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    • 11. 发明申请
    • PORTABLE DEVICE DISPLAY PRESENTING TWO AND THREE DIMENSIONAL IMAGES
    • 便携式设备显示两个和三维图像
    • US20100081477A1
    • 2010-04-01
    • US12241359
    • 2008-09-30
    • Bernard F. CollKenneth Dean
    • Bernard F. CollKenneth Dean
    • H04M1/00
    • G02B27/2214G02B27/26H04M1/0266
    • An electronic device (100, 400, 500) includes a display (116, 516) positioned within a housing (104, 504) for presenting two dimensional images. A cover (102, 502) is moveably mounted to the housing (104, 504) and capable of assuming an open position and a closed position. An optical element (120, 420, 520) is disposed within the cover (102, 502), wherein the display (116, 516) may be viewed directly when the cover (102, 502) is in the open position and wherein the display may be viewed through the optical element (120, 420, 520) when the cover (102, 502) is in the closed position, the optical element (120, 420, 520) giving the two dimensional images on the display (116, 516) a three dimensional appearance.
    • 电子设备(100,400,500)包括位于壳体(104,504)内用于呈现二维图像的显示器(116,516)。 盖(102,502)可移动地安装到壳体(104,504)并且能够承受打开位置和关闭位置。 光学元件(120,420,520)设置在盖(102,502)内,其中当盖(102,502)处于打开位置时,可以直接观察显示器(116,516),并且其中显示器 当盖(102,502)处于关闭位置时,可以通过光学元件(120,420,520)观察,在显示器(116,516)上给出二维图像的光学元件(120,420,520) )三维外观。
    • 12. 发明授权
    • Emitting device having electron emitting nanostructures and method of operation
    • 具有电子发射纳米结构的发光装置及其操作方法
    • US07501750B2
    • 2009-03-10
    • US11142053
    • 2005-05-31
    • Bernard F. CollKenneth A. DeanYi Wei
    • Bernard F. CollKenneth A. DeanYi Wei
    • H01J63/04H01J19/06
    • H01J29/481B82Y10/00H01J29/04H01J2201/30469H01J2329/00Y10S977/742
    • An emission device is provided for extracting electrons onto an anode of a visual display. The emission device (10) includes a conductivity limited material (18) positioned between first and second electrodes (14, 16) and having a surface (26). A plurality of catalytic nanoparticles (22) are distributed throughout the conductivity limited material (18), wherein some of the catalytic particles (22) are contiguous to the surface (26). A plurality of nanostructures (24), such as carbon nanotubes, are grown from the catalytic nanoparticles (22) contiguous to the surface (26). A voltage is applied across the conductivity limited material (18) having a plurality of catalytic particles (22) embedded therein, thereby causing the electrons to tunnel between the catalytic particles (22). An anode (28) is spaced apart from the nanostructures (24) for extracting and receiving electrons emitted from the nanostructures (24) when a first potential is applied across the first and second electrodes (14, 16) and a second potential is applied to the anode (28).
    • 提供了用于将电子提取到视觉显示器的阳极上的发射装置。 发射装置(10)包括位于第一和第二电极(14,16)之间并具有表面(26)的导电性限制材料(18)。 多个催化纳米颗粒(22)分布在整个导电性限制材料(18)中,其中一些催化颗粒(22)与表面(26)邻接。 从与表面(26)相邻的催化纳米颗粒(22)生长多个纳米结构(24),例如碳纳米管。 跨越具有嵌入其中的多个催化颗粒(22)的导电性限制材料(18)施加电压,从而使电子在催化剂颗粒(22)之间隧穿。 当跨越第一和第二电极(14,16)施加第一电位时,阳极(28)与纳米结构(24)间隔开,用于提取和接收从纳米结构(24)发射的电子,并且将第二电位施加到 阳极(28)。
    • 13. 发明授权
    • Field emission display
    • 场发射显示
    • US07271532B2
    • 2007-09-18
    • US11082715
    • 2005-03-16
    • Kenneth A. DeanBernard F. CollEmmett M. Howard
    • Kenneth A. DeanBernard F. CollEmmett M. Howard
    • H01J1/62
    • H01J29/08H01J31/127
    • An apparatus is provided for reducing color bleed in a flat panel display. The apparatus comprises an anode (30) with a plurality of phosphors (28) of at least two colors sequentially disposed thereon. A cathode (14) is arranged in parallel opposed position to and separated from the anode (30) and contains a plurality of pads (40) of emitters. Each pad (40) is disposed on the cathode (14) in spaced relationship to and aligned with one of the at least two colors, respectively, wherein electrons from each of the plurality of pads of emitters that drift from its intended phosphor (28) are encouraged to drift toward an adjacent phosphor (28) of the same color.
