The present invention relates to an electrical connection structure and, more particularly, to a connection module and a thinning method thereof.
Connectors disposed on circuit boards and pluggable devices plugged to connectors suffer from a drawback of the incapability of effectively improving transmission speeds. Thus, in order to improve the transmission speed, the Inventor of the present invention plans to provide at the same time a plurality of (two or more) counterpart connectors on a pluggable device, and to correspondingly provide at the same time a plurality of (two or more) connectors on a circuit board. Although the approach above achieves the object of improving the transmission speed, another issue of the need for precise alignment between the connectors and the counterpart connectors is also induced.
To enable precise alignment between the connectors and the counterpart connectors, a current approach is to use a flexible circuit board for disposing the connectors, such that the connectors are allowed to float along with the flexible circuit board by means of the flexibility of the flexible circuit board.
The current approach of using such flexible circuit board achieves the effect of precise alignment required. However, a guide frame is additionally needed in practice to guide the floating, resulting in an increased overall height and hence a failure in satisfying current thinning requirements.
It is an object of the present invention to provide a connection module and a thinning method thereof.
To achieve the object above, the present invention provides a connection module disposed on a main circuit board. The connection module includes: a card edge connector, disposed stationarily on the main circuit board; a hard circuit board, having a board body and a connecting tongue for correspondingly plugging with the card edge connector, wherein the board body is provided with at least one disconnecting notch, and the board body is separated by the disconnecting notch into two floating plates arranged side by side at an interval and floatable using the disconnecting notch; and at least two connectors, respectively fixed to the floating plates.
The prevent invention further provides a thinning method for a connection module provided on a main circuit board. The thinning method includes: providing a card edge connector, the card edge connector disposed stationarily on the main circuit board; providing a hard circuit board, the hard circuit board having a board body and a connecting tongue; configuring a disconnecting notch, the disconnecting notch configured at the board body, wherein the board body is separated by the disconnecting notch into two floating plates arranged side by side at an interval and floatable using the disconnecting notch; and providing at least two connectors, the connectors respectively fixed to the floating plates; wherein, the hard circuit board is correspondingly plugged with the card edge connector by the connecting tongue.
Compared to the prior art, the present invention achieves the following effects. Using the connection module having a special design, without needing an additional guide frame, the connectors are enabled to float in any desired direction and two counterpart connectors are allowed to be precisely plugged at the same time, thereby achieving effects of reducing an overall height and satisfying thinning requirements.
Details and technical contents of the present invention are described with the accompanying drawings below. It should be noted that the accompanying drawings are only for reference and illustration purposes and are not to be construed as limitations to the present invention.
The present invention provides a connection module and a thinning method thereof. As shown in
As shown in
As shown in
As shown in
At least one disconnecting notch 210 shaped as a breach is provided on any side of the board body 21, and the number of the disconnecting notch 210 may be one or two or more. In this embodiment, one disconnecting notch 210 provided on the other long side 21a of the board body 21 is used as an example for illustration. Thus, the board body 21 is separated by the disconnecting notch 210 into two floating plates 211 arranged side by side at an interval, and the two floating plates 211 are floatable in any desired direction using the disconnecting notch 210. As shown in
The number of the connectors 3 is not limited by the present invention, and may be two or three or more; a corresponding number of the connectors 3 is needed according to the number of floating plates 211 of the board body 21. In this embodiment, two connectors 3 are respectively fixed to the two floating plates 211 as an example for illustration.
A structure for fixing the connector 3 to the floating plate 211 may be any fixing structure as desired, and in this embodiment, a sunken plate structure is taken as an example for illustration. That is, each floating plate 211 is provided with a sunken plate opening 2110, so as to embed each connector 3 by a sunken plate means into each sunken plate opening 2110 and fix each connector 3 to each floating plate 211, thereby providing an effect of reducing the overall height. The position for providing each sunken plate opening 2110 may also be on the other long side 21a of the board body 21. As shown in
Accordingly, as shown in
In addition to fixing the hard circuit board 2 to the main circuit board 91 by plugging in the card edge connector 1, a through hole 213 may be further provided so that the hard circuit board 2 may be fixed to the main circuit board 91 by a fixing element F via the through hole 213. The through hole 213 may be provided at the board body 21 or the connecting tongue 22, and is provided at the board body 21 in this embodiment as an example for illustration. The through hole 213 may be in communication with the disconnecting notch 210 as shown in the drawings, or may not be in communication therewith (not shown). In this embodiment, the through hole 213 is connected to and is in communication with the disconnecting notch 210 as an example for illustration, so as to reduce the distance between the through hole 213 and the disconnecting notch 210 and to minimize the area of the board body 21 (or reduce the area of the hard circuit board 2).
The hard circuit board 2 may be fixed to the main circuit board 91 by the fixing element F via the through hole 213 only, preferably, the fixing element F is further fixed via the fixing column 4, as shown in
More specifically, as shown in
Referring to
The through hole 213 above may be in communication with any portion of the disconnecting notch 210, and is in communication with an inner end of the disconnecting notch 210 in this embodiment as an example for illustration, such that the through hole 213 becomes a notch bottom of the disconnecting notch 210. In other embodiments not shown in the drawings, if the through hole 213 is not in communication with the disconnecting notch 210, the inner end of the disconnecting notch 210 is the notch bottom.
To enhance the floating ability of each of the floating plates 211 in the top-down direction D4, as shown in
Moreover, as described above, in other embodiments not shown in the drawings, the hard circuit board 2 may be provided with two or more disconnecting notches 210, and each of the through hole 213 and the fixing column 4 is provided in singular form, for the reason that only one additional second fixing portion is needed in addition to fixing the hard circuit board 2 to the card edge connector 1 (a first fixing portion). The second fixing portion may be fixed by the fixing element F only, or the fixing element F may be fixed to the fixing column 4.
As shown in
In step S1101 of providing a card edge connector 1, the card edge connector 1 is disposed stationarily on the first mounting surface 911 of the main circuit board 91. In step S1103 of providing a hard circuit board 2, the hard circuit board 2 has a board body 21 and a connecting tongue 22 protruding integrally from one of the long sides 21a of the board body 21. In step S1105 of configuring a disconnecting notch 210, the disconnecting notch 210 is configured at the board body 21, so that the board body 21 is separated by the disconnecting notch 210 into two floating plates 211 arranged side by side at an interval and the two floating plates 211 are floatable in any desired direction using the disconnecting notch 210. In step S1107 of providing two connectors 3, the connectors 3 are respectively fixed to the floating plates 211, such that the connectors 3 are floatable in any desired direction along with the floating plates 211. The hard circuit board 2 is correspondingly plugged with the card edge connector 1 by the connecting tongue 22 thereof.
Thus, using the connection module 100 having a special design of the present invention, without needing an additional guide frame, the connectors 3 are enabled to float in any desired direction along with the floating plates 211 and the two counterpart connectors 8 are allowed to be simultaneously precisely plugged, thereby achieving effects of reducing the overall height and satisfying current thinning requirements.
In conclusion, the connection module and the thinning method thereof of present invention are capable of achieving expected utilization objects and resolving drawbacks of the prior art, and thus the present invention completely meets the requirements of a patent application. Therefore, a patent application is filed accordingly, and granting the application with patent rights is respectfully requested to ensure rights of the Inventor.
The description above provides merely preferred feasible embodiments of the present invention and is not to be construed as limitations to the claim scope of the present invention. All equivalent structural variations made on the basis of the description and drawings of the present invention are to be encompassed within the scope of claims of the present invention.
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