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    • 1. 发明专利
    • Electroforming method
    • 电化学方法
    • JP2010084158A
    • 2010-04-15
    • JP2008251085
    • 2008-09-29
    • Omron Corpオムロン株式会社
    • SEKI TOSHIMASAHATAMURA AKIHIKOYOSHIDA HITOSHIYAMASHITA TOSHIOMIURA YASUHIRO
    • C25D1/00
    • C25D5/022C25D1/00C25D1/003C25D1/10C25D1/20H05K3/205
    • PROBLEM TO BE SOLVED: To provide an electroforming method by which the shape of the surface of a metal layer on the side opposite from the face electrically deposited to a matrix can be controlled.
      SOLUTION: The matrix 11 is fabricated by opening a cavity 15 in an insulating layer 14 formed over the upper face of an electroconductive base material 13. The matrix 11 is arranged in an electrolytic bath, and a voltage is applied thereto, so that a metal is electrically deposited on the bottom face of the cavity 15, thereby to form a metal molding 12 electrically in the cavity 15. If the cavity 15 has a width W, and if the head space between the upper face opening of the cavity 15 and the upper face of a metal layer 18 has a vertical height H, the growth of the metal layer 18 is stopped at the electrodeposition step so that the height H of the head space to be left over the metal layer 18 satisfies: H≥W/2.85, if W≥300 μm; H≥W/3.75, if 200 μm≤W
    • 要解决的问题:提供一种电铸方法,通过该方法可以控制金属层在与电沉积到基体上的面相反的一侧的表面的形状。 解决方案:通过在导电基材13的上表面上形成的绝缘层14中打开空腔15来制造矩阵11.矩阵11布置在电解槽中,并施加电压,因此 金属被电沉积在空腔15的底面上,从而在空腔15中形成电气的金属模制件12.如果空腔15具有宽度W,并且如果空腔的上表面开口之间的顶部空间 如图15所示,金属层18的上表面具有垂直高度H,在电沉积步骤中停止金属层18的生长,使得留在金属层18上的顶部空间的高度H满足:H≥ W / 2.85,如果W≥300μm; H≥W/ 3.75,如果200μm≤W<300μm; H≥W/ 4,如果100μm≤W<200μm; 如果W <100μm,则H≥W/ 10。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Contact and connector
    • 联系人和连接器
    • JP2008262780A
    • 2008-10-30
    • JP2007103892
    • 2007-04-11
    • Omron Corpオムロン株式会社
    • HENMI YUKINOBUSEKI TOSHIMASANAGASAKA SHOGOYAMASHITA TOSHIO
    • H01R24/00H01R13/03H01R13/24
    • H01R43/16H01R12/716
    • PROBLEM TO BE SOLVED: To provide a connector having desired elastic force and sufficient joint length, and having a small size in a joint direction. SOLUTION: The connector is formed by electroforming, and comprises: a holding section 8 fixed by an insulator material; a contact section 10 in electrical contact with an electrically conductive member; and an elastically deformable spring section 9 connecting the holding section 8 and the contact section 10. The contact section 10 contacts the conductive member while sliding thereon substantially in a voltage application direction of electroforming, and the spring section 9 has a contact 5 that is elastically deformed in a direction vertical to the voltage application direction of electroforming. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供具有期望的弹性力和足够的接头长度并且在接合方向上具有小尺寸的连接器。 解决方案:连接器由电铸形成,包括:由绝缘体材料固定的保持部分8; 与导电构件电接触的接触部分10; 以及连接保持部分8和接触部分10的可弹性变形的弹簧部分9.接触部分10在基本上在电铸施加电压方向上滑动的同时接触导电部件,弹簧部分9具有弹性部分 在垂直于电铸施加方向的方向上变形。 版权所有(C)2009,JPO&INPIT
    • 3. 发明专利
    • Contact and manufacturing method therefor
    • 联系人及其制造方法
    • JP2012195110A
    • 2012-10-11
    • JP2011057075
    • 2011-03-15
    • Omron Corpオムロン株式会社
    • YOSHIDA HITOSHIYOSHIOKA HIDEKAZUSAKAI TAKAHIROSHIMIZU TAKAHIROYAMASHITA TOSHIO
    • H01R13/02H01R43/16
    • H01R12/778H01R13/2428H01R43/16
    • PROBLEM TO BE SOLVED: To provide a highly durable contact at a low cost, and to provide a manufacturing method therefor.SOLUTION: The repeated fracture number of a contact used in a connector for battery is investigated experimentally. A contact having a plate width of 0.1-1 mm is used. When the repeated fracture number is investigated using samples having surface roughness Ra of 0.040, 0.080, 0.120 and 0.180 μm, it is found that the repeated fracture number increases as the surface roughness Ra becomes smaller. In particular, it is found that the operation frequency of 3000 of a battery connector is satisfied when the surface roughness Ra is 0.200 μm or less. When the safety factor is 2, the operation frequency of 6000 is satisfied when the surface roughness Ra is 0.080 μm or less.
    • 要解决的问题:以低成本提供高度耐用的接触,并提供其制造方法。

      解决方案:实验研究了电池连接器中使用的触点的重复断裂数。 使用板宽为0.1-1mm的接触件。 当使用表面粗糙度Ra为0.040,0.080,0.120和0.180μm的样品研究重复断裂数时,发现随着表面粗糙度Ra变小,重复断裂数增加。 特别地,发现当表面粗糙度Ra为0.200μm以下时,电池连接器的工作频率为3000。 当安全系数为2时,当表面粗糙度Ra为0.080μm以下时,满足6000的工作频率。 版权所有(C)2013,JPO&INPIT

    • 4. 发明专利
    • Electro-casting method
    • 电铸方法
    • JP2008248277A
    • 2008-10-16
    • JP2007088396
    • 2007-03-29
    • Omron Corpオムロン株式会社
    • SEKI TOSHIMASAHATAMURA AKIHIKOYOSHIDA HITOSHIYAMASHITA TOSHIO
    • C25D1/00C25D1/10
    • C25D1/10
    • PROBLEM TO BE SOLVED: To provide an electro-casting method by which the shape of a surface opposed to a surface to be electrodeposited on a mother mold is controlled.
      SOLUTION: A metallic formed product 1 is electrically cast by forming an insulating layer F on the outer surface 4 of the conductive mother mold 2 on which a cavity 3 is formed and the side surface 5 of the cavity 3, arranging the mother mold 2 in an electrolytic cell and applying voltage to electrodeposit a metal on the bottom surface 6 of the cavity 3 and growing the metallic layer in the cavity 3 so that a space having a height H of ≥1/3 of the width W of the cavity 3 is left.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种电铸方法,通过该方法可以控制与电沉积在母模上的表面相对的表面的形状。 解决方案:通过在其上形成有空腔3的导电母模2的外表面4和空腔3的侧表面5上形成绝缘层F,铸造金属成形品1,将母体 模具2,并且施加电压以将金属电沉积在空腔3的底表面6上,并使空腔3中的金属层生长,使得具有高度H的宽度W的≥1/ 3的空间 空腔3留下。 版权所有(C)2009,JPO&INPIT