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    • 5. 发明授权
    • Fuse
    • 保险丝
    • US09443689B2
    • 2016-09-13
    • US14239127
    • 2012-08-17
    • Joachim WosgienRalf Lange
    • Joachim WosgienRalf Lange
    • H01H85/143H01H85/30H01H85/36H01C7/12H01H37/76H01H85/12
    • H01H85/143H01C7/126H01H37/761H01H85/12H01H85/30H01H85/303H01H85/36
    • The invention relates to a fuse for connection to a protective component of an overvoltage protective device. A fuse wire runs between a first cap and a second cap. In some implementations, the fuse wire may be held on the first cap by means of a soldered connection and fastened to a connection electrode. The connection electrode may be movable with respect to a fuse body and under mechanical pretension with respect to a fuse body. The fuse wire melts when acted on with a high I2t, and the soldered connection melts upon external heating by the overvoltage protective device above a specified temperature by means of the thermal connection. Electrical contact between the first cap and the connection electrode is broken via the mechanical pretension if the fuse wire or the soldered connection melt.
    • 本发明涉及一种用于连接到过电压保护装置的保护元件的保险丝。 保险丝线在第一帽和第二帽之间延伸。 在一些实施方式中,熔丝可以通过焊接连接件固定在第一盖上并且被固定到连接电极。 连接电极可以相对于保险丝体移动并且相对于保险丝体在机械预张力下可移动。 当I2t高电压时,熔断丝熔断,焊接后的连接通过过热保护装置在超过规定温度的外部加热时通过热连接熔化。 如果保险丝或焊接连接熔化,则第一盖和连接电极之间的电接触将通过机械预张力断开。
    • 6. 发明授权
    • Reflowable circuit protection device
    • 可回流电路保护装置
    • US09431203B2
    • 2016-08-30
    • US13567245
    • 2012-08-06
    • Shelomon Patrick DoblackJianhua ChenMatthew P. Galla
    • Shelomon Patrick DoblackJianhua ChenMatthew P. Galla
    • H01H85/36H01H37/76H01H37/04
    • H01H85/36H01H37/761H01H2037/046H01H2037/762
    • A circuit protection device includes a housing, which includes first and second electrodes. The device includes a conductive slider inside the housing. At a first location within the housing, the slider provides an electrical connection between the first and second electrodes. At a second location within the housing, the slider does not provide the electrical connection. A spring is secured to and stretched between the slider and an inner side of the housing such that the spring is held in tension in an expanded state. The slider is held at the first location by a solder between the slider and the first and second electrodes. After the device is armed, detection of an over-temperature condition causes the solder to begin to melt and the spring to compress and pull the slider to the second location within the housing, thus severing the electrical connection between the first and second electrodes.
    • 电路保护装置包括壳体,其包括第一和第二电极。 该装置包括在壳体内的导电滑块。 在壳体内的第一位置处,滑块提供第一和第二电极之间的电连接。 在壳体内的第二位置处,滑块不提供电连接。 弹簧被固定到滑块和壳体的内侧之间并被拉伸,使得弹簧在膨胀状态下保持张紧。 滑块通过滑块和第一和第二电极之间的焊料保持在第一位置。 在装置布防后,检测到过温度状况导致焊料开始熔化,并且弹簧压缩并拉动滑块到壳体内的第二位置,从而切断第一和第二电极之间的电连接。
    • 10. 发明授权
    • Protective element and method for producing the same
    • 保护元件及其制造方法
    • US08767368B2
    • 2014-07-01
    • US12988199
    • 2009-03-02
    • Yoshihiro Yoneda
    • Yoshihiro Yoneda
    • H02H5/04
    • H01H85/36H01H83/10H01H83/20H01H85/46H01H2037/762H01H2085/0414H01H2085/466
    • The protective element includes an elastic member firmly adhered through a solder to second conductor layers and current-carrying electrode terminals formed on a prescribed substrate in such a manner to divide a current-carrying path in plural to form an electric current interruption portion. The solder has a liquid-phase point higher than a mounting temperature at which the protective element is mounted to a protection target device. The elastic member is soldered onto the second conductor layers and the current-carrying electrode terminals in a state that the elastic member maintains a level of stress allowing at least one of the current-carrying electrode terminals among the second conductor layers and the current-carrying electrode terminals to be separated from the elastic member by deformation of the solder even in a case where the solder is not completely melted.
    • 保护元件包括通过焊料牢固地粘附到形成在规定基板上的第二导体层和载流电极端子的弹性构件,以便分开多个载流路径以形成电流中断部分。 焊料具有比保护元件安装到保护对象器件的安装温度高的液相点。 弹性构件以这样的状态被焊接到第二导体层和载流电极端子上,弹性构件保持应力水平,允许第二导体层和载流电极中的至少一个载流电极端子 电极端子即使在焊料未完全熔化的情况下也通过焊料变形而与弹性部件分离。