IP Library › Granted Patent US 12,744,415
Granted Patent B2
US 12,744,415 · App. 18/489,536 · Granted Sep 22, 2026

Wireless charging system, method of removing foreign object in wireless charging system, and computing device for performing the method

Inventors: Jung Ick Moon (Daejeon, KR); Gwangzeen Ko (Daejeon, KR); Sang-Won Kim (Daejeon, KR); Seong-Min Kim (Daejeon, KR); In Kui Cho (Daejeon, KR)
Assignee: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
H02J50/60H02J50/10H02J50/402
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Quick Facts
Patent No.
US 12,744,415
App. No.
18/489,536
Granted
Sep 22, 2026
Kind
B2
Abstract

A wireless charging system, a method of removing a foreign object in the wireless charging system, and a computing device performing the method are provided. The wireless charging system includes a transmission coil cover mounted to surround a transmission coil of a transmission device, a reception coil cover mounted to surround a reception coil of a reception device, and a direct current (DC) conducting wire attached to each of the transmission coil cover and the reception coil cover, wherein the wireless charging system may be configured to remove a foreign object attached to the transmission coil cover or the reception coil cover by using a force acting on the DC conducting wire according to a direction of a current flowing in the DC conducting wire and a direction of a magnetic field perpendicular to the direction of the current.

Claims (41)

1 . A wireless charging system comprising:

a transmission coil cover mounted to surround a transmission coil of a transmission device;

a reception coil cover mounted to surround a reception coil of a reception device; and

a direct current (DC) conducting wire attached to each of the transmission coil cover and the reception coil cover,

wherein the wireless charging system is configured to remove a foreign object attached to the transmission coil cover or the reception coil cover by using a force acting on the DC conducting wire according to a direction of a current flowing in the DC conducting wire and a direction of a magnetic field perpendicular to the direction of the current.

2 . The wireless charging system of claim 1 , wherein

the DC conducting wire is attached at a height of an intermediate portion of each of the transmission coil cover and the reception coil cover.

3 . The wireless charging system of claim 1 , wherein

the DC conducting wire is configured to remove a foreign object attached to the transmission coil cover or the reception coil cover by performing a vibratory motion in a rotational direction when a direction of an applied force is changed by an alternating current (AC) magnetic field applied to the wireless charging system.

4 . The wireless charging system of claim 1 , further comprising:

a sensor configured to determine whether a foreign object is present on the transmission coil cover or the reception coil cover; and

a switch configured to supply a current to the DC conducting wire based on whether the foreign object determined using the sensor is present.

5 . The wireless charging system of claim 4 , wherein

the switch is configured to change to an ON state to supply a current to the DC conducting wire when a foreign object is determined to be present on the transmission coil cover or the reception coil cover using the sensor.

6 . The wireless charging system of claim 4 , wherein

the switch is configured to change to an OFF state to stop supplying a current to the DC conducting wire when a foreign object is determined not to be present on the transmission coil cover or the reception coil cover using the sensor.

7 . A method of removing a foreign object in a wireless charging system, the method comprising:

in a process of performing wireless charging through a wireless charging system comprising a transmission coil of a transmission device and a reception coil of a reception device, determining, using a sensor, whether a foreign object is present on a transmission coil cover mounted to surround the transmission coil or a reception coil cover mounted to surround the reception coil;

when a foreign object is determined to be present on the transmission coil cover or the reception coil cover, stopping the wireless charging and supplying a current through a switch to a direct current (DC) conducting wire attached to the transmission coil cover or the reception coil cover in which the foreign object is determined to be present, for a preset period of time;

determining, using the sensor, whether the foreign object that is present on the transmission coil cover or the reception coil cover is removed by the DC conducting wire to which the current is supplied for the preset period of time; and

performing the wireless charging again when a foreign object that was present on the transmission coil cover or the reception coil cover is determined to be removed.

8 . The method of claim 7 , wherein

the wireless charging system is configured to remove a foreign object attached to the transmission coil cover or the reception coil cover by using a force acting on the DC conducting wire according to a direction of a current flowing in the DC conducting wire and a direction of a magnetic field perpendicular to the direction of the current.

9 . The method of claim 7 , wherein

the DC conducting wire is attached at a height of an intermediate portion of each of the transmission coil cover and the reception coil cover.

10 . The method of claim 7 , wherein

the DC conducting wire is configured to remove a foreign object attached to the transmission coil cover or the reception coil cover by performing a vibratory motion in a rotational direction when a direction of an applied force is changed by an alternating current (AC) magnetic field applied to the wireless charging system.

11 . A computing device comprising:

at least one processor; and

a memory configured to load or store a program executed by the at least one processor,

wherein the program comprises instructions that cause the processor to perform:

in a process of performing wireless charging through a wireless charging system comprising a transmission coil of a transmission device and a reception coil of a reception device, determining, using a sensor, whether a foreign object is present on a transmission coil cover mounted to surround the transmission coil or a reception coil cover mounted to surround the reception coil;

when a foreign object is determined to be present on the transmission coil cover or the reception coil cover, stopping the wireless charging and supplying a current through a switch to a direct current (DC) conducting wire attached to the transmission coil cover or the reception coil cover in which the foreign object is determined to be present, for a preset period of time;

determining, using the sensor, whether the foreign object that is present on the transmission coil cover or the reception coil cover is removed by the DC conducting wire to which the current is supplied for the preset period of time; and

performing the wireless charging again when a foreign object that was present on the transmission coil cover or the reception coil cover is determined to be removed.

12 . The computing device of claim 11 , wherein

the wireless charging system is configured to remove a foreign object attached to the transmission coil cover or the reception coil cover by using a force acting on the DC conducting wire according to a direction of a current flowing in the DC conducting wire and a direction of a magnetic field perpendicular to the direction of the current.

13 . The computing device of claim 11 , wherein

the DC conducting wire is attached at a height of an intermediate portion of each of the transmission coil cover and the reception coil cover.

14 . The computing device of claim 11 , wherein

the DC conducting wire is configured to remove a foreign object attached to the transmission coil cover or the reception coil cover by performing a vibratory motion in a rotational direction when a direction of an applied force is changed by an alternating current (AC) magnetic field applied to the wireless charging system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2023
From: MOON, JUNG ICK; KO, GWANGZEEN; KIM, SANG-WON; KIM, SEONG-MIN; CHO, IN KUI
To: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE
Reel/Frame 065271/0530 →
Priority Claims (1)
KR 10-2022-0181988 · Dec 22, 2022 · national
Continuity (1)
Related Publication 20240213814A1 · Jun 27, 2024
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