1. Field of the Invention
The present invention relates to a card connector assembly, and particularly to a card connector assembly detachably receiving an electronic card.
2. Description of Related Art
A connector assembly described in U.S. Pat. No. 7,014,487 was issued on Mar. 21, 2006. The connector assembly comprises an insulative housing and an electronic card having a plurality of conductive traces. The insulative housing has an elongated slot for insertion of the electronic card, a connecting member formed at a lower portion of the elongated slot for resisting against an edge of the electronic card, and a plurality of terminals each having a contact portion clasping the conductive traces of the electronic card. The electronic card is inserted into the elongated slot until reaching the connecting member, the contact portions of the terminals then make contact with the conductive traces of the electronic card. The electronic card is then locked in the elongated slot above the connecting portion, due to an engagement between the terminals and conductive traces thereof.
The contact portions of the terminals are deflected inwardly for clasping the inserted electronic card. When a distance between a pair of corresponding contact portions is smaller than a thickness of the electronic card, it is hard to insert the electronic card between the pair of contact portions.
Another connector described in U.S. Pat. No. 6,213,804 was issued on Apr. 10, 2001. The connector for receiving a semiconductor component comprises a housing defining an insertion slot for insertion of the semiconductor component, a plurality of terminals assembled lengthwise along opposite sides of the insertion slot, and a driving mechanism. The driving mechanism comprises a carriage for keeping the contact portions of the terminals away from an insertion position of the semiconductor component, when the semiconductor component is not inserted in the insertion slot. The carriage has a recess defined at a lower portion thereof for retaining a spring. When the semiconductor component is inserted into the connector, the carriage is pushed downwardly and the spring is compressed.
The recess defined in the carriage would weaken the carriage and complicate manufacture of the carriage.
Hence, an improved card connector assembly is required to overcome the above-mentioned disadvantages of the related art.
A primary object of the present invention is to provide a card connector assembly having a carriage component having a firm and simple configuration.
To achieve the aforementioned objects, a card connector assembly for insertion of an electronic card comprises an insulative housing defining a cavity, two rows of terminals assembled to opposite inner sides of the insulative housing, a carriage component being moveable between the two rows of terminals and having a pair of projection portions formed at two opposite ends thereof, and a pair of springs assembled between the projection portions and the insulative housing. Each terminal is formed with a contact portion. The carriage component is movable along with the electronic card from an initial position toward a final position where the carriage component is held stationary.
The carriage component has a pair of projection portions formed at opposite sides thereof for resisting against the springs. The projection portions would not weaken the carriage component and it is easy to form the projection portions, during the process of manufacturing the carriage component.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description of a preferred embodiment when taken in conjunction with the accompanying drawings.
Reference will now be made to the drawing figures to describe the present invention in detail. Referring to
Referring to
The second insulative housing 5 comprises a pair of elongated side walls 51 and a pair of connection portions 52 interconnected together for encircling around the second slot 53. Inner faces of the side walls 51 have a plurality of second passageways 511 defined in a top-to-bottom direction and preferably communicating with the first passageways 111 for insertion of the terminals 4. The side walls 51 comprise two pairs of second locking portions 521 formed on opposite ends thereof and a plurality of protrusions 512 formed on top surfaces thereof. The connection portion 52 has a second hook 523 and a pair of posts 522 projecting upwardly from an upper portion thereof.
The carriage component 2 includes a moveable portion 21 defining an elongated insertion recess 212 and a stiffener portion 22 inserted in the insertion recess 212 for reinforcing the moveable portion 21. It is noted that, in the preferred embodiment shown, the stiffener portion 22 is insert molded with the moveable portion 21, as clearly seen in
Each terminal 4 comprises a body portion 41, a contact portion 42 extending upwardly from one end of the body portion 41, and a soldering portion 43 generally perpendicular to another end of the body portion 41.
Referring to
Referring to
The carriage component 2 is mounted on the second insulative housing 5. The pair of coil springs 3 are assembled between the carriage component 2 and the second insulative housing 5, with one end thereof resisting against the second ear portions 222 and another end thereof being retained in the second slot 53. The first insulative housing 1 is mated with the second insulative housing 5, with the posts 522 being plunged into the indentations 121. The carriage component 2 is accommodated in the first slot 14, with the projection portions engaging with two ends of the first slot 14. The first locking portions 15 and the first hook 123 respectively engage with the second locking portions 521 and the second hook 523 for resisting an accidental unmating of the first insulative housing 1 from the second insulative housing 5. The receiving indentations 112 of the first insulative housing 1 couple with the protrusions 512 of the second insulative housing 5 for enhancing the engagement between the first and the second insulative housings 1, 5.
Two rows of the terminals 4 are mounted on the first and the second insulative housings 1, 5, with the body portions 41 being inserted into the first and the second passageways 111, 511 defined on opposite inner faces of the walls 11, 51, the contact portions 42 being exposed within the first slot 14, and the soldering portions 43 extending outwardly from the lower portion of the second insulative housing 5 for soldering onto a circuit board (not shown). The carriage component 2 is therefore confined between two rows of the terminals 4.
Referring to
Once exerting an external force on the electronic card 6, the electronic card 6 is partially inserted into the first slot 14 in a top-to-bottom direction from the opening 13 until it reaches the top face 214 of the moveable portion 21. The electronic card 6 together with the carriage component 2 is held in an initial position.
Referring to
The carriage component 2 would keep the contact portion 42 away from an insertion position of the electronic card 6, when the electronic card 6 is not inserted into the first slot 14. Therefore, the external force for insertion of the electronic card 6 among the terminals 4 does need to be very strong. The top face 214 of the carriage component 2 is disposed above the contact portions 42, when the carriage component 2 is disposed in the initial position. Therefore, the electronic card 6 would reach the top face 214 firstly before in contact with the contact portions 42 to thereby protect the terminal 4 from being broken, when the electronic card 6 is inserted incorrectly or is inserted under an excessive force.
During the process of insertion of the electronic card 6, the contact portions 42 of the terminals 4 engage with the conductive pads 61, but could not contact with other portions of the electronic card 6 to thereby protect the electronic card 6, due to a proper height of the carriage component 2.
When the electronic card 6 is removed from the electrical connector 100, the compressed springs 3 would provide a resilient force for easing removal of the electronic card 6.
However, the disclosure is illustrative only, changes may be made in detail, especially in matter of shape, size, and arrangement of parts within the principles of the invention.
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