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    • 78. 发明授权
    • Ion supply device
    • 离子供应装置
    • US08450700B2
    • 2013-05-28
    • US13183933
    • 2011-07-15
    • Yudo Sugawara
    • Yudo Sugawara
    • H01J27/02
    • H01L21/67213
    • An ion supply device includes an ion generator for generating ions for removing static electricity, a carrier gas supply unit for supplying to the ion generator a carrier gas for carrying the ions generated in the ion generator, and an ion supply nozzle for blowing the ions and the carrier gas from the ion generator through a blow-off opening toward an electricity removal target from which static electricity is to be removed. A slit is provided at the blow-off opening and has an increased width as the slit gets distant from the electricity removal target. The ion supply nozzle includes an internal flow path and a plurality of internal fins provided at a portion of the internal flow path near the blow-off opening so that the ions and the carrier gas blown from the slit is uniformly distributed along a lengthwise direction of the slit.
    • 离子供给装置包括用于产生用于除去静电的离子的离子发生器,用于向离子发生器供给携带在离子发生器中产生的离子的载气的载气供给单元和用于吹送离子的离子供给喷嘴, 来自离子发生器的载气通过吹离开口朝向要除去静电的除电目标。 在吹出口处设置有狭缝,并且随着狭缝远离除电目标而具有增加的宽度。 离子供给喷嘴包括内部流路和设置在吹出口附近的内部流路的一部分的多个内部翅片,使得从狭缝吹出的离子和载气沿着长度方向均匀分布 狭缝。
    • 79. 发明申请
    • METHODS AND APPARATUS FOR DETECTING NEUTRAL CHEMICAL UNITS VIA NANOSTRUCTURES
    • 通过纳米结构检测中性化学单位的方法和装置
    • US20130105686A1
    • 2013-05-02
    • US13636935
    • 2011-03-24
    • Lene V. HauJene A. GolovchenkoAnne L. Goodsell
    • Lene V. HauJene A. GolovchenkoAnne L. Goodsell
    • H01J27/02H01J49/26G01T1/29G01T1/00
    • H01J27/022G01T1/00G01T1/29H01J27/26H01J49/26H01J2201/30434
    • Suspended nanotubes are used to capture and ionize neutral chemical units, such as individual atoms, molecules, and condensates, with excellent efficiency and sensitivity. Applying a voltage to the nanotube(s) (with respect to a grounding surface) creates an attractive potential between a polarizable neutral chemical unit and the nanotube that varies as 1/r2, where r is the unit's distance from the nanotube. An atom approaching the nanotube with a sub-threshold angular momentum is captured by the potential and eventually spirals towards the nanotube. The atom ionizes as in comes into close proximity with a sidewall of the nanotube, creating an ion whose polarity matches the polarity of the electric potential of the nanotube. Repulsive forces eject the ion, which can be detected more easily than a neutral chemical unit. Suspended nanotubes can be used to detect small numbers of neutral chemical units (e.g., single atoms) for applications in sensing and interferometry.
    • 悬浮的纳米管用于捕获和电离中性化学单元,例如单个原子,分子和缩合物,具有优异的效率和灵敏度。 向纳米管施加电压(相对于接地面)在可极化的中性化学单元和以1 / r2变化的纳米管之间产生有吸引力的电位,其中r是单位与纳米管的距离。 接近具有亚阈值角动量的纳米管的原子被电位俘获并最终向纳米管螺旋。 该原子电离,因为它与纳米管的侧壁紧密接近,产生极性与纳米管的电位极性匹配的离子。 排斥力推出离子,比中性化学单元更容易检出。 悬浮的纳米管可用于检测用于感测和干涉测量中的应用的少量中性化学单元(例如,单个原子)。
    • 80. 发明申请
    • ION GENERATOR AND AIR CLEANER
    • 离子发生器和空气清洁剂
    • US20130095000A1
    • 2013-04-18
    • US13704189
    • 2011-06-13
    • Akira YamamotoMotoyuki SuzukiNaoki Wada
    • Akira YamamotoMotoyuki SuzukiNaoki Wada
    • A61L9/22H01J27/02
    • A61L9/22A61L2209/212F24F3/166F24F2003/1682H01J27/02H01T23/00
    • A casing, including an inlet through which air can flow in and outlets through which air can flow out, is internally provided with: an air passage through which the inlet and the outlets are connected to each other; and an ion generation device for discharging ions into the air passage. The casing has an inclined wind guide surface and an attachment surface that forms an acute angle with the wind guide surface. The inlet is provided in a region of the wind guide surface, the distance of which from the attachment surface is shorter, the first outlet is provided in a region of the wind guide surface, the distance of which from the attachment surface is longer, and the second outlet is provided in a region of the casing, extending to the attachment surface from an end of the wind guide surface at which the first outlet is provided.
    • 包括空气可以流入的入口和空气可以流出的出口的壳体内部设置有:入口和出口彼此连接的空气通道; 以及用于将离子排放到空气通道中的离子产生装置。 壳体具有倾斜的导风表面和与导风表面形成锐角的附接表面。 入口被设置在导风表面的距离安装表面的距离较短的区域中,第一出口设置在导风表面的距离安装表面的距离较长的区域中,以及 第二出口设置在壳体的区域中,从设置有第一出口的导风表面的端部延伸到附接表面。