Abstract:
The present invention provides an electrical connector for establishing electrical connection between an IC module and a PCB. The electrical connector comprises an insulative housing and a set of electrical contacts received in the housing. The insullative housing has a mating surface and a mounting surface opposite thereto. The mating surface defines a supporting block extending upwardly thereof for supporting an IC module when said IC module is mated with the electrical connector. A reinforced element is defined in the supporting block, so as to reinforce said supporting block.
Abstract:
An electrical connector (1) for interconnecting integrated circuits (ICs) to a circuit board, includes an insulative housing (2, 3) defining a plurality of passageways extending therethrough, and a plurality of contacts received respectively in each of the passageways of the insulative housing. The insulative housing has a first base (2) adapted to connecting an IC to a circuit board and a second base (3) which is capable of cooperating with said first base when the connector is used to connecting another IC having a different size to the circuit board.
Abstract:
A socket adapted for electrically connecting a semiconductor package to a printed circuit board, comprises an insulating body and a plurality of position clump. The insulating body has a plurality of sidewalls, which define a plurality of assembling slots. The position clumps are movably assembled to the assembling slots of the insulating housing, each of the position clump has a position block and a spring member disposed between the position block and the insulating housing, the position block has a supporting face for supporting the IC package and is able to downwardly move toward the mating face of insulating housing.
Abstract:
A socket connector comprises an insulative housing defining a plurality of passageways and a receiving cavity for receiving an electrical package, and a plurality of contact respectively disposed in said passageways. The receiving cavity comprises a first cavity, and a second cavity smaller than the first cavity. The second cavity is in communication with the first cavity and outer space, the second cavity defining standoffs for positioning the electrical package when the electrical package is inserted into the receiving cavity.
Abstract:
A socket assembly (1) in accordance with a preferred embodiment of the present invention comprises a socket body (20) holding a plurality of contacts therein, a pick up cap (22) fixed onto the socket body, and a loading plate (3) capable of moving between a closed position and a open position with regard to the socket body (20). A locking device (5) is proved to lock the loading plate (3) to a closed position. The pick up cap (22) comprises a flat suction surface (220) and at least one latch (222) for latching the loading plate (3) so that the pick up cap (22) can be attached to the loading plate (3) when the loading plate (3) is in a closed position, and detached from the socket body (20) when the loading plate (3) moves away from the socket body to an open position.
Abstract:
A clip comprises two pieces of load plates. Each load plate has a pressing portion extending downwardly in a middle position thereof and two retention portions at two ends thereof, the two pieces of load plates across dispose when the load plates are secured.
Abstract:
A socket assembly (1) in accordance with a preferred embodiment of the present invention comprises a socket body (20) holding a plurality of contacts therein, a pick up cap (22) fixed onto the socket body, and a loading plate (3) capable of moving between a closed position and a open position with regard to the socket body (20). A locking device (5) is proved to lock the loading plate (3) to a closed position. The pick up cap (22) comprises a flat suction surface (220) and at least one latch (222) for latching the loading plate (3) so that the pick up cap (22) can be attached to the loading plate (3) when the loading plate (3) is in a closed position, and detached from the socket body (20) when the loading plate (3) moves away from the socket body to an open position.
Abstract:
An electrical connector includes a socket body with a number of contacts, a retention frame spaced from the socket body, a load plate attached to the retention frame, and a fastener. The retention frame located at a first side of the socket body and the load plate attached to at a second side of the socket body. The load plate rotates toward or away from the socket body from an open position to a closed position. The fastener is used to fasten the load plate at the closed position.
Abstract:
An electrical connector includes an insulative housing and a plurality of contacts received in the housing. Each contact has a base portion, a resilient arm and a contacting portion located at one end of the resilient arm. The contacting portion has a free end attached with an insulative member so as to prevent short circuit with an adjacent contact.
Abstract:
An electrical connector assembly (100) for electrically connecting a plurality of processing units (1) to a printed circuit board (8) comprises a substrate (4) and a plurality of sockets (6) assembled on the substrate (4) for retaining the processing units (1) respectively, the substrate (4) comprises a top surface (41) and a bottom surface (42) opposite to each other, the top surface (41) comprises a plurality of first contact elements (411) and the bottom surface (42) comprises a plurality of second contact elements (421), the socket (6) comprises an insulative housing (3) and a plurality of contacts (2) received therein for electrically contacting with one of the processing units (1).