Method of forming field emission light emitting device including the formation of an emitter within a nanochannel in a dielectric matrix
    61.
    发明授权
    Method of forming field emission light emitting device including the formation of an emitter within a nanochannel in a dielectric matrix 有权
    形成场致发射发光器件的方法,包括在电介质基质中的纳米通道内形成发射极

    公开(公告)号:US08007333B2

    公开(公告)日:2011-08-30

    申请号:US12134361

    申请日:2008-06-06

    IPC分类号: H01J9/02 H01J9/00

    摘要: In accordance with the invention, there are field emission light emitting devices and methods of making them. The field emission light emitting device can include a plurality of spacers, each connecting a substantially transparent substrate to a backing substrate. The device can also include a plurality of pixels, wherein each of the plurality of pixels can include one or more first electrodes disposed over the substantially transparent substrate, a light emitting layer disposed over each of the one or more first electrodes, and one or more second electrodes disposed over the backing substrate, wherein the one or more second electrodes and the one or more first electrode are disposed at a predetermined gap in a low pressure region. Each of the plurality of pixels can further include one or more nanocylinder electron emitter arrays disposed over each of the one or more second electrodes.

    摘要翻译: 根据本发明,存在场发射发光器件及其制造方法。 场致发射发光器件可以包括多个间隔件,每个间隔件将基本透明的基板连接到背衬基板。 该装置还可以包括多个像素,其中多个像素中的每一个可以包括设置在基本上透明的基板上的一个或多个第一电极,设置在一个或多个第一电极的每一个上的发光层,以及一个或多个 设置在所述背衬基板上的第二电极,其中所述一个或多个第二电极和所述一个或多个第一电极以低压区域中的预定间隙设置。 多个像素中的每一个可以进一步包括设置在一个或多个第二电极中的每一个上的一个或多个纳米圆柱形电子发射器阵列。

    High performance materials and processes for manufacture of nanostructures for use in electron emitter ion and direct charging devices
    62.
    发明授权
    High performance materials and processes for manufacture of nanostructures for use in electron emitter ion and direct charging devices 失效
    用于制造用于电子发射体离子和直接充电装置的纳米结构的高性能材料和工艺

    公开(公告)号:US07995952B2

    公开(公告)日:2011-08-09

    申请号:US12042878

    申请日:2008-03-05

    IPC分类号: G03G21/16 H05B39/00 G09G3/10

    摘要: In accordance with the invention, there are electron emitters, charging devices, and methods of forming them. An electron emitter array can include a plurality of nanostructures, each of the plurality of nanostructures can include a first end and a second end, wherein the first end can be connected to a first electrode and the second end can be positioned to emit electrons, and wherein each of the plurality of nanostructures can be formed of one or more of oxidation resistant metals, doped metals, metal alloys, metal oxides, doped metal oxides, and ceramics. The electron emitter array can also include a second electrode in close proximity to the first electrode, wherein one or more of the plurality of nanostructures can emit electrons in a gas upon application of an electric field between the first electrode and the second electrode.

    摘要翻译: 根据本发明,存在电子发射器,充电装置及其形成方法。 电子发射器阵列可以包括多个纳米结构,多个纳米结构中的每一个可以包括第一端和第二端,其中第一端可以连接到第一电极,并且第二端可以被定位成发射电子,以及 其中所述多个纳米结构中的每一个可以由抗氧化金属,掺杂金属,金属合金,金属氧化物,掺杂金属氧化物和陶瓷中的一种或多种形成。 电子发射器阵列还可以包括紧邻第一电极的第二电极,其中在第一电极和第二电极之间施加电场时,多个纳米结构中的一个或多个可以在气体中发射电子。

    FIELD EMISSION LIGHT EMITTING DEVICE
    63.
    发明申请
    FIELD EMISSION LIGHT EMITTING DEVICE 有权
    场发射发光装置

    公开(公告)号:US20090302738A1

    公开(公告)日:2009-12-10

    申请号:US12134361

    申请日:2008-06-06

    IPC分类号: H01J1/62 H01J9/38

    摘要: In accordance with the invention, there are field emission light emitting devices and methods of making them. The field emission light emitting device can include a plurality of spacers, each connecting a substantially transparent substrate to a backing substrate. The device can also include a plurality of pixels, wherein each of the plurality of pixels can include one or more first electrodes disposed over the substantially transparent substrate, a light emitting layer disposed over each of the one or more first electrodes, and one or more second electrodes disposed over the backing substrate, wherein the one or more second electrodes and the one or more first electrode are disposed at a predetermined gap in a low pressure region. Each of the plurality of pixels can further include one or more nanocylinder electron emitter arrays disposed over each of the one or more second electrodes.

