The above and other objects, features and other advantages of the present invention will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings, in which:
Now, preferred embodiments of the present invention will be described in detail with reference to the annexed drawings.
For this reason, a groove 11 is formed across the upper surface of the lower plate 1, and an adhesive layer 12 is formed around the groove 11.
Further, a groove 21 facing the groove 11 of the lower plate 1 is formed across the lower surface of the upper plate 2, and an adhesive layer 22 is formed around the groove 21.
Moreover, release papers 13 and 23 are respectively provided on the upper surface of the adhesive layer 12 of the lower plate 1 and the lower surface of the adhesive layer 22 of the upper plate 2.
Since the adhesive layers 12 and 22 are formed on the lower and upper plates 1 and 2 provided with the grooves 11 and 21 and the release papers 13 and 23 are provided on the adhesive layers 12 and 22, as described above, when the adhesive layers 12 and 22 of the lower and upper plates 1 and 2 are adhered to each other after the release papers 13 and 23 are removed from the adhesive layers 12 and 22, the lower and upper plates 1 and 2 are integrally connected.
A conductive layer 4 is provided in the grooves 11 and 21 of the lower and upper plates 1 and 2 so that cores of electric wires for solar cells exposed by peeling off sheaths from the wires can be connected to the conductive layers 4 in the grooves 11 and 21.
Therefore, when cores of electric wires for solar cells are inserted into the insertion path, the cores of the electric wires are connected to the conductive layers 4, thus being electrically connected.
With reference to
The electric wire bracket for solar cells of this embodiment further includes the lower adhesive layer 14 and the lower release paper 15 formed on the lower surface of the lower plate 1, and thus can be fixed to a wall by adhering the lower adhesive layer 14 to the wall after the lower release paper 15 is removed from the lower adhesive layer 14.
With reference to
In accordance with the third embodiment, since the plurality of the grooves 11 and 21, facing each other, are formed in the lower plate 1 and the upper plate 2, when the lower and upper plates 1 and 2 are integrally connected by adhering the adhesive layers 12 and 22 of the lower and upper plates 1 and 2 to each other, a plurality of insertion paths 3, into which cores of electric wires for solar cells exposed by peeling off sheaths from the wires, are formed. Thereby, it is possible to branch off a plurality of wires.
With reference to
Accordingly, the electric wire bracket for solar cells of this embodiment is fixed to the wall by means of the fixture passing through the through hole 16 as well as the adhesive force of the lower adhesive layer 14. Thus, it is possible to prevent the electric wire bracket for solar cells from being easily detached from the wall.
In the electric wire brackets for solar cells in accordance with the various embodiments of the present invention, the insertion paths 3, into which electric wires are inserted, are formed by connecting a pair of the lower and upper plates 1 and 2 provided with the grooves 11 and 12 facing each other and having the adhesive layers 4. Then, the electric wires are inserted into the insertion paths 3 so that a plurality of the wires can be electrically connected. Thereby, it is possible to facilitate the connection of the wires.
As apparent from the above description, the present invention provides an electric wire bracket for solar cells, which includes a pair of upper and lower plates respectively having grooves facing each other, adhesive layers, and conductive parts formed in the grooves so as to electrically connect cores of a plurality of electric wires to the conductive parts, and forms insertion paths, into which the electric wires for supplying power produced by solar cells to electronic instruments are inserted, through the connection of the upper and lower plates by adhering the adhesive layers to each other, thus facilitating the connection of the wires.
The electric wire bracket for solar cells of the present invention further includes a lower adhesive layer and a lower release paper provided on the lower surface of the lower plate, and is thus easily mounted on a wall by adhering the lower adhesive layer to the wall after the lower release paper is removed from the lower plate.
The electric wire bracket for solar cells of the present invention further includes through holes for passing fixtures, such as screws, formed through the lower plate, and is thus more firmly mounted on the wall using the fixtures.
Although the preferred embodiments of the present invention have been disclosed for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.
| Number | Date | Country | Kind |
|---|---|---|---|
| 10-2006-0097335 | Oct 2006 | KR | national |