1. Technical Field
The disclosure generally relates to mounting apparatuses; and more particularly to a mounting apparatus for an expansion card.
2. Description of Related Art
Generally, an expansion card such as a memory card is fixed on a circuit board of an electronic device by a mounting apparatus. The electronic device may for example be a computer or a server. The mounting apparatus includes an electrical connector, and two plate-shaped locking members disposed at two opposite ends of the connector for clamping two opposite ends of the expansion card. However, the plate-shaped locking members may block airflow to the expansion card. In particular, a circuit board may have a plurality of expansion cards fixed thereon, with the expansion cards parallel and adjacent to each other. In this arrangement, the locking members of the mounting apparatuses block air from flowing into and out of a space between each two adjacent expansion cards. This reduces the efficiency of dissipation of heat from the expansion cards.
What is needed, therefore, is a means to overcome the described limitations.
Many aspects of the present embodiments can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead placed upon clearly illustrating the principles of the present embodiments. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Referring to
The expansion card 10 includes an elongated main body 11, and a plurality of chips 12 mounted on the main body 11. The main body 11 of the expansion card 10 has two opposite ends, and two spaced arc-shaped recesses 111 defined in each end thereof. A plurality of horizontally spaced electrical pins 112 are provided on a bottom portion of the expansion card 10.
The connector 20 is elongated, and includes two long sidewalls (not labeled) parallel to each other. The connector 20 includes a top surface 21, and two opposite side surfaces 22 extending downwardly from two opposite sides of the top surface 21. The side surfaces 22 are parts of the sidewalls, respectively. A slot 23 is defined in the top surface 21 of the connector 20, and extends along a longitudinal direction of the connector 20. A block 231 is formed in the slot 23 to divide the slot 23 into two portions. The bottom portion of the expansion card 10 defines a cutout 113 therein corresponding to the block 231. The bottom portion of the expansion card 10 can be inserted into the slot 23 of the connector 20 only when the cutout 113 is aligned with the block 231 in a correct orientation. The connector 20 has a plurality of electrical terminals (not shown) in the slot 23, corresponding to the pins 112 of the expansion card 10. When the bottom portion of the expansion card 10 is inserted into the slot 23 of the connector 20, the terminals of the connector 20 contact the pins 112 of the expansion card 10 to electrically connect the expansion card 10 with the mainboard. Two receiving grooves 232 are defined in the top surface 21 of the connector 20, and are respectively located at two opposite ends of the slot 23. A transverse width of each receiving groove 232 is broader than that of the slot 23.
Referring also to
Referring also to
The latching member 32 includes a U-shaped latching portion 321, two feet 323, and two elongated connecting arms 322 respectively connecting the two feet 323 with two ends of the latching portion 321. The two connecting arms 322 extend perpendicularly (downwardly) from the two ends of the latching portion 321, respectively. That is, the connecting arms 322 are perpendicular to a plane in which the latching portion 321 is located. Each foot 323 extends perpendicularly inwardly (horizontally) from a bottom end of the corresponding connecting arm 322. That is, the feet 323 extend towards each other. In this embodiment, the latching member 32 is made of a single metal wire. When the two latching members 32 engage the opposite ends of the expansion card 10, the two latching members 32 may block airflow thereat only a little, thereby greatly enhancing dissipation of heat from the expansion card 10.
In assembly of the mounting apparatus, the guide pin 31 of each latching mechanism 30 is inserted in a corresponding sliding groove 24 of the connector 20, with the positioning section 311 of the guide pin 31 being received in the receiving groove 232 of the connector 20 to prevent the guide pin 31 from moving along an axial direction thereof. In this embodiment, the guide pin 31 is made of plastic. The positioning section 311 of the guide pin 31 can be inserted to the receiving groove 232 of the connector 20 by pressing. In other embodiments, the connector 20 can define an inserting hole therein for inserting the positioning section 311 of the guide pin 31 into the receiving groove 232 of the connector 20. Then, bottom ends of the two connecting arms 322 of the latching member 32 are pulled outwardly to make a distance between the two feet 323 greater than a length of the guide pin 31. Thus, the two feet 323 of the latching member 32 are firmly inserted into the receiving holes 313 of the guide pin 31 when the pulling force is released. Bottom ends of the connecting arms 322 of the latching member 32 are receiving in the recesses 25 of the connector 20, thereby limiting a range of rotation angles of the latching member 32.
Referring to
In assembly of the expansion card 10 to the connector 20, the bottom portion of the expansion card 10 is aligned with the slot 23 of the connector 20. Then, the expansion card 10 is depressed. The guide pin 31 of each latching mechanism 30 is pushed by the expansion card 10 to move from the top end of the sliding groove 24 along the sliding groove 24 to the bottom end of the sliding groove 24 (
When taking the expansion card 10 out from the slot 23 of the connector 20, the latching portion 321 of the latching member 32 of each latching mechanism 30 is rotated (pulled) outwardly, causing the guide pin 31 to rotate relative to the connector 20 till the indent planes 3121 of the guide pin 31 rotate to orientations parallel to the long side of the sliding groove 24. Then, the latching member 32 is pulled obliquely upwardly, causing the expansion card 10 move upwardly together with the guide pin 31. When the guide pin 31 of the latching mechanism 30 has reached the top end of the sliding groove 24, the bottom portion of the expansion card 10 has been substantially pulled out of the slot 23 of the connector 20. The expansion card 10 can then be easily taken out of the slot 23 of the connector 20.
It is to be understood, however, that even though numerous characteristics and advantages of the present embodiments have been set forth in the foregoing description, together with details of the structures and functions of the embodiments, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the disclosure to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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2010 10 173815 | May 2010 | CN | national |
Number | Name | Date | Kind |
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4872853 | Webster | Oct 1989 | A |
5417580 | Tsai | May 1995 | A |
6948957 | Costello et al. | Sep 2005 | B1 |
7252523 | Pennypacker et al. | Aug 2007 | B1 |
7661974 | Sun | Feb 2010 | B1 |