Field emission cathode and planar light source using the same
    11.
    发明授权
    Field emission cathode and planar light source using the same 有权
    场发射阴极和平面光源使用相同

    公开(公告)号:US07812513B2

    公开(公告)日:2010-10-12

    申请号:US11438010

    申请日:2006-05-19

    Abstract: An exemplary field emission cathode includes an electrically conductive layer and an electron-emitting member formed thereon. The electron-emitting member includes an electron-emitting material configured for emitting electrons and a getter material configured for collecting outgassed materials. An exemplary planar light source includes an anode and a cathode spaced apart from the anode. The anode includes a first electrically conductive layer and a fluorescent layer formed on an inner surface of the first electrically conductive layer. The cathode includes a second electrically conductive layer and an electron-emitting member formed on an inner surface of the second electrically conductive layer which faces toward the fluorescent layer. The electron-emitting member includes an electron-emitting material and a getter material.

    Abstract translation: 示例性场致发射阴极包括形成在其上的导电层和电子发射构件。 电子发射部件包括被配置为发射电子的电子发射材料和构造成用于收集排气的吸气材料。 示例性的平面光源包括与阳极间隔开的阳极和阴极。 阳极包括第一导电层和形成在第一导电层的内表面上的荧光层。 阴极包括形成在第二导电层的面向荧光层的内表面上的第二导电层和电子发射元件。 电子发射部件包括电子发射材料和吸气材料。

    Sputter ion pump
    12.
    发明申请

    公开(公告)号:US20100247333A1

    公开(公告)日:2010-09-30

    申请号:US11478421

    申请日:2006-06-28

    CPC classification number: F04B37/02 F04B37/14 H01J41/20

    Abstract: A sputter ion pump includes one vacuum chamber, two parallel anode poles and one cold cathode electron emitter. The vacuum chamber includes at least one aperture located in an outer wall thereof. The two parallel anode poles are positioned in the vacuum chamber and arranged in a symmetrical configuration about a center axis of the vacuum chamber. The cold cathode electron emission device is located on or proximate the outer wall of the vacuum chamber and faces a corresponding aperture. The cold cathode electron emission device is thus configured for injecting electrons through the corresponding aperture and into the vacuum chamber. The sputter ion pump produces a saddle-shaped electrostatic field and is free of a magnetic field. The sputter ion pump has a simplified structure and a low power consumption.

    Field emission lamp
    13.
    发明授权
    Field emission lamp 有权
    场发射灯

    公开(公告)号:US07750549B2

    公开(公告)日:2010-07-06

    申请号:US11169137

    申请日:2005-06-28

    CPC classification number: B82Y10/00 H01J63/06

    Abstract: A field emission lamp (30) includes a tube (31) having a closed end and an open end, an encapsulation board (38) mated with the open end, an anode layer (32) formed on an inner surface, a fluorescence layer (33) formed on the anode layer, a cathode down-lead pole (342) located at the encapsulation board, a cathode fixing pole (341) located at the closed end, a cathode filament (34) having a carbon nanotube layer formed on a surface thereof fixed between the cathode down-lead pole and the cathode fixing pole, an anode down-lead ring (321) located at the anode layer near the open end, and an anode down-lead pole (322) located at the encapsulation board and electrically connected with the anode down-lead ring. The field emission lamp has a simple structure, thereby having an enhanced production rate and a reduced cost.

    Abstract translation: 场致发射灯30包括具有封闭端和开口端的管31,与开口端配合的封装基板38,形成于内表面的阳极层32,荧光层 33),位于封装基板上的阴极引线极(342),位于封闭端的阴极固定极(341),阴极灯丝(34),其形成在阳极层上 其表面固定在阴极引线极和阴极固定极之间,阳极下引线环(321)位于靠近开口端的阳极层处,阳极下引线极(322)位于封装板 并与阳极引线环电连接。 场致发射灯具有简单的结构,从而具有提高的生产率和降低的成本。

    Flat panel display having non-evaporable getter material
    14.
    发明授权
    Flat panel display having non-evaporable getter material 有权
    具有非蒸发性吸气材料的平板显示器

    公开(公告)号:US07745995B2

    公开(公告)日:2010-06-29

    申请号:US11432745

    申请日:2006-05-10

    Abstract: A flat panel display (7) generally includes a front substrate (79) and a rear substrate (70) opposite thereto. The front substrate is formed with an anode (78). The rear substrate is formed with a cathode (71) facing the anode. Several sidewalls (72) are interposed between the front substrate and the rear substrate. A plurality of getter devices (82) are arranged on the front substrate. Thereby, a chamber between the front substrate and the rear substrate is maintained as a low-pressure vacuum. Each of the getter devices includes a base (820), a getter layer (822) comprised of non-evaporable getter material formed thereon, and securing wires (84) arranged on the base.

    Abstract translation: 平板显示器(7)通常包括与其相对的前基板(79)和后基板(70)。 前基板由阳极(78)形成。 后基板形成有面向阳极的阴极(71)。 几个侧壁(72)插入在前基板和后基板之间。 多个吸气装置(82)布置在前基板上。 由此,将前基板和后基板之间的室保持为低压真空。 每个吸气装置包括基部(820),由其上形成的不可蒸发的吸气剂材料构成的吸气剂层(822)和布置在基座上的固定电线(84)。

    Anode structure for field emission display
    16.
    发明申请
    Anode structure for field emission display 审中-公开
    用于场发射显示的阳极结构

    公开(公告)号:US20070075622A1

    公开(公告)日:2007-04-05

    申请号:US11309334

    申请日:2006-07-27

    CPC classification number: H01J29/94 H01J31/127

    Abstract: An anode structure (110) for a field emission display (100) includes a front substrate (111), an anode electrode (112) formed on the front substrate, a phosphor layer (113) formed on the anode electrode and a getter material (114). The phosphor layer has a plurality of separated phosphor strips (1131, 1132, 1133) each configured for emitting light of a respective single color. The getter material is arranged between adjacent phosphor strips thereof.

