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    • 1. 发明授权
    • Organic light emitting device lighting panel
    • 有机发光装置照明面板
    • US08564001B2
    • 2013-10-22
    • US13110298
    • 2011-05-18
    • Michael HackJulia J. BrownPeter LevermoreMichael S. Weaver
    • Michael HackJulia J. BrownPeter LevermoreMichael S. Weaver
    • H01L33/50H01L21/00
    • H01L51/5016H01L51/5036H01L51/529H01L2251/5361
    • A first device that may include one or more organic light emitting devices. At least 65 percent of the photons emitted by the organic light emitting devices are emitted from an organic phosphorescent emitting material. An outcoupling enhancer is optically coupled to each organic light emitting device. In one embodiment, the light panel is not attached to a heat management structure. In one embodiment, the light panel is capable of exhibiting less than a 10 degree C. rise in junction temperature when operated at a luminous emittance of 9,000 lm/m2 without the use of heat management structures, regardless of whether the light panel is actually attached to a heat management structure or not. The light panel may be attached to a heat management structure. The light panel may be not attached to a heat management structure.
    • 可以包括一个或多个有机发光器件的第一器件。 由有机发光器件发射的至少65%的光子从有机磷光发射材料发射。 外耦合增强器光耦合到每个有机发光器件。 在一个实施例中,灯板不附接到热管理结构。 在一个实施例中,当以9,000lm / m 2的发光度操作时,光板能够表现出低于10℃的结温上升,而不使用热管理结构,而不管灯板是否实际附着 到热管理结构。 灯板可以附接到热管理结构。 灯板可以不附接到热管理结构。
    • 2. 发明授权
    • OLED display architecture
    • OLED显示架构
    • US08334545B2
    • 2012-12-18
    • US12852999
    • 2010-08-09
    • Peter LevermoreMichael S. Weaver
    • Peter LevermoreMichael S. Weaver
    • H01L29/18H01L33/00
    • H01L27/3213H01L51/0085H01L51/5016H01L51/5265
    • A quad pixel device is provided. Each pixel is an organic light emitting device (OLED), such that there is a first, second, third and fourth OLED. Each of the first, second, third and fourth OLEDs independently has a first electrode and a second electrode. Each OLED also independently has an organic emissive stack having an emitting material, disposed between the first and second electrodes; a first organic stack disposed between and in contact with the first electrode and the emissive stack; and a second organic stack disposed between and in contact with the second electrode and the emissive layer. The organic emissive stack of the first OLED, the organic emissive stack of the second OLED, the organic emissive stack of the third OLED, and the organic emissive stack of the fourth OLED each have different emissive spectra. The first organic stack of the first OLED, the first organic stack of the second OLED, and the first organic stack of the third OLED are different from each other in materials or thickness, or both. The first organic stack of the third OLED and the first organic stack of the fourth OLED are the same.
    • 提供四像素装置。 每个像素是有机发光器件(OLED),使得存在第一,第二,第三和第四OLED。 第一,第二,第三和第四OLED中的每一个独立地具有第一电极和第二电极。 每个OLED还独立地具有设置在第一和第二电极之间的具有发射材料的有机发射堆叠; 布置在第一电极和发射叠层之间并与之接触的第一有机叠层; 以及设置在第二电极和发射层之间并与第二电极和发射层接触的第二有机叠层。 第一OLED的有机发射堆叠,第二OLED的有机发射堆叠,第三OLED的有机发射堆叠以及第四OLED的有机发射堆叠各自具有不同的发射光谱。 第一OLED的第一有机堆叠,第二OLED的第一有机堆叠和第三OLED的第一有机堆叠在材料或厚度上彼此不同,或两者不同。 第三OLED的第一有机堆叠和第四OLED的第一有机堆叠是相同的。
    • 5. 发明申请
    • NOVEL OLED DISPLAY ARCHITECTURE
    • 新型OLED显示架构
    • US20110233528A1
    • 2011-09-29
    • US12852999
    • 2010-08-09
    • Peter LevermoreMichael S. Weaver
    • Peter LevermoreMichael S. Weaver
    • H01L51/52H01L51/56
    • H01L27/3213H01L51/0085H01L51/5016H01L51/5265
    • A quad pixel device is provided. Each pixel is an organic light emitting device (OLED), such that there is a first, second, third and fourth OLED. Each of the first, second, third and fourth OLEDs independently has a first electrode and a second electrode. Each OLED also independently has an organic emissive stack having an emitting material, disposed between the first and second electrodes; a first organic stack disposed between and in contact with the first electrode and the emissive stack; and a second organic stack disposed between and in contact with the second electrode and the emissive layer. The organic emissive stack of the first OLED, the organic emissive stack of the second OLED, the organic emissive stack of the third OLED, and the organic emissive stack of the fourth OLED each have different emissive spectra. The first organic stack of the first OLED, the first organic stack of the second OLED, and the first organic stack of the third OLED are different from each other in materials or thickness, or both. The first organic stack of the third OLED and the first organic stack of the fourth OLED are the same.
