Abstract:
An electrical connector includes an insulative housing, a number of contacts, a shielding plate, and a metallic shell. The insulative housing defines a number of contact-receiving grooves and a number of through holes connecting with adjacent contact-receiving grooves. The contacts include a number of first contacts having connecting sections, at least one connecting section of the first contacts has a first bending section bent along a direction away from the contiguous first contact to form an enlarged gap for increasing a distance between the adjacent first contacts. The insulative housing, the shielding plate and the contacts are molded to form a contact module. The enlarged gap and the corresponding through hole are connected together.
Abstract:
An electrical connector comprising an insulative body, a plurality of terminals secured in said insulative body, and a grounding shell. Wherein said grounding shell is composed of two U-shaped collar shells oppositely assembled onto said insulative body. The connector also includes an insulator injected upon said grounding shell and a metallic shell assembled upon said insulator. Each collar shell includes a spring arm extending beyond said insulator and abutting against said metallic shell.
Abstract:
An electrical connector includes an insulative housing, a number of contacts accommodated in the insulative housing, a metal shell attached to the housing and defining a receiving space and a waterproof portion formed behind the receiving space. The insulative housing includes a groove, a tongue portion located in front of the groove, and a holding potion located behind the groove. The holding portion has a dispensing port communicating with the groove and an exterior. Each contact has a contacting section exposed on the tongue portion, a connecting section exposed from the groove, a holding section accommodated in the holding portion of the insulative housing, and a soldering section extending from the holding portion. The waterproof portion is received in the groove.
Abstract:
An electrical connector includes: a terminal module including an insulative housing and a number of terminals insert molded with the housing, the housing including a base and a tongue extending forwardly from the base; a metallic shield enclosing the terminal module; and a sealing member positioned in front of the base and sealed between the terminal module and the shield. A related method of making includes: enclosing a metallic shield about a terminal module; inserting a terminal protector into a front mating port of the shield and module combination until abutting a part of the terminal module; and applying a sealing material via the front mating port into a space defined between the terminal module and the shield to form a sealing member.
Abstract:
An electrical connector includes an insulative housing having a base and a tongue, an upper and lower rows of contacts mounted in the insulative housing and exposed upon the tongue and a pair of grounding pieces separated from each other and retained in the insulative housing between the two rows of contacts. Each grounding piece includes a securing portion disposed in the mating tongue and defines an abutment exposed upon corresponding side face of the mating tongue. The pair of grounding pieces are far away from corresponding power contacts along the transverse direction thereby resulting that the grounding pieces are wholly offset from the power contacts in the vertical direction so as to avoid the power contacts from electrical sparkle.
Abstract:
An electrical connector includes an insulative housing having a tongue portion, and two rows of terminals reversely-symmetrically arranged at opposite faces of the tongue portion. Each row of terminals include a grounding terminal and a power terminal arranged at a first district, and at least one subsidiary terminal arranged at a second district connecting the first district. Each row of terminals lack of at least two terminals to thereby form a vacant space between the grounding terminal and the power terminal. The subsidiary terminals in the two rows are offset with each other along an up-to-down direction.
Abstract:
An electrical connector with a terminal module enclosed within an insulative shield wherein the terminal module includes a plurality of terminals embedded within an insulative main body. The insulative main body forms a rear mounting standing part and a front mating tongue part extending forwardly from the rear mounting standing part. The insulative shield forms a rearward step against a forward shoulder of the base portion so as to prevent further forward movement of the base portion relative to the insulative shield. The insulative main body forms a protrusion and the insulative shield forms a securing hole to receive said protrusion for securing the insulative shield and the terminal module together.
Abstract:
An electrical connector (100) includes a metal shield (1) defining a receiving space (10), a number of contacts (2) received in the metal shield, an insulative body (3) molding over the metal shield and having a tongue portion (31) extending into the receiving space for retaining the contacts, and a reinforcing plate (4) attaching to the tongue portion for reinforcing the tongue portion. The insulative body has a number of slits (311) at the front side of the tongue portion and a number of slots (332) at a rear side of the tongue portion for respectively receiving a mold during molding. The reinforcing plate and the contacts are exposed to both the slits and the slots along opposite, vertical directions to make sure that the inserted molds bear against both the contacts and the reinforcing plate.
Abstract:
An electrical connector (100) includes an insulative housing (1), a number of contacts (2) retained in the insulative housing, a metal shell (4) covering the insulative housing, and an insulative cover (5) molded over the metal shell and integral with the insulative housing. A diffusion layer (6) is formed between the metal shell and the insulative cover. Chemical reaction is generated from metal and resin in the diffusion layer.
Abstract:
An electrical connector includes an insulative housing, a number of terminals carried by the insulative housing, a metallic shielding plate retained in the insulative housing, and a shielding shell attached to the insulative housing. The insulative housing has a number of receiving slots located at a back-end thereof. The terminals have a number of soldering portions exposed from the insulative housing. Each receiving slot is located between every two neighboring soldering portions to receive soldering material.