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公开(公告)号:US10529955B2
公开(公告)日:2020-01-07
申请号:US15874745
申请日:2018-01-18
申请人: OSRAM OLED GmbH
IPC分类号: H01L51/56 , H01L51/42 , H01L51/00 , H01L51/50 , H01L21/02 , H01L27/32 , H01L27/30 , H01L51/52
摘要: A method for producing an organic electronic device is disclosed. In an embodiment the method includes applying an organic material to a substrate to form at least one organic functional layer, applying a patterned electrode material to the at least one organic functional layer by a first mask, and removing the organic material from regions which are free of the electrode material.
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公开(公告)号:US20180374910A1
公开(公告)日:2018-12-27
申请号:US15747087
申请日:2016-07-22
申请人: OSRAM OLED GmbH
发明人: Daniel Riedel , Carola Diez , Arne Fleissner , Ulrich Niedermeier , Dominik Pentlehner , Andreas Rausch , Nina Riegel , Johannes Rosenberger , Thomas Wehlus
CPC分类号: H01L27/3225 , H01L51/5056 , H01L51/5072 , H01L51/529 , H01L2251/50 , H05B33/0896
摘要: The invention relates to an optoelectronic component, the optoelectronic component comprises a light-emitting layer stack, and an electrothermal protection element, which is connected to the layer stack in the component and has a temperature-dependent resistor.
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公开(公告)号:US10141535B2
公开(公告)日:2018-11-27
申请号:US15326503
申请日:2015-07-16
申请人: OSRAM OLED GmbH
摘要: An optoelectronic component may include a first electrode having one outer electrode segment formed at a lateral edge of the first electrode, and one inner electrode segment formed apart from the lateral edge of the first electrode, an electrically conductive current distribution structure formed above the first electrode and having one outer substructure extending over the outer electrode segment, and one inner substructure extending over the inner electrode segment and electrically insulated from the outer substructure, one current lead extending from the lateral edge of the first electrode toward the inner substructure, electrically coupled to the inner substructure, electrically insulated from the outer substructure and which structure corresponds to the current distribution structure, an insulation structure, which covers the current distribution structure and the current lead, an organic functional layer structure, and a second electrode above the organic functional layer structure.
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公开(公告)号:US20180205041A1
公开(公告)日:2018-07-19
申请号:US15874745
申请日:2018-01-18
申请人: OSRAM OLED GmbH
摘要: A method for producing an organic electronic device is disclosed. In an embodiment the method includes applying an organic material to a substrate to form at least one organic functional layer, applying a patterned electrode material to the at least one organic functional layer by a first mask, and removing the organic material from regions which are free of the electrode material.
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公开(公告)号:US20180083222A1
公开(公告)日:2018-03-22
申请号:US15558593
申请日:2016-03-15
申请人: OSRAM OLED GmbH
发明人: Thomas Wehlus , Nina Riegel , Erwin Lang , Evelyn Trummer-Sailer , Arne Fleissner , Daniel Riedel , Johannes Rosenberger , Silke Scharner
CPC分类号: H01L51/5253 , H01L27/3213 , H01L51/0097 , H01L51/5203 , H01L51/56 , H01L2251/5361 , Y02E10/549 , Y02P70/521
摘要: According to the present disclosure, a method for producing an optoelectronic component is provided. The method includes forming an optically functional layer structure in accordance with at least one part of a geometric network of a body, and bending the part of the geometric network in the at least one desired bending region, such that at least one part of the body is formed. The part of the geometric network includes at least one desired bending region.
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公开(公告)号:US09832838B2
公开(公告)日:2017-11-28
申请号:US15326502
申请日:2015-07-02
申请人: OSRAM OLED GmbH
发明人: Arne Fleissner , Daniel Riedel , Nina Riegel , Silke Scharner , Johannes Rosenberger , Thomas Wehlus
CPC分类号: H05B33/0896 , H01L27/3202 , H01L27/3276 , H01L51/0031 , H05B33/089 , H05B33/0893
摘要: In various embodiments, an optoelectronic assembly may include at least one organic light emitting diode including a first light emitting diode element and a second light emitting diode element, and an electronic circuit. The first light emitting diode element and the second light emitting diode element are electrically connected in parallel and are deposited monolithically on a common substrate, and the electronic circuit is designed to compare an electric current through the first light emitting diode element that flows during operation with an electric current through the second light emitting diode element that flows during operation and, depending on the comparison, to detect a short circuit of the first light emitting diode element or of the second light emitting diode element and to initiate an electrical switching off of one of the light emitting diode elements and/or of the assembly.