    • 提供四像素装置。 每个像素是有机发光器件(OLED),使得存在第一,第二,第三和第四OLED。 第一,第二,第三和第四OLED中的每一个独立地具有第一电极和第二电极。 每个OLED还独立地具有设置在第一和第二电极之间的具有发射材料的有机发射堆叠; 布置在第一电极和发射叠层之间并与之接触的第一有机叠层; 以及设置在第二电极和发射层之间并与第二电极和发射层接触的第二有机叠层。 第一OLED的有机发射堆叠,第二OLED的有机发射堆叠,第三OLED的有机发射堆叠以及第四OLED的有机发射堆叠各自具有不同的发射光谱。 第一OLED的第一有机堆叠,第二OLED的第一有机堆叠和第三OLED的第一有机堆叠在材料或厚度上彼此不同,或两者不同。 第三OLED的第一有机堆叠和第四OLED的第一有机堆叠是相同的。
    • 10. 发明申请
    • Method for Accelerated Lifetesting of Large Area OLED Lighting Panels
    • 大面积OLED照明板加速生产方法
    • US20120235701A1
    • 2012-09-20
    • US13047221
    • 2011-03-14
    • Peter LevermoreHuiqing PangLech MichalskiMike Weaver
    • Peter LevermoreHuiqing PangLech MichalskiMike Weaver
    • G01R31/26
    • H01L51/0031G09G3/006G09G3/3208G09G2320/029G09G2320/043H01L51/504
    • A method for accelerated life testing of organic devices, and in particular large area organic emissive devices, is provided. The first method comprises obtaining one or more individual organic emissive devices, each having a first organic stack comprising one or more organic layers. The lifetime of each of the one or more individual organic emissive devices is measured at one or more temperatures at a non-heating current density. Based upon the measured lifetimes at the non-heating current density of the one or more devices, the device lifetime is determined for a selected luminance. An organic emissive panel is also obtained having a second organic stack that consists essentially of the one or more organic layers of the first organic stack. The junction temperature of the organic emissive panel is then determined at a heating current density. Based upon the junction temperature and the device lifetime of the one or more individual organic emissive devices at the selected luminance, the expected lifetime of the organic emissive panel is then determined at the heating current density.
    • 提供了一种用于有机器件,特别是大面积有机发射器件的加速寿命测试的方法。 第一种方法包括获得一个或多个单独的有机发射器件,每个器件具有包含一个或多个有机层的第一有机堆叠。 在一个或多个温度下以非加热电流密度测量一个或多个单个有机发射器件中的每一个的寿命。 基于在一个或多个器件的非加热电流密度下的测量寿命,针对所选择的亮度确定器件寿命。 还获得了具有基本上由第一有机叠层的一个或多个有机层组成的第二有机叠层的有机发光面板。 然后在加热电流密度下确定有机发射面板的结温。 基于所选亮度下的一个或多个单个有机发射装置的结温和器件寿命,然后在加热电流密度下确定有机发射面板的预期寿命。