Ionization vacuum gauge
    71.
    发明授权
    Ionization vacuum gauge 有权
    电离真空计

    公开(公告)号:US08169223B2

    公开(公告)日:2012-05-01

    申请号:US12387242

    申请日:2009-04-30

    IPC分类号: G01L21/30

    CPC分类号: G01L21/30

    摘要: An ionization vacuum gauge includes a cathode, an anode and an ion collector. The anode is surrounding the cathode. The ion collector is surrounding the anode. The cathode, the anode and the ion collector are concentrically aligned and arranged in that order. The anode comprises a carbon nanotube structure including a plurality of carbon nanotubes.

    摘要翻译: 电离真空计包括阴极,阳极和离子收集器。 阳极围绕阴极。 离子收集器围绕阳极。 阴极,阳极和离子收集器以同样的顺序排列和排列。 阳极包括包含多个碳纳米管的碳纳米管结构。

    Touch panel and display device using the same
    73.
    发明授权
    Touch panel and display device using the same 有权
    触摸面板和使用相同的显示设备

    公开(公告)号:US08115742B2

    公开(公告)日:2012-02-14

    申请号:US12286152

    申请日:2008-09-29

    IPC分类号: G09F3/041

    CPC分类号: G06F3/045

    摘要: A touch panel includes a first electrode plate and a second electrode plate separated from the first electrode plate. The first electrode plate includes a first substrate and a first conductive layer located on a lower surface of the first substrate. The second electrode plate includes a second substrate and a second conductive layer located on an upper surface of the second substrate. At least one of the first conductive layer and the second conductive layer includes at least two stacked carbon nanotube layers. Each carbon nanotube layer comprising a plurality of carbon nanotubes substantially aligned in a single direction. The carbon nanotubes in two adjacent carbon nanotube layers are substantially aligned along the same direction. A display device adopting the touch panel includes the touch panel and a display element.

    摘要翻译: 触摸面板包括与第一电极板分离的第一电极板和第二电极板。 第一电极板包括第一基板和位于第一基板的下表面上的第一导电层。 第二电极板包括第二基板和位于第二基板的上表面上的第二导电层。 第一导电层和第二导电层中的至少一个包括至少两个堆叠的碳纳米管层。 每个碳纳米管层包括基本上沿单一方向排列的多个碳纳米管。 两个相邻碳纳米管层中的碳纳米管沿着相同的方向基本上对齐。 采用触摸面板的显示装置包括触摸面板和显示元件。

    Field electron emission source having carbon nanotubes and method for manufacturing the same
    74.
    发明授权
    Field electron emission source having carbon nanotubes and method for manufacturing the same 有权
    具有碳纳米管的场致电子发射源及其制造方法

    公开(公告)号:US08072126B2

    公开(公告)日:2011-12-06

    申请号:US12220369

    申请日:2008-07-24

    IPC分类号: H01J9/02 H01J9/00

    摘要: An exemplary method for manufacturing a field electron emission source includes: providing a substrate (102); depositing a cathode layer (104) on a surface of the substrate; providing a carbon nanotube paste, coating the carbon nanotube paste on the cathode layer; calcining the carbon nanotube paste to form a carbon nanotube composite layer (110); and, irradiating the carbon nanotube composite layer with a laser beam of a certain power density, thereby achieving a field electron emission source.

    摘要翻译: 用于制造场电子发射源的示例性方法包括:提供衬底(102); 在衬底的表面上沉积阴极层(104); 提供碳纳米管浆料,将碳纳米管糊涂覆在阴极层上; 煅烧碳纳米管糊以形成碳纳米管复合层(110); 并用一定功率密度的激光束照射碳纳米管复合层,从而实现场电子发射源。

    Thermionic electron source
    76.
    发明授权
    Thermionic electron source 有权
    热电子源

    公开(公告)号:US07915797B2

    公开(公告)日:2011-03-29

    申请号:US12288865

    申请日:2008-10-23

    IPC分类号: H01J9/02

    摘要: A thermionic electron source includes a substrate, two electrodes, and a thermionic emitter. The thermionic emitter is electrically connected to the two electrodes. The substrate has a recess formed on a surface thereof, and the thermionic emitter is located on the surface of the substrate corresponding to the recess.

    摘要翻译: 热电子源包括衬底,两个电极和热离子发射器。 热电子发射器电连接到两个电极。 基板的表面形成有凹部,热离子发射体位于与凹部对应的基板的表面上。

    Method and apparatus for detecting polarizing direction of electromagnetic wave
    77.
    发明申请
    Method and apparatus for detecting polarizing direction of electromagnetic wave 有权
    用于检测电磁波偏振方向的方法和装置

    公开(公告)号:US20100296088A1

    公开(公告)日:2010-11-25

    申请号:US12590662

    申请日:2009-11-12

    IPC分类号: G01J3/42 G01J4/00

    CPC分类号: G01J4/00

    摘要: A method for detecting polarizing direction of electromagnetic wave includes disposing a carbon nanotube structure in a vacuum environment, irradiating a surface of the carbon nanotube structure by an electromagnetic wave with a polarizing direction while rotating the carbon nanotube structure, and determining the polarizing direction of the electromagnetic wave according to change of the visible light emitted from the carbon nanotube structure. The carbon nanotube structure includes a plurality of carbon nanotubes arranged along a substantially same direction. The carbon nanotube structure can absorb the electromagnetic wave and emit a visible light. The rotating axis is substantially perpendicular to the surface of the carbon nanotube structure irradiated by the electromagnetic wave.

    摘要翻译: 一种检测电磁波的偏振方向的方法包括在真空环境中设置碳纳米管结构,在旋转碳纳米管结构的同时,通过具有偏振方向的电磁波照射碳纳米管结构的表面,并且确定碳纳米管的偏振方向 根据从碳纳米管结构发射的可见光的变化的电磁波。 碳纳米管结构包括沿大致相同方向排列的多个碳纳米管。 碳纳米管结构可以吸收电磁波并发出可见光。 旋转轴基本上垂直于由电磁波照射的碳纳米管结构的表面。

    Field emission electron source having carbon nanotube and manufacturing method thereof
    78.
    发明授权
    Field emission electron source having carbon nanotube and manufacturing method thereof 有权
    具有碳纳米管的场发射电子源及其制造方法

    公开(公告)号:US07710008B2

    公开(公告)日:2010-05-04

    申请号:US11514595

    申请日:2006-09-01

    IPC分类号: H01J1/62

    摘要: A field emission electron source (10) includes a conductive base (12), a carbon nanotube (14), and a film of metal (16). The conductive base includes a top (122). One end (142) of the carbon nanotube is electrically connected with the top of the conductive base. The other end (144) of the carbon nanotube extends outwardly away from the top of the conductive base. The film of metal is formed on the nearly entire surface of the carbon nanotube and at least on the portion of the top of the conductive base proximate the carbon nanotube. A method for manufacturing the described field emission electron source is also provided.

    摘要翻译: 场发射电子源(10)包括导电基底(12),碳纳米管(14)和金属薄膜(16)。 导电基底包括顶部(122)。 碳纳米管的一端(142)与导电性基材的顶部电连接。 碳纳米管的另一端(144)向外远离导电基底的顶部。 金属膜形成在碳纳米管的几乎整个表面上,并且至少在靠近碳纳米管的导电基底顶部的部分上形成。 还提供了一种用于制造所述场致发射电子源的方法。