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    • 4. 发明授权
    • Field emission planar lighting lamp
    • 场发射平面照明灯
    • US08390186B2
    • 2013-03-05
    • US13064742
    • 2011-04-13
    • Tzung-Han YangChi-Tsung Lo
    • Tzung-Han YangChi-Tsung Lo
    • H01J1/62
    • H01J63/02H01J61/305
    • The present invention relates to a field emission planar lighting lamp, which comprises: a base substrate; cathodes disposed on the base substrate; anodes disposed on the base substrate, wherein the cathodes are disposed beside the anodes, each anode has an impacted surface corresponding to the cathodes, and the impacted surface is an inclined plane or a curved plane; a phosphor layer disposed on the impacted surface of the anode; and a front substrate corresponding to the base substrate, wherein the anodes and the cathodes are disposed between the base substrate and the front substrate.
    • 场致发射面照明灯技术领域本发明涉及场发射面照明灯,其包括:基底; 设置在基底基板上的阴极; 设置在基底基板上的阳极,其中阴极设置在阳极旁边,每个阳极具有对应于阴极的冲击表面,并且受冲击的表面是倾斜平面或弯曲平面; 设置在阳极的冲击表面上的荧光体层; 以及对应于基底基板的前基板,其中阳极和阴极设置在基底基板和前基板之间。
    • 5. 发明授权
    • Interwoven wire mesh microcavity plasma arrays
    • 交织丝网微腔等离子体阵列
    • US08362699B2
    • 2013-01-29
    • US12682973
    • 2008-10-27
    • J. Gary EdenSung-Jin ParkAndrew J. PriceJason D. ReadleClark J. Wagner
    • J. Gary EdenSung-Jin ParkAndrew J. PriceJason D. ReadleClark J. Wagner
    • H01J17/49H01J9/00
    • H01J17/49H01J61/06H01J61/305H01J61/52H01J61/82
    • Embodiments of the invention provide for large arrays of microcavity plasma devices that can be made inexpensively, and can produce large area but thin displays or lighting sources Interwoven metal wire mesh, such as interwoven Al mesh, consists of two sets of wires which are interwoven in such a way that the two wire sets cross each other, typically at πght angles (90 degrees) although other patterns are also available Fabrication is accomplished with a simple and inexpensive wet chemical etching process The wires in each set are spaced from one another such that the finished mesh forms an array of openings that can be, for example, square, rectangular or diamond-shaped The size of the openings or microcavities is a function of the diameter of the wires in the mesh and the spacing between the wires in the mesh used to form the array of microcavity plasma devices.
    • 本发明的实施例提供了可以廉价制造并且可以生产大面积但薄的显示器或照明源的微腔等离子体装置的大阵列。交织的金属丝网如交织的Al网由两组电线组成, 尽管其他图案也是可用的,这两种线组彼此交叉的方式,通常是直角(90度)通过简单和便宜的湿式化学蚀刻工艺完成。每组中的导线彼此间隔开,使得 完成的网格形成可以是例如正方形,矩形或菱形的开口阵列。开口或微腔的尺寸是网中线的直径和网中线之间的间距的函数 用于形成微腔等离子体装置阵列。
    • 9. 发明申请
    • LIGHTING DEVICE
    • 照明设备
    • US20110163686A1
    • 2011-07-07
    • US13002851
    • 2009-07-08
    • Tsutomu IchiharaTakashi Hatai
    • Tsutomu IchiharaTakashi Hatai
    • H05B37/02
    • H01J61/305H01J61/16H01J63/04H01J63/08
    • A lighting device comprising a hermetically sealed vessel having a light transmissive property, a gas filled in the hermetically sealed vessel and configured to emit a first light having wavelength when excited by electron, the wavelength of the first light has a range from vacuum ultraviolet to visual light, an electron source disposed within the hermetically sealed vessel, the electron source configured to emit the electron when an operation voltage is applied, anode electrode disposed within the hermetically sealed vessel, a phosphor configured to emit the second light when excited by the first light. The electron source is configured to emit the electron having energy distribution when the electron source receives the emission voltage. The energy distribution having a peak energy. The peak energy is higher than an excitation energy of the gas. The peak energy is lower than an ionization energy of the gas.
    • 一种照明装置,包括具有透光性的密封容器,填充在所述密封容器中的气体,并且被配置为发射由电子激发时具有波长的第一光,所述第一光的波长具有从真空紫外到视觉的范围 光,设置在密封容器内的电子源,被配置为当施加操作电压时发射电子的电子源,设置在密封容器内的阳极电极,被配置为当被第一光激发时发射第二光的荧光体 。 电子源被配置为当电子源接收发射电压时发射具有能量分布的电子。 能量分布具有峰值能量。 峰值能量高于气体的激发能。 峰值能量低于气体的电离能。