The present invention relates to a connector assembly and, particularly, to a connector assembly of compact flash cards.
Conventionally, there are two types of compact flash card connectors. The first type is relatively shorter in height, while the second type is relatively taller in height. Typically, the compact flash card connectors can only connect with the compact flash cards whose height is smaller than that of the compact flash card connectors when the first type of connector is assembled on a printed circuit board of an electronic device, thus, the types of compact flash cards capable of connecting with the circuit board is limited. In addition, when the second type of connector is assembled on the printed circuit board of an electronic device, the second type of connector cause the electronic device to be bulky and limit the miniaturization of possible designs.
What is needed, therefore, is a connector to allow for greater connectivity.
Many aspects of the present connector assembly can be better understood with references to the accompanying drawings. The components in the drawing are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present connector assembly.
Embodiments of the present invention will now be described in detail below, with references to the accompanying drawings.
Referring to
The connector 20 includes a housing 21 and an array of terminals 22. The housing 21 includes a pair of guiding arms 211 and a cross bar 212 bridged between the pair of guiding arms 211 to collectively define a receiving space 23 therebetween. The cross bar 212 has a mating face 212a and a rear face 212b opposite to the mating face 212a, along with an array of passageways (not labeled) defined between the mating face 212a and the rear face 212b. The array of terminals 22 is assembled in the array of passageways. A pair of guiding ribs 211a is formed on inner walls of the guiding arms 211 for guiding a card to be inserted. The guiding ribs 211a may be replaced with guiding grooves if needed.
In the present embodiment, the substrate 10 is a printed circuit board and is electrically connected with the array of terminals 22. The substrate 10 defines a cutout 11 corresponding to the receiving space 23 defined by the pair of guiding arms 211 and the cross bar 212. The size of the cutout 11 is substantially greater than or equal to the size of the receiving space 23. The connector 20 is mounted on the substrate 10, with the pair of guiding arms 211 and the cross bar 212 thereof surrounding three sides of the cutout 11.
The connector 20 can be secured on the substrate 10 by soldering and screws, among other methods. In the present embodiment, the connector assembly 100 also has two L-shaped connecting devices 30 for securing the connector 20 on the substrate 10. The connecting devices 30 are located at the front end 211b of the guiding arms 211, respectively. The front end 211b of the guiding arm 211 is away from the cross bar 212.
Referring to
While certain embodiments have been described and exemplified above, various other embodiments will be apparent to those skilled in the art from the foregoing disclosure. The present invention is not limited to the particular embodiments described and exemplified, and the embodiments are capable of considerable variation and modification without departure from the scope of the appended claims.
Number | Date | Country | Kind |
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200810302654.4 | Jul 2008 | CN | national |