This application claims priority of Taiwanese Application No. 097211684, filed on Jul. 1, 2008.
1. Field of the Invention
The invention relates to an electrical connector, more particularly to a card edge connector.
2. Description of the Related Art
Referring to
The insulating body 7 can be mounted on a circuit board (not shown), and has a top surface 70 formed with an insertion groove (not shown) that permits insertion of an insertion side of the electronic card 6 thereinto. When the insertion side of the electronic card 6 is inserted into the insertion groove, a plurality of conductive terminals (not shown) on the insertion side of the electronic card 6 contact electrically and respectively terminals (not shown) mounted in the insulating body 7.
The metallic pieces 5 are mounted respectively on opposite lateral side framed 71 on the top surface 70 of the insulating body 7. Each metallic piece 5 includes an upright main plate body 50 having front and rear sides 501, 500, a bent anchoring portion 52 extending from the front side 501 of the main plate body 50 and disposed distal from the insulating, body 7, and an L-shaped stop 51 extending from the rear side 500 of the main plate body 50 and disposed between the anchoring portion 51 and the insulating body 7.
When the electronic card 6 is inserted into the insertion groove in the insulating body 7, the anchoring portions 52 of the metallic pieces 5 engaged respectively notches 60 in opposite lateral sides of the electronic card 6. Upon vibration of an assembly of the conventional card edge connector and the electronic card 6, disengagement between the notches 60 in the electronic card 6 and the anchoring portions 52 of the metallic pieces 5 may occur. Therefore, the conventional card edge connector cannot ensure electrical contact between the conductive terminals 70 of the electronic card 6 and the terminals of the conventional card edge connector.
Therefore, an object of the present invention is to provide a card edge connector that can overcome the aforesaid drawback of the prior art.
According to the present invention, there is provided a card edge connector adapted for electrically connecting an electronic card to a circuit board therethrough. The electronic card has a rectangular card body. The card body has an insertion side formed with a plurality of conductive terminals, and opposite lateral sides each formed with a notch distal from the insertion side. The card edge connector comprises:
an insulating body adapted to be mounted on the circuit board, and having a side surface formed with an insertion groove which permits insertion of the insertion side of the card body of the electronic card thereinto, and two lateral side frames opposite to each other in a first direction and extending from the side surface;
a plurality of terminals mounted in the insulating body, each of the terminals having a contact portion extending into the insertion groove in the insulating body, and a solder portion opposite to the contact portion, extending outwardly of the insulating body and adapted to be electrically connected to the circuit board, the contact portions of the terminals being adapted to contact electrically and respectively the conductive terminals of the electronic card when the insertion side of the card body of the electronic card is inserted into the insertion groove in the insulating body; and
two metallic pieces each including
When the insertion side of the card body of the electronic card is inclinedly inserted into the insertion groove in the insulating body such that each of the lateral sides of the card body of the electronic card abuts against the guiding surface of the anchoring member of a corresponding one of the metallic pieces, the card body of the electronic card is pushed to move toward the second resilient arms of the metallic pieces through guiding of the guiding surfaces of the anchoring members of the metallic pieces such that each of the lateral sides of the card body of the electronic card is clamped between the anchoring member and the free end portion of the second resilient arm of the corresponding one of the metallic pieces and that the notch in each of the lateral sides of the card body of the electronic card engages the projection of the free end portion of the second resilient arm of the corresponding one of the metallic pieces, thereby ensuring electrical contact between the conductive terminals of the electronic card and the contact portions of the terminals.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiment with reference to the accompanying drawings, of which:
Referring to
The insulating body 1 is adapted to be mounted on the circuit board 8, and has a side surface 12 formed with an insertion groove 120 (see
The terminals 4 are mounted in the insulating body 1. As shown in
Each metallic piece 2 includes a base 21, a first resilient arm 23, a curved anchoring member 24, and a second resilient arm 22. For each metallic piece 2, the base 21 is mounted on a corresponding lateral side frame 11 of the insulating body 1. The first resilient arm 23 extends from tee base 21 in the second direction (Y) that is perpendicular to the first direction (X), and has first and second sides 231, 232 opposite to each other in a third direction (Z) that is perpendicular to the first and second directions (X, Y). The anchoring member 24 extends from the first side 231 of the first resilient arm 23, is disposed distal from the base 21, and has an outer convex guiding surface 241, as best shown in
In use, initially, the insertion side 32 of the card body 30 of the electronic card 3 is inclinedly inserted into the insertion groove 120 in the insulating body 1 each that each lateral side 31 of the card body 30 of the electronic card 3 abuts against the guiding surface 241 of the anchoring member 24 of a corresponding metallic piece 2. Thereafter, the carp body 30 of the electronic card 3 is pushed to move toward the second resilient arms 22 of the metallic pieces 2 through guiding of the guiding surfaces 241 of the anchoring members 24 of the metallic pieces 2 such that each lateral side 31 of the card body 30 of the electronic card 3 is clamped between the anchoring member 24 and the free end portion 221 of the second resilient arm 22 of the corresponding metallic piece 2 and that the notch 310 in each lateral side 31 of the card body 30 of the electronic card 3 engages the projection 25 of the free end portion 221 of the second resilient arm 22 of the corresponding metallic piece 2, thereby ensuring electrical contact between the conductive terminals 33 of the electronic card 3 and the contact portions 41 of the terminals 4. It is noted that, when each lateral side 31 of the card body 30 of the electronic card 3 is clamped between the anchoring member 24 and the free end portion 221 of the second resilient arm 22 of the corresponding metallic piece 2, the projection 25 of the free end portion 221 of the second resilient arm 22 of the corresponding metallic piece 2 is adapted to abut against the second end 342 of the concave wall 34 at a respective lateral side 31 of the card body 30 of the electronic card 3, as best shown in
In sum, since the card body 30 of the electronic card 3 can be stably positioned relative to the card edge connector by the metallic pieces 2, the card edge connector of the present invention can ensure electrical contact between the conductive terminals 33 of the electronic card 3 and the contact portions 41 of the terminals 4.
While the present invention has been described in connection with what is considered the most practical and preferred embodiment, it is understood that this invention is not limited to the disclosed embodiment bat is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Name | Date | Kind |
---|---|---|---|
6478592 | Hu et al. | Nov 2002 | B1 |
6939157 | Chiu | Sep 2005 | B2 |
7004773 | Poh et al. | Feb 2006 | B1 |
7344402 | Langgood et al. | Mar 2008 | B2 |
Number | Date | Country | |
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20100003856 A1 | Jan 2010 | US |