Abstract:
An electrical connector assembly includes: a connector housing receiving a plurality of contacts mounted to an internal substrate; a shielding shell enclosing the connector housing; and a pair of latches secured to the connector housing in a cantilevered fashion; wherein the latch has an arm secured to the substrate.
Abstract:
a cable connector assembly comprises an insulative housing, a plurality of contacts retained in the insulative housing and including a grounding contact, a cable and a connecting member, each of the contacts defines a soldering portion, the soldering portions are arranged in two rows spaced along a vertical direction, each row of the soldering portions includes one part of the grounding soldering portion, the cable includes a plurality of coaxial wires to electrically connect with corresponding contacts, each coaxial wire includes an inner conductor, a inner insulative layer enclosing the inner conductor, a braiding layer enclosing the insulative layer, and an outer insulative layer enclosing the braiding layer, the connecting member is electrically connected with the parts of the grounding soldering portion and the braiding layers of the coaxial wires.
Abstract:
A cable connector assembly (100) includes a mating member (10) adapted to be mated with a mating connector, a cable (20) electrically connected with the mating member, a strain relief member (30) enclosing the cable, and an outer shell (40) assembled at outer sides of the mating member and the strain relief member. The outer shell includes a first shell (41) and a second shell (42) mated with the first shell. The strain relief member includes a mating portion (31) enclosed by the outer shell and a ring portion (32) connected with the mating portion. Both of the first shell and the second shell are latched with the mating portion.
Abstract:
A cable connector assembly comprises a cable and an electrical connector electrically connected with the cable, the electrical connector includes a mating member, a PCB connected with the mating member, a metal shell enclosing the PCB, and an outer case covering the metal shell, the PCB includes a front end, a rear end and a middle portion connecting with the front end and the rear end; wherein the light emitting element is mounted on the middle portion of the PCB, the metal shell includes a front portion, a rear portion, and a connecting portion connecting the front portion and the rear portion, the connecting portion defines a groove, a distance between a bottom of the groove and the PCB is equal to or smaller than a height of the light emitting element, and the outer case has a light-transmissive portion to pass light emitted by the light emitting element.
Abstract:
A cable connector assembly comprising: an electrical connector including a plug portion, a printed circuit board (PCB) electrically connected to the plug portion and fixed at a rear end of the plug portion, a Light Emitting Diode (LED) lamp mounted on the PCB, a metal shell enclosing the PCB and having a receiving hole, and an optical element disposed on the plug portion in front of the LED lamp; and a cable electrically connected with the electrical connector; wherein the LED lamp has a curved sidewall facing the optical element and a rear sidewall facing the cable, an upper end of the LED lamp extending through the receiving hole of the metal shell.
Abstract:
A cable connector for soldering to a cable defining some core wires includes an insulative body, a plurality of terminals, and a spacer. Each terminal includes a soldering portion extending rearwardly out of the insulative body soldering to the core wires. The spacer includes some stalls and a respective receiving slot formed between every two adjacent stalls for receiving the soldering portions. The receiving slot includes a first receiving slot proximal to the insulative body and a second receiving slot distal from the insulative body. The second receiving slot includes a lower receiving space and an upper receiving space with a smaller width. The soldering portion of the terminal includes a first portion received in the lower receiving space and a second portion received in the first receiving slot. The width of the first portion is larger than the width of the second portion to reduce the impedance.