Abstract:
An electrical connector assembly (100) comprises an insulative housing (1) comprising a lower wall, a receiving space (110), a cavity (120) above the receiving space (110), a shielding shell (9) enclosing the insulative housing (1), a number of contacts (2, 3) received in the insulative housing (1) and a cable (5). The contacts (2, 3) comprise a number of first contacts (2) for transmitting USB 3.0 signal and a number of second contacts (3) capable of transmitting USB 2.0 signal, and an extra signal contact (3e) transmitting an extra signal. The second contacts are partly received in the receiving space (110). The first contacts are partly received in the cavity (120). The engaging section of the extra signal contact (3e) is located on an inner surface of the lower wall.
Abstract:
A cable connector assembly (100) includes an electrical connector (1), a cable connecting the electrical connector electrically, an external shell (2) mounted to the connecting portion of the electrical connector and the cable. The electrical connector includes an insulative housing (12), a number of terminals (13) received in the insulative housing, and a front shell (11) mounted to the insulative housing. The insulative housing includes a base section (120) and a mating section (123) extending forwardly from the base section. The front shell (11) includes a frame portion (113) enclosing the mating section and a retaining portion (110) extending rearwardly from the frame portion and assembled to the base section. The retaining portion further defines a number of elastic portions (111) bent upwardly from the retaining portion and resisting against an inner face of the external shell.
Abstract:
A cable connector assembly for being mated with a mating connector along a mating direction, includes: a mating member, a cable electrically connected with the mating member, and a shielding shell having an end mounted on the mating member, and an opposite end mounted on the cable, the shielding shell including a first shell and a second shell mated with the first shell along a transverse direction perpendicular to the mating direction, wherein each of the first shell and the second shell has an asymmetrical structure.
Abstract:
A cable connector assembly includes an electrical connector and a cable connected with the electrical connector, the electrical connector including a mating plug for mating with a mating connector, a circuit board mated with the mating plug and the cable, and a metal housing disposed outside the circuit board, the cable including a plurality of core wires and a shield layer disposed outside thereof, the metal housing electrically connected with the shield layer. The circuit board has a lug disposed thereon that has a grounding portion, the metal housing electrically connected with the grounding portion of the lug for grounding.
Abstract:
A charging adapter comprises an insulative case and a circuit board assembly. The insulative case includes a first case and a second case, and defining a receiving cavity between the first and second cases. The circuit board assembly is retained in the receiving cavity. Each of the first and second cases comprises an inner shell and an outer shell molded together. The inner shells are made from hard plastic, and the outer shells are made from soft plastic.
Abstract:
A cable connector assembly includes: a plug including an insulative housing, plural conductive terminals received in the insulative housing, and a latch, the conductive terminals including a row of first terminals and a row of second terminals, the latch being disposed between the row of first terminals and the row of second terminals; a cable directly electrically connected to the conductive terminals of the plug; a crimping member; and a metal shell set on the outside of the plug, wherein the crimping member includes a crimping ring crimped on the outside of the cable, a reinforcement fixed to a tail of the plug, and a connecting portion connecting the crimping ring and the reinforcement.
Abstract:
A connector module (100) includes a base (1) including a front face (101), a rear face (102) opposite to the front face, a top face (103) connecting the front face and the rear face, and a mounting slot (104) extending through the front face and the rear face; a first connector assembly (2) mounted on the base; a second connector assembly (3) mounted on the base through the mounting slot along a rear to front direction, and extending beyond the front face for being mated with a mating connector; and a block member (4) mounted on the base with a portion projected into the mounting slot to block a rear end of the second connector assembly to prevent the second connector assembly from withdrawing from the base.
Abstract:
A cable connector assembly includes: an insulative housing; a printed circuit board (PCB) received in the insulative housing, the PCB having an upper surface; an electrical connector electrically connected with the PCB; a cable; a light member mounted on the PCB; a light guide member mounted on the PCB; and a shading member covered on the light guide member; wherein the electrical connector includes plural conductive terminals and plural fixing fingers fixed on the PCB, the PCB includes plural conductive pads exposed on the upper surface of the PCB and fixed with the conductive terminals and plural mounting holes on the upper surface of the PCB and matched with the fixing fingers.
Abstract:
A cable connector assembly includes: an electrical connector; and a cable electrically connected with the electrical connector, the cable including plural high-speed wires for transmitting high-speed signal, a pair of low-speed wires for transmitting low-speed signal, a pair of power wires for transmitting power signal, a pair of standby wires, a detection wire for transmitting detection signal, and a power supply wire; wherein the pair of standby wires, the detection wire, and the power supply wire are arranged in a line along a horizontal direction; the high-speed wires are evenly distributed on both sides of the line along a thickness direction vertical to the horizontal direction; the low-speed wires are disposed on a side of the line along the thickness direction; and the power wires are disposed on another side of the line along the thickness direction.
Abstract:
A plug connector (100) includes: a sleeve (1) having a receiving cavity (11); and a terminal module (10) including a fixed body (7) received in the receiving cavity (11), an insulative housing (11) located in front of the fixed body (7) and extended beyond the sleeve (1), a magnetic element (6) received in the sleeve (1), a plurality of movable terminals (4), and plural elastic elements (5), the insulative housing (11) having a number of through holes (31), the other end of the elastic element (5) bearing against the fixed body (7), the movable terminals (4) in non-retracted state being located inwardly of the insulative housing (3), the insulative housing (3) being operable to move backwards urging against the elastic elements (5) and exposing the movable terminals (4) in retracted state out of the insulative housing (3); wherein the movable terminals (4) are sheathed in the elastic elements (5).