Abstract:
A card connector assembly includes: an electrical connector including an insulative housing, plural terminals secured to the insulative housing, and a shell covering the insulative housing to form a receiving cavity; and a card tray removably received in the receiving cavity, the card tray including an insulative frame and a metallic plate, the metallic plate has a recessed portion for engaging the electrical connector and an opening bordering the recessed portion.
Abstract:
An electronic device includes: a framework; a number of modules assembled detachably to the framework; and a number of latching portions assembling the modules on the framework. Each latching portion includes a ball spring beam having a first positioning portion and a first contacting beam, a reinforcement beam having a second positioning portion attached to the first positioning portion and a second contacting beam spaced from the first contacting beam, and a screw affixing the first positioning portion and the second positioning portion to the framework. The first contacting beam has a tuber mated with the module.
Abstract:
An electrical connector includes an insulative housing defining a number of receiving grooves, a number of terminals secured to the insulative housing, and a number of conductive balls received in the receiving grooves. Each receiving groove defines a through hole. Each conductive ball is urged by a corresponding terminal to partially protrude from an associated through hole.
Abstract:
An electrical connector includes: an insulative housing; a single row of contacts secured to the insulative housing and each having a soldering tail; and a shielding shell enclosing the insulative housing and having an annular part and a pair of soldering portions; wherein the shielding shell annular part is seamless; and the soldering tails of the single row of contacts are arranged alternately in two rows within an outer profile of the shielding shell annular part.
Abstract:
The receptacle connector includes an insulative housing, a plurality of contacts retained in the housing, and a metallic shielding shell covering the housing. The housing includes a base and an island extending upwardly from the base, and a peripheral wall surrounding the island and forming a tubular receiving cavity. The contacts includes two rows of contacts retained to the island. The shielding shell is retained to the peripheral wall. A pair of metallic shielding plates are retained in the island and between two rows of contacts. The plug connector includes an insulartive housing, a plurality of contacts retained to the housing, and a metallic shielding shell attached upon the housing. The housing includes a base and a circumferential wall forming a mating cavity. A metallic shielding plate is disposed in the mating cavity.
Abstract:
An electrical connector (100) includes a shielding plate (1), a base portion (2) insert molded with the shielding plate and defining two rows of passageways (21), two rows of terminals (3) affixed to the base portion, and an insulative housing (4) over molded with the base portion. The two rows of passageways extend through the base portion along a front-to-back direction and exposed completely upwardly and downwardly. Each terminal includes a contacting beam (31) having a contacting portion (311). The shielding plate is located between the two rows of terminals.
Abstract:
An electrical connector includes an insulative housing and a number of contacts received in the insulative housing. The contact includes a first body and a second body extending from the first body. A first protrusion portion is formed by drawing the first body and a second protrusion portion is formed by stamping the second body. The first projecting portion and the second projecting are insert molded in the contact, therefore the contact has a larger intensity.
Abstract:
An electronic device includes a framework having a number of ribs to define a number of receiving grooves therebetween, a number of modules detachably received in the receiving grooves, and a pair of elastic members mounted to a respective module. Each receiving groove has a pair of apertures in the ribs. Each of the modules has a pair of through holes. Each of the elastic members includes a protrusion extending through the through hole toward a corresponding rib and a leg resiliently urging the protrusion to fit into a corresponding aperture.
Abstract:
A card connector includes: an insulative body; plural contacts secured to the insulative body; and an operating mechanism including a latch moveable relative to the insulative body and an actuator coupled to the latch, wherein: the actuator includes a pair of terminals, a slider coupled to one of the pair of terminals, and a shape memory alloy wire coupled between the other terminal and the slider; and the slider is operable by the shape memory alloy wire to move the latch from a card-locking position to a card-unlocking position.
Abstract:
A multi-layer circuit member includes: a first layer formed of a conductive material, the first layer including plural signal pads and a first reference plane spaced apart from the signal pads, the first reference plane including an outer region surrounding the signal pads and an inner region separating the plurality of signal pads; a second layer formed of a conductive material, the second layer including plural signal conductors and a second reference plane spaced apart from the signal conductors, the second reference plane including an outer region surrounding the signal conductors and an inner region separating the signal conductors; a ground layer disposed at a side of the second layer opposite from the first layer; plural dielectric layers separating the first layer, the second layer, and the ground layer.