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    • 91. 发明授权
    • High voltage relay
    • 高压继电器
    • US08350645B2
    • 2013-01-08
    • US12904076
    • 2010-10-13
    • Young Myoung Yeon
    • Young Myoung Yeon
    • H01H51/22
    • H01H50/12H01H9/30H01H11/00H01H50/041
    • Disclosed is a high voltage relay having an enhanced air-tight structure, the relay including a molded case formed by molding a synthetic resin having an electric insulating property into a box shape having one open surface, an actuator accommodated in the lower molded case, and an arc extinguishing mechanism allowing insertion of a stationary electrode therein and installed on the actuator for covering the open surface of the molded case, the arc extinguishing mechanism including a gas discharge hole portion blocked when a thermosetting resin coated on the arc extinguishing mechanism for air-tightness is hardened.
    • 公开了一种具有增强的气密结构的高压继电器,所述继电器包括通过将具有电绝缘性的合成树脂模制成具有一个开放表面的箱形形状而形成的模制箱,容纳在下模制箱中的致动器,以及 一种灭弧机构,其中固定电极插入其中并安装在用于覆盖模制壳体的敞开表面的致动器上,该消弧机构包括当涂覆在用于空调的灭弧机构上的热固性树脂时封闭的气体排出孔部分, 紧密度变硬。
    • 94. 发明申请
    • Electronic Component
    • 电子元器件
    • US20110102990A1
    • 2011-05-05
    • US12999772
    • 2009-06-16
    • Oliver Konz
    • Oliver Konz
    • H05K7/00
    • H05K13/0408H01H50/12H05K3/301H05K3/303H05K13/0409H05K2201/1003H05K2201/10568H05K2203/0195H05K2203/082Y02P70/613Y10S439/94
    • For automatic attachment of electronic components onto circuit boards, it is proposed that the electronic component be provided with a holding element that comprises a gripping point for a suction gripper. The holding element is designed as a clip that can be connected to the electronic component. The connecting occurs preferably by a snap-on action, wherein a form fit or positive fit is achieved by the shape of the clip, which is made of plastic. Preferably, the clip comprises a rib on the inside thereof facing the electronic component, said rib extending over at least half the periphery and engaging in a gap in the surface of the electronic component. If the electronic component is a coil, the rib, which is directed inward, can run along a helical line.
    • 为了将电子部件自动附接到电路板上,建议电子部件设置有保持元件,该保持元件包括用于吸引夹持器的夹紧点。 保持元件设计为可连接到电子元件的夹子。 连接优选地通过卡扣动作发生,其中通过由塑料制成的夹子的形状实现形状配合或正配合。 优选地,夹子包括在其面向电子部件的内侧上的肋,所述肋在至少一半的周边上延伸并且接合在电子部件的表面中的间隙中。 如果电子部件是线圈,则向内指向的肋可以沿着螺旋线行进。
    • 95. 发明授权
    • Electromagnetic relay
    • 电磁继电器
    • US06784773B2
    • 2004-08-31
    • US10722582
    • 2003-11-21
    • Kazuhiro TsutsuiHideyuki Wachi
    • Kazuhiro TsutsuiHideyuki Wachi
    • H01F5122
    • H01H50/12H01H50/14H01H50/28
    • A small-sized electromagnetic relay which can afford high current and dissipate generated heat efficiently is disclosed. A plate section 18c for coupling to one side of a yoke 14 is formed on a movable contact terminal 18. Countersunk rivet features at three or more positions which are not aligned on a line on the plate section 18c couple the movable contact terminal 18 to the yoke 14. A base end 16b of a movable contact spring 16 is coupled to the surface of the plate section 18c opposite to the yoke 14 to support the movable contact spring 16. In the countersunk rivet feature, each protrusion 14a formed on the yoke 14 is inserted into the corresponding countersunk hole 18d formed on the plate section 18c, respectively, and the tops of the protrusions 14a are crushed to expand its diameter so as to sandwich the plate section 18c against the yoke 14.
