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    • 24. 发明专利
    • Connection structure, connection method, and differential signal transmission cable
    • 连接结构,连接方法和差分信号传输电缆
    • JP2013239270A
    • 2013-11-28
    • JP2012110063
    • 2012-05-11
    • Hitachi Cable Ltd日立電線株式会社
    • KUMAKURA TAKASHI
    • H01R4/64H01B7/17H01B11/00H01B11/06H01R4/14H02G1/14H05K9/00
    • PROBLEM TO BE SOLVED: To provide a connection structure, a connection method, and a differential signal transmission cable, which are capable of facilitating electrical connection between a shield and a substrate, preventing an insulator from being deformed and melted during solder connection work, and preventing deterioration in transmission characteristics.SOLUTION: In a connection structure, a differential signal transmission cable 10 is connected to a substrate via a connection tape 20 which includes a circumferential part 21 wound around a shield 13 exposed at an end part of the cable and one or more projection parts 22 projected from the circumferential part 21. The connection tape 20 is connected to the shield 13 via the circumferential part 21, and also connected to the substrate via the projection parts 22.
    • 要解决的问题:提供能够促进屏蔽和基板之间的电连接的连接结构,连接方法和差分信号传输电缆,防止绝缘体在焊接连接工作期间变形和熔化,以及 防止传输特性的恶化。解决方案:在连接结构中,差分信号传输电缆10经由连接带20连接到基板,连接带20包括缠绕在电缆端部露出的屏蔽13周围的周向部分21和一个 或更多个突出部分22。连接带20经由圆周部分21连接到屏蔽层13,并且还经由突出部分22连接到基板。
    • 29. 发明专利
    • Dual frequency antenna
    • 双频天线
    • JP2013232768A
    • 2013-11-14
    • JP2012103535
    • 2012-04-27
    • Hitachi Cable Ltd日立電線株式会社
    • WATANABE HARUYUKI
    • H01Q19/28H01Q5/10H01Q13/10
    • H01Q13/10H01Q5/40H01Q5/48H01Q5/49H01Q19/30
    • PROBLEM TO BE SOLVED: To provide a single feeder dual frequency antenna having a high gain in a predetermined direction, and having a directivity in the radiation pattern.SOLUTION: In an antenna where forward gain is enhanced by arranging a waveguide element 3 in front of a radiation element 2 and a reflection element 4 in the rear, a 2 resonance notch antenna 5 where two slots 7, 8 of different length are formed on one straight line of a conductor plate 6 arranged so that the normal direction becomes the longitudinal direction and a feeding part 10 is provided in one of the slots 7, 8 is used as the radiation element 2, and the 2 resonance notch antenna 5 where the feeding part 10 is short-circuited is used as the waveguide element 3 and reflection element 4.
    • 要解决的问题:提供在预定方向上具有高增益并且在辐射图中具有方向性的单馈线双频天线。解决方案:在天线中,通过将波导元件3布置在 2个谐振陷波天线5,两个不同长度的槽7,8形成在导体板6的一条直线上,使得法线方向成为纵向,并且 在其中一个槽7,8中设置供电部10作为辐射元件2,将馈电部10短路的2个谐振陷波天线5用作波导元件3和反射元件4。
    • 30. 发明专利
    • Method for producing alloy ingot, alloy ingot and melting furnace
    • 生产合金,合金和熔炼炉的方法
    • JP2013231222A
    • 2013-11-14
    • JP2012104616
    • 2012-05-01
    • Hitachi Cable Ltd日立電線株式会社
    • HIRAMOTO YUICHI
    • C22C1/02B22D1/00B22D21/00B22D27/06B22D27/20C22B9/22C22B15/00C22C9/00H05B6/24
    • Y02P10/253
    • PROBLEM TO BE SOLVED: To provide a method for producing an alloy ingot, in which the concentration of an additive material is homogeneous, and to provide an alloy ingot and a melting furnace capable of making the concentration of an additive material homogeneous.SOLUTION: A method for producing an alloy ingot includes: a step of loading an alloy raw material containing a base material and an additive material 5 with a lower specific weight than that of the base material, into a crucible 2; a step of generating a molten metal 3 by heating the inside of the crucible 2 to melt the alloy raw material loaded into the crucible; and a step of stirring the molten metal by intermittently feeding power to an inductive coil 14 provided around the crucible from a power feeding unit 15 to cause a temperature gradient in the molten metal after the molten metal reaches a predetermined temperature while rotating a blade 10 disposed at a boundary region 9 between a region 7 where the concentration of the additive material is high in the molten metal and a region 8 where the concentration of the additive material is low.
    • 要解决的问题:提供一种合金锭的制造方法,其中添加剂材料的浓度是均匀的,并且提供能够使添加剂材料的浓度均匀的合金锭和熔融炉。方法:A 合金锭的制造方法包括:将具有比基材的比重低的基材和添加剂材料5的合金原料装入坩埚2的步骤; 通过加热坩埚2的内部来熔化装入坩埚中的合金原料来产生熔融金属3的步骤; 以及通过从供电单元15间歇地向设置在坩埚周围的感应线圈14供给电力来搅拌熔融金属的步骤,以在熔融金属达到预定温度之后使熔融金属中的温度梯度旋转,同时旋转设置的叶片10 在熔融金属中添加剂的浓度高的区域7与添加剂的浓度低的区域8之间的边界区域9。