IP Library › Granted Patent US 12,463,466
Granted Patent B2
US 12,463,466 · App. 18/359,708 · Granted Nov 4, 2025

Techniques for wireless power transfer

Inventor: Fralett Suarez Sandoval (Nuremberg, DE)
Assignee: Huawei Technologies Co., Ltd.
H02J50/12H02J50/005H01F38/14
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Quick Facts
Patent No.
US 12,463,466
App. No.
18/359,708
Granted
Nov 4, 2025
Kind
B2
Abstract

A wireless power transmitter device is provided. The wireless power transmitter device comprises: at least one transmitter coil acting as inductive element of at least one inductive-capacitive resonator that upon excitation with a time-varying voltage produces a time varying electromagnetic field, causing a circulating electric field through at least one receiver coil of a wireless power receiver device for charging the wireless power receiver device, wherein the at least one transmitter coil is composed of at least two spirals electrically connected to each other, wherein the at least two spirals are oriented in space to form a composed geometric figure. A corresponding wireless power receiver device is further provided.

Claims (47)

1 . A wireless power transmitter device comprising:

at least one transmitter coil configured to act as an inductive element of at least one inductive-capacitive resonator, wherein the at least one transmitter coil is configured to, upon excitation with a time-varying voltage, produce a time varying electromagnetic field configured to cause a circulating electric field through at least one receiver coil of a wireless power receiver device and thereby charge the wireless power receiver device,

wherein the at least one transmitter coil is composed of at least two spirals electrically connected to each other,

wherein the at least two spirals are oriented in space to form a composed geometric figure,

wherein the at least one transmitter coil comprises:

a first port formed by a first wire end of a first spiral of the at least two spirals,

a second port formed by a first wire end of a second spiral of the at least two spirals,

a third port formed by a second wire end of the first spiral of the at least two spirals,

a fourth port formed by a second wire end of the second spiral of the at least two spirals,

a first electrical connection electrically connecting one of the first and third ports of the first spiral with one of the second and fourth ports of the second spiral, and

a second electrical connection electrically connecting the other port of the first and third ports of the first spiral with the other port of the second and fourth ports of the second spiral, and

wherein the second electrical connection connects the first spiral and the second spiral to a capacitor or a capacitor network.

2 . The wireless power transmitter device of claim 1 , wherein the at least two spirals are symmetrically positioned in space towards a common reference point or axis.

3 . The wireless power transmitter device of claim 1 , wherein the first electrical connection joins the first spiral with the second spiral by a material of the same conductivity as a material of the spirals.

4 . The wireless power transmitter device of claim 1 ,

wherein an equivalent capacitance of the capacitor or the capacitor network is used to create an electrical resonator at a resonance frequency in conjunction with a self-inductance of the at least one transmitter coil; and

wherein the electrical resonator is driven by an AC source.

5 . The wireless power transmitter device of claim 1 , comprising at least two transmitter coils,

wherein a first transmitter coil of the at least two transmitter coils faces a second transmitter coil of the at least two transmitter coils under a folding angle of 90 degrees; and

wherein the first and the second transmitter coils are positioned at the same or different height with respect to each other.

6 . The wireless power transmitter device of claim 5 , comprising a single-spiral coil that is located on top of the first and the second transmitter coils.

7 . The wireless power transmitter device of claim 1 , comprising four transmitter coils, wherein each transmitter coil is composed of a first and a second spiral arranged with respect to each other under a folding angle of 90 degrees,

wherein all four transmitter coils are arranged with respect to each other under a folding angle of 90 degrees, and

wherein each first spiral of a transmitter coil of the four transmitter coils overlaps with a second spiral of another transmitter coil of the four transmitter coils located next to the transmitter coil.

8 . The wireless power transmitter device of claim 1 , comprising three transmitter coils, wherein each transmitter coil is composed of a first and a second spiral arranged with respect to each other under a folding angle of 60 degrees,

wherein all three transmitter coils are arranged with respect to each other under a folding angle of 60 degrees,

wherein each first spiral of a transmitter coil of the three transmitter coils overlaps with a second spiral of another transmitter coil of the three transmitter coils located next to the transmitter coil.

9 . The wireless power transmitter device of claim 1 , comprising four transmitter coils, wherein each transmitter coil is composed of a first and a second spiral arranged with respect to each other under a folding angle of 90 degrees,

wherein all four transmitter coils are arranged with respect to each other under a folding angle of 90 degrees,

wherein the first spirals of the four transmitter coils are arranged in a first plane,

wherein the second spirals of two transmitter coils of the four transmitter coils are arranged in a second plane perpendicular to the first plane, and

wherein the second spirals of the other two transmitter coils of the four transmitter coils are arranged in a third plane perpendicular to both the first and the second plane.

10 . The wireless power transmitter device of claim 1 , comprising two transmitter coils, wherein each transmitter coil is composed of a first and a second spiral bent with respect to each other under a radius of curvature, and

wherein the two transmitter coils are bent with respect to each other under a radius of curvature.

11 . The wireless power transmitter device of claim 1 , comprising an arrangement of at least two transmitter coils, wherein the arrangement of the at least two transmitter coils has a cuboid, spherical or semi-planar shape.

12 . The wireless power transmitter device of claim 1 , wherein the at least one transmitter coil is configured to receive a second time varying electromagnetic field that produces the time-varying voltage.

13 . The wireless power transmitter device of claim 12 , wherein the second time varying electromagnetic field is produced by another wireless power transmitter device, and wherein the wireless power transmitter device is configured as a wireless power relay for wireless power transmission from the another wireless power transmitter device to the wireless power receiver device.

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

at least one AC power source providing the time-varying voltage for excitation of the at least one inductive-capacitive resonator of the at least one transmitter coil; and

a phase and amplitude controller configured to control at least one of a magnitude or a phase of the at least one AC power source based on a sensing signal indicating a location of a wireless power receiver device.

15 . The wireless power transmitter device of claim 14 , comprising:

a power detection unit configured to detect a change in an electromagnetic coupling of the at least one inductive-capacitive resonator of the at least one transmitter coil with a corresponding resonator of the wireless power receiver device,

wherein the power detection unit is configured to provide the sensing signal based on the detected change in the electromagnetic coupling of the at least one inductive-capacitive resonator of the at least one transmitter coil.

16 . The wireless power transmitter device of claim 14 , comprising:

a power detection unit configured to detect a change in an electromagnetic coupling of at least one inductive-capacitive resonator of a sensing coil with a corresponding resonator of the wireless power receiver device,

wherein the at least one inductive-capacitive resonator of the sensing coil is configured to operate at another operating frequency than the at least one inductive-capacitive resonator of the at least one transmitter coil, and

wherein the power detection unit is further configured to provide the sensing signal based on the detected change in the electromagnetic coupling of the at least one inductive-capacitive resonator of the sensing coil.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2025
From: SUAREZ SANDOVAL, FRALETT
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 072066/0824 →
Continuity (2)
Continuation PCTEP2021051673 · Jan 26, 2021
Related Publication 20230369896A1 · Nov 16, 2023
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