Abstract:
An LGA connector contact (30) includes a base (31), and a pair of spring arms (32) extending from the base. One of the spring arms includes an extending section (320), a connecting section (321), and a contacting section (322) adapted for engaging a contact pad of an IC package. The contacting section has an exterior side and an interior side, with a recess (323) on the exterior side of the contacting section around a middle portion of the contacting section so as to define at least a pair of contact regions (324) adjacent the recess. The LGA contacting portion is configured to have its contact regions electrically engage with un-oxidized portions of the IC package, thereby achieving an effective electrical connection between the LGA connector contact and the corresponding IC package pad.
Abstract:
A contact (1) used in an electrical connector (3) appears C-like shape and includes a first arm (10) connecting to an IC module (4), a second arm (12) connecting to a PCB (5), and a medial portion (14) connecting therebetween. The medial portion defines two symmetrical fastening blocks (141) on both sides thereof. In addition, the fastening block defines a plurality of protruding portions (1412) extending along a direction perpendicular to a main surface on which the fastening block locates. Accordingly, the contact is fastened in the connector firmly and reliably.
Abstract:
An electrical connector includes a base having a number of passageways and a compartment in one end thereof. A cover is mounted to the base. The cover has a plurality of through holes corresponding to the passageways and a driving compartment corresponding to the compartment. The driving compartment has one single-step stopper. One recess is positioned adjacent the stopper and receives a stiffener therein for supporting the stopper. A cam is disposed in the driving compartment and the compartment to drive the cover moving relative to the base along a front-to-back direction.
Abstract:
An electrical connector is for electrically connecting an electronic package with a circuit substrate. The connector includes a housing with a plurality of conductive terminals received therein, a fastening device for securing the electronic package. The fastening device includes a pressing member for pressing and securing the electronic package and a retaining member for securing the pressing member. At least one of the pressing member, the retaining member are produced from ferrite stainless steel material, and has a layer of high temperature resistant organic thin film thereon.
Abstract:
An electrical connector (1) for electrically connecting an electronic package with a circuit substrate. The connector includes a housing (11), a fastening device assembled with the housing, and a stiffener (12) surrounding the housing. The stiffener includes a back end (123), and a pair of spaced first walls (125) adjoining the back end. Each first wall has a latch (128) extending upwardly therefrom, and then bends inwardly. The back end has a pair of spaced spring fingers (129) extending substantially horizontally, and then bends slightly upwardly. The latches are fastened to the housing for locating the housing in a vertical direction. The spring fingers abut against the housing for locating the housing in a horizontal direction. The stiffener reinforces the housing, and protects the housing from deformation or warpage.
Abstract:
A socket connector terminal (1) adapted for connecting an IC package to a PCB includes a base portion (10) for retaining, a pair of contacting portion (113) for connecting with the IC package, a pair of resilient arm (11) respectively connecting with the base portion and the contacting portions and a solder portion (12) for soldering on the PCB. The pair of resilient arms each includes a short bridge portion (111) extending outward from a lateral side of base portion and a resilient portion (112) extending upward from the bridge portion. The solder portion extends downwards from one of the bridge portion.
Abstract:
An electrical contact (1) of an electrical connector includes a board-like base (11), a first arm (14) extending from a side of the base, and a second arm (15) extending from an opposite side of the base. The first arm extends forwardly and circuitously in a first plane, while the second arm extends forwardly and circuitously in a second plane. The second plane is parallel to and lower than the first plane.
Abstract:
Provided herewith a socket connector adapted to be mounted on a substrate having a conductive element is provided, and comprises an insulative housing, the housing having an exterior side adapted to face the substrate. A stamped contact is formed from a sheet of conductive material and is adapted to mate with a conductive component and extending substantially to the exterior side of the housing. The contact has a connection portion and wherein a substantially dried preparation of oxidation retarding and solder affinity deployed on the terminal portion before the contact assembled into the connector. The connector further includes a body of reflowable, electrically conductive material associated adjacent to the connection portion adjacent the exterior side of the housing.
Abstract:
A socket connector mounted on a mother board includes a socket body with a plurality of contacts received therein, a load plate rotatable with respect to the socket body and capable of being located in a closed position above the socket body, a load lever engaged with the load plate to lock the load plate in the closed position, and a locking member. The load lever has a fastened portion engaged with locking member. The locking member has a supporting portion below the fastened portion for preventing the load lever from touching the mother board and a latching portion above the fastened portion for preventing the load lever from upwardly escaping away from the locking member.
Abstract:
A connector assembly includes a PCB, an insulative housing mounted on the PCB with a plurality of contacts received therein, a retention module mounted on the PCB and surrounding the insulative housing, and a backplate mounted below the PCB for reinforcing the retention module. The backplate includes a base plate having an upper surface toward a backside surface of the PCB and an insulative coating deposited on the upper surface to prevent the backplate from short-circuiting electrical components of mounted on the backside surface of the PCB.