This application is related to currently pending patent application Ser. No. 11/288,817, field on Nov. 28, 2005, which has been allowed. The present invention relates to a socket connector, on which an LGA (land grid array) integrated circuit (IC) package is mounted.
Modern computer systems increase in performance and complexity at a very rapid pace, driven by intense competition and market demands. In order to meet ever-increasing performance requirements, the area and volumetric interconnect densities of electronic board assemblies must increase accordingly. In combination with other competitive forces, this demand has driven the need for improved high-density socket technologies in computer applications, and the connector industry has responded with a variety of new alternatives to meet these needs. One of the most attractive of the new connector types is the land grid array (LGA) socket connector, which permits direct electrical connection between an LGA integrated circuit and a printed circuit board. LGA socket connectors are an evolving technology in which an interconnection between mating surfaces of an IC or other area array device and a printed circuit board is provided through a conductive terminal received in the socket connector. Connection is achieved by mechanically compressing the IC onto the socket connector.
Chinese Pat No. 2004 2 0054130.5 issued on Feb. 8, 2006 discloses another typical type of socket connector for carrying an IC package and electrically connecting the IC package to a circuit board, e.g. a PCB. The socket connector comprises a metallic stiffener, an insulative housing, a load plate, a load lever and a plurality of plastic supporting posts. The stiffener defines a central opening in a middle portion thereof, the opening being surrounded by two pairs of inner surfaces. The housing defines a recessed conductive zone surrounded by sidewall. The stiffener defines a plurality of through holes on four corners thereof. The plastic supporting posts are partially received in the through holes and arranged between the stiffener and the circuit board. A plurality of screws passes through the through holes for mounting the stiffener onto the circuit. The plurality of plastic supporting posts is used for separating the stiffener from the circuit board; therefore the stiffener is easily removed. Apparently, the plastic supporting posts don't carry function of attachment stiffener to the circuit board and mechanical connection between the stiffener and the circuit board is unsteady.
Accordingly, there is a room for improving the existing socket connector such that the operation of removing the pickup cap can be easily done.
It is an object of the present invention to provide a socket connector, which enables a steady mechanical connection between the stiffener and the circuit board.
In order to achieve the object set forth, an improved socket connector is provided to resolve the disadvantages described above. The socket connector includes a metallic stiffener, an insulative housing, a load plate, a load lever and a plurality of washers. The stiffener defines a central opening in a middle portion thereof, the opening being surrounded by two pairs of inner surfaces. The housing defines a recessed conductive zone surrounded by sidewalls. The housing partially received in the opening of stiffener, and sidewalls interferentially engage with the inner surfaces in a direction parallel to the opening. The stiffener defines a plurality of through holes around the opening. Each of the through holes has two washers assembled therein from both sides of the stiffener; and every two washers assembled in a same through hole define a passageway in the middle thereof, one washer located below the stiffener while another located above the stiffener. A plurality of posts interferentially engages with the passageways and holes on a PCB, so steady mechanical connection between the stiffener and circuit board is possibly provided.
For the housing partially received in the opening of stiffener or only surrounded by the stiffener, the stiffener can be removed from the housing easily without damaging the connector. Further more, while the connector is mounted on a PCB, parts of the washer below the stiffener can prevent the connection between the stiffener and the PCB, which enables preventing short circuit of the PCB.
Other advantages and novel features of the present invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings, in which:
Hereinafter, a preferred embodiment of the invention will be described in detail with reference to the attached drawings.
Referring to
The insulative housing 11 defines a recessed conductive zone 110 surrounded by two pairs of sidewalls 111. The terminals 13 are fixed in the conductive zone 110.
The metallic stiffener 12 is formed by stamping form a metallic sheet. The stiffener 12 defines an opening 120 in a middle portion thereof. The opening is generally rectangular and is surrounded by two pairs of inner surfaces 1201. The stiffener 12 defines a first end 121 and a second end 122 separated by the opening 120. A plurality of engaging through holes 123 is arranged surrounding the opening in the stiffener. In this embodiment, the engaging through holes 123 is arranged in four corners of the stiffener 12. The stiffener 12 defines an upper surface 125 and a lower surface 126 opposite to the upper surface 125. The through holes 123 extend through both side upper surface 125 and the lower surface 126. The stiffener 12 further comprises a block 124 located close to the first end 121. In this embodiment, the sidewalls of the housing 10 interferentially engage with the inner surface 1201 of the opening 120. Furthermore, in an alternative embodiment, the housing 10 is only surrounded by the opening 120 but without interference therebetween.
The load plate 14 is generally rectangular and includes a rear end 140, a front end 141 and two opposed pressing beams 142 connecting therebetween. The load plate 14 defines two spaced pivotal portions 1400 extending from the rear end 140 and an acting portion 1410 extending from the front end 141.
The load lever 15 is generally L-shaped, and comprises a pivotal section 150, a pressing section 151 protruding from the pivotal section 150, and an operating section 152 extending form a distal end of the pivotal section 150.
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Furthermore, although the present invention has been described with reference to particular embodiments, it is not to be construed as being limited thereto. Various alterations and modifications can be made to the embodiments without in any way departing from the scope or spirit of the present invention as defined in the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
3552698 | Kinney | Jan 1971 | A |
4067184 | Johnson, Jr. | Jan 1978 | A |
4929185 | Wong et al. | May 1990 | A |
7227761 | Estes et al. | Jun 2007 | B2 |
20060141840 | Ma | Jun 2006 | A1 |