The present invention relates to lighting systems. More specifically, the invention relates to customizable recessed channel lighting systems.
Lighting is an important feature when designing or creating a work environment or living space. It is not enough that the lighting provides sufficient illumination to an area. Lighting and lighting fixtures have an aesthetic function as well. When done properly, lighting can be dynamic and flow as a user moves within the space. A commonly used permanent lighting design is recessed lighting where fixtures are recessed within a surface. The most popular recessed lights are circular, known as can lights, used in a ceiling surface. However, recessed channel lighting is used in ceilings and walls as well.
Recessed channel lights are different than track lighting in that they are installed, for example, into a hollow opening—usually a continuous channel—in a ceiling or wall surface (i.e., wall board). When installed, it appears that light is shining from the channel in the surface. Typically, little if any of the actual recessed lighting fixture is observable.
However, recessed lights are fixed light sources which cannot be readily moved without some skilled electrical re-wiring and surface patching. As a result, recessed lighting is often used as an accent to highlight another feature of a space. Another drawback of recessed lighting is that it requires either the lights be positioned between joists, or joists must be notched or altered in some way to accommodate the recessed fixture if it extends across joists. The cutting of ceiling or wall joists is time-consuming and, in many cases, an undesirable option.
Further, recessed lighting tends to have a “static” appearance, being comprised of circles and straight lines. This can limit creativity and, as a result, the aesthetics of recessed lighting.
The present invention provides a lighting system without the aesthetic drawbacks of prior lighting systems and without the lighting and installation limitations of standard recessed lights. By providing a customizable curving lighting system, aesthetics are significantly improved. The present lighting system can be installed without exposure of unsightly brackets and tracks and without the need to notch or otherwise alter existing studs or joists.
Until the invention of the present application, these and other problems in the prior art went either unnoticed or unsolved by those skilled in the art. The present invention provides a recessed channel lighting system which is capable of multiple configurations with the associated light fixtures without sacrificing design, style or affordability.
There is disclosed herein an improved recessed channel lighting system which avoids the disadvantages of prior devices, methods and systems while affording additional structural and operating advantages.
Generally speaking, the recessed lighting system comprises a plurality of connected channel sections, wherein each channel section comprises a base having a U-shaped channel, first and second flange elements, each flange element having an upward portion extending from the base and an outward portion extending from the upward portion, and an LED positioned within the U-shaped channel. Further, the first and second flange elements are spaced a distance from the U-shaped channel to create a gap.
In specific embodiments, the base comprises a central boss proximate a first end and a central aperture proximate a second end, the central boss of one channel section being configured to fit within a central aperture of another channel section.
In specific embodiments, the plurality of connected channel sections are arranged sequentially such that a central boss of a first channel section connects within a central aperture of a second channel section to form a pivoting axis between the first channel section and the second channel section.
Specific embodiments of the recessed lighting system preferably comprise a flexible diffuser positioned within the U-shaped channel to direct light from the LED outward. The recessed lighting system may also comprise a flexible band detachably connected to the base within the gap.
In specific embodiments, each of the plurality of channel sections has a depth not greater than ⅝ inches (0.625 inches).
A component for a recessed lighting system is also disclosed. Generally speaking, the component comprises a base for connecting two or more components together, a U-shaped channel positioned on the base, and first and second flange elements. Each of the flange elements has an upward portion extending from the base and an outward portion extending from the upward portion, the upward portion being spaced a distance from the U-shaped channel.
In specific embodiments, the component base comprises a pivot axis to allow pivoting between connected components.
Specific embodiments of the component are configured wherein the first flange and the second flange elements have at least one angled edge configured to limit pivoting of connected components. Further, the outward portion of each of the first and second flange elements may comprise a degree of taper in a direction away from the U-shaped channel. Preferably, the degree of taper is equal to the pivoting range of the pivoting axis.
In specific embodiments, the component has a depth not greater than ⅝ inches (0.625 inches). This allows flush placement in standard drywall without the need for notching studs.
These and other aspects of the invention may be understood more readily from the following description and the appended drawings.
For the purpose of facilitating an understanding of the subject matter sought to be protected, there are illustrated in the accompanying drawings, embodiments thereof, from an inspection of which, when considered in connection with the following description, the subject matter sought to be protected, its construction and operation, and many of its advantages should be readily understood and appreciated.
While this invention is susceptible of embodiments in many different forms, there is shown in the drawings and will herein be described in detail at least one preferred embodiment of the invention with the understanding that the present disclosure is to be considered as an exemplification of the principles of the invention and is not intended to limit the broad aspect of the invention to any of the specific embodiments illustrated.
