DIELECTRIC BARRIER DISCHARGE-TYPE ELECTRODE STRUCTURE FOR GENERATING PLASMA HAVING CONDUCTIVE BODY PROTRUSION ON ELECTRODES
    11.
    发明申请
    DIELECTRIC BARRIER DISCHARGE-TYPE ELECTRODE STRUCTURE FOR GENERATING PLASMA HAVING CONDUCTIVE BODY PROTRUSION ON ELECTRODES 有权
    用于产生电导体导电等离子体的电介质放电型电极结构

    公开(公告)号:US20150137677A1

    公开(公告)日:2015-05-21

    申请号:US14414517

    申请日:2013-06-27

    Inventor: Hee Sik Sohn

    Abstract: Provided is a dielectric barrier discharge-type electrode structure for generating plasma. The electrode structure, according to the present invention, comprises: an upper conductive body electrode and a lower conductive body electrode; at least one conductive body electrode protrusion portion, which is formed on at least one surface of the upper conductive body electrode and/or the lower conductive body electrode; a dielectric layer which is formed on at least one of the inner surfaces of the upper conductive body electrode and the lower conductive body electrode that face each other, so as to have a substantially uniform thickness; and a specific gap (d) which is formed between the upper and lower conductive body electrodes and the dielectric layer, or between dielectric layers, due to the protruding effect of the conductive body electrode protrusion portion when the upper conductive body electrode and the lower conductive body electrodes come into close contact, wherein the plasma is generated by applying a pulse power or an alternating power to the upper conductive body electrode and the lower conductive body electrode.

    Abstract translation: 提供一种用于产生等离子体的电介质阻挡放电型电极结构。 根据本发明的电极结构包括:上导电体电极和下导电体电极; 形成在上导电体电极和/或下导电体电极的至少一个表面上的至少一个导电体电极突出部分; 形成在所述上导电体电极和所述下导电体电极的至少一个内表面上彼此面对的电介质层,以具有基本均匀的厚度; 以及由上导电体电极和下导电体的导电体电极突出部的突出效果而在上下导电体电极与电介质层之间或电介质层之间形成的特定间隙(d) 体电极紧密接触,其中通过向上导电体电极和下导电体电极施加脉冲功率或交流电力来产生等离子体。

    PHOTOCATHODE ENHANCEMENT SYSTEM
    12.
    发明申请
    PHOTOCATHODE ENHANCEMENT SYSTEM 有权
    光电增强系统

    公开(公告)号:US20140152175A1

    公开(公告)日:2014-06-05

    申请号:US13691708

    申请日:2012-11-30

    Applicant: FAR-TECH, INC

    Inventor: Xiangyun CHANG

    CPC classification number: H01J1/34 H01J1/88

    Abstract: A photocathode enhancement system includes a cathode plate that is movably positioned relative to an incident optical beam. The emission surface of the cathode plate has an area between about 0.5 cm2 to greater than 100 cm2. The system includes a motion controller that is configured to control the movement of the cathode plate relative to the optical beam, so that the optical beam successively strikes non-overlapping portions of the emission surface, and may reach substantially the entire emission surface over a time period of about 10 seconds to about 100 seconds. The movement of the cathode plate is controlled so that on average, the heat from the optical beam is uniformly distributed over the emission surface of the cathode plate.

    Abstract translation: 光电阴极增强系统包括相对于入射光束可移动地定位的阴极板。 阴极板的发射表面的面积为约0.5cm 2至大于100cm 2。 该系统包括运动控制器,其被配置为控制阴极板相对于光束的移动,使得光束连续地撞击发射表面的非重叠部分,并且可以在一段时间内基本上达到整个发射表面 时间约10秒至约100秒。 控制阴极板的移动,使得平均来说,来自光束的热均匀地分布在阴极板的发射表面上。

    Electron tubes
    13.
    发明授权
    Electron tubes 失效
    电子管

    公开(公告)号:US07518301B2

    公开(公告)日:2009-04-14

    申请号:US11035545

    申请日:2005-01-14

    CPC classification number: H01J31/126 H01J1/18 H01J1/88

    Abstract: In an electron tube including vibration absorbers for linear members such as filaments, a vibration absorbing means that is made of a vibration absorber with a large vibration absorption effect, has a simple configuration, and is attachable easily to filaments is provided. The vibration absorbing means is formed of a holder 231, a vibration absorber 241, and a getter shielding member 251. These three members are attached to a shielding electrode S overlying the front substrate 111 to dispose the vibration absorber 241 between the holder 231 and getter shielding member 251. The vibration absorber 241 is mounted to slide or rotate between the holder 231 and the getter shielding member 251. The vibration absorber 241 has an aperture 2413 in which the filament is engaged. The bottom (apex) of the aperture 2413 is formed eccentrically. The vibration absorber 241 is in line contact with the shielding electrode S, as shown in FIG. 3(c).

