This invention relates to a connecting device, and more particularly to a connecting device for circuit boards in which an assembling process is simplified by obviating the need for a soldering operation.
Also, this invention relates to a connecting device, and more particularly to a connecting device for circuit boards which enables the design of circuits to be made easily.
In a related connecting device for circuit boards shown in
When the male-type connector 7 is fitted into the female-type connector 3, the one circuit board 1 and the other circuit board 5 are electrically connected together (see, for example, JP-A-2000-260507).
In JP-A-2000-260507, the male-type connector 7 and the female-type connector 3, mounted respectively on the associated circuit boards 1 and 5 by soldering, are fitted together. As a result, the two circuit boards 1 and 5 can be electrically connected together. However, since these connectors 3,7 are mounted respectively on the associated circuit boards 1 and 5 by soldering, the assembling operation is complicated, and this has lowered the efficiency of the circuit board-mounting operation.
Also, in JP-A-2000-260507, each of the male-type connector 7 and the female-type connector 3 is soldered to the patterns formed in a concentrated manner on the one aide portion of the corresponding circuit board, and by fitting the male-type connector 7 and the female-type connector 3 together, the circuit boards 1 and 5 can be electrically connected together. However, the patterns must be formed in a concentrated manner at the one side portion or each circuit board, the design of the circuits has been much limited.
It is therefore a first object of the present invention to provide a connecting device for circuit boards capable of simplifying the assembling operation required for connecting the circuit boards, thus enhancing operation efficiency.
Also, a second object of the present invention is to provide a connecting device for circuit boards capable of simplifying the design of the circuit boards, thus enhancing operation efficiency.
In order to achieve the above object, according to the present invention, there is provided a connecting device, comprising:
a first circuit board, which has a first conductive pattern on an edge portion thereof;
a second circuit board, which has a second conductive pattern on an edge portion thereof; and
a connector, which includes a first face and a second face opposed to the first face, the first face and second face having a first reels portion and a second recess portion respectively,
wherein a terminal is provided in the first and second recess portion; and
wherein the terminal connects the first conductive pattern and the second conductive pattern when the first circuit board and the second circuit board are attached to the first recess portion and the second recess portion respectively.
Preferably, each of the first recess portion and the second recess portion has at least two sides. A plurality of the terminals of the connector are arranged along the at least two sides.
Preferably, the connector has a step portion which prevents the insertion of the first and second circuit boards in a reverse state to the first and second recess portions.
Preferably, a thickness of each of the first and second recess portion is greater than that of each of the first and second circuit boards.
Preferably, each of the first and second circuit boards have two linear sides which face each other and curved sides which are connected to the linear sides.
Preferably, the connector has a fixing member which fixes the first and second circuit boards to the connector.
Preferably, the fixing member is provided as a cover member. The cover member is slidably provided on an end portion of the connector. The cover member slides between an open position and a closed position. When the cover member is positioned at the open position, the cover member allows the first and second circuit boards to attach to the connector. When the cover member is positioned at the closed position when the first and second circuit board are mounted on the connector, the cover member fixes the first and second circuit boards to the connector.
Preferably, the cover member covers the first and second conductive patterns of the first and second circuit boards when the cover member is positioned at the closed position.
In the above configurations, the recess portions, corresponding in shape to the circuit boards to which the connector is connected, are formed respectively in the front and back sides of the connector, and these recess portions are formed so that the circuit boards can be fixed to the recess portions, respectively. The conductive patterns are provided at the outer edge portion of each of the circuit boards so as to be press-contacted respectively with the terminals mounted at the recess portions of the connector.
Therefore, when the circuit boards are fixed to the recess portions of the connector, the circuit boards, provided respectively at the opposite (front and back) sides of the connector, are electrically connected together via the terminals of the connector. Therefore, the soldering operation for soldering each connector to the corresponding circuit board and the positioning operation for the purpose of fining the male-type and female-type connectors together as in the related construction are not necessary. This results in enhanced efficiency of assembling operation for electrically connecting the circuit boards. Further, labor costs are reduced, thus contributing to the overall reduction of cost.
