Abstract:
An electrical receptacle connector includes a metallic shell, an insulated housing, first and second groups of terminals, an adapting circuit board, and extension terminals. The insulated housing is received in the metallic shell and includes a base portion, upper and lower tongue portions, and a partition plate. Upper and lower plug openings are respectively formed between the partition plate and the upper portion of the metallic shell and between the partition plate and the lower portion of the metallic shell. The terminals are held in the insulated housing. The adapting circuit board is disposed at the rear of the insulated housing and includes an upper-row contact set connected to the first group of terminals and a lower-row contact set. One ends of the extension terminals are connected to the lower-row contact set, and the other ends of the extension terminals are extended to the bottom of the insulated housing.
Abstract:
An electrical receptacle connector includes a metallic shell, an insulated housing, a plurality of first receptacle terminals, a plurality of second receptacle terminals, and a rear cover plate. The insulated housing is received in the receiving cavity. The first receptacle terminals and the second receptacle terminals are respectively disposed at an upper portion and a lower portion of the insulated housing. The rear cover plate includes a baffle plate and one or more hole. The hole is formed on the surface of the baffle plate for checking tail portions of the second receptacle terminals which are formed as SMT (surface mount technology) legs. Accordingly, the soldering condition between the tail portions of the second receptacle terminals and contacts of a circuit board can be checked from the hole.
Abstract:
An electrical connector has a base, a terminal set, a pair of holding pieces, an insulating body and a shell. The base has two holding piece slots respectively formed in two sides of the bottom of base. The pair of holding pieces is assembled into the holding piece slots respectively. Each holding piece is C-shaped and has a notch formed in a rear end of the holding piece and serving to hold a PCB board. A front end of each holding piece is assembled into the base. Given the pair of holding pieces with an assemblable structure, the size of the holding pieces can be tailored to the requirement of customers. The shell is formed by a two-stage of drawing process to enhance overall strength of the shell to facilitate the plating process afterwards.
Abstract:
A standing-type electrical receptacle connector includes a first terminal module, a second terminal module, and a grounding plate that are received in a metallic shell. The first terminal module includes a first insulated member and first receptacle terminals. The second terminal module includes a second insulated member and second receptacle terminals. The first receptacle terminals include first ground terminals, and tail portions of the first ground terminals are extending out of the first insulated member. The second receptacle terminals include second ground terminals, and tail portions of the second ground terminals are extending out of the second insulated member. The grounding plate includes legs each disposed between the corresponding tail portions, each of the legs and the corresponding tail portions are aligned along a vertical line and inserted into the same ground soldering hole of a circuit board. Therefore, the cost for soldering procedure can be reduced.
Abstract:
An electrical receptacle connector includes a first terminal module, a grounding member, a second terminal module, and a metallic shell. The first terminal module includes a first insulated housing, a plurality of first terminals, and a grounding plate. The first insulated housing includes two grooves. The first terminals and the grounding plate are in the first insulated housing. A surface of the grounding plate is exposed from the first insulated housing. The grounding member includes two side protrusions and two protruding structures. The side protrusions are engaged with the grooves. The protruding structures are in contact with the grounding plate. The second terminal module is assembled to the first terminal module. The grounding member is between the first terminal module and the second terminal module.
Abstract:
An electrical receptacle connector includes a metallic shell, an insulated housing received in the metallic shell, receptacle terminals, and a grounding plate. The receptacle terminals and the grounding plate are at the insulated housing. The insulated housing includes a base portion and a tongue portion extending from the base portion. The grounding plate includes a plate body, extension arms, and contact regions. The front of the plate body is near to a front lateral surface of the tongue portion, and the rear of the plate body is extending to the base portion. The plate body is between the receptacle terminals. The extension arms are extending from the plate body. The contact regions are formed on the extension arms and in contact with an inner wall of the shell body. Accordingly, the grounding plate is in contact with the metallic shell for providing grounding and reducing the electromagnetic interference.
Abstract:
An electrical receptacle connector includes a metallic shell, an insulated housing, a plurality of first receptacle terminals, and a plurality of second receptacle terminals. The insulated housing received in the metallic shell is assembled with the first receptacle terminals and the second receptacle terminals. The tail portion of the power terminal of the second receptacle terminals is adjacent to and combined with the tail portion of the power terminal of the first receptacle terminals. The tail portion of the ground terminal of the second receptacle terminals is adjacent to and combined with the tail portion of the ground terminal of the first receptacle terminals. The combined tail portions can be inserted into the same soldering hole of a circuit board. Therefore, the cost and time for the soldering procedure of the connector manufacturing can be reduced.
Abstract:
An electrical plug connector includes an insulated housing, a plurality of upper-row plug terminals, a plurality of lower-row plug terminals, and a rear terminal organizer. The insulated housing includes a rear assembling portion defined at the rear of the insulated housing. The rear terminal organizer is assembled to the rear of the insulated housing. The rear terminal organizer includes a plurality of through holes and a buckling portion. The through holes are defined through the rear terminal organizer from the front to the rear. The rear of the upper-row plug terminals and the rear of the lower-row plug terminals respectively pass through the through holes. The buckling portion is defined at the front of the rear terminal organizer. The buckling portion is adapted to be mated and engaged with the rear assembling portion.
Abstract:
A quick unlocking optical fiber plug connector has a casing, an optical fiber plug module, a pull lever and a cable assembly. The optical fiber plug module is mounted on a front end of the casing and has a module case and an optical fiber shaft assembly. The module case has a locking arm, a resilient linking tab and a connecting member formed on the module case and connected to one another. The pull lever has a drive member formed on a front end of a lever body. The drive member has a connecting slot and a through slot to accommodate the connecting member and part of the resilient linking tab. The drive member and the connecting member are securely connected to prevent the pull lever from being inadvertently disengaged from the resilient linking tab. The pull lever is straight and strap-like to facilitate pulling action for unlocking.