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    • 1. 发明申请
    • Voltage Division Resistor for Acceleration Tubes, Acceleration Tube, and Accelerator
    • 用于加速管,加速管和加速器的电压分压电阻
    • US20090039804A1
    • 2009-02-12
    • US11665838
    • 2005-08-25
    • Shigehiro NishinoRyoichi Ono
    • Shigehiro NishinoRyoichi Ono
    • H05H7/00H01C1/02
    • H01J37/3171H01J2237/002H01J2237/04735H05H7/00H05H7/22
    • To provide a voltage division resistor for acceleration tube, an acceleration tube, and an accelerator capable of reducing the cost of the acceleration tube and enhancing the operation efficiency. [MEANS FOR SOLVING PROBLEMS] An acceleration tube (1) for accelerating ions (charged particles) I by applying an acceleration voltage V comprises a tubular acceleration tube body (2) made of synthetic resin, a plurality of ring-like acceleration electrodes (3) arranged in a row on the inner circumferential surface (2a) of the acceleration tube body (2) at predetermined intervals in the axial direction of the acceleration tube body (2), a plurality of voltage division resistors (voltage division resistors for the acceleration tube) (5) wound spirally on the outer circumferential surface (2b) of the acceleration tube body (2), and a plurality of terminal bolts (terminal member) (4) provided in close contact with the acceleration tube body (2) while penetrating the acceleration tube body (2) radially and having a forward end (front end) (4a) connected electrically with the acceleration electrodes (3) and a head (rear end) (4b) connected electrically with each connector (connection point) (16) of the voltage division resistor (5).
    • 为加速管提供分压电阻器,加速管和加速器,能够降低加速管的成本,提高运转效率。 解决问题的手段用于通过施加加速电压V加速离子(带电粒子)I的加速管(1)包括由合成树脂制成的管状加速管体(2),多个环状加速电极(3 )在加速管主体(2)的轴向上以预定间隔在加速管主体(2)的内周面(2a)上排列成一行,多个分压电阻器(用于加速度的分压电阻器 管)(5)螺旋地卷绕在加速管体(2)的外周面(2b)上,以及与加速管体(2)紧密接触设置的多个端子螺栓(端子构件)(4),同时 穿过加速管体(2)并具有与加速电极(3)电连接的前端(前端)(4a)和与每个连接器(连接点)电连接的头部(后端)(4b) (16)分压。
    • 2. 发明授权
    • Voltage division resistor for acceleration tubes, acceleration tube, and accelerator
    • 用于加速管,加速管和加速器的分压电阻
    • US07671546B2
    • 2010-03-02
    • US11665838
    • 2005-08-25
    • Shigehiro NishinoRyoichi Ono
    • Shigehiro NishinoRyoichi Ono
    • H05H25/00
    • H01J37/3171H01J2237/002H01J2237/04735H05H7/00H05H7/22
    • To provide a voltage division resistor for acceleration tube, an acceleration tube, and an accelerator capable of reducing the cost of the acceleration tube and enhancing the operation efficiency. An acceleration tube (1) for accelerating ions (charged particles) I by applying an acceleration voltage V comprises a tubular acceleration tube body (2) made of synthetic resin, a plurality of ring-like acceleration electrodes (3) arranged in a row on the inner circumferential surface (2a) of the acceleration tube body (2) at predetermined intervals in the axial direction of the acceleration tube body (2), a plurality of voltage division resistors (voltage division resistors for the acceleration tube) (5) wound spirally on the outer circumferential surface (2b) of the acceleration tube body (2), and a plurality of terminal bolts (terminal member) (4) provided in close contact with the acceleration tube body (2) while penetrating the acceleration tube body (2) radially and having a forward end (front end) (4a) connected electrically with the acceleration electrodes (3) and a head (rear end) (4b) connected electrically with each connector (connection point) (16) of the voltage division resistor (5).
    • 为加速管提供分压电阻器,加速管和加速器,能够降低加速管的成本,提高运转效率。 通过施加加速电压V加速离子(带电粒子)I的加速管(1)包括由合成树脂制成的管状加速管体(2),多个环状加速电极(3) 加速管主体(2)的内周面(2a)以加速管主体(2)的轴向的规定间隔,多个分压电阻(加速管用分压电阻器)(5) 螺旋地设置在加速管体(2)的外周面(2b)上,以及多个端子螺栓(端子构件)(4),其与加速管体(2)紧密接触,同时穿透加速管体( 2)径向地具有与加速电极(3)电连接的前端(前端)(4a)和与电压分配器的每个连接器(连接点)(16)电连接的头(后端)(4b) 电阻(5)。
    • 3. 发明申请
    • Ion Source
    • 离子源
    • US20080067411A1
    • 2008-03-20
    • US11780651
    • 2007-07-20
    • Shigehiro NishinoRyoichi Ono
    • Shigehiro NishinoRyoichi Ono
    • H01J27/00
    • H01J27/14H01J27/02H01J37/08H01J37/3171H01J2237/032H01J2237/038H01J2237/061H01J2237/081
    • It is a technical challenge to provide a small-sized ion source excellent in operability. An ion source of the present invention includes: a cylindrical insulation tube (2) opened upward and opened at part of its lower surface; a plurality of hollow cylindrical permanent magnets (3), provided on the outer peripheral surface of the insulation tube to be arranged in a row in the axial direction of the insulation tube; a gas supplying means (34, 35, 20) for supplying gas into the insulation tube; a cathode electrode, at the tip end of which a fitting unit (19) for fitting of a solid material (18) there to is formed; an annular anode electrode (5), which is fitted to an opening in the lower surface of the insulation tube; an upper frame (6), which blocks the upper portion of the insulation tube and suspends the cathode electrode so as to allow the fitting unit to approach the anode electrode; and a lower frame (7), in which an extraction port (37) is formed for extracting ions emitted from the anode electrode, and on which the insulation tube is mounted.
    • 提供极佳的可操作性的小型离子源是技术挑战。 本发明的离子源包括:向上敞开并在其下表面的一部分开口的圆柱形绝缘管(2) 多个中空圆柱形永磁体(3),设置在所述绝缘管的外周面上,以在所述绝缘管的轴向上排成一列; 用于将气体供应到所述绝缘管中的气体供给装置(34,35,20) 阴极,其顶端形成有用于将固体材料(18)配合到其上的嵌合单元(19); 环形阳极电极(5),其安装在绝缘管的下表面的开口处; 上部框架(6),其阻挡绝缘管的上部并悬挂阴极电极,以使装配单元接近阳极电极; 和下框架(7),其中形成用于提取从阳极发射的离子的提取口(37),并且安装有绝缘管。