Abstract:
An electrical receptacle connector includes an insulated housing, a metallic shell and a plurality of connecting portions. The insulated housing is in the metallic shell. The metallic shell includes a tubular body, a connecting plate and a folded portion. The tubular body includes an outer wall and an inner wall. The connecting plate is at the outer wall or the inner wall, and the folded portion is extended from the tubular body toward the connecting plate. The connecting portions are configured to fix the connecting plate to the tubular body so that the connecting plate is fixed on the tubular body.
Abstract:
A waterproof electrical receptacle connector includes an insulated housing, a metallic shell, and a sealing member (e.g., a waterproof glue block). The insulated housing includes a base portion and a tongue portion extended from one side of the base portion. The metallic shell includes a tubular portion and an outer peripheral portion. The outer peripheral portion is formed by deep drawing techniques and extended from the rear of the tubular portion. The inner diameter of the outer peripheral portion is greater than the inner diameter of the tubular portion. A filling groove is formed between the inner wall of the outer peripheral portion and the outer surface of the base portion. The sealing member is formed at the filling groove to fill a gap between the inner wall of the outer peripheral portion and the outer surface of the base portion and fill the bottom of the base portion.
Abstract:
An electrical connector plug having resilient contact terminals electrically connects to an electrical connector socket with a casing and two groups of engaging terminals mounted on or in the casing. The electrical connector plug has an electrically conductive housing. A coupling device extends in a longitudinal direction and has a base portion. The resilient contact terminals are mounted on the coupling device axially symmetrically arranged with each other in the longitudinal direction, each of which has a flat section and an upwardly protruding contact section. A metallic shield frame is electrically connected to and secured to the electrically conductive housing, having a frame section, a front section, and two lateral protective sections. The respective lateral protective sections have a height no less than that of the upwardly protruding contact sections of the resilient contact terminals.
Abstract:
An electrical plug connector has an insulative housing, two terminal sets, a shielding-grounding plate and a shell. The terminal sets are mounted in the insulative housing and each terminal set has multiple conductive terminals. The shielding-grounding plate is mounted in a rear end of the insulative housing and has a shielding body mounted in the rear end of the insulative housing and located between the terminal sets and two resilient hooking arms formed on and protruding forward respectively from two opposite sides of the shielding body and extending in the insulative housing. The shielding-grounding plate is located above the conductive terminals of the two terminal sets and shields the terminal sets such that each terminal set would not interfere with the other terminal set with cross talk when implementing signal transmission.
Abstract:
An electrical plug connector includes a plug metal shell, an insulation housing bracket, a plug grounding contact, and a grounding member. The plug metal shell encloses a tongue portion of the insulation housing bracket. The plug grounding contact is held inside the insulation housing bracket. The grounding member is disposed between the plug metal shell and the plug grounding contact and spaced from the first side of the insulation housing bracket. A connecting portion is selectively disposed on the grounding member or on the plug grounding contact. The connecting portion mechanically contacts to the grounding member and the plug grounding contact such that the grounding member is electrically connected to the plug grounding contact.
Abstract:
An electrical receptacle connector provided to connect with an electrical plug connector. The electrical receptacle connector includes a metal shell, an insulation body and a the conductive contact members. The conductive contact members are disposed at the insulation body to connect with the metal shell. The electrical plug connector includes a metal shell and a tubular portion disposed at a front portion of the metal shell. When the electrical plug connector is plugged into the electrical receptacle connector, the surface of the tubular portion of the electrical plug connector is in contact with the conductive contact members.
Abstract:
An electrical connector plug for electrical connection to an electrical connector socket. The electrical connector plug includes: an insulation body extending in a longitudinal direction and including a base portion a mounting portion fixed to the base portion; two rows of resilient conductive terminals mounted in the insulation body and arranged symmetrically in pivotal rotation with respect to the longitudinal direction, each comprising a horizontal segment fixed on the base portion and a bended protrusion contact segment extending from the horizontal segment; an electrical conductive plate mounted on the mounting portion including a front segment and an impedance drop segment, extending from the front segment toward the base portion; and a shielding case mounted on the base portion and electrically connected to the metal housing.
Abstract:
A receptacle for an electrical connector includes a metal housing body, a plastic main body positioned in the metal housing body, and flat terminals. The plastic main body incorporates with the metal housing body to form an accommodating space for being plugged into by a plug. First and second tongue parts disposed on the plastic main body are respectively close to upper and lower sides of the metal housing body. Each flat terminal includes a fixing part, a contacting part formed in a flat shape, and a soldering part. The contacting parts are respectively disposed on first and second tongue parts and respectively are exposed to the accommodating space in downward and upward directions. A tongue of a plastic body of the receptacle, i.e. first and second tongue parts, and the flat terminals are thus minimally damaged, to prevent the expensive cost of repairing a damaged receptacle.
Abstract:
An electrical receptacle connector includes an insulated housing, upper-row terminals, lower-row terminals, and a grounding sheet. The insulated housing includes a base portion and a tongue portion. The tongue portion is extended from one side of the base portion and has an upper surface and a lower surface. The upper-row terminals are disposed at the base portion and the tongue portion and include a ground terminal located at the upper surface The lower-row terminals are disposed at the base portion and the tongue portion and include a ground terminal located at the lower surface. The grounding sheet is disposed at the insulated housing and located between the ground terminal of the upper-row terminals and the ground terminal of the lower-row terminals. The grounding sheet includes one or more protruded portion in contact with the ground terminal of the upper-row terminals or the ground terminal of the lower-row terminals.
Abstract:
The invention relates to an electrical plug connector which comprises an insulated housing, a metallic shell, two terminal sets, and a circuit board. The insulated housing includes a front portion and a rear portion. The front portion extends forwardly from the rear portion and an inside of the front portion forms a receiving cavity. The metallic shell covers the insulated housing. Each terminal set is composed with a plurality of terminals. Each terminal includes a contact portion, a retaining portion, and a soldering portion. The retaining portion is retained in the insulated housing. The soldering portion extends backwardly from the retaining portion. The soldering portions are arranged as a upper row and a lower row in symmetry and the soldering portion is in spring arm type. The circuit board is inserted between the upper row and the lower row of the soldering portions. The upper row and the lower row of the soldering portions clip elastically the circuit board.