Abstract:
An electrical connector includes an insulative housing and a plurality of contacts retained in the housing to commonly form a terminal module, a metallic shield enclosing the terminal module and forming a mating cavity, and a glue groove formed in a base of the housing and located behind the mating cavity, in which a glue part is received. The shield forms an opening communicating with the glue groove, through which the liquid type glue is injected into the glue groove and solidified therein.
Abstract:
An electrical connector comprises a first terminal module, a second module and a shell. The first terminal module has a first insulator and a plurality of first terminals embedded in the first insulator. The first insulator has a first vertical portion, a first horizontal portion and a first tongue plate. The second terminal module has a second insulator and a plurality of second terminals embedded in the second insulator. The second insulator has a second vertical portion, a second horizontal portion and a second tongue plate. The second vertical portion and the second horizontal portion are separated from each other, and the second terminal connects the second vertical portion with the second horizontal portion.
Abstract:
An electrical connector for mounting to a printed circuit board for mating with a plug connector, includes an insulative housing and the upper and lower contacts on the housing, each contact including a contacting section, the contacts including grounding contacts each having a free end of the contacting section, and a mounting leg mounted to the corresponding grounding region of the printed circuit board wherein the free ends of the corresponding paired upper grounding contact and lower grounding contact either abut against each other or against a metallic shielding plate embedded within the mating tongue to form a parallel relation between the paired upper grounding contact and lower grounding contact.
Abstract:
A receptacle connector for mating with the plug connector, includes a terminal unit, a metallic shield and a mating cavity surrounded by the metallic shield. The terminal unit includes a terminal module having a first insulator with a plurality of first contacts embedded therein via a first stage insert-molding process, a second insulator with a plurality of second contacts embedded therein via the similar first stage insert-molding process. The first insulator includes a first front insulator and a first rear insulator spaced from each other while linked together by the corresponding first contacts; the second insulator includes a second front insulator and a second rear insulator spaced from each other while linked together by the corresponding second contacts.
Abstract:
An electrical connector includes a terminal module and a plurality of terminals retained in the terminal module. The plurality of terminals are divided into an upper row and a lower row. Each of the terminals has a contacting portion contacting with a complementary connector. Each row of the terminals has a power terminal and a differential pair. The contacting portion of the power terminal in the upper row and the corresponding contacting portion of the power terminal in the lower row mechanically contact with each other to form parallel electrical paths.
Abstract:
An electrical connector includes a contact module comprising two rows of contacts retained therein and a shielding plate, the contacts module defining a main base, a middle step and a mating tongue and, the middle step being located between the main base and the mating tongue in a mating direction, the contacts comprising contacting portions exposed on opposite surfaces of the mating tongue; a metallic shell retained on the main base and surrounding the mating tongue and the middle step to define a mating cavity thereamong and a one piece grounding collar. The grounding collar includes a collar portion fitly surrounding the middle step and a grounding plate extending from the collar portion to mechanically and electrically connect with the metallic shell.
Abstract:
An electrical connector comprises: an insulative housing and a plurality of terminals retained in the insulative housing. The insulative housing has a base portion and a mating tongue. The mating tongue comprises a stepped portion extending from the base portion and a tongue portion extending from the stepped portion. The insulative housing defines an outer periphery. The stepped portion defines a front face. The base portion defines a rear face. The terminal defines a connecting portion buried in the base portion and the stepped portion, a contacting portion extending from the connecting portion. The insulative housing defines a sealing member filling in the periphery of the connecting portion. The sealing member not extends out the front face of the stepped portion, the rear face of the base portion and the out periphery of the insulative housing. It is favorable for improving the waterproof effect of the electric connector.
Abstract:
An electrical receptacle connector includes a terminal module assembly and a grounding collar thereon. The terminal module assembly includes the front mating tongue, the rear body, and the step structure therebetween, and the corresponding contacts. The contacts are secured to the body with contacting sections exposed upon the mating tongue. The grounding collar includes the grounding regions located on two opposite upper and lower surfaces of the step structure. The front edge area of the grounding region adjacent to the front edge area, forms a notch so as to leave a space to allow the spring finger of the corresponding interior grounding plate of the plug connector to first slide upon the step structure and successively contact the grounding region of the grounding collar of the receptacle connector.