    Abstract translation: 用于场发射显示器(100)的阳极结构(110)包括前基板(111),形成在前基板上的阳极电极(112),形成在阳极电极上的荧光体层(113)和吸气材料 114)。 荧光体层具有多个分离的荧光条(1131,1132,1133),每个被配置用于发射各自的单色光。 吸气材料布置在其相邻的磷光体条之间。

    Flat panel display having non-evaporable getter material
    17.
    发明申请
    Flat panel display having non-evaporable getter material 有权
    具有非蒸发性吸气材料的平板显示器

    公开(公告)号:US20060279197A1

    公开(公告)日:2006-12-14

    申请号:US11432745

    申请日:2006-05-10

    Abstract: A flat panel display (7) generally includes a front substrate (79) and a rear substrate (70) opposite thereto. The front substrate is formed with an anode (78). The rear substrate is formed with a cathode (71) facing the anode. Several sidewalls (72) are interposed between the front substrate and the rear substrate. A plurality of getter devices (82) are arranged on the front substrate. Thereby, a chamber between the front substrate and the rear substrate is maintained as a low-pressure vacuum. Each of the getter devices includes a base (820), a getter layer (822) comprised of non-evaporable getter material formed thereon, and securing wires (84) arranged on the base.

    Abstract translation: 平板显示器(7)通常包括与其相对的前基板(79)和后基板(70)。 前基板由阳极(78)形成。 后基板形成有面向阳极的阴极(71)。 几个侧壁(72)插入在前基板和后基板之间。 多个吸气装置(82)布置在前基板上。 由此,将前基板和后基板之间的室保持为低压真空。 每个吸气装置包括基底(820),由其上形成的不可蒸发的吸气剂材料构成的吸气剂层(822)和布置在基底上的固定电线(84)。

    VACUUM IONIZATION GAUGE WITH HIGH SENSITIVITY
    18.
    发明申请
    VACUUM IONIZATION GAUGE WITH HIGH SENSITIVITY 有权
    具有高灵敏度的真空离子浓度计

    公开(公告)号:US20060261819A1

    公开(公告)日:2006-11-23

    申请号:US11187738

    申请日:2005-07-22

    CPC classification number: G01N27/62

    Abstract: A vacuum ionization gauge (30) includes a cathode (31), an anode ring (33), a shield electrode (32), an ion educed electrode (34), a reflector (35) and a collector (36). The cathode is positioned corresponding to a first opening of the shield electrode, and the ion educed electrode is positioned corresponding to an opposite second opening of the shield electrode. An ion educed hole (341) is defined in a middle of the ion educed electrode. The reflector has a curving surface generally surrounding the second opening of the shield electrode. The collector is positioned at a center of the curving surface of the reflector and points toward the ion educed hole. The anode ring is positioned in the middle of the shield electrode. The vacuum ionization gauge is small volume and has low power consumption and improved sensitivity.

    Abstract translation: 真空电离计(30)包括阴极(31),阳极环(33),屏蔽电极(32),离子引出电极(34),反射器(35)和集电极(36)。 阴极对应于屏蔽电极的第一开口定位,并且离子引出电极对应于屏蔽电极的相对的第二开口定位。 离子排出孔(341)限定在离子引发电极的中间。 反射器具有通常围绕屏蔽电极的第二开口的弯曲表面。 收集器位于反射器的弯曲表面的中心并指向离子注入孔。 阳极环位于屏蔽电极的中间。 真空电离计体积小,功耗低,灵敏度提高。

    Reference leak
    19.
    发明申请
    Reference leak 有权
    参考泄漏

    公开(公告)号:US20060144120A1

    公开(公告)日:2006-07-06

    申请号:US11228821

    申请日:2005-09-16

    CPC classification number: G01M3/007

    Abstract: A reference leak includes a leak layer formed of one of a metallic material, a glass material, and a ceramic material. The metallic material is selected from the group consisting of copper, nickel, and molybdenum. The leak layer comprises a number of substantially parallel leak through holes defined therein. The leak through holes may be cylindrical holes or polyhedrical holes. A length of each of the leak through holes is preferably not less than 20 times a diameter thereof. A diameter of each of the leak through holes is generally in the range from 10 nm to 500 nm. A length of each of the leak through holes is generally in the range from 100 nm to 100 μm. A leak rate of the reference leak is in the range from 10−8 to 10−15 tor×l/s. The leak through holes have substantially same length and diameter.

    Abstract translation: 参考泄漏包括由金属材料,玻璃材料和陶瓷材料之一形成的泄漏层。 金属材料选自铜,镍和钼。 泄漏层包括限定在其中的多个基本上平行的泄漏通孔。 泄漏孔可以是圆柱形孔或多面孔。 每个泄漏通孔的长度优选不小于其直径的20倍。 每个泄漏通孔的直径通常在10nm至500nm的范围内。 每个泄漏通孔的长度通常在100nm至100μm的范围内。 参考泄漏的泄漏率在10 -8至10 -15 torxl / s的范围内。 泄漏孔具有基本相同的长度和直径。

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