IP Library Patent Application 12731169
Patent Application
App. No. 12/731,169

ENERGY HARVESTER FOR LED LUMINAIRE

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Quick Facts
Patent No.
US None
App. No.
12/731,169
Abstract

A light-emitting diode luminaire includes at least one light-emitting diode and at least one thermoelectric generator in contact with a portion of the luminaire. The at least one thermoelectric generator is operable to harvest energy from heat dissipated by the at least one light-emitting diode. An energy management module is operable to receive energy harvested by the at least one thermoelectric generator.

Claims (33)

1 . A light-emitting diode luminaire, comprising:

at least one light-emitting diode;

a heatsink operable to provide a path for heat dissipation away from the at least one light-emitting diode;

at least one thermoelectric generator in contact with a portion of the luminaire, the thermoelectric generator being operable to harvest energy from heat dissipated by the at least one light-emitting diode; and

an energy management module operable to receive energy harvested by the at least one thermoelectric generator.

2 . The luminaire of claim 1 , wherein the heat sink includes a first planar heatsink portion in contact with a printed circuit board, includes a second heatsink portion transverse to the first portion, and includes a housing portion that surrounds the at least one of light-emitting diode and surrounds the first and second heatsink portion.

3 . The luminaire of claim 1 , wherein the energy storage and management module acts as a power source to provide power for a sensor or to provide at least a portion of the power consumed by the LED luminaire.

4 . The luminaire of claim 3 , wherein the sensor is a motion sensor secured to a housing portion of the heatsink.

5 . The luminaire of claim 1 , wherein the at least one thermoelectric generator is in contact with the heatsink of the luminaire.

6 . The luminaire of claim 1 , wherein the energy management module also stores energy harvested by the at least one thermoelectric generator.

7 . The luminaire of claim 1 , wherein the thermoelectric generator includes a Peltier device.

8 . The luminaire of claim 1 , wherein the at least one light-emitting diode includes a plurality of light-emitting diodes that receive power from the energy management module through a printed circuit board.

9 . A light-emitting diode luminaire, comprising:

at least one light-emitting diode;

at least one thermoelectric generator in contact with a portion of the luminaire, the at least one thermoelectric generator being operable to harvest energy from heat dissipated by the at least one light-emitting diode; and

an energy management module operable to receive energy harvested by the at least one thermoelectric generator.

10 . The luminaire of claim 9 , the luminaire further including a printed circuit board, wherein the at least one light-emitting diode includes a plurality of light-emitting diodes that are secured to the printed circuit board and that receive power through the printed circuit board.

11 . The luminaire of claim 9 , including a heatsink operable to provide a path for heat dissipation away from the at least one light-emitting diode.

12 . The luminaire of claim 11 , wherein the thermoelectric generator is secured to the heat sink.

13 . The luminaire of claim 11 , wherein the heat sink includes a first planar heatsink portion in contact with a printed circuit board, includes a second heatsink portion transverse to the first portion, and includes a housing portion that surrounds the at least one light-emitting diode and that surrounds the first and second heatsink portion.

14 . The luminaire of claim 13 , wherein the at least one light-emitting diode emits light through openings in the heatsink housing portion and through an optics portion located at the openings, the optics portion including at least one of a light pipe or a diffuser.

15 . The luminaire of claim 9 , wherein the thermoelectric generator includes a Peltier device.

16 . A method of operating a light-emitting diode luminaire, comprising:

passing energy from an energy source through at least one light-emitting diode to emit light;

harvesting thermal energy from heat dissipated by the at least one light-emitting diode using at least one thermoelectric generator; and

using the harvested energy through an energy management module to provide power to a load.

17 . The method of claim 16 , including:

securing the at least one thermoelectric generator to a heatsink; and

dissipating heat away from the at least one light-emitting diode using the heatsink such that the thermoelectric generator is able to harvest thermal energy.

18 . The method of claim 16 , the luminaire having a housing, the method including:

commanding the at least one light-emitting diode to transition from a first state to a second state using a controller within the housing.

19 . The method of claim 16 , wherein said using the harvested energy through an energy management module to provide power to a load includes providing power for a sensor, providing at least a portion of the power consumed by the LED luminaire, or both.

20 . The method of claim 16 , including securing the at least one thermoelectric generator to a housing that surrounds the at least one light-emitting diode and energy management module.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2012
From: LIBERTY HARDWARE MFG. CORP.
To: ENOCEAN GMBH
Reel/Frame 028742/0692 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2012
From: MASCO CORPORATION
To: LIBERTY HARDWARE MFG. CORP.
Reel/Frame 027951/0353 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2010
From: XU, JIAN; BARNETT, THOMAS ALAN
To: MASCO CORPORATION
Reel/Frame 024133/0970 →