    Abstract translation: 在包括诸如长丝的线性元件的减振器的电子管中,提供一种由具有大的振动吸收效果的减震器制成的振动吸收装置,具有简单的结构,并且易于连接到细丝上。 振动吸收装置由保持器231,减震器241和吸气剂遮蔽构件251构成。这三个构件安装在覆盖在前基板111上的屏蔽电极S上,以将振动吸收器241设置在保持器231和吸气剂 振动吸收器241被安装成在保持器231和吸气剂屏蔽构件251之间滑动或旋转。减振器241具有一个孔2413,细丝在其中接合。 孔2413的底部(顶点)偏心地形成。 如图1所示,振动吸收器241与屏蔽电极S线接触。 图3(c)。

    Thermal device, mount, and manufacturing method
    15.
    发明授权
    Thermal device, mount, and manufacturing method 失效
    散热装置,安装和制造方法

    公开(公告)号:US4970425A

    公开(公告)日:1990-11-13

    申请号:US342063

    申请日:1989-04-24

    CPC classification number: H01J1/88 H01J5/32 H01J61/366

    Abstract: A thermal device, such as a glow discharge starter, includes an hermetically sealed envelope containing an ionizable medium, a bimetallic electrode having a bimetallic element associated therewith, and a counter electrode. A mount sealed in the envelope includes a glass stem having a disk-shaped portion extending substantially across the envelope and a longitudinally-extending planar portion. The transverse portion of the mount assists in centering the electrodes within the envelope and preventing the bimetallic element from oxidizing during the manufacturing process when the mount is sealed to the envelope. Preferably, the transverse portion is disk-shaped having a radius within the range of from about 89 t0 93 percent of the internal radius of the envelope. The defined thickness of the planar portion of the glass stem allows rapid transfer of heat during sealing so that the planar portion can effectively be sealed to the envelope without developing seal cracks.

    Abstract translation: 诸如辉光放电启动器的热装置包括容纳可电离介质的气密密封的外壳,具有与之相关联的双金属元件的双金属电极和对电极。 密封在信封中的安装件包括玻璃杆,其具有基本上跨过外壳延伸的盘形部分和纵向延伸的平面部分。 安装座的横向部分有助于将电极定位在外壳内,并且防止双金属元件在制造过程中氧化,当安装件被密封到信封时。 优选地,横向部分是盘形,其半径在外壳的内部半径的大约89%至93%的范围内。 玻璃杆的平面部分的限定厚度允许在密封期间快速传递热量,使得平面部分可以有效地密封到外壳而不会发展密封裂缝。

    Cathode-G.sub.1 spacing material and method of application
    16.
    发明授权
    Cathode-G.sub.1 spacing material and method of application 失效
    阴极G1间距材料及其应用方法

    公开(公告)号:US4413203A

    公开(公告)日:1983-11-01

    申请号:US307125

    申请日:1981-09-30

    Inventor: Kenneth Speigel

    CPC classification number: H01J9/18 H01J1/88 H01J9/02

    Abstract: Critical spacings between the cathode and grid of an electron gun structure are enabled by a cathode structure including a removable spacer, such structure produced by first forming a layer of potentially electron emissive material on the cathode, then forming a solvent drop on the layer, and contacting the drop with a spacer to adhere the spacer to the layer.

    Abstract translation: 电子枪结构的阴极和栅格之间的临界间隔由包括可移除间隔物的阴极结构实现,这种结构通过首先在阴极上形成潜在的电子发射材料层,然后在该层上形成溶剂液滴而产生, 使液滴与间隔物接触以将间隔物粘附到该层上。

    Ion gating grid
    17.
    发明授权
    Ion gating grid 失效
    离子门控网格

    公开(公告)号:US4150319A

    公开(公告)日:1979-04-17

    申请号:US835616

    申请日:1977-09-22

    CPC classification number: H01J49/061 G21K1/04 H01J1/88 H01J3/08 G01N27/622

    Abstract: A grid gates a stream of ions when a D.C. potential is applied between two sets of interdigitated wires included in the grid to produce a D.C. field. The improved grid disclosed herein contains the two sets of interdigitated wires in a single plane so that the D.C. field is precisely normal to the ion current flow direction to prevent a residual ion current flow when the grid provides the gating effect.

    Abstract translation: 当在电网中包括的两组交叉电线之间施加直流电位以产生直流电场时,栅极栅极离子流。 本文公开的改进的电网在单个平面中包含两组交叉导线,使得直流电场精确地垂直于离子电流流动方向,以防止当栅极提供门控效应时残留的离子电流流动。

    Pincer mount cathode
    19.
    发明授权

    公开(公告)号:US12027340B2

    公开(公告)日:2024-07-02

    申请号:US18510302

    申请日:2023-11-15

    CPC classification number: H01J1/18 H01J1/146 H01J1/88 H01J9/08 H01J2201/2889

    Abstract: A cathode device includes an emitter tip for generating electrons. An elongate heater is included having proximal and distal ends. The emitter tip can be located at the distal end of the heater. Two spaced apart legs can extend away from the distal end of the heater, terminating at the proximal end and forming an elongate slot therebetween. Two electrical contacts can compressively engage respective opposite outer surfaces of the two legs at the proximal end of the heater to mechanically secure and electrically connect the two legs of the heater to respective electrical contacts at a junction that is at a location spaced away from the emitter tip to keep the junction cooler.

    Pincer Mount Cathode
    20.
    发明公开

    公开(公告)号:US20240161994A1

    公开(公告)日:2024-05-16

    申请号:US18510302

    申请日:2023-11-15

    CPC classification number: H01J1/18 H01J1/146 H01J1/88 H01J2201/2889

    Abstract: A cathode device includes an emitter tip for generating electrons. An elongate heater is included having proximal and distal ends. The emitter tip can be located at the distal end of the heater. Two spaced apart legs can extend away from the distal end of the heater, terminating at the proximal end and forming an elongate slot therebetween. Two electrical contacts can compressively engage respective opposite outer surfaces of the two legs at the proximal end of the heater to mechanically secure and electrically connect the two legs of the heater to respective electrical contacts at a junction that is at a location spaced away from the emitter tip to keep the junction cooler.

Patent Agency Ranking