IP Library Granted Patent US 10,396,602
Granted Patent B2
US 10,396,602 · App. 15/664,889 · Granted Aug 27, 2019

Wireless power transmission system

Inventor: Hatem Zeine (Bellevue, WA)
Assignee: Ossia Inc.
H02J50/27H02J7/0021H02J7/025H02J50/20H02J50/23H02J50/40H02J50/70H02J50/80H02J50/90H02J7/007
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,396,602
App. No.
15/664,889
Granted
Aug 27, 2019
Kind
B2
Abstract

The wireless power transmission is a system for providing wireless charging and/or primary power to electronic/electrical devices via microwave energy. The microwave energy is focused to a location by a power transmitter having one or more adaptively-phased microwave array emitters. Rectennas within the device to be charged receive and rectify the microwave energy and use it for battery charging and/or for primary power.

Claims (46)

1. A wireless power transmitter, comprising:

a plurality of antenna elements; and

at least one controller; and

the plurality of antenna elements and the at least one controller are configured to receive multipath calibration signals from a plurality of devices to be charged;

the at least one controller is further configured to adaptively adjust phases of a power transmission from the plurality of antenna elements, wherein the phases for the plurality of antenna elements are determined based on the received multipath calibration signals, wherein the determined phases for the plurality of antenna elements do not use location signals indicating locations of the plurality of devices to be charged, wherein the determined phases do not require a line of sight between the antenna elements and the plurality of devices to be charged, wherein

a frequency of the power transmission is greater than 100 MHz, and wherein the at least one controller prioritizes the plurality of devices for power transmission, wherein a higher priority device is charged faster than a lower priority device, and

wherein the phases for the plurality of antenna elements are determined by a complex conjugate of each of the multipath calibration signals received by the respective antenna element.

2. The wireless power transmitter of claim 1 wherein the determined phases for the plurality of antenna elements are optimal for delivering power to the devices to be charged.

3. The wireless power transmitter of claim 1 wherein a frequency of the power transmission is at microwave frequencies.

4. A method, comprising:

receiving, by a plurality of antenna elements, a multipath calibration signal from each of a plurality of devices to be charged;

adaptively adjusting phases of the power transmission from the plurality of antenna elements, wherein the phases for the plurality of antenna elements are determined based on the received multipath calibration signal, wherein the determined phases for the plurality of antenna elements do not use a location signal indicating a location of the device to be charged, wherein the determined phases do not require a line of sight between the antenna elements and the devices to be charged, wherein

a frequency of the power transmission is greater than 100 MHz, and wherein the plurality of devices are prioritized for power transmission, wherein a higher priority device is charged faster than a lower priority device, and

wherein the phases for the plurality of antenna elements are determined by a complex conjugate of the multipath calibration signal received by the respective antenna element.

5. The method of claim 4 wherein the determined phases for the plurality of antenna elements are optimal for delivering power to each of the devices to be charged.

6. The method of claim 4 wherein a frequency of the power transmission is at microwave frequencies.

7. A wireless power transmitter, comprising:

a plurality of antenna elements; and

at least one controller; and

the plurality of antenna elements and the at least one controller are configured to receive a multipath calibration signal from each device of a plurality of devices to be charged by a power transmission;

the at least one controller is further configured to adaptively adjust phases of the power transmission from the plurality of antenna elements, wherein the phases for the plurality of antenna elements are determined by a complex conjugate of the received multipath calibration signal by the respective antenna element, wherein the determined phases do not require a line of sight between the antenna elements and the device to be charged, wherein

a frequency of the power transmission is greater than 100 MHz, and wherein the at least one controller prioritizes the plurality of devices for power transmission, wherein a higher priority device is charged faster than a lower priority device.

8. The wireless power transmitter of claim 7 wherein a frequency of the power transmission is at microwave frequencies.

9. A method, comprising:

receiving, by a plurality of antenna elements, a multipath calibration signal from each device of a plurality of devices to be charged by a power transmission; and

adaptively adjusting phases of the power transmission from the plurality of antenna elements, wherein the phases for the plurality of antenna elements are determined by a complex conjugate of the received multipath calibration signal by the respective antenna element, wherein the determined phases do not require a line of sight between the antenna elements and the device to be charged, wherein

a frequency of the power transmission is greater than 100 MHz, and wherein the plurality of devices are prioritized for power transmission, wherein a higher priority device is charged faster than a lower priority device.