    摘要翻译: 根据本发明,存在场发射发光器件及其制造方法。 场致发射发光器件可以包括多个间隔件,每个间隔件将基本透明的基板连接到背衬基板。 该装置还可以包括多个像素,其中多个像素中的每一个可以包括设置在基本上透明的基板上的一个或多个第一电极,设置在一个或多个第一电极的每一个上的发光层,以及一个或多个 设置在所述背衬基板上的第二电极,其中所述一个或多个第二电极和所述一个或多个第一电极以低压区域中的预定间隙设置。 多个像素中的每一个可以进一步包括设置在一个或多个第二电极中的每一个上的一个或多个纳米圆柱形电子发射器阵列。

    FIELD EMISSION LIGHT EMITTING DEVICE
    64.
    发明申请
    FIELD EMISSION LIGHT EMITTING DEVICE 有权
    场发射发光装置

    公开(公告)号:US20090224680A1

    公开(公告)日:2009-09-10

    申请号:US12041870

    申请日:2008-03-04

    申请人: David H. Pan

    发明人: David H. Pan

    IPC分类号: G09G3/00 H01J1/62

    摘要: In accordance with the invention, there are nanoscale electron emitters, field emission light emitting devices, and methods of forming them. The nanoscale electron emitter can include a first electrode electrically connected to a first power supply and a second electrode electrically connected to a second power supply. The nanoscale electron emitter can also include a nanocylinder electron emitter array disposed over the second electrode, the nanocylinder electron emitter array having a plurality of nanocylinder electron emitters disposed in a dielectric matrix, wherein each of the plurality of nanocylinder electron emitters can include a first end connected to the second electrode and a second end positioned to emit electrons, the first end being opposite to the second end.

    摘要翻译: 根据本发明,存在纳米级电子发射体,场发射发光器件及其形成方法。 纳米级电子发射器可以包括电连接到第一电源的第一电极和与第二电源电连接的第二电极。 纳米级电子发射器还可以包括设置在第二电极上的纳米圆柱形电子发射体阵列,该纳米圆柱形电子发射器阵列具有设置在电介质矩阵中的多个纳米圆柱形电子发射体,其中多个纳米圆柱形电子发射体中的每一个可以包括第一端 连接到第二电极,第二端被定位成发射电子,第一端与第二端相对。

    Polyimide film substrate pre-heater assembly and a phase change ink imaging machine including same
    67.
    发明授权
    Polyimide film substrate pre-heater assembly and a phase change ink imaging machine including same 失效
    聚酰亚胺膜基板预热器组件和包括其的相变油墨成像机

    公开(公告)号:US06948806B2

    公开(公告)日:2005-09-27

    申请号:US10320821

    申请日:2002-12-16

    IPC分类号: B41J11/00 B41J2/175 B41J2/01

    CPC分类号: B41J11/002 B41J11/007

    摘要: A polyimide film substrate pre-heater assembly is provided for pre-heating substrates in an image producing machine and includes (a) plural rollers including a drive roller; (b) a substrate path defining and heating assembly for defining a portion of substrate path; and (c) a belt assembly including a polyimide film belt forming a loop. The loop forms a substrate transport nip against the substrate path defining and heating assembly. The polyimide film belt includes a polyimide film support layer, a puzzle cut seam having inter-fitting teeth and receptacle members, and a fluoroelastomeric overcoat layer for filling and strengthening the puzzle cut seam, thereby preventing the inter-fitting teeth and receptacle members thereof from popping up when the loop is driven over relatively small diameter rollers.

    摘要翻译: 提供一种用于在图像生成机中预热基板的聚酰亚胺膜基板预热器组件,并且包括(a)包括驱动辊的多个辊; (b)用于限定衬底路径的一部分的衬底路径限定和加热组件; 和(c)包括形成环的聚酰亚胺膜带的带组件。 环路形成衬底传送辊隙,抵靠衬底路径限定和加热组件。 聚酰亚胺膜带包括聚酰亚胺膜支撑层,具有相互嵌合的齿和插座构件的拼图切口,以及用于填充和加强拼图切割缝的氟弹性外涂层,从而防止其相互配合的齿和插座构件 当环路通过相对较小直径的滚筒驱动时弹起。

    Process for curing marking component with nano-size zinc oxide filler
    69.
    发明授权
    Process for curing marking component with nano-size zinc oxide filler 失效
    用纳米尺寸氧化锌填料固化标记组分的方法

    公开(公告)号:US06902269B2

    公开(公告)日:2005-06-07

    申请号:US10316213

    申请日:2002-12-09

    CPC分类号: B41M5/025 B41M5/0256 B41M5/06

    摘要: A process for providing a layer on a marking member by dissolving a fluoroelastomer; adding and reacting a nano-size zinc oxide and a crosslinking agent, to form a resulting homogeneous fluoroelastomer dispersion, wherein the nano-size zinc oxide has a particle size of from about 1 to about 250 nanometers; and subsequently providing at least one layer of the homogeneous fluoroelastomer dispersion to the marking member.

    摘要翻译: 一种通过溶解含氟弹性体在标记构件上提供层的方法; 加入和反应纳米尺寸的氧化锌和交联剂,以形成均匀的含氟弹性体分散体,其中纳米尺寸的氧化锌的粒度为约1至约250纳米; 并随后将至少一层均匀的含氟弹性体分散体提供给标记部件。