IP Library Granted Patent US 12,166,363
Granted Patent B2
US 12,166,363 · App. 17/987,818 · Granted Dec 10, 2024

System and methods of using electromagnetic waves to wirelessly deliver power to security cameras and adjusting wireless delivery of power to the security cameras as they move

Inventor: Michael A. Leabman (San Ramon, CA)
Assignee: Energous Corporation
H02J50/20A61B8/56H02J50/80H05B3/342A61B5/14532A61B2560/0214B60L55/00
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Quick Facts
Patent No.
US 12,166,363
App. No.
17/987,818
Granted
Dec 10, 2024
Kind
B2
Abstract

An example system includes a wireless-power transmitter configured to emit a first set of one or more radio frequency (RB signals and a security camera coupled to a wireless-power receiver. The wireless-power receiver is configured to receive the first set of one or more RF signals. The security camera includes at least one component for converting energy from the first set of one or more RF signals into usable power to power the security camera. The usable power is a primary source of power for the security camera. The example system can also include a processor in communication with the wireless-power transmitter configured to, in accordance with a determination that the security camera has moved relative to the wireless-power transmitter, adjust the wireless-power transmitter to emit a second set of one or more RF signals from the wireless-power transmitter to continue providing usable power to the security camera.

Claims (49)

1. A wireless-power transmitter configured to wirelessly power a security camera, comprising:

a processor in communication with a wireless-power transmitter; and

one or more programs, wherein the one or more programs are configured to be executed by the processor, the one or more programs including instructions for causing the wireless-power transmitter to:

emit a first set of one or more radio frequency (RF) signals to a security camera coupled to a wireless-power receiver, wherein:

the wireless-power receiver is configured to receive the first set of one or more RF signals from the wireless-power transmitter;

the security camera includes at least one component for converting energy from the first set of one or more RF signals into usable power to power the security camera, and

the usable power is a primary source of power for the security camera; and

in accordance with a determination that the security camera has moved relative to the wireless-power transmitter, adjust transmission characteristics used to emit a second set of one or more RF signals from the wireless-power transmitter to continue providing usable power to the security camera.

2. A system for wirelessly powering a security camera, comprising:

a wireless-power transmitter configured to emit a first set of one or more radio frequency (RF) signals;

a security camera coupled to a wireless-power receiver, wherein:

the wireless-power receiver is configured to receive the first set of one or more RF signals from the wireless-power transmitter;

the security camera includes at least one component for converting energy from the first set of one or more RF signals into usable power to power the security camera, and

the usable power is a primary source of power for the security camera; and

a processor in communication with the wireless-power transmitter configured to:

in accordance with a determination that the security camera has moved relative to the wireless-power transmitter, adjust transmission characteristics used to emit a second set of one or more RF signals from the wireless-power transmitter to continue providing usable power to the security camera.

3. The system of claim 2 , wherein:

the wireless-power transmitter is configured to receive, from the wireless-power receiver, a communication signal indicating a power requirement of the security camera;

the wireless-power transmitter is configured to, in response to receiving the communication signal from the wireless-power receiver:

determine a location of the security camera based on the communication signal;

generate a plurality of RF waves; and

control transmission of the RF waves through at least two antenna elements coupled to the transmitter, wherein the transmitter is configured to shift a phase and a gain of a respective RF wave with respect to other respective RF waves so that the plurality of RF waves converge to form a constructive interference pattern in proximity to the location of the security camera.

4. The system of claim 2 wherein the wireless-power receiver is embedded in a RF transparent housing that is adapted to electrically connect the security camera with the receiver.

5. The system of claim 4 , wherein the wireless-power receiver is separated from the wireless-power transmitter by a non-zero distance.

6. The system of claim 4 , wherein the RF transparent housing supports the security camera.

7. The system of claim 2 , further comprising: a plurality of security cameras, each security camera of the plurality of security cameras is coupled to a respective wireless-power receiver, wherein each respective wireless-power receiver is configured to receive one or more respective additional RF signals from the wireless-power transmitter, wherein the one or more additional RF signals are distinct from the one or more RF signals.

8. The system of claim 7 , wherein each respective wireless-power receiver is configured to receive energy from one or more respective additional RF signals from the wireless-power transmitter simultaneously.

9. The system of claim 7 , wherein the processor is further configured to:

in accordance with a determination that another security camera of the plurality of security cameras has moved relative to the wireless-power transmitter, cause adjustment to a transmission characteristic of at least one of the one or more additional RF signals from the wireless-power transmitter to continue providing usable power to the other security camera.

