Abstract:
An electrical connector (100) mountable on a bottom side of a PCB (200) includes a dielectric housing (40), a plurality of terminals (50) retained in the housing, and a shielding case (130) covering the housing. The shielding case has a front section (20) with an upwardly protruding orientation key (210), a rear section (30) and a covering section (10). The covering section is formed from one piece of metal sheet and provides a pair of side walls (12), a transverse wall (11) interconnected therebetween, two metal feet (120) projecting upwardly from corresponding side walls for securing the connector to the PCB and a detent lock (110) formed in a middle of the transverse wall bending inwardly and rearwardly for providing a retention force against a mating complementary connector.
Abstract:
A cable connector assembly (1) includes a housing (10), a pair of first electrical connectors (20), a pair of second electrical connectors (30), a shielding member (40), a pair of first cables (50) and a second cable (50). The housing has an elongate base (103). The base has a mating face (105) and a rear face (106) opposite to the mating face. The base defines a pair of first cavities (101) and a pair of second cavities (102) arranged side by side and extending inwardly from the mating face. The first cables and the second cable respectively electrically and mechanically connects with the first electrical connectors and the second electrical connectors and extend beyond the rear face for being mounted on a mother board of an electronic apparatus. The shielding member is assembled on the housing. The cable connector assembly can be fastened on a panel of the electronic apparatus for providing input/output ports.
Abstract:
A cable connector assembly (1) includes a housing (10), a plurality of electrical connectors (20, 30), a shielding member (40), a plurality of cables (50, 60) and outstretched wires (26, 36). The housing defines a plurality of positioning slits (110) recessing inwardly from a bottom face. The positioning slit has a receiving part (111) at a front end thereof and a holding part (112) communicating with the receiving part. The shielding member encloses a front portion of the housing with a retaining portion (407) received in the receiving part of the positioning slit. Each outstretched wire electrically connects with a grounding conductor of the cable and can be retained in the holding part of the positioning slit of the housing with a front end thereof soldered on the retaining portion of the shielding member for providing a grounding transmission.
Abstract:
A plug connector (1) includes a casing (10), a mating portion (30) retained by the casing for mating with a mating connector, a pair of lock members (61) and a pair of release buttons (62). The lock members are fixed in the casing. The lock members each include a resilient lock arm (611). A pawl (612) extends from an end of each lock arm for engaging with a corresponding part of the mating connector. The release buttons are separately made and are pivotally mounted in the casing. The release buttons each include an actuating protrusion (622) for engaging with the lock arm of the lock member. The release button is operable to deflect the lock arm by the actuating protrusion for disengaging the pawl from the corresponding part of the mating connector.
Abstract:
A cable connector assembly (1) in accordance with the present invention includes a plug (3), a cable (4) and a fusible element (5). The plug comprises a terminal (30) having a connecting portion (301). The connecting portion defines a hole (304) extending through a first and an opposite second faces (302, 303) thereof. The fusible element is filled in the hole (304). The cable includes a wire (40) having a soldering portion (400). The soldering portion includes a first tail (401) and a second tail (402) respectively soldered onto the first and the second faces. The first and the second tails are connected with each other by the fusible element.
Abstract:
An electrical connector assembly (10) comprises a main dielectric housing (1) defining a first cavity (14) and a second cavity (13) separated from the first cavity, a first shielded connector (5) inserted into the first cavity, and a modular jack connector (20) inserted into the second cavity. The modular jack connector has a dielectric body (4), a terminal module (42) retained in the dielectric body, a pair of LEDs (3) fitted with the dielectric body, and a single retainer (2) covered onto the LEDs to secure the LEDs in position.
Abstract:
An electrical connector (2) includes an insulative housing (20), a number of electrical terminals (21), a conductive shield (23) and a retention element (22). The insulative housing includes a base portion (24) defining a receiving cavity (200) and an island portion (25) extending through the receiving cavity to substantially divide the receiving cavity into a first portion (201) and a second portion (202). The retention element includes a retention portion (223) retained by the insulative housing, a transition portion (222) extending forwardly from the retention portion and a curved portion (221) extending upwardly and rearwardly from the transition portion to project into the second portion of the receiving cavity.