Abstract:
A cable end connector and the method of making the same are disclosed. The connector includes a first contact module, a second contact module, a central grounding unit, a grounding means, and a shielding shell electrically connecting with the grounding means. The first contact module includes first contacts and a first insulator retaining the first contacts. The first insulator has a first tongue section and a first assembling section. The second contact module includes second contacts and a second insulator retaining the second contacts. The second insulator has a second tongue section and a second assembling section. The shielding shell has a front shell and a rear shell partially overlapped on the front shell. The front shell substantially encloses the first and the second tongue sections of the first and the second contact modules, the central grounding unit and the grounding means. The rear shell covers the first and the second assembling sections of the first and the second contact modules.
Abstract:
A power connector for electrically connecting with a complementary connector includes an insulating housing defining a number of channels and a number of pairs of power contacts received in corresponding channels. Each pair of power contacts has a pair of oppositely arranged two power contacts. Each power contact is provided with a retaining portion fixed within the channel, a contacting portion extending from one end of the retaining portion and a tail portion extending from the other end of the retaining portion. The contacting portion is formed with a first contacting finger and a second contacting finger, which are side-by-side positioned. The first contacting finger defines a first contacting area and the second contacting finger defines a second contacting area. The first and the second contacting areas are extending within a same plane.
Abstract:
A power connector includes an insulative housing, a plurality of power contacts received in the insulative housing, a contact bus bar electrically connecting with the plurality of power contacts and a fastening element fastening the contact bus bar and an outer terminal arranged behind the insulative housing together. The insulative housing has a mating face at a front side thereof. The power contacts are provided with soldering pads, and the contact bus bar has a front mating pad engaging with the soldering pads. The front mating pad is formed with a plurality of soldering holes, and the front mating pad and the soldering pads being connected electrically via soldering tin set in the soldering holes.
Abstract:
An electrical connector includes an insulative housing, a number of contacts retained in the insulative housing, a metallic outer shell enclosing the insulative housing, and a metallic inner shell positioned between the metallic outer shell and the insulative housing. The insulative housing includes a base and a tongue portion protruding from the base. The contacts include a number of flat contacting portions exposed on a top surface and a bottom surface of the tongue portion, respectively. The metallic inner shell includes at least two pieces which are separately made and fixed to the insulative housing. The metallic inner shell and the metallic outer shell are in mechanical contact with each other in order to achieve a relative larger grounding area.
Abstract:
An electrical connector includes a base with a number of contacts, a cover pivotally mounted to the base, a pair of supporting components for mating with the cover and a pair of rail brackets for mating with the base. Each supporting component is pivotal between an opening status and a closed status relative to the base. The base is slidable relative to the rail brackets along a front-to-back direction. The cover and the pair of supporting components are mateable with each other in condition that one of the cover and the pair of supporting components pivots clockwise while a remaining one of the cover and the pair of supporting components pivots anticlockwise.
Abstract:
A receptacle connector includes an insulative housing, a number of conductive contacts, and a retainer seat. The insulative housing includes a mating face for mating with a plug connector and a mounting face opposite to the mating face. The insulative housing defines a number of contact-receiving passages penetrating from the mating face to the mounting face and a mounting recess recessed from the mounting face toward the mating face a certain distance. The conductive contacts are respectively received in the contact-receiving passages. Each conductive contact includes a contacting portion for electrically contacting the plug connector, a termination portion for electrically connecting with a Printed Circuit Board, and an intermediate portion connecting the contacting portion with the termination portion. The retainer seat is fixedly received in the mounting recess of the insulative housing.
Abstract:
A connector assembly includes a plug connector and a receptacle. The plug connector includes a plug housing and a number of plug contacts retained in the plug housing. The plug housing has a mating portion with a mating surface. The receptacle connector includes a receptacle housing and a plurality of receptacle contacts retained in the receptacle housing. The receptacle housing defines a receiving space opening forwardly and a jointing surface at an inner side of the receiving space. Besides, the connector assembly further includes a waterproof plate sandwiched between the mating surface and the jointing surface as the plug connector mating with the receptacle connector.
Abstract:
An electrical connector includes a housing, a number of contacts received in the housing and a spacer for holding the contacts. The housing includes a mating portion and a pair of extensions extending from the mating portion. The pair of extensions and the mating portion jointly form a receiving space to receive the spacer. The spacer includes a horizontal portion and a vertical portion perpendicular to the horizontal portion. The horizontal portion defines a slot through which the contacts extend. The vertical portion includes an inner wall, an outer wall and a channel extending through the inner wall and the outer wall. The outer wall defines a recess opening in communication with the channel. When the contacts are associated with the spacer, the contacts are partly exposed to the recess opening via the channel for robust heat dissipation.
Abstract:
An electrical connector mountable on a printed circuit board and adapted for mating with a complementary connector, includes an insulating housing and a plurality of contacts. The insulating housing defines a base section, an upper and a lower walls extending forwardly from the base section, and a receiving space defined between the upper and the lower walls. Each contact has a main portion, a contacting portion extending from the main portion and exposed to the receiving space, and a tail portion extending outside of the insulating housing. A positioning protrusion is formed on an inside face of the lower wall and extends into the receiving space, and defines a slanted guiding surface therealong opposing to the upper wall to guide an insertion or rejection of the complementary connector.
Abstract:
An electrical connector includes an insulative housing and two contact modules. The insulative housing has a bottom mounting portion having a cavity opening downwardly and a mating portion, the mating portion has a central mating space and a pair of side walls on both sides of the mating space, and a plurality of contact receiving passageways defined on each side wall. Each contact module has an insulator received in the cavity and a plurality of contacts insert-molded in the insulator, each contact defines a contacting arm and a soldering portion. The insulative housing defines a pair of locating portions extending downwards from two sides of the mounting portion, the distance between the pair of locating portions is smaller than an internal diameter of the cavity, a pair of demising slots are formed on an interior side of each locating portion for the contact modules passing through.