IP Library Granted Patent US 8,466,583
Granted Patent B2
US 8,466,583 · App. 13/291,052 · Granted Jun 18, 2013

Tunable wireless energy transfer for outdoor lighting applications

Inventors: Aristeidis Karalis (Boston, MA); Andre B. Kurs (Chestnut Hill, MA); Andrew J. Campanella (Somerville, MA); David A. Schatz (Needham, MA); Morris P. Kesler (Bedford, MA); Katherine L. Hall (Westford, MA); Eric R. Giler (Boston, MA); Marin Soljacic (Belmont, MA)
Assignee: WiTricity Corporation
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Quick Facts
Patent No.
US 8,466,583
App. No.
13/291,052
Granted
Jun 18, 2013
Kind
B2
Abstract

A mobile wireless receiver for use with a first electromagnetic resonator coupled to a power supply includes a load associated with an outdoor lighting unit that draws energy from the load to power a light source associated with the outdoor lighting unit, and a second electromagnetic resonator configured to be coupled to the load and moveable relative to the first electromagnetic resonator, wherein the second electromagnetic resonator is configured to be wirelessly coupled to the first electromagnetic resonator to provide resonant, non-radiative wireless power to the second electromagnetic resonator from the first electromagnetic resonator, and wherein the second electromagnetic resonator is configured to be tunable during system operation so as to at least one of tune the power provided to the second electromagnetic resonator and tune the power delivered to the load.

Claims (29)

1. A mobile wireless receiver for use with a first electromagnetic resonator coupled to a power supply, first electromagnetic resonator having a mode with a resonant frequency ω 1 , an intrinsic loss rate Γ 1 , and a first Q-factor Q 1 =ω 1 /2Γ 1 , the mobile wireless receiver comprising:

a load associated with an outdoor lighting unit that draws energy from the load to power a light source associated with the outdoor lighting unit; and

a second electromagnetic resonator configured to be coupled to the load and moveable relative to the first electromagnetic resonator, the second electromagnetic resonator having a mode with a resonant frequency ω 2 , an intrinsic loss rate Γ 2 , and a second Q-factor Q 2 =ω 2 /2Γ 2 ;

wherein the second electromagnetic resonator is configured to be wirelessly coupled to the first electromagnetic resonator to provide resonant, non-radiative wireless power to the second electromagnetic resonator from the first electromagnetic resonator; and

wherein the second electromagnetic resonator is configured to be tunable during system operation so as to at least one of tune the power provided to the second electromagnetic resonator and tune the power delivered to the load.

2. The wireless receiver of claim 1 , wherein the lighting unit is an LED lighting unit.

3. The wireless receiver of claim 1 , wherein the lighting unit is a fluorescent lighting unit.

4. The wireless receiver of claim 1 , wherein the lighting unit is a landscape lighting unit.

5. The wireless receiver of claim 1 , wherein the non-radiative wireless power is delivered over a distance greater than the diameter of at least one of the electromagnetic resonators.

6. The wireless receiver of claim 1 , wherein the second electromagnetic resonator transfers power originating from the first electromagnetic resonator to a third electromagnetic resonator.

7. A power source for wirelessly providing power to a mobile wireless receiver, the power source comprising:

a power supply; and

a first electromagnetic resonator coupled to the power supply and having a mode with a resonant frequency ω 1 , an intrinsic loss rate Γ 1 , and a first Q-factor Q 1 =ω 1 /2Γ 1 ,

wherein the first electromagnetic resonator is configured to be wirelessly coupled to a second electromagnetic resonator to provide non-radiative wireless power to the second electromagnetic resonator, the second electromagnetic resonator having a mode with a resonant frequency ω 2 , an intrinsic loss rate Γ 2 , and a second Q-factor Q 2 =ω 2 /2Γ 2 and being coupled to a load associated with an outdoor lighting unit that draws energy from the load to power a light source associated with the outdoor lighting unit;

wherein the first electromagnetic resonator is configured to be tunable during system operation so as to tune the power delivered to the second electromagnetic resonator for use by the load.

8. The power source of claim 7 , wherein the lighting unit is an LED lighting unit.

9. The power source of claim 7 , wherein the lighting unit is a fluorescent lighting unit.

10. The power source of claim 7 , wherein the lighting unit is a landscape lighting unit.

11. The power source of claim 7 , wherein the non-radiative wireless power is delivered over a distance greater than the diameter of at least one of the electromagnetic resonators.

12. The power source of claim 7 , wherein the second electromagnetic resonator transfers power originating from the first electromagnetic resonator to a third electromagnetic resonator.

13. A mobile wireless power system, comprising:

a first electromagnetic resonator coupled to a power supply, the first electromagnetic resonator having a mode with a resonant frequency ω 1 , an intrinsic loss rate Γ 1 , and a first Q-factor Q 1 =ω 1 /2Γ 1 ; and

a second electromagnetic resonator coupled to a load that is associated with an outdoor lighting unit that draws energy from the load to power a light source associated with the outdoor lighting unit, the second electromagnetic resonator having a mode with a resonant frequency ω 2 , an intrinsic loss rate Γ 2 , and a second Q-factor Q 2 =ω 2 /2Γ 2 ;

wherein at least one of the first electromagnetic resonator and the second electromagnetic resonator is configured to be tunable during system operation so as to at least one of tune the power provided to the second electromagnetic resonator and tune the power delivered to the load.

