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    • 1. 发明授权
    • Laser machining apparatus
    • 激光加工设备
    • US5310986A
    • 1994-05-10
    • US52897
    • 1993-04-26
    • Nobuyuki ZumotoToshinori YagiMasao IzumoMasaaki Tanaka
    • Nobuyuki ZumotoToshinori YagiMasao IzumoMasaaki Tanaka
    • B23K26/06H01L21/00H05K3/00B23K26/00
    • H05K3/0026B23K26/066H01L21/67092H05K2203/056
    • A laser machining apparatus comprises a mask, a reflecting mirror and an imaging optical system. The laser light reflected by the mask and also by the reflecting mirror passes through the mask and images on the work for machining the work. The laser machining apparatus comprises means for causing said mask to move in parallel with said work for machining the work. This laser machining apparatus is able to machine a work having a large surface using small apertured mask. Another type of laser machining apparatus comprises a mask and a platform and an imaging optical system. The mask and the work are puts in the same plane of the platform and driven so that the image of the mask is mapped on the work via the imaging optical system. The laser machining apparatus is able to machine a large area at low price and high accuracy.
    • 激光加工装置包括掩模,反射镜和成像光学系统。 由掩模和反射镜反射的激光通过掩模和工件上的图像进行加工。 激光加工设备包括用于使所述面罩与所述工件并行移动以便加工工件的装置。 该激光加工装置能够使用小孔径掩模加工具有大表面的工件。 另一种类型的激光加工设备包括掩模和平台以及成像光学系统。 掩模和工作放在平台的同一平面上并被驱动,使得掩模的图像经由成像光学系统映射到工件上。 激光加工设备能够以低价格和高精度加工大面积。
    • 6. 发明授权
    • Beam accelerator
    • 光束加速器
    • US06713976B1
    • 2004-03-30
    • US10417218
    • 2003-04-17
    • Nobuyuki ZumotoTakahisa NagayamaYuko KijimaYoshihiro Ishi
    • Nobuyuki ZumotoTakahisa NagayamaYuko KijimaYoshihiro Ishi
    • H05H1100
    • H05H11/00H05H7/04
    • A high performance beam accelerator in which accelerating voltage may be increased by applying a high excitation frequency to the accelerator core and controlling heat generation. The beam accelerator includes an annular hollow vessel with an annular passage, fixed magnetic field generators generating magnetic fields for deflecting and guiding a charged particle beam into an orbit, an accelerating gap for inducing an accelerating electric field, and an accelerator core for generating the accelerating electric field via the accelerating gap by changing magnetic state in accordance with electromagnetic induction. Injection to ejection of charged particles is completed within one cycle of the excitation frequency applied to the accelerator core. The accelerator core includes wound multiple layers of a ribbon-shaped soft magnetic alloy, 50 &mgr;m or less in thickness, and having a saturation magnetic flux density of 1 Tesla or more.
    • 一种高性能光束加速器,其中通过向加速器芯施加高激发频率并控制发热,可以增加加速电压。 光束加速器包括具有环形通道的环形中空容器,产生用于将带电粒子束偏转和引导到轨道中的磁场的固定磁场发生器,用于引起加速电场的加速间隙,以及用于产生加速的加速器芯 通过根据电磁感应改变磁状态通过加速间隙的电场。 喷射到带电粒子的喷射在施加到加速器芯的激发频率的一个周期内完成。 加速器芯包括卷状多层的带状软磁合金,厚度为50μm以下,饱和磁通密度为1特斯拉以上。
    • 7. 发明授权
    • Electromagnetic wave generating device
    • 电磁波发生装置
    • US07619375B2
    • 2009-11-17
    • US11541679
    • 2006-10-03
    • Nobuyuki ZumotoTakahisa NagayamaKazushi Hanakawa
    • Nobuyuki ZumotoTakahisa NagayamaKazushi Hanakawa
    • H05H11/00
    • H05G2/00
    • An electromagnetic wave generating device includes: a hollow annular vacuum chamber; an electron gun; an electromagnet configured with a pair of discoid combinations in which a cylindrical accelerating magnet pole and an annular focusing magnet pole are arranged in this order from the inner side to the outer side of the combinations, and are disposed symmetrically and concentrically with each other on both sides of the chamber and coaxially with the center axis of the chamber, and a return yoke disposed outside both accelerating and focusing magnet poles and the chamber; accelerating coils wound around the accelerating magnet poles, for exciting the poles; and focusing coils wound around the focusing magnet poles, for exciting the poles; wherein a through hole is formed at the center of the accelerating magnet pole so that power supply wires connecting the accelerating coils to an accelerating power supply are led out through the hole.
    • 电磁波发生装置包括:中空环形真空室; 电子枪 配置有一对圆盘组合的电磁体,其中圆柱形加速磁极和环形聚焦磁极从组合的内侧到外侧依次布置,并且在两者上彼此对称和同心地设置 并与腔室的中心轴线同轴,并且设置在加速和聚焦磁极两端和腔室外的返回轭; 加速线圈缠绕在加速磁极上,用于激励磁极; 并且聚焦线圈缠绕在聚焦磁极上,用于激励磁极; 其特征在于,在所述加速磁极的中心形成有贯通孔,从而将加速线圈与加速电源连接的电力线从所述孔引出。
    • 10. 发明授权
    • Induction coupling apparatus
    • 感应耦合装置
    • US07777605B2
    • 2010-08-17
    • US11723104
    • 2007-03-16
    • Nobuyuki ZumotoHiroshi IsoyaTakao TsurimotoYuichiro MurataYouichi Hisamori
    • Nobuyuki ZumotoHiroshi IsoyaTakao TsurimotoYuichiro MurataYouichi Hisamori
    • H01F17/06
    • H01F38/30G01R1/22H01F3/14H01F29/10
    • To provide a structure capable of securing satisfactory induction coupling efficiency and high reliability in manufacturing an induction coupling apparatus used in power line carrier communication, the induction coupling apparatus having a magnetic core formed from a first core element part and a second core element part so that a gap would be formed between the core element parts, includes: a core parallel moving mechanism for carrying out relative and parallel movement of the first core element part and the second core element part in a direction that the length of the gap varies; and a predetermined gap length regulating member for limiting parallel movement in a direction that the first core element part and the second core element part approach each other to regulate the gap length to the predetermined gap length in the case that the core parallel moving mechanism is used for the parallel movement.
    • 为了提供一种在电力线载体通信中使用的感应耦合装置的制造中能够确保令人满意的感应耦合效率和高可靠性的结构,该感应耦合装置具有由第一芯部件和第二芯部部件形成的磁芯, 在所述芯部件之间将形成间隙,所述间隙包括:芯平行移动机构,用于在所述间隙的长度变化的方向上进行所述第一芯元件部分和所述第二芯元件部分的相对和平行移动; 以及预定的间隙长度限制构件,用于在使用所述芯平行移动机构的情况下,限制在所述第一芯元件部件和所述第二芯元件部件彼此接近的方向上的平行移动,以将所述间隙长度调节到所述预定间隙长度 用于平行移动。