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    • 34. 发明授权
    • Insulating member and stator
    • 绝缘构件和定子
    • US07855484B2
    • 2010-12-21
    • US12447600
    • 2007-11-12
    • Kei Sasaki
    • Kei Sasaki
    • H02K3/34
    • H02K3/522H02K2203/09H02K2203/12
    • An insulator is provided between a stator core and a conductive wire provided on the stator core. The insulator includes a wound portion, around which the conductive wire is wounded, having a substantially rectangular shape; and a flange, formed in the axial end of the wound portion in the stator tooth tip side, for pressing the conductive wire in the axial direction (radial direction relative to the rotation axis of a rotor in a configuration of a rotating electrical machine). The flange includes four corner portions at its four corners, and intermediate portions formed between the four corner portions to have a width (B2) narrower than the width (B1) of the four corner portions. In addition, the flange has a tip with a curved shape.
    • 在定子铁心和设在定子铁心上的导线之间设置绝缘体。 绝缘体包括:绕线部分,导线缠绕在该缠绕部分上,具有大致矩形形状; 以及形成在定子齿尖侧的卷绕部的轴向端部的法兰,用于沿着轴向(相对于旋转电机的构造的转子的旋转轴线的径向)挤压导电线。 凸缘在其四个角部包括四个角部,以及形成在四个角部之间的中间部,具有比四个角部的宽度(B1)窄的宽度(B2)。 此外,凸缘具有弯曲形状的尖端。
    • 35. 发明申请
    • INSULATING MEMBER AND STATOR
    • 绝缘构件和定子
    • US20100052461A1
    • 2010-03-04
    • US12447600
    • 2007-11-12
    • Kei Sasaki
    • Kei Sasaki
    • H02K3/34
    • H02K3/522H02K2203/09H02K2203/12
    • An insulator is provided between a stator core and a conductive wire provided on the stator core. The insulator includes a wound portion, around which the conductive wire is wounded, having a substantially rectangular shape; and a flange, formed in the axial end of the wound portion in the stator tooth tip side, for pressing the conductive wire in the axial direction (radial direction relative to the rotation axis of a rotor in a configuration of a rotating electrical machine). The flange includes four corner portions at its four corners, and intermediate portions formed between the four corner portions to have a width (B2) narrower than the width (B1) of the four corner portions. In addition, the flange has a tip with a curved shape.
    • 在定子铁心和设在定子铁心上的导线之间设置绝缘体。 绝缘体包括:绕线部分,导线缠绕在该缠绕部分上,具有大致矩形形状; 以及形成在定子齿尖侧的卷绕部的轴向端部的法兰,用于沿着轴向(相对于旋转电机的构造的转子的旋转轴线的径向)挤压导电线。 凸缘在其四个角部包括四个角部,以及形成在四个角部之间的中间部,具有比四个角部的宽度(B1)窄的宽度(B2)。 此外,凸缘具有弯曲形状的尖端。
    • 36. 发明授权
    • Connecting structure for electric wire to shield case of apparatus
    • 电线连接结构用于屏蔽设备外壳
    • US06945817B2
    • 2005-09-20
    • US10806176
    • 2004-03-23
    • Sho MiyazakiHiroshi AiharaKei Sasaki
    • Sho MiyazakiHiroshi AiharaKei Sasaki
    • H01R9/05H01R13/52H01R13/648
    • H01R13/6485H01R9/0521H01R13/5208H01R2201/26
    • Therein is provided with a connecting structure to the shield case of an apparatus so that a number of the connector parts are decreasing and that connecting operation is facilitated. The connector includes a insulative first housing fixed in a state of being inserted into a through hole, a first terminal held by the housing to face the through hole and connected to the electric circuit. The second housing of the electric wire side is fitted to the first housing. The second terminal is connected to the first terminal. Sealing rings are provided between the outer periphery of the housings and the through hole on outer periphery of the housings so that the bracket fixed to the shield case is electrically connected to shield layer of the shield electric wire. A connecting member electrically connects the bracket and the shield layer outside of the second housing.
    • 在其中设置有与设备的屏蔽壳体的连接结构,使得多个连接器部件正在减小,并且便于连接操作。 连接器包括固定在插入通孔的状态的绝缘第一壳体,由壳体保持以面对通孔并连接到电路的第一端子。 电线侧的第二壳体安装在第一壳体上。 第二终端连接到第一终端。 密封环设置在壳体的外周和外壳的外周的通孔之间,使得固定在屏蔽罩上的托架与屏蔽电线的屏蔽层电连接。 连接构件将支架和屏蔽层电连接到第二壳体外部。
    • 37. 发明授权
    • Film-forming method for X-ray mask
    • X射线掩模成膜方法
    • US5879840A
    • 1999-03-09
    • US904185
    • 1997-08-01
    • Hideki YabeKaeko KitamuraMasao KouhashiMasamitsu OkamuraKei Sasaki
    • Hideki YabeKaeko KitamuraMasao KouhashiMasamitsu OkamuraKei Sasaki
    • C23C14/50C23C14/54G03F1/22H01L21/027G03F9/00
    • G03F1/22C23C14/505C23C14/545
    • A film-forming method and an apparatus for a X-ray mask and a film-forming apparatus which are able to diminish stress unevenness in the X-ray mask to zero when a X-ray absorber is formed on a mask substrate by sputtering a target 3 during rotation of the mask substrate. Firstly, a dummy mask substrate is prepared instead of a mask substrate. A dummy X-ray absorber 6 is formed on this dummy X-ray substrate 5 within a sputtering range. Secondly, a stress distribution is measured at every position along a straight line passing through a center of the dummy X-ray absorber 6 and then a desirable stress distribution range X is selected at such a location so as to have a good linear characteristic in a portion of a compressive stress curve which decreases toward an outer periphery of the dummy X-ray absorber 6 in the stress distribution. A center of the desirable stress distribution range X is selected as a rotation center, the mask substrate is placed within the desirable stress distribution range X, and the X-ray absorber is formed by this film-forming technology.
    • 当通过溅射在掩模基板上形成X射线吸收体时,能够将X射线掩模中的应力不均匀性降低到零的X射线掩模和成膜装置的成膜方法和装置 在掩模基板旋转期间的目标3。 首先,准备虚设掩模基板来代替掩模基板。 在该虚拟X射线基板5上,在溅射范围内形成虚拟X射线吸收体6。 其次,在通过虚拟X射线吸收体6的中心的直线的每个位置处测量应力分布,然后在这样的位置选择期望的应力分布范围X,使得在 在应力分布中朝向虚拟X射线吸收体6的外周减小的压缩应力曲线的一部分。 选择期望的应力分布范围X的中心作为旋转中心,将掩模基板置于期望的应力分布范围X内,并且通过该成膜技术形成X射线吸收体。