1. Field of the Invention
The present invention relates to a burn-in socket, and more particularly to a burn-in socket having an actuator frame for aligning a central processing unit (CPU).
2. Description of Related Patent
In a test socket, a CPU is installed in a printed circuit board to construct a complete circuit with continuous functions. To ensure the functionality and reliability of the CPU during service life, the CPU must be tested before actual field application. The CPU in the test usually undergoes an extended period of time at a high temperature, so that any earlier failure of a package can be detected accordingly. A so-called testing socket is provided, in which the CPU are under a voltage source that is greater than the rated value; those CPU that continue to perform satisfactorily are then approved for shipment.
The burn-in socket includes an insulative main body, an actuator frame moveably coupled to the insulative main body, and a slider disposed therebetween with a plurality of contacts disposed therein. The slider and the actuator frame define a receiving space for receiving a CPU. The actuator frame has a leading surface to guide the CPU to a preset position and rectangular bottom edges interacting with sides of the CPU. In this situation, the sharp bottom edges might scratch the sides of the CPU or its contacts and even damage the CPU or the contacts. The rectangular bottom edges are designed to define a space to fit the CPU precisely so that essentially they do not tolerate any variation or misalignment in connection with the CPU.
Therefore, a new burn-in socket with an actuator frame which overcomes the above-mentioned disadvantages is desired.
Accordingly, an object of the present invention is to provide a burn-in socket with actuator frame in which a CPU can be precisely disposed in a center thereof.
In order to achieve afore-mentioned object, a burn-in socket comprises an insulative main body defines a plurality of passageways; a slider and a bottom plate fits to the insulative main body; a plurality of contacts receives in the insulative main body and the slider, an actuator frame above the insulative main body and the slider, comprises parallel side walls and a pair of upper guiding surfaces for guide the CPU thereof, and a pair of lower guiding surfaces on the low edge of the actuator frame, the distance between the lower guiding surfaces is diminishingly from lower to upper to supply more spaces to adjust the CPU.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description of the present embodiment when taken in conjunction with the accompanying drawings.
Referring to
The insulative main body 1 is configured to a rectangular shape, and comprises four side walls 10 and a bottom (not labeled) and a plurality of middle passageways therein, the bottom separates the insulative main body 1 and forms an upper room (not labeled) and a lower room (not labeled) with the side walls 10. The slider 2 and the bottom plate 3 receive in the upper room and lower room separately. There are a number of first out grooves 11 on the outside of the short side walls (not labeled) and a hollow 15 on inner side of one short side wall, and a number of second out grooves 12 on the outside of the long side walls (not labeled) and a number of first inner grooves 19 on the inner side of the long side walls, and there are slots 13 on four upper side corners of the insulative main body 1 and four vertical springs 18 disposed therein, at least two first post 17 set on the down side of the insulative main body 1 to position the insulative main body 1 on the PCB.
The bottom plate 3 has a plurality of lower passageways correspond to the upper passageways 26 and the middle passageways, the contacts 16 exposed from the top surface of the slider 2 to hold the solder ball (not shown) of the CPU 7, and part of the contact 16 received in the passageways of the slider, bottom of the insulative main body and the bottom plate, and the lower end of the contact 16 extrude from the bottom of the bottom plate 3 to contact the PCB electrically.
The side walls 10 and the bottom of the insulative main body 1 defines a upper room to receive the slider 2, and a number of hooks 22 hang from sides of the slider 2 corresponding to the first inner grooves 19, and the first inner grooves 19 are wider than the hooks 22 makes the slider 2 movable relative to the insulative main body 1 in the lengthwise direction. And a third post 23 defined on one end of the slider 2 in the lengthwise direction corresponding to the hollow 15, and a spring 24 between the slider 2 and the hollow 15 makes the slider 2 reposition.
A number of first latches 40, 42 hang from the actuator frame 4 and mate with the first and second out grooves 11, 12 on the outside of the side walls 10 to restrict the displacement of the actuator frame 4 relative to the insulative main body 1. The actuator frame 4 defines four second posts 44 on the four corners relative to the slots 13, and said springs 18 between the actuator frame 4 and the insulative main body 1 makes the actuator frame 4 reposition. Several first guide portions 41 hang from the actuator frame 4 and mate with corresponding second guide portion 21 defined by the slider 2 to drive the slider 2 slide along a longitudinal direction.
Referring to
While a preferred embodiment in accordance with the present invention has been shown and described, equivalent modifications and changes known to persons skilled in the art according to the spirit of the present invention are considered within the scope of the present invention as described in the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
200920313854.X | Nov 2009 | CN | national |