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    • 1. 发明申请
    • ORGANIC ELECTRONIC DEVICE HAVING LOW BACKGROUND LUMINESCENCE
    • 具有低背景发光的有机电子器件
    • WO2005027237A3
    • 2005-10-13
    • PCT/US2004028166
    • 2004-08-27
    • DU PONTYU GANGSUN RUNGUANGWANG JIAN
    • YU GANGSUN RUNGUANGWANG JIAN
    • H01L51/52H01L51/20
    • H01L51/5262H01L51/5215H01L51/5284
    • An organic electronic device has an improved contrast ratio by lowering background luminescence from ambient radiation source(s). Background luminescence may be lowered by increasing absorption of ambient radiation, by reducing reflection of ambient radiation, or a combination of the two. Lower background luminescence can be achieved by using one or more black layers or lattices that are incorporated within the organic electronic device. Also, a large number of materials can be used for high absorbance layers. A change in materials for the electronic device may not be needed, and therefore, new material compatibility issues may not arise. Further, from an electronic performance standpoint, some layers may not be too sensitive to thickness and a plurality of narrow ranges of thicknesses may be used for a layer to allow a layer to have the proper electrical and optical properties. The embodiments obviate the need for a circular polarizer.
    • 有机电子器件通过降低来自周围辐射源的背景发光而具有改善的对比度。 背景发光可以通过增加环境辐射的吸收,通过减少环境辐射的反射或两者的组合来降低。 可以通过使用结合在有机电子器件内的一个或多个黑色层或晶格来实现较低的背景发光。 而且,大量材料可用于高吸收率层。 电子设备材料的变化可能不需要,因此可能不会出现新的材料兼容性问题。 此外,从电子性能的观点来看,一些层可能对厚度不太敏感,并且多个窄范围的厚度可以用于层以允许层具有适当的电学和光学性质。 实施例避免了对圆形偏振器的需要。
    • 2. 发明申请
    • ARRAY COMPRISING ORGANIC ELECTRONIC DEVICES WITH A BLACK LATTICE AND PROCESS FOR FORMING THE SAME
    • 包含黑色有机电子器件的阵列及其形成方法
    • WO2004107469A2
    • 2004-12-09
    • PCT/US2004015522
    • 2004-05-14
    • DU PONTYU GANGSUN RUNGUANGWANG JIAN
    • YU GANGSUN RUNGUANGWANG JIAN
    • H01L51/00H01L51/52H05B33/00
    • H01L51/5284
    • An array of electronic devices has an improved contrast ratio by lowering background luminescence from ambient radiation source(s). Background luminescence may be lowered by using a black lattice by itself of in combination with a black layer used between openings in the black lattice. The black lattice, black layer, or both may be achieved by using a high absorbance material, a low reflectivity layer, or a combination of the two. The low reflectivity layer may be designed by optimizing the thickness or materials at the interfaces of the layer to reduce reflectivity. A combination of the black lattice and a black layer within at least one set of the electrodes may provide very low background luminescence while still maintaining a good ratio of on ON luminescence versus off OFF luminescence.
    • 通过降低来自环境辐射源的背景发光,电子装置阵列具有改善的对比度。 通过使用黑色晶格本身与黑色晶格中的开口之间使用的黑色层组合,可以降低背景发光。 黑色格子,黑色层或两者都可以通过使用高吸光度材料,低反射率层或两者的组合来实现。 可以通过优化层的界面处的厚度或材料来降低反射率来设计低反射率层。 至少一组电极中的黑色晶格和黑色层的组合可以提供非常低的背景发光,同时仍然保持ON导通与截止关闭发光的良好比率。
    • 3. 发明申请
    • ELECTRONIC DEVICE HAVING A MIRROR STACK
    • 具有镜架的电子设备
    • WO2006073908A2
    • 2006-07-13
    • PCT/US2005046911
    • 2005-12-21
    • DU PONTWANG JIANYU GANG
    • WANG JIANYU GANG
    • H01L51/5265H01L27/302H01L27/3211H01L27/3241
    • In one embodiment, an electronic device is provided, and methods for making the same, as well as devices and sub-assemblies including the same. For example, such an electronic device may include a first electronic component designed to be photoactive to a first radiation having a first wavelength, a second electronic component designed to be photoactive to a second radiation having a second wavelength, a first mirror stack adjacent to the first and second electronic components, where the first mirror stack includes a first pair of layers designed to reflect the first radiation and a second mirror stack adjacent to the first and second electronic components, where the second mirror stack includes a second pair of layers designed to reflect the second radiation.
    • 在一个实施例中,提供了一种电子设备,以及用于制造该电子设备的方法,以及包括该电子设备的设备和子组件。 例如,这样的电子设备可以包括被设计为对具有第一波长的第一辐射具有光活性的第一电子部件,被设计为对具有第二波长的第二辐射具有光活性的第二电子部件,与 第一和第二电子部件,其中第一反射镜叠层包括设计成反射第一辐射的第一对层和邻近第一和第二电子部件的第二反射镜堆叠,其中第二反射镜堆叠包括第二对层,设计成 反映第二次辐射。