Abstract:
An electrical connector including a housing; electrical contacts connected to the housing; an outer shield connected to the housing; and at least one inner shield mounted along a portion of a front side of the housing. The inner shield includes a general C shaped substantially unvarying and uniform front end, and two legs extending reward from the front end. Each leg comprises a rear end with a portion which extends into the housing to attach the rear end to the housing. The front end of the inner shield is not directly mechanically attached to a front of the outer shield.
Abstract:
An electrical connector including an electrical contact and an overmolded housing. The electrical contact includes an electrically conductive substrate of an alloy material and at least one sealing coating on a first section of the substrate. The sealing coating includes chromium and/or zinc. The overmolded electrical connector housing is overmolded onto at least a portion of the first section on the sealing coating. The sealing coating prevents a passage from forming at a joint between the contact and the overmolded housing for preventing flow of vapor and/or liquid and/or other fluid through the joint.
Abstract:
An electrical connector assembly (10) including a housing (16), electrical contact terminals (18), a hood (20) and a filter member (21). The housing is sized and shaped to be plugged into an electrical connector socket of an initiator of a gas generator. A first one of the terminals has a wire connection section (38) and a female connection section (39). The hood surrounds the female connection section of the first terminal. The hood is a stamped and rolled sheet metal member which has a general tube shape. The filter member is connected to the first terminal for providing electromagnetic induction suppression. The filter member can be on a filter assembly having a multi-capacitor chip attached to a spring lead frame.
Abstract:
An electric connector, wherein when a flat flexible cable is inserted thereinto with an actuator kept open, the actuator is automatically closed. The opening/closing type actuator (2) comprises an actuator operation part (22) rotatable together with an actuator body part (21) and actuator projected piece parts (23) projected at both end parts of the actuator operation part (22). The contact beam (31) of a contact piece (3) is formed to have a deformability capable of producing a deformation thereon by a pressing force acting thereon from the actuator operation part (22) when it is brought into contact with the actuator operation part (22) inopening the actuator (2) and a recovering force acting thereon so as to return the actuator (2) to a closed state. When the front part of the flat flexible cable (C) is brought into contact with the projected piece part (23) of the actuator with the actuator (2) kept open and the flat flexible cable (C) is pushed in, the actuator operation part (22) is rotated to close the actuator (2).
Abstract:
A differential transmission connector in which degradation of signal characteristics is improved. The connector being mated to a mating connector and making electrical connection of two or more differential transmission cables each having a pair of signal lines and at least one drain line, comprises a contact for a pair of adjacent signal lines being connected with the pair of signal lines of the cable, a contact for the earth line being connected with the at least one drain line of the cable, a carrier having the contact for a pair of signal lines and the contact for the earth line arranged alternately in one row on an identical plane in the width direction intersecting the axial direction of the cable perpendicularly, and a shell covering the contact for signal lines, the contact for the earth line and the carrier, wherein a drain line located at at least one end of the arrangement is connected with the shell.
Abstract:
A printed circuit board electrical power contact (28) for connecting a daughter printed circuit board to a mating contact on another electrical component. The power contact includes a main section (52); at least one electrical daughter board electrical contact section (54) extending from the main section; and at least one mating connector contact section (56) extending from the main section. The mating connector contact section includes at least three forward projecting beams. A first one of the beams extends outward in a first direction as the first beam extends forward from the main section and has a contact surface (62) facing the first direction. Two second ones of the beams are located on opposite sides of the first beam and extend outward in a second opposite direction as the second beams extend forward from the main section. The second beams have contact surfaces (64) facing the second direction.
Abstract:
A connector (21) is made up of a receptacle housing (26) fixed to one wiring board (22), and a plug housing (27) fixed to another wiring board (24). At least one of an inner surface of a side wall (26a) of the receptacle housing (26) and a side surface (27a) of the plug housing (27) is provided with a projection (26c) which projects towards the plug housing (27) from the vicinity of the bottom surface (26b) of the receptacle housing (26) when the two housings (26, 27) are fitted to each other. The size C1 of the fit clearance between the two housings (26, 27) at the projection (26c) is smaller than C2 of the fit clearance between the housings (26, 27) at the area other than the projection (26c).
Abstract:
This invention relates to a connector having a two-part casing (1, 2) whose parts are adapted to be plugged together, the first casing part (1) engaging at least to some extent by way of a collar (3) around the second casing part (2) in the plugged-together position; and an additional latchable locking means (4, 5) disposed on the two casing parts (1, 2). The additional locking means comprises: a catch projection (4) disposed on the collar surface (3); a locking arm (5) secured to the second casing part (2) and co-operating with the catch projection (4), and a slide (7) as a means for securing the locking arm, the slide (7) being movable on the locking arm (5) lengthwise thereof and prolonging the locking arm (5) into an advanced position until the locking arm engages in a stirrup (6) disposed on the collar (3) after the catch projection (4) as seen from the locking arm (5).
Abstract:
This invention relates to a contact bar having plug-in sockets, with a power bar (1) from which lateral webs (15) extend comb-fashion, plug-in sockets (16) being formed on the webs. The sockets have resilient first spring arms (2) which extend upwards at an inclination to one another from a baseplate (17) which either forms or is connected to the webs (15) as far as their plug-in end where they are bent round to widen funnel-fashion in order to facilitate the introduction of a blade contact (18), each spring arm pair (2) having an overspring (3) which also has two spring arms covering a larger part of the first spring arms and starting from a unitary baseplate (19) in a corresponding number and pressing the first spring arms (2) together at their ends. The invention also relates to a ganged plug-in unit having such contact bars.