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    • 1. 发明申请
    • Feedback and coupling structures and methods
    • 反馈和耦合结构和方法
    • US20050104075A1
    • 2005-05-19
    • US10918463
    • 2004-08-16
    • Allan EvansGene Koch
    • Allan EvansGene Koch
    • H01L33/00H01L51/52H01S5/042H01S5/12H01S5/187H01S5/36H01L29/16H01L27/15
    • H01S5/36H01L51/5262H01L51/5268H01L51/5275H01S3/1686H01S5/0424H01S5/1215H01S5/18H01S5/187H01S5/2004H01S5/2027
    • A light emitting device may include a light emitting layer including an organic semiconductor material with a liquid crystalline structure, one or more feedback structures, and a coupling structure. The one or more feedback structures may cause light emitted by the light emitting layer to be fed back through it along an axis in the plane of the device, thereby promoting the stimulated emission of light in the light emitting layer. The coupling structure couples some fraction of the feedback light out of the device. The coupled light may be emitted along an axis substantially normal to the plane of the device or at predetermined angles. The coupling and feedback structures may have a corrugated structure, a continuous variation of refractive index along an axis in the device plane, a period refractive index, or any combination thereof. The coupling and feedback structures may be separate, share common portion or combined together.
    • 发光器件可以包括包括具有液晶结构的有机半导体材料,一个或多个反馈结构和耦合结构的发光层。 一个或多个反馈结构可以使得发光层发出的光沿着装置的平面中的轴线被反馈通过,由此促进受激发光的发光层中的光。 耦合结构将反馈光的一部分耦合到器件外。 耦合的光可以沿着基本上垂直于装置的平面的轴或者以预定角度发射。 耦合和反馈结构可以具有波纹结构,沿着器件平面中的轴的折射率的连续变化,周期折射率或其任何组合。 耦合和反馈结构可以是分开的,共享公共部分或组合在一起。
    • 8. 发明授权
    • Color display device and method
    • 彩色显示装置及方法
    • US07440044B2
    • 2008-10-21
    • US10997994
    • 2004-11-29
    • Charles M. PetersonGene KochSanji ArisawaYuichi Aoki
    • Charles M. PetersonGene KochSanji ArisawaYuichi Aoki
    • G02F1/1335
    • G02F1/133617G02F1/13362
    • A color display having a monochromatic light source, an optical switch and an array of pixels formed of anisotropically emitting photoluminescent material may be combined such that large losses often associated with color filter and polarizers are avoided such that a high efficient display results. The optical switch may be a liquid crystal device that is tuned to the wavelength of the monochromatic light source. The monochromatic light source may be made from OLED material that emits in the violet, near UV or blue spectrum and may be polarized. The array of pixels may include a transmissive pixel when the backlight spectrum is the same as the color of one of the pixels.
    • 可以组合具有单色光源,光开关和由各向异性发射的光致发光材料形成的像素阵列的彩色显示器,从而避免通常与滤色器和偏振器相关联的大损耗,从而导致高效显示。 光开关可以是被调谐到单色光源的波长的液晶器件。 单色光源可以由在紫色,接近UV或蓝色光谱中发射并且可以被极化的OLED材料制成。 当背光光谱与像素之一的颜色相同时,像素阵列可以包括透射像素。
    • 10. 发明申请
    • Projection system and method
    • 投影系统和方法
    • US20060114419A1
    • 2006-06-01
    • US10997999
    • 2004-11-29
    • Charles PetersonGene Koch
    • Charles PetersonGene Koch
    • G03B21/14
    • G02B5/201G03B21/10G03B21/204G03B21/60H04N9/3129H04N9/3141
    • A micromechanical mirror combined with a photoluminescent screen is able to efficiently use light from the light source. In such a device, the light source produces light that is directed onto the micromechanical mirror. The micromechanical mirror then selectively reflects the light onto a photoluminescent screen. The light excites the photoluminescent screen to produce the desired picture. The photoluminescent screen may include sets of pixels that convert light from the light source to provide the desired picture. Typically, each pixel set includes a red, green and blue portion although any suitable combination of colors and number of pixels may be used. Each pixel set portion converts the light received from the light source into its respective color by photoluminescence. Alternatively, the photoluminescent screen may include transparent and/or scattering portions instead of photoluminescent portions of a certain color when the light source has a spectrum which is limited to one color.
    • 与光致发光屏组合的微机械镜能够有效地使用来自光源的光。 在这种装置中,光源产生被引导到微机械反射镜上的光。 微机械镜然后选择性地将光反射到光致发光屏幕上。 光激发光致发光屏以产生所需的图像。 光致发光屏幕可以包括转换来自光源的光以提供所需图像的像素组。 通常,每个像素组包括红色,绿色和蓝色部分,尽管可以使用颜色和像素数量的任何合适的组合。 每个像素组部分通过光致发光将从光源接收的光转换成其相应的颜色。 或者,当光源具有限于一种颜色的光谱时,光致发光屏可以包括透明和/或散射部分而不是特定颜色的光致发光部分。