Abstract:
A perpendicular plug connector has an insulative housing, multiple first conductive terminals, multiple second conductive terminals, a base, a reinforcing fastening element and a shell. The first conductive terminals and the base are mounted on the insulative housing. The reinforcing fastening element is mounted on and tightly abutting the base. The shell accommodates the insulative housing and the first conductive terminals. The reinforcing fastening element allows fasteners such as bolts and rivets to extend through and fasten the perpendicular plug connector securely on a circuit board and enhances structural strength of the base.
Abstract:
An electrical receptacle connector includes a metallic shell, an insulated housing, first receptacle terminals, second receptacle terminals, a shielding plate, and a terminal organizer. The insulated housing is in the receptacle cavity of the metallic shell. The first receptacle terminals are assembled with the insulated housing. The second receptacle terminals are assembled with the terminal organizer. The insulated housing and the terminal organizer are assembled with each other. The shielding plate is between the first receptacle terminals and the second receptacle terminals. The terminal organizer extends the fixation portion attaching to the front portions of the second receptacle terminals, so that the front portions of the second receptacle terminals are securely held on the tongue portion. Therefore, when the terminal organizer is deformed due to heating, the front portions of the second receptacle terminals can be still fixed on the tongue portion without being deflected upwardly.
Abstract:
An electrical receptacle connector includes an insulated member received in a metallic shell. First and second receptacle terminals are held in the insulated member. A shielding plate is between the first and second receptacle terminals. The metallic shell includes a shell body and a contact arm. The metallic shell includes a receptacle cavity for receiving the insulated member. The contact arm includes a supporting portion extending outward from the shell body, and a plurality of contact surfaces extending from the supporting portion. The contact arm is in contact with an inner wall of a housing of an electronic device, and the contact surfaces are conducted with the inner wall of the housing of the electronic device, thereby improving the performance of electromagnetic compatibility.
Abstract:
An electrical connector is provided, which includes: a first housing having a discontinuous portion, an insulating main body received in the first housing, a shielding piece disposed in the insulating main body, two conductive terminal sets disposed on the insulating main body, a capping body covering the discontinuous portion, and a sealing body coupled with the first housing. By the design of the capping body, water vapor or moisture cannot seep through the discontinuous portion to enter the first housing.
Abstract:
An interference-proof 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 sets has multiple conductive terminals. Each terminal set has multiple conductive terminals and at least one pair of super-speed signal terminals. Each super-speed signal terminal has a mounting section including a widening tab laterally protruding from the mounting section toward an adjacent super-speed signal terminal to reduce the distance between the super-speed signal terminals of the pair. The shielding-grounding plate is mounted in a rear end of the insulative housing. The widening tabs of each pair of the super-speed signal terminals effectively diminish impedance of the super-speed signal terminal such that input loss and return loss of the super-speed signal terminals are reduced.
Abstract:
An electrical connector is provided, including a plastic core having a frame and at least one partition plate integrally formed with the frame for defining a plurality of recesses, a first connector received in one of the recesses, and a second connector received in another one of the recesses. As such, the instant disclosure only needs to solder the electrical connector to a circuit board of an electronic product so as for the electronic product to obtain a plurality of connector ports, thus greatly reducing the fabrication time.
Abstract:
An electrical connector is provided, which includes: a housing having a port and an opening; an insulating body having a tongue plate formed in the housing; a plurality of conductive terminals provided on the insulating body; and a seal body formed between the tongue plate and the port. The tongue plate protrudes from the port to a region outside of the housing, such that the housing is free from enclosing the tongue plate. A seal body is provided between the tongue plate and the port to seal off the port so as to be waterproofed, without increasing the contour size of the electrical connector.
Abstract:
A waterproof and interference proof receptacle connector has an upper insulative housing, a lower insulative housing, a first terminal set, a second terminal set, a shell, a watertight casing and an interference proof rear guard. The first and second terminal sets are mounted respectively on the upper and lower insulative housings. The shell is mounted on the upper and lower insulative housings. The watertight casing is mounted around the shell. The interference proof guard is mounted on the watertight casing. The watertight casing provides a waterproof function to allow the waterproof and interference proof receptacle connector to operate in humid or underwater environment.
Abstract:
A USB electrical receptacle connector includes a metal shell, an insulation housing, upper-row terminals, and lower-row terminals. The metal shell defines a receptacle cavity therein for receiving the insulation housing. The insulation housing includes a base portion and a tongue portion extending forward from the base portion. The upper-row and lower-row terminals adjacent to the upper-row terminals are held on the insulation housing. The lower-row terminals include signal terminals and power terminals held on the insulation housing and adjacent to the signal terminals. The power terminals and the signal terminals are aligned at the same level. Each power terminal includes a second body, a second contact portion, a second extending portion, and a second tail portion. Wherein, the width of the second body, the width of the second extending portion, and the width of second tail portion are relatively greater than those of a conventional terminal.