第二电极(13); 以及用于在OLED器件(1)的操作期间基本上均匀地分布在第二电极(13)的区域上的电位的电导率增强装置(2),该电导率增加装置(2)包括至少一条印刷线 ,21,22)在所述第二电极(13)的外表面上,并且所述导电性增加装置(2)被布置成从所述第二电极(13)向外突出。 本发明还描述了一种制造OLED器件(1)的方法,该方法包括将第一电极(11)施加到载体(10)上; 将活性层(12)施加到所述第一电极(11)上; 将第二电极(13)施加到所述有源层(12)上; 以及通过在所述第二电极(13)的外表面上印刷导电材料的至少一条线(20,21,22)来增加所述第二电极(13)的导电性,以在所述区域上基本均匀地分布电势 在所述OLED器件(1)的操作期间所述第二电极(13)的所述印刷线(20,21,22)被实现为从所述第二电极(13)向外突出。
    • 10. 发明申请
    • OPTOELECTRONIC DEVICE WITH VERTICAL CONNECTIONS
    • 具有垂直连接的光电器件
    • WO2011161610A2
    • 2011-12-29
    • PCT/IB2011/052678
    • 2011-06-20
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHWAB, Holger
    • SCHWAB, Holger
    • H01L51/52H01L27/32
    • H01L51/5203H01L27/3239H01L51/5212H01L51/524H01L2251/5361
    • The invention relates to an optoelectronic device (200) and a method for producing such a device, wherein said device may particularly be an Organic Light Emitting Diode (OLED). The device comprises a first electrode layer (202) on which at least one island (203, 206) is disposed. A functional layer (204) and a second electrode layer (205) cover the first electrode layer (202) and the island(s). Moreover, a cover (210) is disposed above the second electrode layer (205) such that conductors (212a, 212b) are located above the island(s) (203, 206). If an island (203) consists of an electrically conductive material, the second electrode layer (205) and the functional layer (204) are preferably removed at this island such that the conductor (212b) can electrically contact the island. Moreover, the conductor (212a) preferably contacts the second electrode layer (205) above electrically isolating islands (206).
    • 本发明涉及一种光电器件(200)及其制造方法,其中所述器件可特别地是有机发光二极管(OLED)。 该装置包括其上设置有至少一个岛(203,206)的第一电极层(202)。 功能层(204)和第二电极层(205)覆盖第一电极层(202)和岛。 此外,在第二电极层(205)的上方设置盖(210),使得导体(212a,212b)位于岛(203,206)上方。 如果岛(203)由导电材料组成,则优选在该岛处去除第二电极层(205)和功能层(204),使得导体(212b)可以电接触岛。 此外,导体(212a)优选地接触上述电隔离岛(206)的第二电极层(205)。