This application claims priority to Taiwan application Serial Number 101218066, filed Sep. 18, 2012, which is herein incorporated by reference.
1. Field of Invention
The invention relates to a card edge connector. More particularly, the invention relates to a card edge connector applied to a memory card module, a display card module, a solid hard disk module or a WLAN card (wireless local area network card) module.
2. Description of Related Art
Card edge connectors applied to a memory card module, a network is interface card module, a multi-media player module or a GPS (global position system) module and the like of a desktop computer, a notebook computer or other portable multi-media players are usually difficult to conform to the standard specification of high frequency signals as signals interfere with each other due to a large number of terminals. In addition, as the terminals are miniaturized, the assembly of the card edge connector with an insulating body tends to be difficult in production.
In the prior art, generally, after an insulating body is formed by plastic ejection processing, terminals are respectively inserted into insertion holes of the insulating body. As the number of the terminals is large, the dimension and space of the insulating body is limited, and the space between the terminals is too tight, the space of barriers between the terminals is too small. When the terminals are assembled respectively, fracture and damage of the barriers is likely to occur due to the push of external gravity, and the terminals tend to withdraw. In addition, the terminal itself is not a well-designed elastic structure, and after a butt-joint module is plugged in the insulating body for many times, some terminals may not be able to provide enough elasticity to the butt-joint module, therefore having effects on the quality of signals transferred between each other.
Accordingly, in order to improve the defects of the prior art, an electric to card edge connector is provided, wherein a design mode that a terminal is fixing in plastic in an insert molding manner is utilized, so as to fix the terminal in a combination part, and then the combination part is assembled on the insulating body. Since the terminal is fixing on the combination part in an insert molding manner and then is arranged in the insulating body, fracture caused by too short space between harriers of the insulating body when the terminal is assembled in the insulting body is avoided. The terminal is of a good elastic structure by being inserted into plastic and wrapped, so as to improve the stability of signals when the butt-joint modules are butt-jointed.
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However, in the structure of the electric card edge connector, as the side edges of the card of the butt-joint module are clamped by the two clamping parts, when the mutual clamping force of the two clamping parts is insufficient and the butt-joint module is place horizontally, the card may be partially cut. Therefore scraping a precise circuit board on the surface of the butt-joint module. Furthermore, as the clamping parts are frequently used for fixing the butt-joint module, there will be elastic fatigue of the butt-joint module and its effect cannot be realized, and the consuming cost of the parts will be increased, thus causing issues that need to be solved in production.
The invention provides a card edge connector. A terminal of the card edge connector is pre-inserted in and emitted from at least one fixing part. The fixing part is then assembled and located on an insulating body. When an electronic card is arranged in the insulting body, the terminal of the card edge connector is not likely to be compressed to withdraw, so as to improve the signal stability of high frequency signals transferred between the card edge connectors.
The card edge connector disclosed by the invention includes an insulating body, a first fixing part, a second fixing part and a plurality of terminals. The plurality of terminals are respectively fixing in the first fixing part and the second fixing part in an insert molding manner. The first fixing part and the second fixing part are received in the insulating body. A long slot and a plurality of insertion slots are concavely formed in the middle of the insulating body. The long slot runs through the insertion slots, and an electronic card can be inserted and located in the long slot. The first fixing part is assembled in the insertion slot from the side surface of the insulating body. The second fixing part is assembled in the insertion slot from the bottom of the insulating body. The first fixing part and the second fixing part are respectively provided with at least one first hook and at least one second hook. At least one insertion slot and at least one second insertion slot are formed inwards in the insulating body at positions corresponding to the first hook and the second hook. The first hook and the second hook are pushed and fastened inwards towards the first insertion slot and the second insertion slot, so that the first fixing part and the second fixing part are assembled and located on the insulating body.
In the invention, in order to assist the fixing parts to be limited on the insulating body, the first fixing part comprises at least one first bulge, and the second fixing part comprises at least one second bulge. At least one first clamping slot and at least one second clamping slot are formed in the insulating body respectively at positions corresponding to the first bulge and the second bulge. The first bulge and the second bulge are respectively received and arranged in the first clamping slot and the second clamping slot. In addition, the first fixing part comprises at least one matching part. The insulating body comprises at least one groove corresponding to the matching part. A guide surface is formed at the front end of the matching part. The guide surface can guide the matching part to enter the groove.
The card edge connector of the invention further includes a pair of ear clips. The ear clips are respectively arranged in a receiving slot of the insulating body in loose fit. In addition, the terminals of the first fixing part and the second fixing part are arranged in an alternated design manner, so that contact parts of all the terminals of the first fixing part and the second fixing part are partially received in the long slot in a mutually symmetric state, thereby being favorable for the electric connection between the electronic card and the plurality of terminals.
The front side of the insulating body in the invention protrudes outwards to form at least one limiting block. The second fixing part is concave inwards at a position corresponding to the limiting block to form at least one limiting slot. The limiting block is received in the limiting slot. The front ends of the first hook and the second hook are respectively provided with an inclined surface obliquely extending downwards and are accordingly guided and assembled in the first insertion slot and the second insertion slot via the inclined surface.
Other applications related to the invention are apparent according to the disclosure of the invention, however, the disclosure of the invention is realized by the mutual fastening of the hooks and the insertion slots, so that the fixing parts can be assembled on the insulating body. Furthermore, via the matched limiting of the bulges and the clamping slots, the fixing parts can be accurately assembled on the insulating body by utilizing automation equipment, thereby effectively improving the overall yield of mass production. The design manners of those skilled in the art by utilizing other similar principles still fall within the scope disclosed by the invention.
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The card edge connector includes an insulating 1, a first fixing part 2, a second fixing part 3, and a plurality of terminals 4. The plurality of terminals 4 are respectively fixing in the first fixing part 2 and the second fixing part 3 in an insert molding manner. The first fixing part 2 and the second fixing part 3 are received and arranged on the insulating body 1. A long slot 11 and a plurality of insertion slots 12 are concavely formed in the middle of the insulating body 1. The long slot 11 runs through the plurality of insertion slots 12, and an electronic card (not shown) such as a memory card, a display card, a sound card or a WLAN (wireless local area network) card can be inserted and located in the long slat 11. The long slot 11 is also provided with a positioning pin 13 in a position corresponding to a positioning bayonet of the electronic card (not shown). The positioning pin 13 is usually located at the non-center position of the long slot 11. In this embodiment, there is one positioning pin 13 being utilized, of course, two or more positioning pins 13 can be designed to meet with the need of the corresponding card. The positioning pin 13 is correspondingly arranged according to a reverse-insertion-prevention device of the electronic card (not shown), that is, the burnout of the electronic card (not shown) caused by mis-installation of the electronic card (not shown) in the long slot 11 is prevented, and the use safety of the electronic card (not shown) is improved. In addition, in order to be matched with the design specification of different electronic products, the positioning pin 13 possibly has various position changes on the insulating body 1, and the dimension and position of the positioning pin 13 can be different due to difference of models and specifications of the connector. In the aspect of the fixing parts, the terminals 4 are welded with laser and then fixing on the fixing parts in an insert molding way, thereby avoiding waste of material cost caused by removal of extra terminals 4.
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Although the invention has been disclosed with reference to the above embodiments, these embodiments are not intended to limit the invention. It will be apparent to those skilled in the art that various modifications and variations can be made without departing from the scope or spirit of the invention.
Therefore, the scope of the invention shall be defined by the appended claims.
Number | Date | Country | Kind |
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101218066 | Sep 2012 | TW | national |