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公开(公告)号:US20160233455A1
公开(公告)日:2016-08-11
申请号:US15022992
申请日:2014-09-18
申请人: OSRAM OLED GMBH
发明人: Daniel Riedel , Johannes Rosenberger , Thomas Wehlus , Nina Riegel , Silke Scharner , Arne Fleissner
CPC分类号: H01L51/5268 , H01L22/20 , H01L51/441 , H01L51/5203 , H01L51/5246 , H01L51/5253 , H01L51/5281 , H01L51/56 , H01L2251/308 , H01L2251/5361
摘要: Various embodiments may relate to a component. The component includes an optically active region designed for electrically controllably transmitting, reflecting, absorbing, emitting and/or converting an electromagnetic radiation, and an optically inactive region formed alongside the optically active region, wherein the optically inactive region and/or the optically active region have/has an adaptation structure designed to adapt the value of an optical variable in the optically inactive region to a value of the optical variable in the optically active region.
摘要翻译: 各种实施例可以涉及组件。 该组件包括设计用于电可控地透射,反射,吸收,发射和/或转换电磁辐射的光学活性区域,以及沿着光学活性区域形成的光学无效区域,其中光学无活性区域和/或光学活性区域 具有/具有被设计成使光学无效区域中的光学变量的值适应于光学活性区域中的光学变量的值的适配结构。
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公开(公告)号:US10333089B2
公开(公告)日:2019-06-25
申请号:US15030360
申请日:2014-10-14
申请人: OSRAM OLED GmbH
摘要: Disclosed is an organic light-emitting, component which comprises a substrate, a first electrode on the substrate, a first organic functional layer stack on the first electrode, a charge carrier-generating layer stack on the first organic functional layer stack, a second organic functional layer stack on the charge carrier-generating layer stack, and a second electrode on the second organic functional layer stack. The charge carrier-generating layer stack comprises at least one hole-transporting layer, one electron-transporting layer and one intermediate layer, wherein the at least one intermediate layer comprises a naphthalocyanine derivative.
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9.
公开(公告)号:US20180198087A1
公开(公告)日:2018-07-12
申请号:US15741515
申请日:2016-06-22
申请人: OSRAM OLED GmbH
CPC分类号: H01L51/5237 , H01L51/448 , H01L51/5084 , H01L51/5212 , H01L51/56 , H01L2251/301 , H01L2251/5361
摘要: An organic light-emitting component may include: a substrate, a first electrode arranged over the substrate, at least one organic functional layer stack configured to emit radiation and arranged over the first electrode, at least one conductive current spreading structure which is arranged on the first electrode and faces the at least one organic functional layer stack, and a second electrode arranged over the at least one organic functional layer stack. The at least one conductive current spreading structure may comprise at least one metal, and may be covered with an inorganic passivation layer. The inorganic passivation layer may comprise a sulfide, a selenide and/or a telluride of the at least one metal. The inorganic passivation layer may be an n-type or p-type semiconductor, such that no current flows between the least one conductive current spreading structure and the at least one organic functional layer stack via the inorganic passivation layer.
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10.
公开(公告)号:US20170346033A1
公开(公告)日:2017-11-30
申请号:US15603526
申请日:2017-05-24
申请人: OSRAM OLED GmbH
CPC分类号: H01L51/5203 , H01L51/441 , H01L51/448 , H01L51/5237 , H01L51/56 , Y02E10/549 , Y02P70/521
摘要: A method of producing an organic optoelectronic component includes: forming a first electrode layer comprising a contact region, arranging an electrically conductive contact lug on the first electrode layer. A first section of the contact lug is secured in the contact region on the first electrode layer such that a second section projects beyond the contact region. The method further includes forming an organic functional layer structure laterally alongside the contact lug on the first electrode layer, forming a second electrode on the organic functional layer structure, forming an encapsulation layer such that it extends over the second electrode and over the first section, and severing the first electrode layer and the encapsulation layer in the region of the lug such that subsequently the first section is arranged between the contact region and the encapsulation layer and the second section projects between the encapsulation layer and the first electrode layer.
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