10. The system of claim 9 , wherein the processor is further configured to:

in accordance with the determination that another security camera of the plurality of security cameras has moved relative to the wireless-power transmitter, cause a remainder of the plurality of security cameras continue to receive the one or more additional RF signals from the wireless-power transmitter.

11. The system of claim 2 , further comprising:

a second wireless-power transmitter, in communication with the processor, configured to emit a third set of one or more RF signals; and

the processor in communication with the wireless-power transmitter further configured to:

in accordance with a determination that the security camera has moved outside of a transmission range of the wireless-power transmitter, stop the wireless-power transmitter from emitting RF signals to stop providing usable power to the security camera; and

in accordance with a determination that the security camera has moved into a transmission range of the second wireless-power transmitter, adjust a transmission characteristic of the second wireless-power transmitter used to emit a third set of one or more RF signals from the second wireless-power transmitter to provide usable power to the security camera.

12. The system of claim 2 , wherein:

the wireless-power transmitter is configured to:

control creation of constructive interference patterns from a convergence of two or more RF waves to form a pocket of energy in 3D space at the security camera.

13. The system of claim 2 , wherein the determination that the security camera has moved relative to the wireless-power transmitter is at least partially based on the wireless-power receiver communicating location data to the wireless-power transmitter.

14. The system of claim 2 , wherein the adjusting the transmission characteristic used to emit the one or more RF signals from the wireless-power transmitter to continue providing usable power to the security camera includes changing phase and gain in at least one antenna of the wireless-power transmitter.

15. The system of claim 2 , wherein the wireless-power receiver is integrated with the with the security camera.

16. The system of claim 2 , wherein energy from RF signals emitted by the wireless-power transmitter is a sole source of power the security camera.

17. A non-transitory computer-readable storage medium comprising instructions that, when executed by a processor in communication with a wireless-power transmitter, the wireless power transmitter configured to wirelessly power a security camera, cause the wireless-power transmitter to:

emit a first set of one or more radio frequency (RF) signals to provide usable power to a security camera coupled to a wireless-power receiver, wherein:

the wireless-power receiver is configured to receive the first set of one or more RF signals from the wireless-power transmitter, and

the security camera includes at least one component for converting energy from the first ser of one or more RF signals into usable power to power the security camera;

the usable power is a primary source of power for the security camera; and

in accordance with a determination that the security camera has moved relative to the wireless-power transmitter, adjust transmission characteristic used to emit a second set of one or more RF signals to continue to provide usable power to the security camera.

Continuity (184)
Continuation 17242194 · Apr 27, 2021
Continuation 16258358 · Jan 25, 2019
Continuation In Part 14584220 · Dec 29, 2014
Continuation In Part 13908809 · Jun 3, 2013
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Continuation 15060167 · Mar 3, 2016
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Continuation In Part 15729574 · Oct 10, 2017
Continuation 14584375 · Dec 29, 2014
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Continuation In Part 14683437 · Apr 10, 2015
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Continuation 14272280 · May 7, 2014
Continuation 14272247 · May 7, 2014
Continuation In Part 15806266 · Nov 7, 2017
Continuation 14585341 · Dec 30, 2014
Continuation In Part 13939706 · Jul 11, 2013
Continuation In Part 14585574 · Dec 30, 2014
Continuation In Part 14286289 · May 23, 2014
Continuation In Part 14585660 · Dec 30, 2014
Continuation In Part 14330936 · Jul 14, 2014
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Continuation In Part 13960488 · Aug 6, 2013
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Continuation In Part 14803672 · Jul 20, 2015
Continuation 13926020 · Jun 25, 2013
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Continuation In Part 15884303 · Jan 30, 2018
Continuation 14748101 · Jun 23, 2015
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Continuation In Part 15900727 · Feb 20, 2018
Continuation 14748116 · Jun 23, 2015
Continuation 14585986 · Dec 30, 2014
Continuation In Part 14465553 · Aug 21, 2014
Continuation 14585923 · Dec 30, 2014
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Provisional Application 62387467 · Dec 24, 2015
Provisional Application 62272571 · Dec 29, 2015
Provisional Application 62387206 · Dec 24, 2015
Provisional Application 62387466 · Dec 24, 2015
Provisional Application 62272553 · Dec 29, 2015
Provisional Application 61978031 · Apr 10, 2014
Provisional Application 61978301 · Apr 11, 2014
Provisional Application 61720798 · Oct 31, 2012
Provisional Application 61677706 · Jul 31, 2012
Provisional Application 61668799 · Jul 6, 2012
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Cited By (1)
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