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    • 156. 发明授权
    • Superimposed displays
    • 叠加显示
    • US08334819B2
    • 2012-12-18
    • US12583511
    • 2009-08-20
    • W. Daniel HillisNathan P. MyhrvoldClarence T. TegreeneLowell L. Wood, Jr.
    • W. Daniel HillisNathan P. MyhrvoldClarence T. TegreeneLowell L. Wood, Jr.
    • G09G5/00
    • G09F9/302G09G3/20G09G3/2085G09G3/2088G09G2300/0452G09G2330/10G09G2380/02H01L27/32H01L51/5262
    • Various embodiments of methods and systems for constructing and configuring displays constructed from superimposed display subunits are disclosed. A display may be formed by superimposing two display subunits including multiple display elements or pixels which emit or otherwise modulate light. Display subunits may be optically superimposed with an optical system such that a light emitting element in the first subunit is superimposed with a corresponding light emitting element in the second subunit that emits light in a like wavelength band. A method of producing a display may include superimposing first and second display subunits to form a superimposed display area, controlling the first display subunit to produce a first light pattern; and controlling the second display subunit to produce a second light pattern that when superimposed with the first light pattern produces a desired light pattern.
    • 公开了用于构建和配置由叠加的显示子单元构成的显示的方法和系统的各种实施例。 可以通过叠加包括发出或以其他方式调制光的多个显示元件或像素的两个显示子单元来形成显示。 显示子单元可以与光学系统光学叠加,使得第一子单元中的发光元件与发射相同波长带的光的第二子单元中的相应发光元件叠加。 制作显示器的方法可以包括叠加第一和第二显示子单元以形成叠加的显示区域,控制第一显示子单元以产生第一光图案; 以及控制所述第二显示子单元以产生当与所述第一光图案重叠时产生期望的光图案的第二光图案。
    • 158. 发明授权
    • Radiation-emitting arrangement
    • 辐射发射布置
    • US08314541B2
    • 2012-11-20
    • US12919752
    • 2009-02-25
    • Erwin LangMarkus KleinMartin WittmannDirk BeckerThomas DobbertinArndt JaegerKarsten Diekmann
    • Erwin LangMarkus KleinMartin WittmannDirk BeckerThomas DobbertinArndt JaegerKarsten Diekmann
    • H01J1/62
    • H01L51/0096H01L51/5262Y02E10/549
    • A radiation-emitting arrangement comprises, in particular, a carrier element (1) having an at least partly non-transparent main surface (10) and arranged on the carrier element (1), an organic radiation-emitting component (2) having an organic layer sequence (23) with an active region between an at least partly transparent first electrode (21) and an at least partly transparent second electrode (22). The active region (29) is suitable for generating electromagnetic radiation (91, 93) in a switched-on operating state. The radiation-emitting arrangement has a radiation exit area (3) for emitting the electromagnetic radiation (92, 93) on that side of the organic radiation-emitting component (2) which faces away from the carrier element. (1) The at least partly non-transparent main surface (10) of the carrier element (1) is perceptible by an external observer through the radiation exit area (3) in a switched-off operating state of the organic radiation-emitting component (2).
    • 辐射发射装置特别包括具有至少部分不透明的主表面(10)并布置在载体元件(1)上的载体元件(1),有机辐射发射部件(2)具有 有机层序列(23),其具有在至少部分透明的第一电极(21)和至少部分透明的第二电极(22)之间的有源区。 有源区域(29)适于在接通操作状态下产生电磁辐射(91,93)。 辐射发射装置具有辐射出射区域(3),用于发射远离载体元件的有机辐射发射部件(2)的该侧上的电磁辐射(92,93)。 (1)载体元件(1)的至少部分不透明的主表面(10)在有机辐射发射部件的关闭操作状态下可由外部观察者通过辐射出射区域(3)感知 (2)。
    • 159. 发明授权
    • Light emitting display
    • 发光显示
    • US08274218B1
    • 2012-09-25
    • US13472863
    • 2012-05-16
    • Masaya AdachiToshihiro SatoNaoki Tokuda
    • Masaya AdachiToshihiro SatoNaoki Tokuda
    • H01J1/62
    • H01L51/5262H01L27/3211H01L27/3244H01L27/3248H01L2251/5315H01L2251/558
    • A color light emitting display includes light-emitting devices constituting a plurality of red, green and blue pixels disposed in a matrix form on a substrate, said light-emitting display takes out light from a side of said light-emitting devices opposite to said substrate on which said light-emitting devices are formed, and wherein when a wavelength of the light having an interference intensity of which with respect to the light emitted from an emissive layer constituting said light-emitting device becomes a maximum value at 0 degree of a viewing angle is λimax, and a wavelength of the light becomes a maximum in a light intensity of the light emitted from said emissive layer is λemax, a relationship of λemax−50 nm≦λimax
    • 彩色发光显示器包括构成以矩阵形式设置在基板上的多个红色,绿色和蓝色像素的发光器件,所述发光显示器从与所述基板相对的所述发光元件的一侧取出光 其上形成有所述发光装置,并且其中当相对于构成所述发光装置的发光层发射的光的干涉强度的光的波长在0度时成为最大值 角度为λimax,并且从所述发射层发射的光的光强度中的光的波长变为最大值为λemax,满足λemax-50nm&lt; lE;λimax<λemax的关系。