1. Field of the Invention
The present invention relates to a card edge connector, more particularly to a card edge connector having an improved ejector.
2. Description of Related Art
Card edge connectors are employed widely in computers to receive a memory module, graphic card, network interface et al. The card edge connector usually includes an elongated insulative housing defining a central slot for receiving the memory module, a plurality of contacts retained in the housing and projecting into the central slot for electrically mating with the memory module, and a pair of ejectors rotatablely attached to two tower portions formed at two longitudinal ends of the insulative housing for ejecting and latching with the memory module.
The ejectors usually have main portions, ejecting portions extending inwardly from lower ends of the main portions for ejecting the memory module out of the central slot, locking portions extending inwardly from upper ends of the main portions for latching with the memory module, and lever portions extending outwardly from the upper ends of the main portions and opposed to the locking portion for being operated by hands conveniently. The main portions usually have spindles rotatablely received in circular holes of the tower portions. However, each spindle has a diameter smaller than that of the circular hole, when the memory module is being inserted into the central slot, the ejectors rotates inwardly toward the central slot from an open position as a lower edge of the memory module pressing the ejecting portions downwardly, and the center of the spindle will be lower than the center of the circular hole because of the dimensional tolerance between the spindle and the circular hole, in this situation, the ejecting portion will shift down and not be pressed by the lower edge of the memory module during the insertion of the memory module, and when the memory module is completely inserted into the central slot, the ejectors could not rotate to scheduled positions and certainly will not latch the memory module effectively.
Hence, an improvement over the prior art is required to overcome the disadvantages thereof.
According to one aspect of the present invention, a card edge connector comprises a longitudinal insulative housing, a plurality of contacts retained in the insulative housing for mating with the memory module and an ejector. The insulative housing has a central slot extending along a longitudinal direction for insertion of a memory module and at least one tower portion extending upwardly therefrom. The tower portion comprises a pair of outer walls extending along a height direction and a receiving slot formed between the outer walls. Each outer wall defines a ladder with a circular hole formed therein. The ejector is assembled to the tower portion and is rotatable inwardly or outwardly relative to the tower portion for latching the memory module into the central slot or ejecting the memory module out of the central slot. The ejector has a pair of spindles formed at two sides thereof in a transverse direction and being rotatablely received in the respective circular holes, and a pair of standoffs formed at the two sides thereof. Each standoff defines a horizontal surface abutting against a corresponding horizontal resisting surface formed on the ladder so as to make centers of the spindle of the ejector and the circular hole of the tower portion overlap when the ejector rotates inwardly.
According to another aspect of the present invention, a card edge connector comprises a longitudinal insulative housing, a plurality of contacts retained in the insulative housing for mating with the memory module and a pair of ejectors. The insulative housing has a central slot extending along a longitudinal direction for insertion of a memory module and a pair of tower portions extending upwardly from two longitudinal ends thereof. Each tower portion comprises a pair of outer walls extending along a height direction and a receiving slot formed between the outer walls. Each outer wall comprises a thick lower wall and a thin upper wall extending upwardly from the lower wall. The lower wall has a recess recessed at an upside thereof and a circular hole recessed on the recess. The ejectors are rotatablely received in the receiving slot in the longitudinal direction. Each ejector comprises a main portion, an ejecting portion extending from a lower end of the main portion for ejecting the memory module out of the central slot, a locking portion extending from an upper end of the main portion for latching the memory module into the central slot, and a lever portion extending from the upper end of the main portion and opposite to the locking portion for being handled by a hand or others easily. The main portion comprises an upper wide portion corresponding to the upper walls and a lower narrow portion corresponding to the lower walls. The narrow portion defines a pair of spindles formed at two sides thereof and is rotatablely received in the respective circular holes in a loose fit condition. The narrow portion of each ejector has a pair of standoffs formed at the two sides thereof, each standoff defines a horizontal surface abutting against a corresponding horizontal resisting surface formed at a bottom side of the recess so as to align centers of the corresponding spindle and circular hole when the ejector rotates inwardly.
The foregoing has outlined rather broadly the features and technical advantages of the present invention in order that the detailed description of the invention that follows may be better understood. Additional features and advantages of the invention will be described hereinafter which form the subject of the claims of the invention.
