Organic light-emitting diode device

    公开(公告)号:US10147773B2

    公开(公告)日:2018-12-04

    申请号:US15548805

    申请日:2016-02-02

    Abstract: According to the present disclosure, an organic light-emitting diode device is disclosed with an organic light-emitting diode having a first main surface and a second main surface lying opposite the first main surface, an optically functional device having a first hollow space and a second hollow space, and a control element. The first hollow space is arranged on or over the first main surface, and the second hollow space is arranged below the second main surface. The first hollow space and the second hollow space are connected to one another by means of a fluid connection. An optically functional fluid is arranged in the optically functional device. The control element is configured to move the optically functional fluid to and fro between the first hollow space and the second hollow space.

    OPTOELECTRONIC COMPONENT DEVICE, METHOD FOR PRODUCING AN OPTOELECTRONIC COMPONENT DEVICE, AND METHOD FOR OPERATING AN OPTOELECTRONIC COMPONENT DEVICE
    15.
    发明申请
    OPTOELECTRONIC COMPONENT DEVICE, METHOD FOR PRODUCING AN OPTOELECTRONIC COMPONENT DEVICE, AND METHOD FOR OPERATING AN OPTOELECTRONIC COMPONENT DEVICE 审中-公开
    光电元件装置,用于制造光电元件装置的方法和操作光电元件装置的方法

    公开(公告)号:US20170047539A1

    公开(公告)日:2017-02-16

    申请号:US15305678

    申请日:2015-04-28

    CPC classification number: H01L51/529 H01L51/5237 H01L51/56 H05B33/0896

    Abstract: In various embodiments, an optoelectronic component device is provided. The optoelectronic component device may include a linear regulator designed for providing an electric current; an optoelectronic component formed for converting the electric current into an electromagnetic radiation; and an electrothermal transducer designed for converting the electric current into a temperature difference. The electrothermal transducer is thermally coupled to the optoelectronic component, and the optoelectronic component and the electrothermal transducer are electrically coupled in series with the linear regulator.

    Abstract translation: 在各种实施例中,提供了光电子部件装置。 光电子部件装置可以包括设计用于提供电流的线性稳压器; 形成用于将电流转换成电磁辐射的光电子部件; 以及设计用于将电流转换成温度差的电热换能器。 电热换能器热耦合到光电子部件,并且光电子部件和电热转换器与线性调节器串联电耦合。

    OPTOELECTRONIC COMPONENT, METHOD FOR PRODUCING AN OPTOELECTRONIC COMPONENT
    16.
    发明申请
    OPTOELECTRONIC COMPONENT, METHOD FOR PRODUCING AN OPTOELECTRONIC COMPONENT 有权
    光电子元件,生产光电元件的方法

    公开(公告)号:US20150333109A1

    公开(公告)日:2015-11-19

    申请号:US14712972

    申请日:2015-05-15

    Abstract: An optoelectronic component is provided. The optoelectronic component includes an electromagnetic radiation source including an optically active region designed for emitting a first electromagnetic radiation, and a converter structure, which includes at least one converter material and is arranged in the beam path of the first electromagnetic radiation. The at least one converter material is designed to convert at least one portion of the first electromagnetic radiation into at least one second electromagnetic radiation. The at least one second electromagnetic radiation has at least one different wavelength than the at least one portion of the first electromagnetic radiation. The converter structure is formed in a structured fashion in such a way that the converter structure has a predefined region, such that the at least one second electromagnetic radiation is emittable only from the predefined region. The predefined region has a smaller area than the optically active region.

    Abstract translation: 提供了光电子元件。 光电子部件包括电磁辐射源,该电磁辐射源包括被设计用于发射第一电磁辐射的光学有源区域,以及包括至少一个转换器材料并被布置在第一电磁辐射的光束路径中的转换器结构。 至少一个转换器材料被设计成将第一电磁辐射的至少一部分转换成至少一个第二电磁辐射。 至少一个第二电磁辐射具有至少一个不同于第一电磁辐射的至少一部分的波长。 转换器结构以这样的方式形成,使得转换器结构具有预定义的区域,使得至少一个第二电磁辐射仅能够从预定区域发射。 预定区域具有比光学活性区域更小的面积。

    Organic light-emitting component and lamp

    公开(公告)号:US10608197B2

    公开(公告)日:2020-03-31

    申请号:US15752570

    申请日:2016-08-24

    Abstract: The invention relates to an organic light-emitting component (100), comprising a functional layer stack (9) between two electrodes (1, 8), wherein the functional layer stack (9) has at least two organic light-emitting layers (2, 7) and at least one charge carrier generation zone (3), which is arranged between the two organic light-emitting layers (2, 7), wherein the charge carrier generation zone (3) comprises an electron-conducting organic layer (31) and a hole-conducting organic layer (32), between which an intermediate region (4) is arranged, wherein the intermediate region (4) comprises at least one organic intermediate layer (6) which has a first charge carrier transport mechanism and an inorganic intermediate layer (5) which has a second charge carrier transport mechanism, wherein the inorganic intermediate layer (5) is arranged between the organic intermediate layer (6) and the electron-conducting organic layer (31), and wherein the first charge carrier transport mechanism is at least partially different to the second charge carrier transport mechanism.

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