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    • 42. 发明申请
    • METHODS AND APPARATUS FOR ALIGNING A SET OF PATTERNS ON A SILICON SUBSTRATE
    • 用于对准硅基板上的一组图案的方法和装置
    • US20100136718A1
    • 2010-06-03
    • US12468540
    • 2009-05-19
    • Andreas MeiselMichael BurrowsHomer Antoniadis
    • Andreas MeiselMichael BurrowsHomer Antoniadis
    • H01L21/66B05C19/00
    • H01L31/1804H01L22/12H01L31/022425Y02E10/547Y02P70/521
    • A method of aligning a set of patterns on a substrate, the substrate including a substrate surface, is disclosed. The method includes depositing a set of silicon nanoparticles on the substrate surface, the set of nanoparticles including a set of ligand molecules including a set of carbon atoms, wherein a first set of regions is formed where the silicon nanoparticles are deposited and the remaining portions of the substrate surface define a second set of regions. The method also includes densifying the set of silicon nanoparticles into a thin film wherein a set of silicon-organic zones are formed on the substrate surface, wherein the first set of regions has a first reflectivity value and the second set of regions has a second reflectivity value. The method further includes illuminating the substrate surface with an illumination source, wherein the ratio of the second reflectivity value to the first reflectivity value is greater than about 1.1.
    • 公开了一种在衬底上对准一组图案的方法,该衬底包括衬底表面。 该方法包括在衬底表面上沉积一组硅纳米颗粒,所述纳米颗粒组包括一组包含一组碳原子的配体分子,其中形成第一组区域,其中沉积硅纳米颗粒,其余部分 衬底表面限定第二组区域。 所述方法还包括将所述一组硅纳米颗粒致密化成薄膜,其中在基底表面上形成一组硅 - 有机区,其中所述第一组区具有第一反射率值,并且所述第二组区具有第二反射率 值。 该方法还包括用照明源照射衬底表面,其中第二反射率值与第一反射率值的比值大于约1.1。
    • 43. 发明授权
    • Organic light emitting diode light source
    • 有机发光二极管光源
    • US07319440B2
    • 2008-01-15
    • US10687283
    • 2003-10-15
    • Homer AntoniadisKarl Pichler
    • Homer AntoniadisKarl Pichler
    • G09G3/12G09G3/10
    • H01L51/5203H01L27/3211H01L51/5212H01L51/5275H01L2251/5361H01L2251/558
    • A novel OLED light source and method for controlling said OLED light source panel are disclosed wherein said light source is constructed such that active areas are segmented and said segments are separately addressable. In one embodiment, the segments are a series of RGB lines or stripes and the control unit may separately drive each individual stripe or may drive all separate color lines or may drive separate lines within a given region on the panel. In another embodiment, the stripes of the panel are connected to control lines that are either current limited or have a fuse that serves to obviate a current runaway condition on the panel. In another embodiment, the output light chromaticity of the panel is controlled either by users or by light sensors.
    • 公开了一种用于控制所述OLED光源面板的新型OLED光源和方法,其中所述光源被构造成使得有源区域被分割并且所述段可分开地寻址。 在一个实施例中,段是一系列RGB线或条纹,并且控制单元可以单独地驱动每个单独的条纹,或者可以驱动所有单独的颜色线,或者可以在面板上的给定区域内驱动分开的线。 在另一个实施例中,面板的条纹连接到电流限制的控制线或具有用于消除面板上当前失控状况的保险丝。 在另一个实施例中,面板的输出光色度由用户或光传感器控制。
    • 45. 发明授权
    • Organic light emitting diode light source
    • 有机发光二极管光源
    • US06680578B2
    • 2004-01-20
    • US09955617
    • 2001-09-19
    • Homer AntoniadisKarl Pichler
    • Homer AntoniadisKarl Pichler
    • G09G310
    • H01L51/5203H01L27/3211H01L51/5212H01L51/5275H01L2251/5361H01L2251/558
    • A novel OLED light source and method for controlling said OLED light source panel are disclosed wherein said light source is constructed such that active areas are segmented and said segments are separately addressable. In one embodiment, the segments are a series of RGB lines or stripes and the control unit may separately drive each individual stripe or may drive all separate color lines or may drive separate lines within a given region on the panel. In another embodiment, the stripes of the panel are connected to control lines that are either current limited or have a fuse that serves to obviate a current runaway condition on the panel. In another embodiment, the output light chromaticity of the panel is controlled either by users or by light sensors.
    • 公开了一种用于控制所述OLED光源面板的新型OLED光源和方法,其中所述光源被构造成使得有源区域被分割并且所述段可分开地寻址。 在一个实施例中,段是一系列RGB线或条纹,并且控制单元可以单独地驱动每个单独的条纹,或者可以驱动所有单独的颜色线,或者可以在面板上的给定区域内驱动分开的线。 在另一个实施例中,面板的条纹连接到电流限制的控制线或具有用于消除面板上当前失控状况的保险丝。 在另一个实施例中,面板的输出光色度由用户或光传感器控制。
    • 46. 发明授权
    • Organic electroluminescent device
    • 有机电致发光器件
    • US06552488B1
    • 2003-04-22
    • US09382025
    • 1999-08-24
    • Daniel B. RoitmanJohn S. HargreavesHomer AntoniadisKaren L. Seaward
    • Daniel B. RoitmanJohn S. HargreavesHomer AntoniadisKaren L. Seaward
    • H05B3306
    • H01J37/32082H01L27/322H01L27/3244H01L51/5253H01L51/529H01L2251/5315
    • A color organic electroluminescent device includes color filters, light emitting layers and substrate integrated into a single assembly, with the light emitting layers lying between the substrate and the color filters. Unlike color electroluminescent devices where an image must be viewed through a transparent substrate, or where color filters are deposited upon another device and later combined with the assembly, the present disclosure calls for a transparent protective layer of silicon nitride or a similar material to be deposited over the light emitting layers to protect the light emitting layers from oxygen and moisture, and to serve as a platform for color filters. In order to achieve sufficient density in the protective layer and avoid defects, a cold plasma deposition or similar process is used for deposition of the protective layer. By viewing light through this protective layer instead of a substrate, nearly any substrate can be used.