For a more complete understanding of the present invention, and the advantages thereof, reference is now made to the following descriptions taken in conjunction with the accompanying drawings, in which:
In the following description, numerous specific details are set forth to provide a thorough understanding of the present invention. However, it will be obvious to those skilled in the art that the present invention may be practiced without such specific details. In other instances, well-known circuits have been shown in block diagram form in order not to obscure the present invention in unnecessary detail. For the most part, details concerning timing considerations and the like have been omitted inasmuch as such details are not necessary to obtain a complete understanding of the present invention and are within the skills of persons of ordinary skill in the relevant art.
Referring to
Referring to
Each tower portion 13 has a pair of outer walls 131 extending in the height direction, a receiving slot or ejector receiving cavity 135 located between the outer walls 131 and communicating with the central slot 12 in the longitudinal direction, a U-shaped portion 136 connecting upper sides of the outer walls 131 and located at an inner side of the receiving slot 135, and an end wall 133 connecting lower sides of the outer walls 131 and located at an outer side of the receiving slot 135. The U-shaped portion 136 forms a groove 134 for retaining a side edge 91 of the memory module 9 and defines a guiding surface 1361 at an upper side thereof for guiding the memory module 9 into the central slot 12. Each outer wall 131 has a thick lower wall 1313 connecting the end wall 133, and a thin upper wall 1310 extending upwardly from the lower wall 1313 and connecting the U-shaped portion 136. The upper wall 1310 has a block 1311 formed thereon and facing the receiving slot 135. The lower wall 1313 has a lower portion, and an upper portion located on an upside of the lower portion and depressed away from the receiving slot 135 to form a recess 1318. The upper portion is thinner than the lower portion but thicker than the upper wall 1310. The upper portion and the lower portion form as a ladder. A circular hole 1312 includes an upper semi-circular hole 13121 formed on the upper portion and a lower semi-circular hole 13122 formed on the lower portion. Referring to
The contacts 2 have retaining portions 21 retained in the cavities 111, contacting portions 22 extending upwardly from the respective retaining portions 21 and protruding into the central slot 114 for mating with the memory module 9, and tail portions 23 extending downwardly from the respective retaining portions 21 for being mounted onto the printed circuit board.
Referring to
The main portion 31 has a slit 318 extending therein at an outer side thereof along the height direction to enhance its flexibility so that the ejector 3 could be assembled to the insulative housing 1 smoothly, and a chamber 319 formed at an inner side thereof to receive the U-shaped portion 136. The main portion 31 comprises an upper wide portion 310 defining a pair of protrusions 311 formed at two sides thereof for interferingly engaging with the respective blocks 1311 when the ejector 3 rotate relative to the insulative housing 1, and a lower narrow portion 315 extending downwardly from the wide portion 310 and being narrower than the wide portion 310. A pair of spindles 312 are formed at two sides of the narrow portion 315 and are rotatablely received in the corresponding circular holes 1312 so that the ejector 3 could rotate inwardly or outwardly relative to the insulative housing 1 along the longitudinal direction. The spindles 312 are sustained upwardly by the semicircular surface 1316. The narrow portion 315 has a pair of standoffs 313 formed at two lateral sides thereof and connecting the respective spindles 312 and the wide portion 310 so as to enhance intensity of the respective spindles 312. Each standoff 313 has a horizontal pressing or downward surface 3131 located at an inner side of the spindle 312 and extending in a horizontal plane aligning to the center of the spindle 312 in the height direction, and an oblique surface 3132 extending obliquely from an outer side of the spindle 312 to the wide portion 310.
Referring to
When the memory module 9 is being ejected from the central slot 12, the lever portions 33 are pulled out by hands or others to drive the ejector 3 rotating outwardly relative to the insulative housing 1 and ejecting the memory module 9 out via the ejecting portion 34 pushing the lower edge 92 upwardly. When the ejectors 3 rotate outwardly, the oblique surfaces 3132 of the ejectors 3 resisting the stopping surfaces 1315 of the insulative housing 1 so as to prevent the ejectors 3 from rotating outwardly excessively.
Referring to
It is to be understood, however, that even though numerous, characteristics and advantages of the present invention have been set fourth in the foregoing description, together with details of the structure and function of the invention, the disclosed is illustrative only, and changes may be made in detail, especially in matters of number, shape, size, and arrangement of parts within the principles of the invention 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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2011 2 0217741 U | Jun 2011 | CN | national |
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Number | Date | Country | |
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20120329301 A1 | Dec 2012 | US |