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    • 102. 发明授权
    • Rear cover and process for forming resilient seal member therein
    • 用于在其中形成弹性密封构件的后盖和工艺
    • US06371807B1
    • 2002-04-16
    • US09551538
    • 2000-04-18
    • Takashi TakagishiHisashi Tsukamoto
    • Takashi TakagishiHisashi Tsukamoto
    • H01R1340
    • H01R13/5221H01R13/504
    • A rear cover for use in waterproof connectors and a process for forming a resilient sealing member molded in one piece in the rear cover are provided. The rear cover, in which an electric wire is inserted through a base wall, has a hollow holder pattern on an outer surface of the base wall and a molded-in resilient sealing member containing: a holder formed in the holder pattern; a sealing body extended from the holder, which protrudes toward an inner side of the base wall and has a through hole for the electric wire to pass therethrough; and a plurality of sealing lips formed around the through hole, wherein a portion of periphery of the holder pattern is notched to form a hollow of injection inlet for molding the resilient sealing member in one piece in the rear cover. Thus, the rear cover according to the present invention improves a property of mold releasing and maintenance of a mold. That is, a deformation and damage of the rear cover can be prevented, in addition, an action responding to wear of the mold is easily executed and a fin formation can be prevented.
    • 提供用于防水连接器的后盖和用于形成在后盖中一体成型的弹性密封件的工艺。 其中电线通过底壁插入的后盖在基壁的外表面上具有中空的保持器图案,以及模制的弹性密封构件,包括:形成在保持器图案中的保持器; 从保持件延伸的密封体,其朝向底壁的内侧突出并具有用于电线穿过的通孔; 以及形成在所述通孔周围的多个密封唇,其中所述保持器图案的周边的一部分被切口以形成用于将所述弹性密封构件一体地模制在所述后盖中的注入口的中空。 因此,根据本发明的后盖提高了模具的脱模和维护性能。 也就是说,可以防止后盖的变形和损坏,另外,容易执行与模具的磨损相应的动作,并且可以防止翅片的形成。
    • 103. 发明授权
    • Mechanism for detecting half-insertion of a terminal for a connector
    • 用于检测用于连接器的端子的半插入的机构
    • US5769664A
    • 1998-06-23
    • US632324
    • 1996-04-17
    • Hitoshi SaitoHisashi Tsukamoto
    • Hitoshi SaitoHisashi Tsukamoto
    • H01R13/42H01R13/422H01R13/436H01R13/64H01R13/514
    • H01R13/4365H01R13/4223
    • A mechanism for detecting whether a terminal of a connector is full-inserted or half-inserted into a terminal receiving chamber. A housing of the connector has a terminal receiving chamber into which a metal terminal is to be inserted, a flexible engagement arm projecting into the terminal receiving chamber and being designed engage to a metal terminal inserted into the terminal receiving chamber to thereby prevent disengagement of the metal terminal from the terminal receiving chamber, and a wall defining a deformation space between itself and the engagement arm, the engagement arm deformable in the deformation space. A front holder is to be inserted into the deformation space so as to prevent the metal terminal from being disengaged from the terminal receiving chamber, and has a half-insertion detector for detecting half-insertion of the metal terminal into the terminal receiving chamber. The wall includes an abutment surface to which the half-insertion detector abuts when the metal terminal is half-inserted into the terminal receiving chamber, the abutment surface being located closer to the deformation space than to a free end of the engagement arm. The wall further includes, at an inlet through which the front holder is to be inserted into the housing, an abutment surface guide for deforming the half-insertion detector towards the abutment surface.
    • 用于检测连接器的端子是否全插入或半插入端子接收室的机构。 连接器的壳体具有终端容纳室,金属端子将被插入其中,柔性接合臂突出到端子容纳室中并设计成与插入端子容纳室的金属端子接合,从而防止 金属端子,以及限定其与接合臂之间的变形空间的壁,所述接合臂在变形空间中可变形。 将前保持器插入变形空间中,以防止金属端子从端子接收室脱离,并具有用于检测金属端子进入端子接收室的半插入的半插入检测器。 当所述金属端子半插入所述端子容纳室时,所述壁包括邻接表面,当所述金属端子被半插入所述端子容纳室时,所述抵接表面位于所述接合表面上,所述邻接表面位于比所述接合臂的自由端更靠近所述变形空间。 所述壁还包括在所述前保持器将被插入所述壳体的入口处,用于使所述半插入检测器朝向邻接表面变形的邻接表面引导件。