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    • 1. 发明申请
    • WIRE CLAMP
    • 电线钳
    • WO1983000272A1
    • 1983-01-20
    • PCT/JP1981000430
    • 1981-12-26
    • KITAGAWA INDUSTRIES CO., LTD.MATSUI, Kazuhiro
    • KITAGAWA INDUSTRIES CO., LTD.
    • H05K07/00
    • H05K3/301F16L3/23H02B1/202H02G3/32H05K7/06
    • Wire clamp for fixing wiring in a limited space on a printed circuit board, a chassis, a panel or the like, particularly in the vicinity of a wall portion thereof. An elastic band (16) is unitarily formed with a plastic base plate (12). A pair of guide walls (23) opposing each other standing perpendicular to the elastic band (16), and a locking member (26) having a ratchet (24) and a release operating member (25) are provided at the position corresponding to the open-end portion (19) of the elastic band (16), and a locking member (22) having a locking ratchet (20) and a stopper portion (21) is provided on the inside wall of the open-end portion of the elastic band (16). The stopper portion (21) of the elastic band (16) is inserted between the pair of guide walls to be positioned in the right/left direction, and the locking ratchet (20) is engaged with the ratchet (24) of the locking member (26) to fix the wires. To release from the fixed state, the release operating member (25) is operated from the side face of the elastic band (16).
    • 用于在印刷电路板,底盘,面板等的有限空间中固定布线的线夹,特别是在其壁部附近。 弹性带(16)与塑料基板(12)整体形成。 一对垂直于弹性带(16)垂直相对的引导壁(23)和具有棘轮(24)和释放操作构件(25)的锁定构件(26)设置在与 弹性带(16)的开口部分(19)和具有锁定棘轮(20)和止挡部分(21)的锁定构件(22)设置在该开口端部分 弹性带(16)。 弹性带(16)的止动部分(21)插入在一对引导壁之间,以沿左/右方向定位,并且锁定棘轮(20)与锁定构件的棘轮(24)接合 (26)固定电线。 为了从固定状态释放,释放操作构件(25)从弹性带(16)的侧面操作。
    • 4. 发明专利
    • DE9209347U1
    • 1992-10-01
    • DE9209347
    • 1992-07-11
    • KITAGAWA INDUSTRIES CO., LTD., NAGOYA, AICHI, JP
    • H01R13/658H01R13/6584H05K9/00
    • An electromagnetic shielding gasket attached to an end portion of a board member for contacting a desired contact portion and providing an electromagnetic shielding effect. The electromagnetic shielding gasket comprises a flat base portion linearly extending and having a width substantially equal to the thickness of the end portion of the board member. The gasket also comprises a plurality of pairs of resilient fingers arranged in an extending direction from the flat base portion. Each resilient finger transversely extends out from each side edge portion of the flat base portion. Some of the resilient fingers are bent downwardly toward one another, forming carrier strips for holding side walls of the board member therebetween. The other resilient fingers are bent downwardly or upwardly according to the position of the desired contact portion, forming resilient tabs for contacting the desired portion. The electromagnetic shielding gasket can be easily attached to the end portion of the board member using the carrier strips, and can contact any surface disposed relative to the board member using the resilient tabs.
    • 6. 发明专利
    • DE9101018U1
    • 1991-04-25
    • DE9101018
    • 1991-01-30
    • KITAGAWA INDUSTRIES CO., LTD., NAGOYA, AICHI, JP
    • H01H13/52H01H3/12H01H13/70H01H13/785
    • A pushbutton switch comprising a main body and a contact member supported by thin radial flanges. The main body is integrally molded of synthetic resin and composed of a plurality of switch buttons with cavities and open bottoms, thin flexible portions provided in communication with the peripheries of the switch buttons, and a base plate provided in communication with the peripheries of the flexible portions for supporting the switch buttons via the flexible portions. The contact member is made of conductive material at least at its bottom and is inserted into the cavity of the switch button. The thin flanges project from the contact member and are pressed onto the inner surface of the switch button so as to support the contact member to be movable in the axial direction of the switch button. The thin flanges can absorb vibration generated when the switch button is pressed hard and prevent the contact member from vibrating and chattering. When the button switch is obliquely pressed, the relative angle between the contact member and the switch button is changed so that the contact member comes in perfect contact with the contact points. In addition, the manufacturing operation to insert the contact member into the cavity of the switch button is remarkably simple.