    • 公开了一种小型电磁继电器,可以高效率地提供高电流和散热。 在可动接触端子18上形成有用于与磁轭14的一侧相连的板部分18c。在三个或更多个位置上的沉头铆钉特征在板部分18c上的一条线上不对齐,将可动接触端子18连接到 活动接触弹簧16的基端16b联接到板部18c的与轭14相对的表面,以支撑可动接触弹簧16.在埋头铆钉特征中,形成在轭14上的每个突起14a 插入到分别形成在板部分18c上的对应的埋头孔18d中,并且突起14a的顶部被压碎以扩大其直径,以将板部分18c夹在轭14上。
    • 96. 发明申请
    • ELECTROMAGNETIC RELAY
    • 电磁继电器
    • US20040130418A1
    • 2004-07-08
    • US10722582
    • 2003-11-21
    • Kazuhiro TsutsuiHideyuki Wachi
    • H01H067/02
    • H01H50/12H01H50/14H01H50/28
    • A small-sized electromagnetic relay which can afford high current and dissipate generated heat efficiently is disclosed. A plate section 18c for coupling to one side of a yoke 14 is formed on a movable contact terminal 18. Countersunk rivet features at three or more positions which are not aligned on a line on the plate section 18c couple the movable contact terminal 18 to the yoke 14. A base end 16b of a movable contact spring 16 is coupled to the surface of the plate section 18c opposite to the yoke 14 to support the movable contact spring 16. In the countersunk rivet feature, each protrusion 14a formed on the yoke 14 is inserted into the corresponding countersunk hole 18d formed on the plate section 18c, respectively, and the tops of the protrusions 14a are crushed to expand its diameter so as to sandwich the plate section 18c against the yoke 14.
    • 公开了一种小型电磁继电器,可以高效率地提供高电流和散热。 在可动接触端子18上形成有用于与磁轭14的一侧相连的板部分18c。在三个或更多个位置上的沉头铆钉特征在板部分18c上的一条线上不对齐,将可动接触端子18连接到 活动接触弹簧16的基端16b联接到板部18c的与轭14相对的表面,以支撑可动接触弹簧16.在埋头铆钉特征中,形成在轭14上的每个突起14a 插入到分别形成在板部分18c上的对应的埋头孔18d中,并且突起14a的顶部被压碎以扩大其直径,以将板部分18c夹在轭14上。
    • 97. 发明授权
    • Solenoid switch modified for higher current passage
    • 电磁开关修改为更高的电流通过
    • US5917394A
    • 1999-06-29
    • US204661
    • 1998-12-01
    • Michael J Fuchs
    • Michael J Fuchs
    • H01H50/04H01H50/12H01H50/54H01F7/00
    • H01H50/12H01H50/045H01H50/546
    • A solenoid switch 10 modified for higher current passage provides a case 20 containing an electromagnetic coil 30 within which slides a cylindrical post 50. A first stage 60 and a second stage 80, stacked on an open end of the case, each include electrically conductive disks which alternate between electrically conductive states, wherein electrical current is transported between opposed electrical conductors 40, and a nonconductive state wherein an open circuit exists between the conductors 40. An air inlet 82 and associated air outlet 83 allow the use of compressed air to cool the conductive disks. An optional third stage 100 provides a further conductive disk which further reduces electrical resistance and heat production.
    • 为更高的电流通道而修改的电磁开关10提供了一个壳体20,其中包含一个电磁线圈30,在该电磁线圈30内滑动一个圆柱形柱50.第一级60和第二级80堆叠在壳体的开放端,每一个包括导电盘 其在导电状态之间交替,其中电流在相对的电导体40之间传输,并且在导体之间存在开路的非导电状态。空气入口82和相关联的空气出口83允许使用压缩空气来冷却 导电盘。 可选的第三级100提供进一步降低电阻和热产生的另一导电盘。