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    • 1. 发明申请
    • RADIATION-EMITTING PANELS AND DISPLAY ASSEMBLIES
    • 辐射面板和显示组件
    • WO1990009676A1
    • 1990-08-23
    • PCT/GB1990000075
    • 1990-01-18
    • SMITHS INDUSTRIES PUBLIC LIMITED COMPANYFOX, Neil, Anthony
    • SMITHS INDUSTRIES PUBLIC LIMITED COMPANY
    • H01J61/33
    • H01J61/32F21V5/02
    • A flat, light-emitting discharge panel, such as for back lighting displays (40) has two parallel, transparent glass plates (1 and 2) which are spaced by rows of pyramid-shape pillars (10). The pillars (10) are formed integrally with both plates (1 and 2) and are aligned with and contact each other. The space between the two plates (1 and 2) contains a discharge gas at reduced pressure, the inner surface of the plates and the surface of the pillars (10) being coated with a phosphor which emits light on discharge in the panel. The outer surface of one plate (2) has a reflector (6) which reflects emitted light through the panel to the display (40). The pillars (10) have angled surfaces which reflect light out of the panel and which act as light guides.
    • 诸如用于背光照明显示器(40)的平坦的发光放电面板具有两排平行的,透明的玻璃板(1和2),它们被排成棱锥形的柱(10)间隔开。 支柱(10)与两个板(1和2)一体地形成并且彼此对齐并彼此接触。 两个板(1和2)之间的空间包含减压的排出气体,板的内表面和柱(10)的表面涂覆有在面板中放电时发光的磷光体。 一个板(2)的外表面具有反射器(6),其将发射的光通过面板反射到显示器(40)。 支柱(10)具有成角度的表面,其将光从面板反射并用作光导。
    • 2. 发明申请
    • FIELD EMITTER DEVICE
    • 现场发射装置
    • WO2005022579A1
    • 2005-03-10
    • PCT/GB2004/003696
    • 2004-08-27
    • UNIVERSITY OF BRISTOLFOX, Neil
    • FOX, Neil
    • H01J9/02
    • H01J9/025H01J1/3048
    • An electron emitter including a high work function metal (18) encapsulating a metal-doped, nanocrystalline diamond particle layer (14) in contact with a planar surface of a low workfunction metal cathode (12), and a method of fabrication of the same is disclosed. The method may include formulating the conductive nanodiamond powder with a metallic solution, containing the high workfunction metal, and disposing it on the metal cathode (12) to form a composite material layer containing surface areas exhibiting low electron affinity. The resulting cold cathode structure has a low extraction field needed for efficient emission, a means to limit the emission current per unit area, and a reduced emission sensitivity to surface adsorption/desorption effects.
    • 一种包括高功函数金属(18)的电子发射体及其制造方法,该高功函数金属(18)封装与低功函数金属阴极(12)的平面相接触的金属掺杂的纳米晶金刚石颗粒层(14) 披露。 该方法可以包括用含有高功函数金属的金属溶液配制导电纳米金刚石粉末,并将其置于金属阴极(12)上以形成含有表现出低电子亲和力的表面区域的复合材料层。 所得的冷阴极结构具有有效发射所需的低提取场,限制每单位面积的发射电流的手段,以及降低对表面吸附/解吸效应的发射灵敏度。
    • 4. 发明申请
    • ENERGY CONVERSION DEVICES
    • 能量转换装置
    • WO2009004345A2
    • 2009-01-08
    • PCT/GB2008002289
    • 2008-07-03
    • UNIV BRISTOLFOX NEILFUGE GARETHFURKERT SUZANNE
    • FOX NEILFUGE GARETHFURKERT SUZANNE
    • H01J1/14H01J1/148H01J9/042H01J45/00H01J2201/196
    • An energy conversion device comprises a thermionic emitter (10) for emitting electrons therefrom when exposed to a radiation source, the emitter comprising a substrate (11 ), a metallic layer (12), carried by the substrate (11 ), and a nanoparticle layer (13) containing lithium-processed diamond nanoparticles, the nanoparticle layer (13) being in electrical contact with the metallic layer (12), a collector (20), spaced apart from the thermionic emitter (10), and arranged for collecting electrons emitted by the thermionic emitter (10), and first and second electrical connections (50), arranged to be in electrical contact with the metallic layer (12) of the emitter (10) and the collector (20) respectively.
    • 一种能量转换装置包括用于当暴露于辐射源时从其发射电子的热离子发射体(10),该发射体包括衬底(11),由衬底(11)承载的金属层(12)以及纳米颗粒层 (13),所述纳米颗粒层(13)与所述金属层(12)电接触;集电器(20),与所述热电子发射器(10)间隔开,并且布置成用于收集发射的电子 通过热电子发射体(10)以及第一和第二电连接(50),其被布置成分别与发射体(10)和收集体(20)的金属层(12)电接触。