Abstract:
An electrical connector includes: an elongated insulative housing; plural contacts secured to the housing; an upper shell attached to the housing, the upper shell having a latching piece (12) secured to a middle portion of the housing; and a lower shell attached to the housing and connected to the upper shell at both end portions thereof in a longitudinal direction, the lower shell having a protruding piece (22) secured to the middle portion of the housing, wherein the upper shell includes a connecting piece (13) secured to a middle portion of the lower shell.
Abstract:
A cable connector assembly includes: a mating portion; a flat cable electrically connecting with the mating portion, the flat cable having plural wires and an outer boot enclosed the wires, the wires including a first wire and a second wire; an inner mold enclosing a part of the mating portion and a part of the flat cable; and a shielding shell enclosed the inner mold, wherein the first wire is a core wire directly enclosed by the outer boot and the second wire comprises a core wire and an insulative layer enclosing the associated core wire.
Abstract:
A cable includes: plural wires including plural pairs of differential signal wires, a detection signal wire, at least one auxiliary signal wire, a plurality of low speed signal wires, and two power wires arranged adjacent to the low speed signal wires; and a jacket enclosing the plurality of wires; wherein the differential signal wires, the detection signal wire, and the at least one auxiliary signal wire are arranged at an outer periphery of and enclosing the low speed signal wires and the two power wires, and every two adjacent differential signal wire pairs are separated by one of the detection signal wire and the at least one auxiliary signal wire.
Abstract:
A cable connector assembly includes a connector and a cable electrically connected thereto. The connector includes a metal shell, a metal cage enclosing a rear end of the metal shell, and an outer housing enclosing the metal cage therein. The connector has a front end for inserting into a mating connector and a rear end. The diametrical dimension of the front end is smaller than the diametrical dimension of the rear end. The outer housing includes a front portion extending forwardly beyond the metal cage to prevent the cable connector mistakenly inserted into an unintended receptacle connector.
Abstract:
A plug connector assembly (1) adapted to plug into a receptacle in two reversed directions, includes a mating member (10), a cable (30) electrically connected with the mating member, and an outer shell (50) including a main body (51), and a strain relief member (52) disposed at a rear end of the main body and enclosing the cable. The main body includes a front portion (510) enclosing a rear end (102) of the mating member, and a rear portion (511) opposite to the front portion and connected with the strain relief member. A thickness of the front portion is smaller than a thickness of the rear portion measured along a vertical direction. A thickness of the outer shell measured along the vertical direction is gradually increased in a constant slope along a front to rear direction
Abstract:
A cable connector assembly has a connector and a cable with a number of coaxial wires and a number of unshielded wires. The connector includes an insulative housing with a front tongue and a rear end, a number of contacts with mating portions exposed on the front tongue and connecting portions exposed on the rear end, and a spacer assembled to the rear end. The spacer forms a plurality of positioning holes extending therethrough along a front-to-back direction, and a passageway extending therethrough along a vertical direction perpendicular to the front-to-back direction. The coaxial wires are inserted through the corresponding positioning holes and across the passageway to reach the corresponding contacts along the front-to-back direction so as to cut the coaxial wires in the passageway along the vertical direction.
Abstract:
An electrical connector includes a housing and a terminal module mounted in the housing. The terminal module includes an insulative body, a fixed part mounted on the insulative body extending along a back-to-front direction, and a plurality of terminals. The fixed part defines a mounting hole through the fixed part along front-to-back direction. The insulative body has a connecting arm inserting into the mounting hole for position the fixed part on the insulative body. The fixed part defines a pilot hole extending to the mounting hole, and glue is disposed into the pilot hole to bond the fixed part with the insulative body.
Abstract:
A cable connector assembly comprises a cable, a connector connected with the cable. The connector comprises a plurality of contacts electrically connecting the cable, an insulative housing retaining the contacts, a metal shell having a top shell and a bottom shell assembled with each other around the insulative housing, and a fixing member fixing the cable. The bottom shell includes a rear wall having a opening for the cable to be inserted into. The top shell includes a top wall and a tongue piece extending from the top wall to the cable. The fixing member includes a main body fastening the cable and a soldering portion extending from the main body and soldering with the rear wall of the bottom shell.
Abstract:
A plug connector assembly (1) includes: a mating member (10) for receiving a mating connector; a printed circuit board (20) electrically connected with the mating member; an outer shell (60) enclosing the printed circuit board; a light member mounted on the printed circuit board; and a light pipe (50) mounted on the printed circuit board to transmit light emitted from the light member to an outer side of the outer shell; wherein the outer shell comprises at least one supporting member (624) extending inwardly to support the printed circuit board in order to prevent the printed circuit board from movement during mounting the light pipe to the printed circuit board.
Abstract:
A cable connector assembly (100) comprises an insulative housing having a receiving space (18) extending along a front-to-back direction, and a printed circuit board module (2) received in the receiving space of the insulative housing. The printed circuit board module defines a protruded ridge (24) offset to one side thereof, the protruded ridge extending along a vertical direction, and a groove (185) is defined in the receiving space for accommodating the protruded ridge.