IP Library Granted Patent US 8,248,244
Granted Patent B2
US 8,248,244 · App. 13/181,976 · Granted Aug 21, 2012

Wireless power interface and device

Assignee: Broadcom Corporation
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Quick Facts
Patent No.
US 8,248,244
App. No.
13/181,976
Granted
Aug 21, 2012
Kind
B2
Abstract

A wireless power interface includes first coil, a plurality of coils, and a control module. Each of the plurality of coils has a different orientation with respect to at least one axis of a multi-dimensional axis system. The control module is coupled to enable at least one of the plurality of coils based on electro-magnetic coupling between the first coil and the at least one of the plurality of coils such that power is derived via the electro-magnetic coupling.

Claims (73)

1. A wireless power interface comprises:

a first coil of a wireless power device;

a plurality of coils of another wireless power device, wherein each coil of the plurality of coils has a different orientation with respect to at least one axis of a multi-dimensional axis system; and

a control module coupled to enable at least one of the plurality of coils based on electro-magnetic coupling between the first coil and the at least one of the plurality of coils.

2. The wireless power interface of claim 1 comprises:

the first coil including at least one planer winding of a first geometry and of a first size; and

the each coil of the plurality coils including at least one planer winding of the first geometry and of a second size.

3. The wireless power interface of claim 1 , wherein the control module enables the at least one of the plurality of coils based on the electro-magnetic coupling between the first coil and the at least one of the plurality of coils by:

providing a transmit signal to one of the plurality of coils;

measuring a response from the first coil via the at least one of the plurality of coils;

comparing the response with a response threshold;

when the response compares favorably with the response threshold, utilizing the at least one of the plurality of coils to derive power via the electro-magnetic coupling ;

when the response compares unfavorably with the response threshold, determining whether each of the plurality of coils has been tested; and

when each of the plurality of coils has not been tested, repeating the providing, the measuring, and the comparing for another one of the plurality of coils.

4. The wireless power interface of claim 1 , wherein the control module enables the at least one of the plurality of coils based on electro-magnetic coupling between the first coil and the at least one of the plurality of coils by:

providing a transmit signal to a first set of the plurality of coils, wherein an electro-magnetic field created by a coil of the first set of the plurality of coils has minimal interference with an electro-magnetic field created by another coil of the first set of the plurality of coils;

measuring a response from the first coil via the first set of the plurality of coils;

comparing the response with a response threshold;

when the response compares favorably with the response threshold, utilizing the first set of the plurality of coils to derive power via the electro-magnetic coupling; and

when the response compares unfavorably with the response threshold, repeating the providing, the measuring, and the comparing for a second set of the plurality of coils, wherein an electro-magnetic field created by a coil of the second set of the plurality of coils has minimal interference with an electro-magnetic field created by another coil of the second set of the plurality of coils.

5. The wireless power interface of claim 1 , wherein the control module enables the at least one of the plurality of coils based on the electro-magnetic coupling between the first coil and the at least one of the plurality of coils by:

coupling the at least one of the plurality of coils as a winding of a transformer to a transmit circuit and a receive circuit.

6. The wireless power interface of claim 1 , wherein the control module enables the at least one of the plurality of coils based on the electro-magnetic coupling between the first coil and the at least one of the plurality of coils by:

coupling the at least one of the plurality of coils as an antenna to a transmit circuit and a receive circuit.

7. A wireless power interface comprises:

a plurality of coils to derive wireless power, wherein each coil of the plurality of coils has a different orientation with respect to at least one axis of a multi-dimensional axis system; and

a control module coupled to enable at least one of the plurality of coils based on electro-magnetic coupling between the at least one of the plurality of coils and at least one coil of a wireless power device.

8. The wireless power interface of claim 7 , wherein:

the each of the plurality of coils includes at least one planer winding of a first geometry and of a first size; and

the at least one coil of the wireless power device includes at least one planer winding of the first geometry and of a second size.

9. The wireless power interface of claim 7 , wherein the control module enables the at least one of the plurality of coils based on the electro-magnetic coupling between the at least one of the plurality of coils and the at least one coil of the wireless power device by:

providing a transmit signal to one of the plurality of coils;

measuring a response from the at least one coil of the wireless power device via the at least one of the plurality of coils;

comparing the response with a response threshold;

when the response compares favorably with the response threshold, utilizing the at least one of the plurality of coils to derive power via the electro-magnetic coupling;

when the response compares unfavorably with the response threshold, determining whether each of the plurality of coils has been tested; and

when each of the plurality of coils has not been tested, repeating the providing, the measuring, and the comparing for another one of the plurality of coils.

