Lighting device and method of manugacturing it
US-2016363293-A1 · Dec 15, 2016 · US
US9869462B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9869462-B2 |
| Application number | US-201615349547-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 11, 2016 |
| Priority date | Jul 29, 2011 |
| Publication date | Jan 16, 2018 |
| Grant date | Jan 16, 2018 |
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A modular lighting system may include a support structure, a plurality of heat sink modules physically supported by the support structure, and one or more light source modules coupled to the plurality of heat sink modules. The plurality of heat sink modules may be arranged in a modular manner such that the number of heat sink modules in the modular lighting system is variable, and each heat sink module may be an integral molded structure defining at least one opening or passageway.
Opening claim text (preview).
What is claimed is: 1. A modular lighting system comprising: a support comprising an elongated groove structure and a seat structure, wherein the seat structure comprises a plurality of mounting points along a length of the seat structure; one or more heat sink modules supported by the support such that a first heat sink module of the one or more heat sink modules is laterally adjustable from a first subset of the plurality of mounting points to a second subset of the plurality of mounting points, wherein each heat sink module comprises an elongated hook structure and a hip structure, the elongated hook structure received by the elongated groove structure and the hip structure received by the seat structure when the one or more heat sink modules are coupled to the support; and one or more light source modules coupled to at least one of the one or more heat sink modules, wherein a first of the one or more light source modules is mounted to at least two of the heat sink modules. 2. The modular lighting system of claim 1 , wherein the support comprises an extruded housing configured to house one or more electronic components. 3. The modular lighting system of claim 1 , wherein the support comprises a molded housing configured to house one or more electronic components. 4. The modular lighting system of claim 1 , wherein each heat sink module comprises: a molded heat sink body extending generally in a first plane; and wherein the molded heat sink body defines at least one air flow passageway configured to allow ambient air flow through the heat sink body in a direction generally perpendicular to the first plane. 5. A modular lighting system of claim 1 , wherein: each heat sink module defines at least one molded wiring channel; and the modular lighting system further comprises wiring routed to at least one of the one or more light source modules via the at least one molded wiring channel. 6. The modular lighting system of claim 1 , wherein: each heat sink module defines one or more elongated heat transfer protrusions extending in a first direction; and a first molded wiring channel extends in a direction non-parallel to the first direction. 7. The modular lighting system of claim 1 , wherein each heat sink module defines a first side and a second side opposite the first side, each of the first and second sides configured for coupling to an adjacent heat sink module. 8. A modular lighting system, comprising: a support comprising a seat structure, wherein the seat structure comprises a plurality of mounting points along a length of the seat structure; one or more heat sink modules supported by the support such that a first heat sink module of the one or more heat sink modules is laterally adjustable from a first subset of the plurality of mounting points to a second subset of the plurality of mounting points, wherein each heat sink module comprises a hip structure that is received by the seat structure when the one or more heat sink modules are coupled to the support, wherein each heat sink module comprises a molded heat sink body extending generally in a first plane; and wherein the molded heat sink body defines at least one air flow passageway configured to allow ambient air flow through the heat sink body in a direction generally perpendicular to the first plane; and one or more light source modules coupled to at least one of the one or more heat sink modules. 9. The modular lighting system of claim 8 , wherein: a first side of each heat sink module defines at least one protrusion comprising at least one light source module mounting point; a second side of each heat sink module defines at least one recess corresponding to the at least one protrusion; and the first side of each heat sink module is configured for engagement with the second side of an adjacent second heat sink module such that for the first and second adjacent heat sink modules, the at least one protrusion on the first side of the first heat sink module is received in the at least one recess on the second side of the second heat sink module and such that the at least one light source module mounting point on the at least one protrusion on the first side of the first heat sink module projects into a footprint of the second heat sink module. 10. The modular lighting system of claim 9 , wherein a first light source module of the one or more light source modules is mounted to (a) the at least one mounting point on the at least one protrusion of the first heat sink module, and (b) at least one mounting point on the second heat sink module. 11. The modular lighting system of claim 9 , wherein: one or more first heat sink modules of the one or more heat sink modules are supported at a first side of the support; and one or more second heat sink modules of the one or more heat sink modules are supported at a second side of the support opposite the first side, such that the support is arranged substantially between the first and second heat sink modules. 12. The modular lighting system of claim 11 , wherein one or more third heat sink modules of the one or more heat sink modules are supported at a third side of the support. 13. A modular lighting system, comprising: a support comprising a seat structure, wherein the seat structure comprises a plurality of mounting points along a length of the seat structure; one or more heat sink modules supported by the seat structure, each heat sink module comprising a mounting flange structure at a rear end of the heat sink module and a V-shaped channel at a front end of the heat sink module, wherein the V-shaped channel comprises a V-shaped protrusion on a first lateral side of the front end and a V-shaped recess at an opposite second lateral side of the front end, wherein the mounting flange of each heat sink module comprises one or more mounting apertures that align with the respective mounting points on the seat structure of the support to secure the one or more heat sink modules to the support using fasteners, wherein a first heat sink module is configured to engage with a second heat sink module of the one or more heat sink modules that is disposed adjacent to the first heat sink module such that the V-shaped recess of the first heat sink module receives the V-shaped protrusion of the second heat sink module, and wherein each heat sink module comprises a wiring channel having a branched configuration disposed on a base of the heat sink module, wherein the wiring channel is configured to route electrical wiring from electronic components in the support to one or more light modules, and wherein the wiring channel having the branched configuration comprises a main wiring channel and one or more branch wiring channels extending from the main wiring channel; and the one or more light modules are coupled to at least one of the one or more heat sink modules. 14. The modular lighting system of claim 13 , wherein the support comprises an extruded housing configured to house one or more electronic components. 15. The modular lighting system of claim 13 , wherein the support comprises a molded housing configured to house one or more electronic components. 16. The modular lighting system of claim 13 , wherein the wiring channel is disposed on the base of the heat sink module such that it is enclosed by at least one light module of the one or more light modules coupled to a bottom surface of the base of the heat sink module.
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