Referring to
Beginning with
As illustrated in
The channel 22 is open at the surface between the flanges 24. The flexible diffuser 16 is preferably fitted within the opening and protuberances 34 on each edge of the opening help to secure the diffuser 16 within the opening. Preferably, the diffuser 16 would have a corresponding recess 32 to allow sliding of each section 14 onto the diffuser 16.
The outward portion 50 of each flange 24 includes a plurality of openings or holes 52. These holes 52 facilitate adhesion of a joint compound or similar building material (not shown), as will be described below. A screw hole 54 within the surface of the flange 24, along with a complementary screw (not shown) can be used to secure the system 10 to a wall, ceiling or other surface.
Referring now to the U-shaped channel 22, it is shown to be formed of two upturned sidewalls 30 and the base 20. At the top of each sidewall 30 is an inwardly flared edge 66 which frictionally engages the flexible diffuser 16 while also allowing the diffuser 16 to adapt to any curves used in the assembled channel system 10. That is, the flared edges 66 provide a radiused surface in both directions which helps curve the diffuser 16, without kinking, when the system 10 curves.
As shown in
As shown in
Further, the outward portion 50 of each flange 24, being cut at a slight angle along each end edge 56 (four total end edges), also acts as a stop between pivotably connected sections 14. For most design purposes, the angle of the edge 56 is preferably in the range of 1-15°, more preferably in the range of 3-10°, with 5° being most preferred angle for each edge 56. Of course, while it is preferred that all edges 56 be cut at the same angle, it would be possible to cut the edges 56 at different angles as well. The angles could be factory pre-cut or the edges 56 marked for cutting during construction and installation.
Ultimately, when a plurality of individual sections 14 are sequentially arranged and connected by the base 20, a segment 12 is formed having a continuous channel 22 which curves as the angled flanges 24 dictate, as shown in
Referring to
Light from the LED strips 28 is directed inward at the diffuser 16. However, the body of the diffuser 16 is configured such that the light which enters the diffuser 16 is refracted toward the surface 70, as illustrated by the arrows. The LED strips 28 may be white light or colored lights, as dictated by the desired result by the user/designer. Further, the LED strips 28 may be the same or different colors to create a desired effect.
Regarding installation, a path for the system 10 is preferably cut into a wall, ceiling or other surface. The path need only be wide enough to allow recess of the channel 22, while the left and right flanges 24, contact the surface. Power can be supplied to the lighting system 10 using a center feed power channel connector and/or an end feed power channel connector. These connectors allow 24 VDC power to be fed to the LED strip(s) 28 within the channel 22. A junction box can be mounted behind drywall using mounting bars, as is known in the art. The system 10 is powered by running low voltage 24 VDC wires from a remote power supply to the junction box at the start of each installed length of the recessed channel lighting system 10. At an end of an installed length of the channel lighting system 10 an end cap provides a finished look and helps prevent light leaking at the feed end of a segment where the LED strip enters the channel 22 and connects to the junction box. An “on/off” switch or dimmer may be used to control power to the lighting system 10.
Once the rigid structure of the lighting system 10 is fully constructed, including placement of LED strips 28 within the channel 22, the flexible lens/diffuser 16 can be placed into the opening at the top of the channel 22. The lighting system 10 is then positioned within the path cut into a surface and wired for power. Finishing the installation with joint compound and paint completes the project.
The matter set forth in the foregoing description and accompanying drawings is offered by way of illustration only and not as a limitation. While particular embodiments have been shown and described, it will be apparent to those skilled in the art that changes and modifications may be made without departing from the broader aspects of applicants' contribution. The actual scope of the protection sought is intended to be defined in the following claims when viewed in their proper perspective based on the prior art.
The present application is a continuation of and claims the filing priority of U.S. patent application Ser. No. 17/817,592, titled “Recessed Curved Channel Light System,” filed on Aug. 4, 2022, and now U.S. Pat. No. 11,635,177. The '177 patent is hereby incorporated by reference.
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10190738 | James | Jan 2019 | B1 |
10619828 | Tremaine | Apr 2020 | B2 |
10663148 | Heredia | May 2020 | B1 |
10724720 | Heredia | Jul 2020 | B1 |
D929032 | Trzesniowski | Aug 2021 | S |
11746969 | Kay | Sep 2023 | B1 |
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20200149716 | Collado | May 2020 | A1 |
20210231289 | Pruitt | Jul 2021 | A1 |
20220107062 | Monsonego | Apr 2022 | A1 |
Number | Date | Country | |
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20240044460 A1 | Feb 2024 | US |
Number | Date | Country | |
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Parent | 17817592 | Aug 2022 | US |
Child | 18298583 | US |