Abstract:
Provided are a plug and an electrical connector component. The plug includes an insulating body, a circuit board fixed to the insulating body, and a cable electrically connected with the circuit board and extending backwards from the insulating body. The insulating body includes a body part and a mating part which extends forwards from the body part; the circuit board has an inserting part that protrudes forwards out of the mating part; metal contact pieces are distributed on upper and lower surfaces of the inserting part; the insulating body is provided with a pair of baffle plates extending forwards from the body part; a pair of the baffle plates are respectively arranged on left and right sides of the mating part; and a limiting groove configured to guide the insertion of the plug with the socket is formed between each of the baffle plates and the mating part.
Abstract:
A connector is capable of preventing an adverse effect due to the extra length of a flat cable. The connector includes: a main body to which a terminal of the flat cable having notches formed on both sides can be connected; a slider having engaging portions engageable with the notches, respectively, and configured to reciprocate relative to the main body along an insertion direction of the flat cable; and an actuator which sandwiches and fixes the flat cable in cooperation with the main body.
Abstract:
A lock part for locking an inserted state of a flexible printed circuit (FPC) is provided, in a housing of a connector, on both sides of an insertion portion in a width direction. Each of the lock parts has an arm portion and a projected portion formed on an inner side portion of the arm portion in the width direction and is protruded into the insertion portion. The arm portion has a cantilever shape with a stationary end and a free end and extends, in a depth direction, to the free end from an insertion side portion on an FPC insertion side, and can be elastically deflected outward in the width direction. The projected portion has tilted portions tilted relative to the depth direction toward the free end and the insertion side portion, and is detachably engaged with a notch on a side of the inserted FPC in the width direction.
Abstract:
A FFC structure includes transmission line units and a second insulating jacket. The adjacent transmission line units are spaced. Each of the plurality of transmission line units includes one or more signal lines, a first shield layer, a first ground conductor, and a second shield layer. Each of the signal lines includes a signal conductor to transmit a data signal or a power, and a first insulating jacket enclosing the signal conductor. The first shield layer surrounds the signal line and is connected to the first insulating jacket of each of the signal lines. The first ground conductor transmits a ground voltage. The second shield layer surrounds and is connected to the first ground conductor and the first shield layer. The second insulating jacket encloses the second shield layer of the plurality of transmission line units.
Abstract:
A connector includes a housing that has a fitting chamber with an insertion opening for a flat conductor in the upper surface thereof and whose lower side is placed on a circuit board, a locking spring that locks the flat conductor, and an unlocking member. The locking spring is provided with a housing fixing portion, an elastic arm that is rotationally displaced about the housing fixing portion away from the flat conductor, an engaging piece that engages with a locking portion of a through-shape provided in the flat conductor, and a sliding contact portion that comes into oblique sliding contact with the unlocking member displaced by a pressing operation, rotates the elastic arm, and extracts the engaging piece from the locking portion.
Abstract:
The present invention relates to a connector tongue element (1) for an electrical connector plug receptacle (4), the connector tongue element comprising: a flexible printed circuit (10) having an attachment portion (11); connector pins (12) attached and electrically connected to the flexible printed circuit at the attachment portion; and a first body (13) of polymeric material molded around at least a part of the attachment portion to form a connector base portion (14), the first body mechanically secures the attachment of the connector pins to the flexible printed circuit, wherein the connector pins extend from the connector base portion in a withdrawal direction along which an electrical connector plug is adapted to be withdrawn from the electrical connector plug receptacle; wherein the connector pins form a connector tongue portion (16) extending from the connector base portion in the withdrawal direction; and wherein the first body allow the connector pins to present connecting surfaces for connecting the electrical connector plug receptacle to the electrical connector plug.
Abstract:
A sealed electrical connection assembly joins an electrical component to a plug-in component. For liquid-tight sealing, the free, deformable ends of the conductor tracks of the electrical component and/or the contact elements of the plug-in component are provided with hydrophobic surfaces at least regionally, so that even after a plurality of plug contact operations have been performed, in the coupling position and, optionally, in the uncoupled position, the contact region is surrounded by hydrophobic surfaces.
Abstract:
A connector tongue element for a plug receptacle includes a flexible printed circuit. Connector pins are electrically connected to the flexible printed circuit at an attachment portion. A first body of polymeric material is molded around to mechanically secure at least a part of the attachment portion to form a connector base portion. The connector pins extend from the connector base portion in a withdrawal direction along which an electrical connector plug can be withdrawn from the plug receptacle. The connector pins form a connector tongue portion extending from the connector base portion in the withdrawal direction. The first body allows the connector pins to present connecting surfaces for connecting the plug receptacle to the electrical connector plug. The connector base portion includes electronic circuitry to monitor status of electric connections within the plug receptacle, and the first body is molded around the electronic circuitry.
Abstract:
A connector includes: a connector housing formed in a tubular shape by an insulating synthetic resin; a cover for closing an opening of one end side in an axial direction of the connector housing; and plural terminal fittings formed inside the connector housing by insert molding, one end of the terminal fittings each being arranged in an opening for coupling of the other end side in the axial direction of the connector housing and the other end of the terminal fittings each being connected to one end of an electric wire. The one end of the terminal fittings each led out of one inner wall part of the connector housing traverses the opening for coupling, and a distal end of the terminal fittings each is buried in the other inner wall part opposed to the one inner wall part.
Abstract:
The present invention is related to an electrically connecting cable including two plug connector and a conductive wire. Each plug connector includes a main body and a plugging portion extending from the main body. The plugging portion is of a plate shape, and the plugging portion is compatible with a female SATA connector and applied to be plugged into the female SATA connector. The conductive wire is connected between two main bodies. At the joint between the main body and the conductive wire, a longitudinal direction of the conductive wire is parallel with the plugging portion, and the longitudinal direction is perpendicular with an extending direction of the plugging portion. Accordingly, when the electrically connecting cable of the present invention is connected on the motherboard, the electrically connecting cable would not interfere in other parts on the motherboard.