10. The method of claim 9 wherein a frequency of the power transmission is at microwave frequencies.

11. A wireless power transmitter, comprising:

a plurality of antenna elements; and

at least one controller; and

the plurality of antenna elements and the at least one controller are configured to perform shared charging of a plurality of devices;

the at least one controller is further configured to adaptively adjust phases of the power transmission from the plurality of antenna elements to charge the plurality of devices, wherein the plurality of devices share the plurality of antennas by time sharing, frequency sharing, phase sharing or antenna sharing, wherein for time sharing, the plurality of devices receive power from the plurality of antennas at different times, for frequency sharing, the plurality of devices receive power from the plurality of antennas using different frequencies, for phase sharing, the plurality of devices simultaneously receive power from the plurality of antennas using different antenna phases and for antenna sharing, the plurality of devices receive power from different ones of the plurality of antennas, wherein

a frequency of the power transmission is greater than 100 MHz, and wherein the at least one controller prioritizes the plurality of devices for power transmission, wherein a higher priority device is charged faster than a lower priority device, and

wherein the phases for the plurality of antenna elements are determined by a complex conjugate of the multipath calibration signal received by the respective antenna element.

12. The wireless power transmitter of claim 11 wherein the prioritization is made based on a need of the respective device for power.

13. The wireless power transmitter of claim 11 wherein the prioritization is made based on a type of the device.

14. The wireless power transmitter of claim 11 wherein the devices to be charged are registered with the wireless power transmitter, wherein non-registered devices are not charged by the wireless power transmitter.

15. A method, comprising:

sharing, using power transmissions by antenna elements, charging of a plurality of devices; and

wherein the power transmissions have adaptively adjusted phases from the plurality of antenna elements, wherein the plurality of devices share the plurality of antennas by time sharing, frequency sharing, phase sharing or antenna sharing, wherein for time sharing, the plurality of devices receive power from the plurality of antennas at different times, for frequency sharing, the plurality of devices receive power from the plurality of antennas using different frequencies, for phase sharing, the plurality of devices simultaneously receive power from the plurality of antennas using different antenna phases and for antenna sharing, the plurality of devices receive power from different ones of the plurality of antennas, wherein

a frequency of the power transmission is greater than 100 MHz, and wherein the plurality of devices are prioritized for power transmission, wherein a higher priority device is charged faster than a lower priority device, and

wherein the phases for the plurality of antenna elements are determined by a complex conjugate of the multipath calibration signal received by the respective antenna element.

16. The method of claim 15 wherein the prioritization is made based on a need of the respective device for power.

17. The method of claim 15 wherein the prioritization is made based on a type of the device.

18. The method of claim 15 wherein the devices to be charged are registered with the wireless power transmitter, wherein non-registered devices are not charged by the wireless power transmitter.

Assignments (5)
AMENDED AND RESTATED NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Jul 15, 2024
From: OSSIA INC.
To: FARAH CAPITAL LIMITED, AS SECURED PARTY; NERVE INVESTMENT SPV LTD, AS SECURED PARTY; TOYODA GOSEI., LTD
Reel/Frame 068369/0303 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME AND ZIP CODE OF CORRESPONDENCE ADDRESS PREVIOUSLY RECORDED AT REEL: 062336 FRAME: 0628. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 26, 2023
From: OSSIA INC.
To: FARAH CAPITAL LIMITED; NERVE INVESTMENT SPV LTD
Reel/Frame 062926/0332 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Jan 9, 2023
From: OSSIA INC.
To: FARAH CAPITAL LMITED; NERVE INVESTMENT SPV LTD
Reel/Frame 062336/0628 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2019
From: ZEINE, HATEM
To: OSSIA INC.
Reel/Frame 051280/0506 →
CORPORATE CONVERSION FROM WA TO DE Recorded Dec 13, 2019
From: OSSIA INC.
To: OSSIA INC.
Reel/Frame 051285/0838 →
Continuity (8)
Continuation 14859909 · Sep 21, 2015
Continuation 14507095 · Oct 6, 2014
Continuation 14052828 · Oct 14, 2013
Continuation 13851528 · Mar 27, 2013
Continuation 13443355 · Apr 10, 2012
Continuation 12861526 · Aug 23, 2010
Continuation In Part 11812060 · Jun 14, 2007
Related Publication 20170358959A1 · Dec 14, 2017
Cited By (1)
US 12,588,901