The present invention is directed to a net light and, more specifically, to an expandable matrix for supporting light members so as to form a net which may be used for decorative or other purposes. The expandable matrix includes conductive connectors between adjacent light members and non-conductive, expandable connectors between other adjacent light members wherein the connectors substantially define a matrix having rows and columns for supporting the light members. The conductive connectors may also be expandable.
Decorative lights for illuminating indoor and outdoor structures, such as for celebrations or holidays, is commonplace. Originally, this was accomplished by wrapping a structure, such as a shrub, with string lights which are either wrapped around or tucked into the interior of the shrub. Net lights became popular for these purposes and greatly improved the installation of such lighting. Conventional net lights are string lights that have been formed into a grid, which may easily cover the exterior of a structure, such as bushes or tree trunks, in a fast and easy installation process. The grid of conventional net lights usually includes lights supported by connectors, at intersections of intersecting connectors, defining the grid. The connectors in one direction are conductive whereas the connectors in the other direction are structural and may not be conductive. Together, the connectors define the rows and columns of the matrix or grid. As such, the width and length of the matrix are fixed and define the area to be covered. Conventional net lights do not provide for expansion in all directions, including, for example, in the series of connectors provided to conduct electricity. This results in a cumbersome net light in terms of installation, removal and storage. This also results in a net light susceptible to tangling.
It is, therefore, advantageous for a net light which may be easily stored, transported, installed and removed. It is also advantageous to provide a net light which is expandable in one or both directions, including in the rows or columns providing conductivity to the light members.
The present invention overcomes shortcomings of the prior art by providing a novel expandable net light defined by a net including connectors defining a matrix configuration for supporting light sources, such as at the intersection of intersecting connectors. The connectors may include conductive and non-conductive members. The net is expandable in both directions, longitudinal and lateral, or is expandable in one direction only. According to one aspect, the net as disclosed is expandable even in the direction (row or column of the matrix) of connectors arranged in series to conduct electrical current to the light source. These and other objectives are met by the present invention.
The present invention will now be described in detail hereinafter by reference to the accompanying drawings. The invention is not intended to be limited to the embodiments described; rather, this detailed description is provided to enable any person skilled in the art to make and practice the invention.
As used herein, the terms “lateral” and “longitudinal” are used to refer to intersecting directions. The term “fore end” refers to the net light end adjacent the power source and term “aft end” refers to the opposite end which, as shown, is the end of the net light for securing the net light, such as its bottom, for securing to the ground if used to illuminate a shrub, for example. The term “transverse” direction refers to a direction which intersects the longitudinal or lateral axis, at any angle. The term “matrix” refers to any at least two-dimensional array or grid which includes a predetermined number of rows and columns which may or may not be a square. For example, the intersecting rows and columns may not be extending longitudinally or laterally but may extend at angle transverse to the horizontal or longitudinal axes', such as in a diamond or triangular pattern. The matrix is capable of forming any two- or three-dimensional configuration. Moreover, the laterally extending portions of the net light may be non-conductive and the longitudinally extending portions may be conductive, vice versa, or a combination thereof. The longitudinally extending and laterally extending connectors intersect transversely (perpendicularly or at any angle). The lateral and longitudinal connectors as shown are substantially parallel, but it is envisioned that they extend in a non-parallel configuration.
As shown in
The net light 10 comprises a matrix of connectors including connectors extending in a first direction, e.g., longitudinal connectors (as shown, extending left to right) and connectors extending in a second direction, e.g., lateral connectors (as shown, extending top to bottom) for supporting light members 20. The first connectors 16 are conductive and are positioned so as to define a circuit for conducting electrical current throughout the net light 10 to be delivered to the light members 20. As shown in
The connectors 18 which do not form part of the electrical circuit as shown in
The net light 10 illustrated in
The second connectors 18 are non-conductive as shown but may also be formed of a conductive material. The connectors 18 may be formed of an elastic cord comprising one or more elastic strands forming a core and covered in a woven cotton or polypropylene sheath. The connectors 18 enable the net light 10 expand in the direction of the non-conductive connectors 18. Together, the first conductive connectors 16 and second connectors 18 provide a net light 10 which is expandable in transverse directions. It is within the scope of the invention for the net light 10 to be expandable in one or more directions and along either one of the conductive or non-conductive connectors, or along both.
The electrical circuit of the net light 10 shown in
The light members 20 are positioned at intersections of the first 16 and second 18 connectors for sufficient support. The light members 20, however, may be positioned anywhere along the surface of the matrix. That is, anywhere in connection with a conductive connector 16 and may form a discontinuous design as well as a matrix design. The light members include a light husk 24 for supporting a desired bulb. The light members may be LED or incandescent, for example. Moreover, the power source shown and described above provides for an electrical connection. It is within the scope of this disclosure, however, to provide a battery, solar or other power source for operating the net light 10.
While exemplary embodiments have been shown and described above for the purpose of disclosure, modifications to the disclosed embodiments may occur to those skilled in the art. The disclosure, therefore, is not limited to the above precise embodiments and that changes may be made without departing from its spirit and scope.
This application claims the benefit of and priority to U.S. Provisional Patent Application Ser. No. 62/573,114, filed Oct. 16, 2017, the disclosure of which is hereby incorporated by reference.
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Number | Date | Country | |
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20190113188 A1 | Apr 2019 | US |
Number | Date | Country | |
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62573114 | Oct 2017 | US |