IP Library Granted Patent US 11,958,370
Granted Patent B2
US 11,958,370 · App. 17/462,282 · Granted Apr 16, 2024

Wireless power system modules

Inventors: Andre B. Kurs (Chestnut Hill, MA); Aristeidis Karalis (Boston, MA); Morris P. Kesler (Bedford, MA); Andrew J. Campanella (Somerville, MA)
Assignee: WiTricity Corporation
B60L53/124B60L53/12B60L53/122B60L53/126B60L53/38B60L55/00G06F1/16H01F38/14H02J50/12H02J50/50H02J50/70H02J50/80H02J50/90H03H7/40H04B5/0037H04L9/3278H04N5/64B60L2200/26H01F2003/005H02J50/60H04N21/42222Y02E60/00Y02T10/70Y02T10/7072Y02T90/12Y02T90/14Y02T90/16Y04S10/126
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Quick Facts
Patent No.
US 11,958,370
App. No.
17/462,282
Granted
Apr 16, 2024
Kind
B2
Abstract

A wireless power transmitter includes a first inductive element featuring a planar coil occupying a first plane and having first and second terminals, a first capacitive element connected to the first terminal, an inverter configured to provide an oscillating voltage signal to the first inductive element, through the first capacitive element, such that the first inductive element generates an oscillating magnetic field for transmitting power in response to the oscillating voltage signal, and a layer of magnetic material, disposed over the planar coil in a second plane parallel to the first plane.

Claims (32)

1. A wireless power transmitter, comprising:

a first inductive element comprising a planar coil occupying a first plane and having first and second terminals;

a first capacitive element connected to the first terminal;

a source configured to provide an oscillating voltage signal to the first inductive element, through the first capacitive element, such that the first inductive element generates an oscillating magnetic field for transmitting power in response to the oscillating voltage signal; and

a layer of magnetic material, disposed over the planar coil in a second plane parallel to the first plane.

2. The wireless power transmitter of claim 1 , further comprising:

a second capacitive element connected to the second terminal;

a third capacitive element connected to the first and second capacitive elements to form a first conductive path between the first and third capacitive elements, and to form a second conductive path between the second and third capacitive elements;

a second inductive element connected between a first output of the inverter and the first conductive path; and

a third inductive element connected between a second output of the inverter and the second conductive path.

3. The wireless power transmitter of claim 1 , wherein the layer of magnetic material is separated from the planar coil by a gap in a direction normal to the first plane.

4. The wireless power transmitter of claim 3 , wherein the planar coil is a first planar coil, the wireless power transmitter further comprising:

a second planar coil; and

a third planar coil,

wherein the second and third planar coils are not co-planar with the first coil; and

wherein the second and third planar coils are co-planar in a third plane parallel to the first plane.

5. The wireless power transmitter of claim 4 , wherein the second and third planar coils are located between the first planar coil and the layer of magnetic material.

6. The wireless power transmitter of claim 4 , wherein the layer of magnetic material extends to edges of the second and third coils in directions parallel to first plane.

7. The wireless power transmitter of claim 1 , wherein the layer of magnetic material extends beyond edges of the coil in directions parallel to the first plane.

8. The wireless power transmitter of claim 7 , wherein a portion of the layer of magnetic material that extends beyond edges of the coil further extends into the first plane.

9. A wireless power transmitter, comprising:

a first inductive element comprising a planar coil occupying a first plane and having first and second terminals;

a first capacitive element connected to the first terminal;

a second capacitive element connected to the second terminal;

a third capacitive element connected to the first and second capacitive elements to form a first conductive path between the first and third capacitive elements, and to form a second conductive path between the second and third capacitive elements;

an inverter configured to provide an oscillating voltage signal to the first inductive element, through the first capacitive element, such that the first inductive element generates an oscillating magnetic field for transmitting power in response to the oscillating voltage signal; and

a second inductive element connected between a first output of the inverter and the first conductive path;

a third inductive element connected between a second output of the inverter and the second conductive path; and

a layer of magnetic material, disposed over the planar coil in a second plane parallel to the first plane.

10. The wireless power transmitter of claim 9 , wherein the inverter comprises a class-D inverter.

11. The wireless power transmitter of claim 10 , wherein the inverter comprises a full-bridge inverter.

12. The wireless power transmitter of claim 10 , wherein the inverter comprises a half-bridge inverter.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2025
From: WITRICITY CORPORATION
To: NAVIGATE LLC
Reel/Frame 073066/0682 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2021
From: KURS, ANDRE B.; KARALIS, ARISTEIDIS; KESLER, MORRIS P.; CAMPANELLA, ANDREW J.
To: WITRICITY CORPORATION
Reel/Frame 057350/0131 →