14. The power system of claim 13 , wherein the lighting unit is an LED lighting unit.

15. The power system of claim 13 , wherein the lighting unit is a fluorescent lighting unit.

16. The power system of claim 13 , wherein the lighting unit is a landscape lighting unit.

17. The power system of claim 13 , wherein the non-radiative wireless power is delivered over a distance greater than the diameter of at least one of the electromagnetic resonators.

18. The power system of claim 13 , wherein the second electromagnetic resonator transfers power originating from the first electromagnetic resonator to a third electromagnetic resonator.

Assignments (4)
ASSIGNMENT OF SECURITY INTEREST Recorded Dec 18, 2025
From: AIR WAVES WIRELESS ELECTRICITY IV, LLC
To: WITRICITY AI TECH, LLC
Reel/Frame 074004/0929 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2025
From: WITRICITY CORPORATION
To: WITRICITY AI TECH, LLC
Reel/Frame 073982/0106 →
SECURITY INTEREST Recorded Dec 5, 2025
From: WITRICITY CORPORATION; WITRICITY HOLDINGS, INC.
To: AIR WAVES WIRELESS ELECTRICITY IV, LLC, AS COLLATERAL AGENT FOR LENDERS
Reel/Frame 073860/0204 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2013
From: KARALIS, ARISTEIDIS; KURS, ANDRE B.; CAMPANELLA, ANDREW J.; SCHATZ, DAVID A.; KESLER, MORRIS P.; HALL, KATHERINE L.; GILER, ERIC R.; SOLJACIC, MARIN
To: WITRICITY CORPORATION
Reel/Frame 030384/0320 →
Continuity (63)
Continuation In Part 13232868 · Sep 14, 2011
Continuation In Part 12899281 · Oct 6, 2010
Continuation In Part 12770137 · Apr 26, 2010
Continuation In Part 12721118 · Mar 10, 2010
Continuation In Part 12613686 · Nov 6, 2009
Continuation 12567716 · Sep 25, 2009
Continuation In Part 13222915 · Aug 31, 2011
Continuation In Part 13154131 · Jun 6, 2011
Continuation In Part 13090369 · Apr 20, 2011
Continuation In Part 13021965 · Feb 7, 2011
Continuation In Part 12986018 · Jan 6, 2011
Continuation In Part 12986018
Continuation In Part 12789611 · May 28, 2010
Continuation In Part 12770137 · Apr 29, 2010
Continuation In Part 12767633 · Apr 26, 2010
Continuation In Part 12759047 · Apr 13, 2010
Continuation In Part 12757716
Continuation In Part 12749571 · Mar 30, 2010
Continuation In Part 12639489 · Dec 16, 2009
Continuation In Part 12647705 · Dec 28, 2009
Continuation In Part 12567716 · Sep 25, 2009
Continuation In Part 12721118 · Mar 10, 2010
Continuation In Part 12705582 · Feb 13, 2010
Continuation In Part 13291052
Continuation In Part 12860375 · Aug 20, 2010
Continuation In Part 12759047 · Apr 13, 2010
Continuation In Part 13291052 · Nov 7, 2011
Continuation In Part 12722050 · Mar 11, 2010
Continuation In Part 12612880 · Nov 5, 2009
Continuation In Part 12698523 · Feb 2, 2010
Continuation In Part 12567716
Provisional Application 61382806 · Sep 14, 2010
Provisional Application 61378600 · Aug 31, 2010
Provisional Application 61411490 · Nov 9, 2010
Provisional Application 61351492 · Jun 4, 2010
Provisional Application 61326051 · Apr 20, 2010
Provisional Application 61292768 · Jan 6, 2010
Provisional Application 61173747 · Apr 29, 2009
Provisional Application 61172633 · Apr 24, 2009
Provisional Application 61100721 · Sep 27, 2008
Provisional Application 61108743 · Oct 27, 2008
Provisional Application 61147386 · Jan 26, 2009
Provisional Application 61152086 · Feb 12, 2009
Provisional Application 61178508 · May 15, 2009
Provisional Application 61182768 · Jun 1, 2009
Provisional Application 61121159 · Dec 9, 2008
Provisional Application 61142977 · Jan 7, 2009
Provisional Application 61142885 · Jan 6, 2009
Provisional Application 61142796 · Jan 6, 2009
Provisional Application 61142889 · Jan 6, 2009
Provisional Application 61142880 · Jan 6, 2009
Provisional Application 61142818 · Jan 6, 2009
Provisional Application 61142887 · Jan 6, 2009
Provisional Application 61156764 · Mar 2, 2009
Provisional Application 61143058 · Jan 7, 2009
Provisional Application 61163695 · Mar 26, 2009
Provisional Application 61172633 · Apr 24, 2009
Provisional Application 61169240 · Apr 14, 2009
Provisional Application 61173747 · Apr 29, 2009
Provisional Application 61152390 · Feb 13, 2009
Provisional Application 61523998 · Aug 16, 2011
Provisional Application 61254559 · Oct 23, 2009
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