According to the present invention, there is also provided a connecting device comprising:
a first circuit board, which has a first conductive pattern on an outer peripheral edge portion thereof;
a second circuit board, which has a second conductive pattern on an outer peripheral edge portion thereof; and
a connector, which has a terminal corresponding to the first and second conductive patterns,
wherein the terminal connects the first conductive pattern and the second conductive pattern when the first circuit board and the second circuit board are attached to the connector.
In the above configuration, the conductive patterns are provided at the outer peripheral edge portion of each of the first and second circuit boards, and these patterns can be press-contacted with the terminal of the connector, respectively. Therefore, as compared with the related construction in which the patterns are formed in a concentrated manner at the one side portion of each circuit board, the degree of freedom of the circuit design is enhanced, so that the circuit boards can be simplified, thus contributing to the reduction of the cost. In addition, because the edge portion of each circuit board is utilized, a small-size design of the circuit boards can be achieved.
The above objects and advantages of the present invention will become more apparent by describing in detail preferred exemplary embodiments thereof with reference to the accompanying drawings, wherein:
Preferred embodiments of the present invention will now be described in detail with reference to
Like the first circuit board 10, various electronic components 15 are mounted on the second circuit board 11 and also, patterns 16 are provided at outer edge portions of the second circuit board 11 as shown in
On the other hand, the connector 12 is made of a synthetic resin, and recess portions 17 are formed respectively in front and back (opposite) sides of the connector as shown in
For electrically connecting the first circuit board 10 and the second circuit board 11 together, the first and second circuit boards 10 and 11 are fitted respectively into the upper and lower recess portions 17 of the connector 12, and are fixed thereto. At this time, the patterns 14 on the first circuit board 10, as well as the patterns 16 on the second circuit board 11, are press-contacted with the terminals 18 of the connector 12, respectively, so that the first circuit board 10 and the second circuit board 11 are electrically connected together. Therefore, the step of soldering the connector 12 to the first and second circuit board 10 and 11 as in the related structure is not necessary. It is further unnecessary to position the first circuit board 10 and the second circuit board 11 relative to each other. Therefore, the assembling operation is simplified so that the required labor can be reduced, thus contributing to the reduction of the cost.
Also, the patterns 14 are provided at the outer peripheral edge portion of the first circuit board 10, while the patterns 16 are provided at the outer peripheral edge portion of the second circuit board 11. Therefore, as compared with the related construction in which the patterns are provided in a concentrated manner at one side portion of each of the circuit boards, limitations on the design of the first and second circuit boards 10 and 11, are eliminated. Therefore, the design of the first and second circuit boards 10 and 11 can be simplified, thus contributing to a small-size design of the first and second circuit boards 10 and 11.
Next,
At this time, patterns 22 on the first circuit board 10, as well as patterns 23 on the second circuit board 11, are press-contacted with terminals 24 of the connector 19, respectively, so that the first circuit board 10 and the second circuit board 11 are electrically connected together. In this embodiment, also, a soldering operation and an operation for positioning the first circuit board 10 and the second circuit board 11 relative to each other are not necessary as described above for the preceding embodiment. Therefore, the efficiency of the operation is enhanced, and labor required for the assembling operation is reduced, thus contributing to the reduction of the cost. Also, the design of a circuit board can be simplified, and this contributes to a small-size design of the circuit board.
In the present invention, various modifications can be made without departing from the spirits of the invention, and such modifications naturally fall within the scope or the invention.
Number | Date | Country | Kind |
---|---|---|---|
P.2003-328726 | Sep 2003 | JP | national |
P.2003-328728 | Sep 2003 | JP | national |
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Number | Date | Country |
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Number | Date | Country | |
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20050064741 A1 | Mar 2005 | US |