    • 彩色有机电致发光器件包括滤色器,发光层和集成到单个组件中的衬底,其中发光层位于衬底和滤色器之间。 不同于彩色电致发光器件,其中必须通过透明衬底观察图像,或者滤色器沉积在另一器件上并且随后与组件结合在一起,本公开要求具有氮化硅的透明保护层或要沉积的类似材料 在发光层上,以保护发光层免受氧气和水分的影响,并且用作滤色器的平台。 为了在保护层中获得足够的密度并避免缺陷,使用冷等离子体沉积或类似的工艺来沉积保护层。 通过观察通过该保护层的光而不是基板,可以使用几乎任何基板。
    • 47. 发明授权
    • OLED display device and method for patterning cathodes of the device
    • OLED显示装置和用于图案化装置的阴极的方法
    • US06191433B1
    • 2001-02-20
    • US09528413
    • 2000-03-17
    • Daniel B. RoitmanHomer Antoniadis
    • Daniel B. RoitmanHomer Antoniadis
    • H01L3524
    • H01L27/3281H01L51/5221H01L2251/5315
    • An OLED display device and a method of fabricating the device utilize a patterned layer of conductive pads formed over a substrate to fabricate a cathode layer without the need to subsequently pattern the cathode layer to create individually addressable cathodes. The design of the OLED display device is such that the cathode layer is positioned below the anode layer. The OLED display device may be configured to emit light through the substrate or through the top layer, i.e., the anode layer. In a first embodiment, the conductive pads have sharp edges that effectively pattern the cathode layer when it is formed over the pads. In a second embodiment, the conductive pads do not include sharp edges. In this embodiment, the cathode layer is made of a composite material, which includes cathode components and non-conducting components. The composite material allows the resulting cathode layer to have the desired characteristics to effectively inject electrons vertically into the EL region of the device, while limiting lateral conduction between the conductive pads.
    • OLED显示装置和制造该器件的方法利用形成在衬底上的图形化的导电焊盘层以制造阴极层,而不需要随后对阴极层进行图案以产生可单独寻址的阴极。 OLED显示装置的设计使得阴极层位于阳极层下方。 OLED显示装置可以被配置为通过衬底或通过顶层即阳极层发光。 在第一实施例中,导电焊盘具有尖锐边缘,当阴极层形成在焊盘上时,其有效地图案化阴极层。 在第二实施例中,导电焊盘不包括锋利的边缘。 在该实施例中,阴极层由包括阴极部件和非导电部件的复合材料制成。 复合材料允许所得到的阴极层具有所需的特性,以有效地将电子垂直注入器件的EL区域,同时限制导电焊盘之间的横向传导。
    • 48. 发明授权
    • Electroluminescent display device
    • 电致发光显示装置
    • US5902688A
    • 1999-05-11
    • US687011
    • 1996-07-16
    • Homer AntoniadisSteven D. LesterJeffrey N. Miller
    • Homer AntoniadisSteven D. LesterJeffrey N. Miller
    • H01L51/52H05B33/10H05B33/22H05B33/26H05B33/00
    • H01L27/3239H01L51/5203H05B33/10H05B33/22H05B33/26Y10S428/917
    • This disclosure provides an electroluminescent ("EL") display device having anode, cathode, insulator and organic EL layers. The anode and cathode layers sandwich the other two layers, and the insulator layer is patterned to selectively block flow of current through the EL layers, and thereby locally block generation of light. The patterned insulator layer allows a single panel to display multiple visual attributes, yet does not require electrode patterning. The patterned insulator can be fabricated using photoresist exposure and development procedures. The photoresist is laid on top of a commercially available substrate/electrode layered pair, and is developed to create an assembly that can be completed in a single vacuum deposition process. By etching a small region of the electrode from the commercially available layered pair, and by choosing a deposition frame that blocks deposition on a second, different small region, electrical terminals may be coupled to the panel with a reduced risk of an electrical short.
    • 本公开提供了具有阳极,阴极,绝缘体和有机EL层的电致发光(“EL”)显示装置。 阳极和阴极层将其它两层夹在中间,并且对绝缘体层进行图案化以选择性地阻挡通过EL层的电流,从而局部地阻止光的产生。 图案化绝缘体层允许单个面板显示多个视觉属性,但不需要电极图案化。 可以使用光致抗蚀剂曝光和显影程序来制造图案化的绝缘体。 将光致抗蚀剂铺设在市售的基底/电极分层对的顶部,并且被开发以产生可以在单个真空沉积工艺中完成的组件。 通过从市售的分层对中蚀刻电极的小区域,并且通过选择在第二不同的小区域上阻挡沉积的沉积框架,电端子可以以降低的电气短路的风险耦合到面板。