Abstract:
The invention relates to an electrical connector assembly. The electrical connector assembly includes a main circuit board having a through hole, a processor, and an auxiliary circuit board. The processor includes a chip and a substrate. The chip is electrically connected to the substrate and located in the through hole. The substrate is at least partially located in the through hole. The auxiliary circuit board has a transitional connecting surface. A first conducting region and a second conducting region electrically connected to each other are disposed on the transitional connecting surface. The first conducting region is electrically connected to the substrate, and the second conducting region is electrically connected to the main circuit board.
Abstract:
An electrical connector includes: an insulating base with a perforation; an insulating cover with a through hole and two slots recessed from a top surface, covered on and capable of sliding relative to the insulating base; a thrust member, disposed on the top surface of the insulating cover, has a body accommodated in the through hole, the body comprises an axial pushing hole, a plate portion respectively extending from two sides of the body and accommodated in the corresponding recessed slots; and a cam, having a driving portion above the body and a shaft extending downwards from the driving portion, at least one interference portion projects from a periphery at a lower end of the shaft and fixed near a bottom of the insulating base, the shaft passes through the axial pushing hole and the perforation.
Abstract:
A shielded connector. In one embodiment, the shielded connector includes: a seat, including a plurality of receiving slots, in which a shielding body is formed on at least a part of an inner surface of the receiving slot by physical-plating and an insulating paint layer is formed on the shielding body by immersing, spraying or coating, at least one conductive body disposed outside the receiving slots and connected to the shielding bodies, and at least one lead-out portion disposed adjacent to the motherboard and electrically connecting the conductive body to the motherboard; and a plurality of conductive terminals, accommodated in the receiving slots, each including a contact portion exposed at one side of the seat, a body portion extending from the contact portion into the receiving slot, and a connecting portion extending from the body portion and exposed outside the receiving slot.
Abstract:
An electrical connector that is capable of preventing solder wicking. In one embodiment, The electrical connector has an insulating body that includes a containing groove, a solder stop portion extended from a sidewall of the containing groove or passed through a bump stopper and connected to the sidewall; at least one conductive terminal installed in the containing groove and having a main body portion between the solder stop portion and the sidewall, a contact portion extended upwardly from both ends of the main body portion and bent to both sides of the bump stopper and the solder stop portion separately, a soldering portion extended downwardly from the main body portion and including a diffusion preventing area for separating the main body portion and the soldering portion, the diffusion preventing area being higher than the lowest point of the solder stop portion; a solder installed in the containing groove and abutted against the solder stop portion, whose side is contacted with the soldering portion. The electrical connector includes the diffusion preventing area formed on the conductive terminal by laser.
Abstract:
An electrical connecting device is disclosed and includes a printed circuit board, an electrical connector, and a fixing gum. The electrical connector is used for electrically connecting a chip module onto the printed circuit board and has at least one gum positioning portion formed on at least one sidewall thereof. The gum positioning portion is non-coplanar with respect to the sidewall. The fixing gum adheres between and to the recess and the printed circuit board and is also attached in the recess. Because the gum positioning portion of the electrical connector is non-coplanar with respect to the sidewall, after the fixing gum is sprayed on the gum positioning portion, the electrical connector is reliably mounted on the printed circuit board to be prevented from falling off under an external force during a reflowing or due to shaking.
Abstract:
An electrical connector includes at least one first insulating substrate having first tongues, at least one second insulating substrate having second tongues, and a plurality of contacts. One end of the first tongue connects to the first insulating substrate. There are through-holes in the first insulating substrate for the second tongues to pass through. One end of the second tongue connects to the second insulating substrate. With respect to the upper surface of the first insulating substrate, the other end of the first insulating substrates defines a first height difference, the other end of the second tongue defines a second height difference and the upper-most portion of the contact defines a third height difference which is larger than the first and second height differences. There are holes in the second insulating substrate for exposing the contacts.
Abstract:
An electrical connector includes a base having a through hole, a cover body slidably located on the base, a plurality of pins received in the base, a pushing piece installed on the upper surface of the cover body and having an opening, and a driving device for pushing the cover body and the base to have a relative motion. The cover body has a receiving hole that passes through the upper surface and the lower surface of the cover body. The driving device is received in the through hole, the opening, and the receiving hole. The driving device has an upper blocking portion and a lower blocking portion. The pushing piece, the cover body, and the base are located between the upper blocking portion and the lower blocking portion, in order to prevent the cover body from warping to cause the driving device being operated abnormally.
Abstract:
Disclosed is an electrical connector including a plurality of conductive terminals. The conductive terminal comprises a base and a pair of arms. Each arm includes a connection part extending forwardly from the base, a first bending part bent and extending upwardly from the connection part, a second bending part bent upwardly from the first bending part, a first elastic arm extending upwardly from the second bending part, and a contact section formed at a rear end of the first elastic arm. The first and second bending part are bent away from the other arm while the first elastic arm extends toward the other arm. The minimum distance between the two first elastic arms and that between the two second bending parts are larger than the minimum distance between the two connection parts and that between the two contact sections.
Abstract:
A method of assembling conductive terminals of a plurality of electrical connectors includes the steps of: (1) providing at least two overlapping housings each of which has a terminal receiving portion including fixing holes and guiding holes each partially overlapping one fixing hole; (2) providing a terminal carrier structure with a carrier, wherein at least two conductive terminal groups are alternately disposed on the carrier and each group has at least two conductive terminals with free ends; (3) disposing the carrier structure behind the housings; (4) pushing the carrier structure so that the free ends are inserted into the fixing holes; and (5) removing the carrier so that each conductive terminal is separated from the carrier and each housing and the engaging conductive terminal group form one electrical connector. Accordingly, the present invention can reduce assembly procedure, improve production efficiency and reduce manufacturing cost.
Abstract:
The invention relates to an electrical connector for inserting an electrical card in, and two side-ends of the electrical card respectively include at least one notch. The electrical connector includes an insulating body, a plurality of conducting terminals, a push-out device, and an elastic body. A top of the insulating body includes a slot and multiple accommodation chases along at least one side of the slot. The conducting terminals are disposed in the accommodation chases. The push-out device is pivotally engaged with a side-end of the insulating body, and includes a clasp part for clasping the notch of one of the side-ends of the electrical card. The elastic body is disposed on another side-end of the insulating body, and includes a main part, a fixing part for positioning the elastic body, and a buckle part for correspondingly buckling the notch of the other side-end of the electrical card.