Abstract:
An electrical connector assembly (100), comprising: an insulative housing (1) having at least one receiving space formed therein; a latch (3) formed on a top surface of the insulative housing, the latch defining a front end connected to the top surface and a rear end cantilevered from the front end; and two PCB modules (2) received into each receiving space (11), one of the two PCB modules defining a holding portion (231) holding the rear end of the latch.
Abstract:
A cable connector assembly includes a conductive housing, a pair of PCBs, two cables and a metal shell assembled to the housing. The housing defines a receiving cavity. The PCBs are received in the receiving cavity at different levels. The two cables are located at a rear wall of the housing and electrically connect to the PCBs. The metal shell is assembled to the housing and includes a frame portion, and an extension portion extending forwardly from an upper wall of the frame portion. The frame portion encloses a rear portion of the housing and the extension portion has a pair of first position holes. The housing has a pair of second position holes are aligned with first position holes respectively. Two bolts penetrate through the first position holes and are locked in the second position holes respectively.
Abstract:
An cable assembly includes an external cover having a back wall defining a retaining cavity; at least one printed circuit board accommodated in the external cover; two cables arranged in juxtaposed manner, each cable including a number of wires, a shielding layer shrouding the wires, a metallic braiding enclosing the shielding layer and an insulative jacket enclosing the metallic braiding; two ring shaped reinforcement members, each reinforcement member located between the shielding layer and the metallic braiding of a front segment of the each cable; and a ferrule crimped to the front segments of the two cable and encircling the reinforcement members, the ferrule retained in the retaining cavity, and the metallic braiding of each cable sandwiched between the ferrule and the reinforcement member inside the corresponding cable.
Abstract:
A connector comprises an insulative housing having a main body with an inserting cavity and a plurality of contacts received in the insulative housing. The contacts have two grounding contacts and two power contacts, each grounding contact is formed with a plurality of first contacting portion, and each power contact is formed with a plurality of second contacting portion. The first contacting portions of the first and the second grounding contacts are alternately disposed within the inserting cavity and located in a first row, the second contacting portions of the first and the second power contacts are alternately disposed within the inserting cavity and located in a second row, the first row is closer to a front opening of the inserting cavity than the second row.
Abstract:
An electrical connector for mounting to a print circuit board includes an insulative housing, a metal shell shielding around the housing and a plurality of terminals received in the housing. Each terminal having a body section and a contact section extending from the body section, the housing includes a first housing and a second housing, the body section being received in the second housing and the contact section extending from the second housing to the first housing. The first housing has a first dielectric constant and the second housing has a second dielectric constant higher than the first dielectric constant so as to prevent the characteristic impedance change.
Abstract:
A cable assembly (100) comprises a first connector (1), a second connector (2), a housing shroud (3) positioning the first connector (1) and the second connector (2) and a cable (4) connecting with rear ends of the first and the second connectors (1, 2). The cable assembly (100) further comprises two resilient members (15) abutting against an outside of the first connector, a gap (30) is defined between the housing shroud (3) and the first connector (1) so that the first connector can float under a condition that the resilient member resists the first connector.
Abstract:
A cable connector (100) includes an insulative housing (1), a plurality of contacts (2) retained in the insulative housing (1), a cable (3) connecting to the contacts (2), an optical member (4) retained in the insulative housing (1) and a retaining member (5). The insulative housing (1) includes a pair of opposite front and rear walls (11, 12), a pair of opposite top and bottom walls (13, 14) and a receiving space (121) depressed forwardly from the rear wall (12). The retaining member (5) includes two springs (52) forwardly abuts against the optical member (4) and a positioning block (51) forwardly abuts against the spring (52).
Abstract:
A connector assembly includes a receptacle (200) having a latching tab (2) defining a latching hole (21) and a plug connector (100). The plug connector includes a housing (1) having a latching nose (111) for latching with the latching hole and a releasing mechanism. The releasing mechanism includes two resisting beams (53) disposed on the housing and having two protrusions (531), a puller (71), and an operator (72) having two guiding portions (722) projecting toward and in front of the protrusions. The guiding portions slide beneath the protrusions, in response to a rearward movement of the puller, to tilt the resisting beams upwardly and lift the latching tab from a latched position to a released position for releasing the latching nose from the latching hole.
Abstract:
A cable connector assembly (100) comprises an insulative housing (1), a plurality of contacts (2), a metallic shell (3) enclosing the insulative housing and a spacer (5). The insulative housing includes a first tongue (121) and a second tongue (122). The contacts comprise a plurality of first contacts held in the first tongue and a plurality of second contacts held in the second tongue. At least one of the contacts comprises a main body (2210), a pair of vertical soldering portions (2212) and a pair of connecting portions (2214), the pair of connecting portions are connected with a top edge and a bottom edge of the main body, and the connecting portions are located on different levels, the pair of soldering portions are stagger with each other.
Abstract:
A cable connector assembly (100) comprises an insulative housing (1), a plurality of contacts (2), a metallic shell (3) enclosing the insulative housing and a spacer (5). The insulative housing includes a first tongue (121) and a second tongue (122). The contacts comprise a plurality of first contacts held in the first tongue and a plurality of second contacts held in the second tongue. At least one of the contacts comprises a main body (2210), a pair of horizontal soldering portions (2212) and a pair of connecting portions (2214), the cable has a group transmitting high speed signal, and the group of cable defines two grounding wires (623) connected with the corresponding soldering portion.