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公开(公告)号:WO2013020929A1
公开(公告)日:2013-02-14
申请号:PCT/EP2012/065286
申请日:2012-08-03
Applicant: TYCO ELECTRONICS SIMEL S.A.S. , ROYER, Laurent
Inventor: ROYER, Laurent
Abstract: A telescopic busbar device is provided having first conducting member and a second conducting members that are telescopically assembled so that the second conducting member can reversibly extend from an end part of the first conducting member along an axial direction for adjusting the length of the telescopic busbar. The telescopic busbar may also be integrated with functions such as expansion movement, damping of oscillation movements of the telescopic busbar and surge protection. A guiding system that can be integrated in the telescopic busbar for guiding the expansion/retraction movement of the second conducting member is also provided. Flexible connectors for connecting the telescopic busbar to connection points with integrated radial damping function are also described.
Abstract translation: 提供了一种伸缩母线装置,具有第一导电构件和第二导电构件,该第一导电构件和第二导电构件可伸缩地组装,使得第二导电构件可沿着轴向方向从第一导电构件的端部可逆地延伸,以调节伸缩母线的长度。 伸缩式母线还可以与诸如膨胀运动,伸缩母线的振荡运动的阻尼和浪涌保护的功能集成。 还提供了可以集成在伸缩母线中以引导第二导电构件的伸缩运动的引导系统。 还描述了用于将伸缩母线连接到具有集成径向阻尼功能的连接点的柔性连接器。
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公开(公告)号:WO2015082674A3
公开(公告)日:2015-06-11
申请号:PCT/EP2014/076692
申请日:2014-12-05
Applicant: TYCO ELECTRONICS CORPORATION , TYCO ELECTRONICS SIMEL S.A.S. , TYCO ELECTRONICS BRASIL LTDA
Inventor: GALLA, Matthew , LA SALVIA, José Alexandre , FUZETTI, Vagner , MAHER, Kathryn Marie , MARCAILLOU, Sebastien , BUTHIOT, Raphaël , MOLLICA BORELLI, Luis Otavio , HAFAIEDH, Noureddine
Abstract: An electrical connector (100) for mechanically and electrically connecting first (12) and second (14) cables, each including an elongate electrical conductor (12A, 14A) covered by an insulation layer (12B, 14b), includes a connector body (110), an electrically conductive first insulation piercing feature (151, 153) on the connector body (110), an electrically conductive second insulation piercing feature (154, 155) on the connector body and electrically connected to the first insulation piercing feature (151, 153), and a compression mechanism (170). The first insulation piercing feature (151, 153) is configured to pierce through the first insulation layer (12B) and electrically engage the first electrical conductor (12A). The second insulation piercing feature (154, 155) is configured to pierce through the second insulation layer (14B) and electrically engage the second electrical conductor (14B). The compression mechanism (170) is configured and operable to apply a clamping load along a clamping axis (A-A) extending through both of the first and second electrical conductors (12A, 14A) to force the first (151,153) and second (154, 155) insulation piercing features into electrical engagement with the first (12A) and second (14A) electrical conductors, respectively.
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