Abstract:
An electrical connector (4) comprises a frame (41) and a plurality of terminals (42) received in the frame. The frame comprises a first portion (410) defining a holding slot (4101), a second portion (411) extending angularly to the first portion and a retaining member (43) formed on the second portion. The terminals each has a contact section (425) and a solder tail (427) extending out of the frame. The plurality of terminals (42) are arranged two rows on the first portion (410) and one row on the second portion (411). The contact sections of two rows terminals on the first portion are located at opposite sides of the holding slot (4101) and the contact sections of one row terminals on the second portion expose to an outer surface of the second portion.
Abstract:
An electrical connector (100) for electrically connecting an electronic package with a circuit substrate comprises an insulative housing (1) and a plurality of contacts (2) insert-molded on the insulative housing (1), the insulative housing (1) comprises a bottom surface (12) and an upper surface (11) opposite to the bottom surface (12), the contact (2) comprises a retaining portion (23), a first contact portion (21) extending upwardly beyond the upper surface (11) for connecting with the electronic package and a second contact portion (22) extending downwardly beyond the bottom surface (12) for connecting with the circuit substrate, the second contact portion (22) with spire shape formed a receiving space (221). Thus, the second contact portion (22) can connect with the circuit substrate by directly or indirectly style.
Abstract:
An electrical connector assembly includes an electrical connector with an insulative housing and a pick-up cap assembled to the electrical connector. The insulative housing defines a substantially rectangular cavity in middle thereof and a number of contacts received in the cavity. The pick-up cap includes a main portion with a planar top surface and a plurality of spring arms extending from opposite edges of the main portion for engaging with the electrical connector. Each spring arm has a locking portion for engaging with the main portion if excessive deformation of the spring arm is encountered.
Abstract:
An electrical connector (100) for electrically connecting an electronic package with a circuit substrate comprises an insulative housing (1) and a plurality of contacts (2) insert-molded on the insulative housing (1), the insulative housing (1) comprises a bottom surface (12) and an upper surface (11) opposite to the bottom surface (12), the contact (2) comprises a retaining portion (23), a first contact portion (21) extending upwardly beyond the upper surface (11) for connecting with the electronic package and a second contact portion (22) extending downwardly beyond the bottom surface (12) for connecting with the circuit substrate, the second contact portion (22) with spire shape formed a receiving space (221). Thus, the second contact portion (22) can connect with the circuit substrate by directly or indirectly style.
Abstract:
An electrical connector assembly (1) includes an electrical connector (5) and a pick up cap (2) fixed on the electrical connector (5). The electrical connector (5) comprises an insulative housing (3) and a plurality of contacts (4) received therein. The insulative housing (3) comprises a bottom wall (31) and sidewalls (32) extending upwardly from the bottom wall (31). The sidewall (32) includes a spring arm (33) extending along the sidewall (32) and the spring arm (33) is provided with a locking portion (331). The pick up cap (2) comprises a body portion (21) and a retention portion (22) extending downwardly from the body portion (21). The retention portion (22) is interlocked with the locking portion (331) for securely positioning the pick up cap (2) on the electrical connector (5).
Abstract:
A socket connector (100) includes an insulative housing (1), a number of contacts received in the insulative housing, a stiffener (2) attaching to periphery of the insulative housing, a load plate (3) pivotally mounted to one side of the stiffener, a load lever (4) pivotally mounted on the opposite side of the stiffener relative to the load plate, and a sheath piece (5) attached to the operating part of the load lever. The load lever includes a fixing part (41), an actuating part (42) perpendicular to the fixing part, and an operating part (43) formed at the distal end of the actuating part. The load plate is capable of moving towards the insulative housing between an original, open position and a final, closed position.
Abstract:
A CPU socket (1) mounted on a PCB (2) includes a metallic cover (10) and an insulative housing (20). The insulative housing has an installation section (30). The metallic cover has a main portion (11), a locking portion (13) and a resilient portion (12). The resilient portion is rotatably assembly to the installation section. The metallic cover is able to rotate around the resilient portion. The locking portion and the resilient portion extend from opposite sides of the main portion, respectively. The locking portion is able to be locked and released to a locking member (32) which is fixed to the PCB. The locking portion is driven by a screwdriver (5) to release or lock to the locking member (32). The CPU socket provides a solution for locking or releasing from the PCB without a lever, which is used to lock or release the metallic cover.
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:
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 insulative 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.