IP Library › Granted Patent US 9,103,540
Granted Patent B2
US 9,103,540 · App. 13/453,444 · Granted Aug 11, 2015

High efficiency LED lighting system with thermal diffusion

Inventors: Sam Wyrick (Oakley, CA); Sean Malone (Las Vegas, NV); Brian Lauzon (Las Vegas, NV)
Assignee: OptaLite Technologies, Inc.
F21V29/22A01G9/26F21V29/15F21V29/70H05B33/0803F21S9/03F21V5/002F21V11/04F21V23/00F21Y2105/003F21Y2111/001F21Y2113/005
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Quick Facts
Patent No.
US 9,103,540
App. No.
13/453,444
Granted
Aug 11, 2015
Kind
B2
Abstract

An apparatus including an LED lighting system for use within AC current and comprising a multi-phase circuit design providing an improved power delivery means which allows one half of the LEDs in the system to be lit during any given one half of the alternating current cycle and the other half to be lit during the other half of the current cycle. Further, a heat sink module comprising heat sink fins mates with custom LED footprints such that the module is mated to the footprints on at least ⅓ of its total surface area. Finally, the LED lighting apparatus and system comprises a faceplate comprising a beveled aperture through said faceplate directly above each LED, and wherein said bevel angle is at least zero and no more than 120 degrees.

Claims (32)

1. An LED lighting apparatus comprising:

a. a plurality of LEDs, each LED having an LED backside;

b. a power source configured to provide AC power having a first ½ cycle and a second ½ cycle;

c. a first and second electrical circuit;

d. wherein said first circuit is continuous with said power source and a first half of said plurality of LEDs and configured to light said first half of said plurality of LEDs during said first ½ cycle;

e. wherein said second circuit is continuous with said power source and a second half of said plurality of LEDs and configured to light said second half of said plurality of LEDs during said second ½ cycle;

f. a faceplate consisting of a single piece of metal and configured to cool said LEDs;

g. a light fixture housing;

h. a heat transfer module in thermal contact with said LED backside and said light fixture housing; and

i. a layer of insulating air between the heat transfer module and the light fixture housing at specified locations.

2. The LED lighting apparatus according to claim 1 , wherein each of said first half of said plurality of LEDs is adjacent to one or more LEDs within said second half of said plurality of LEDs.

3. The LED lighting apparatus according to claim 1 , wherein each of said first half of said plurality of LEDs is within 0.500 of an inch of one or more LEDs within said second half of said plurality of LEDs.

4. The LED lighting apparatus of claim 1 wherein said plurality of LEDs are arranged in an array.

5. The LED lighting apparatus of claim 4 wherein said array is arranged on a curved surface.

6. An LED lighting apparatus comprising,

a. an array comprising a plurality of LEDs;

b. a faceplate heat sink;

c. a power source;

d. a heat dissipation component configured to draw heat from the back of said LEDs and exude it through an enclosure, said heat dissipation component in contact with a light fixture housing; and

e. a circuit supplying power to a first half of said plurality of LEDs at a first time a second half of said plurality of LEDs at a second time based on cycles of AC power provided by said power source; and

f. a layer of insulating air between the heat dissipation component and the light fixture housing at specified locations.

7. The LED lighting apparatus of claim 6 wherein:

a. said heat dissipation component has a thickness that exceeds four inches.

8. The LED lighting apparatus of claim 6 :

a. wherein said circuit comprises a first circuit half and a second circuit half;

b. wherein said first circuit half is continuous with said power source and said first half of said plurality of LEDs and configured to light said first half of said plurality of LEDs during said first time; and

c. wherein said second circuit half is continuous with said power source and said second half of said plurality of LEDs and configured to light said second half of said plurality of LEDs during said second time.

9. The LED lighting apparatus according to claim 8 , wherein each of said first half of said plurality of LEDs is adjacent to one or more LEDs within said second half of said plurality of LEDs.

10. The LED lighting apparatus according to claim 8 , wherein each of said first half of said plurality of LEDs is within 0.500 of an inch of one or more LEDs within said second half of said plurality of LEDs.

11. The LED lighting apparatus according to claim 8 , wherein said first time corresponds to a first ½ cycle, and said second time corresponds to a second ½ cycle.

12. The LED lighting apparatus of claim 6 wherein said array is arranged on a curved surface.

13. The LED lighting apparatus according to claim 6 , wherein said first time corresponds to a first ½ cycle, and said second time corresponds to a second ½ cycle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2012
From: WYRICK, SAM; MALONE, SEAN; LAUZON, BRIAN
To: OPTALITE TECHNOLOGIES, INC.
Reel/Frame 028510/0606 →
Continuity (2)
Provisional Application 61478049 · Apr 21, 2011
Related Publication 20130107530A1 · May 2, 2013