    • 提供一种用于减少平板显示器中的颜色渗色的装置。 该装置包括具有顺序地设置在其上的至少两种颜色的多个荧光体(28)的阳极(30)。 阴极(14)被布置成与阳极(30)相对并且与阳极(30)分离并且包含多个发射器的焊盘(40)。 每个焊盘(40)分别与阴极(14)隔开关系并且与至少两种颜色中的一种对准配置,其中来自发射器的多个焊盘中的每一个的电子从其预期的荧光体(28)漂移, 被鼓励漂移到相同颜色的相邻磷光体(28)。
    • 17. 发明授权
    • Field emission device and method for the conditioning thereof
    • 场致发射装置及其调理方法
    • US06573642B1
    • 2003-06-03
    • US09491357
    • 2000-01-26
    • Paul VonAllmenBernard F. CollAlbert Alec Talin
    • Paul VonAllmenBernard F. CollAlbert Alec Talin
    • H01J1304
    • H01J1/3044H01J2201/30426
    • A field emission device (100) includes an electron emitter structure (105) having a deuteride layer (108), which defines a surface (109) of electron emitter structure (105). Deuteride layer (108) is disposed upon an electron emitter (106), which is made from a metal. Deuteride layer (108) is a deuteride of the metal from which electron emitter (106) is made. A method for conditioning field emission device (100) includes the step of providing a contaminated cathode structure (137), which has a contaminated emitter structure (138). The method further includes the step of causing deuterium to react with a metal oxide layer (140) of emitter structure (138), so that the deuterium replaces the oxygen of metal oxide layer (140).
    • 场发射器件(100)包括具有限定电子发射器结构(105)的表面(109)的氘化层(108)的电子发射器结构(105)。 氘化层(108)设置在由金属制成的电子发射器(106)上。 氘化层(108)是制造电子发射体(106)的金属的氘化物。一种用于调节场发射装置(100)的方法包括提供污染的阴极结构(137)的步骤,该污染阴极结构具有污染的发射体结构 (138)。 该方法还包括使氘与发射极结构(138)的金属氧化物层(140)反应的步骤,使得氘代替金属氧化物层(140)的氧。
    • 19. 发明授权
    • Plasma enhancement apparatus and method for physical vapor deposition
    • 用于物理气相沉积的等离子体增强装置和方法
    • US6139964A
    • 2000-10-31
    • US468781
    • 1995-06-06
    • Paul E. SathrumBernard F. Coll
    • Paul E. SathrumBernard F. Coll
    • C23C14/32C23C16/27C23C16/50H01J37/08H01J37/32B05D3/06
    • H01J37/32055C23C14/325H01J37/32623H01J37/3266Y10T428/265Y10T428/30
    • The present invention provides a plasma enhancement method and apparatus for electric arc vapor deposition. The plasma enhancement apparatus is positioned to act upon plasma generated from a plasma source before the plasma reaches a substrate to be coated by the plasma. The plasma enhancement apparatus includes a magnet disposed about a magnet axis and defining a first aperture, and a core member disposed about a core member axis and at least partially nested within the first aperture. The core member defines a second aperture, and the plasma enhancement apparatus is arranged and configured in such a manner that the evaporated cathode source material passes from the cathode source and through the second aperture toward the substrate to be coated by the evaporated cathode source material. The plasma is favorably conditioned as it passes through the plasma enhancement apparatus.
    • 本发明提供了一种用于电弧气相沉积的等离子体增强方法和装置。 等离子体增强装置被定位成在等离子体到达待被等离子体涂覆的基板之前,作用于从等离子体源产生的等离子体。 等离子体增强装置包括围绕磁体轴设置并限定第一孔的磁体和围绕芯构件轴设置并且至少部分嵌套在第一孔内的芯构件。 芯构件限定第二孔,并且等离子体增强装置被布置和配置为使得蒸发的阴极源材料从阴极源通过并通过第二孔朝向待蒸发的阴极源材料涂覆的衬底。 当等离子体通过等离子体增强装置时,等离子体被有利地调节。