10. The wireless power interface of claim 7 , wherein the control module enables the at least one of the plurality of coils based on electro-magnetic coupling between the at least one of the plurality of coils and the at least one coil of the wireless power device by:

providing a transmit signal to a first set of the plurality of coils, wherein an electro-magnetic field created by a coil of the first set of the plurality of coils has minimal interference with an electro-magnetic field created by another coil of the first set of the plurality of coils;

measuring a response from the at least one coil of the wireless power device via the first set of the plurality of coils;

comparing the response with a response threshold;

when the response compares favorably with the response threshold, utilizing the first set of the plurality of coils to derive power via the electro-magnetic coupling; and

when the response compares unfavorably with the response threshold, repeating the providing, the measuring, and the comparing for a second set of the plurality of coils, wherein a magnetic field created by a coil of the second set of the plurality of coils has minimal interference with a magnetic field created by another coil of the second set of the plurality of coils.

11. The wireless power interface of claim 7 , wherein the control module enables the at least one of the plurality of coils based on the electro-magnetic coupling between the at least one of the plurality of coils and the at least one coil of the wireless power device by:

coupling the at least one of the plurality of coils as a winding of a transformer to a transmit circuit and a receive circuit.

12. The wireless power interface of claim 7 , wherein the control module enables the at least one of the plurality of coils based on the electro-magnetic coupling between the at least one of the plurality of coils and the at least one coil of the wireless power device by:

coupling the at least one of the plurality of coils as an antenna to a transmit circuit and a receive circuit.

13. A wireless power device comprises:

a transmit section coupled to convert outbound data into transmit near-field communications signals;

a receive section coupled to convert received near-field communications signals into inbound data; and

a wireless power interface coupled to the transmit section and to the receive section, wherein the wireless power interface includes:

a plurality of coils to derive wireless power, wherein each of the plurality of coils has a different orientation with respect to at least one axis of a multi-dimensional axis system; and

a control module coupled to enable at least one of the plurality of coils based on electro-magnetic coupling between the at least one of the plurality of coils and at least one coil of another wireless power device.

14. The wireless power device of claim 13 , wherein

the each coil of the plurality coils includes at least one planer winding of a first geometry and of a first size; and

the at least one coil of the another wireless power device includes at least one planer winding of the first geometry and of a second size.

15. The wireless power device of claim 13 , wherein the control module enables the at least one of the plurality of coils based on the electro-magnetic coupling between the at least one of the plurality of coils and the at least one coil of the another wireless power device by:

providing wireless power signals to one of the plurality of coils;

measuring a response from the at least one coil of the another wireless power device via of the plurality of coils;

comparing the response with a response threshold;

when the response compares favorably with the response threshold, utilizing the at least one of the plurality of coils to derive power via the electro-magnetic coupling;

when the response compares unfavorably with the response threshold, determining whether each of the plurality of coils has been tested; and

when each of the plurality of coils has not been tested, repeating the providing, the measuring, and the comparing for another one of the plurality of coils.

16. The wireless power device of claim 13 , wherein the control module enables the at least one of the plurality of coils based on electro-magnetic coupling between the at least one of the plurality of coils and the at least one coil of the another wireless power device by:

providing the transmit near-field communications signals to a first set of the plurality of coils, wherein an electro-magnetic field created by a coil of the first set of the plurality of coils has minimal interference with an electro-magnetic field created by another coil of the first set of the plurality of coils;

measuring a response from the at least one coil of the another wireless power device via the first set of the plurality of coils;

comparing the response with a response threshold;

when the response compares favorably with the response threshold, utilizing the first set of the plurality of coils to derive power via the electro-magnetic coupling; and

when the response compares unfavorably with the response threshold, repeating the providing, the measuring, and the comparing for a second set of the plurality of coils, wherein an electro-magnetic field created by a coil of the second set of the plurality of coils has minimal interference with an electro-magnetic field created by another coil of the second set of the plurality of coils.

17. The wireless power device of claim 13 , wherein the control module enables the at least one of the plurality of coils based on the electro-magnetic coupling between the at least one of the plurality of coils and the at least one coil of the another wireless power device by:

coupling the at least one of the plurality of coils as a winding of a transformer to the transmit section and the receive section.

18. The wireless power device of claim 13 , wherein the control module enables the at least one of the plurality of coils based on electro-magnetic coupling between the at least one of the plurality of coils and the at least one coil of the another wireless power device by:

coupling the at least one of the plurality of coils as an antenna to the transmit section and the receive section.

Assignments (5)
CORRECTIVE ASSIGNMENT TO CORRECT THE EFFECTIVE DATE OF MERGER TO 09/05/2018 PREVIOUSLY RECORDED AT REEL: 047230 FRAME: 0133. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER. Recorded Oct 29, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047630/0456 →
MERGER Recorded Oct 4, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047230/0133 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Feb 3, 2017
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: BROADCOM CORPORATION
Reel/Frame 041712/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2017
From: BROADCOM CORPORATION
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 041706/0001 →
PATENT SECURITY AGREEMENT Recorded Feb 11, 2016
From: BROADCOM CORPORATION
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 037806/0001 →
Continuity (3)
Continuation 12839296 · Jul 19, 2010
Continuation 11494149 · Jul 26, 2006
Related Publication 20110267176A1 · Nov 3, 2011