IP Library › Granted Patent US 10,673,278
Granted Patent B2
US 10,673,278 · App. 15/267,622 · Granted Jun 2, 2020

Apparatus and method for reducing electromagnetic wave in wireless power transmission device

Inventors: Jung Ick Moon (Daejeon, KR); Seong Uk Baek (Suwon-si, KR); Byoung In Lee (Yongin-si, KR); Woo Chul Lee (Osan-si, KR); Jong Seup Lee (Yongin-si, KR); Dong Woo Cheon (Suwon-si, KR); Sang Bong Jeon (Daejeon, KR); Seong Min Kim (Daejeon, KR); Duk Ju Ahn (Daejeon, KR); In Kui Cho (Daejeon, KR); Byung Chan Kim (Daejeon, KR); Je Hoon Yun (Daejeon, KR); Dong Won Jang (Daejeon, KR); Hyung Do Choi (Daejeon, KR)
Assignees: Electronics and Telecommunications Research Institute; DONGYANG E&P INC.
H02J50/12H02J50/50H02J50/70H02J50/90
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Quick Facts
Patent No.
US 10,673,278
App. No.
15/267,622
Granted
Jun 2, 2020
Kind
B2
Abstract

Provided is a wireless power transmission device to reduce an electromagnetic wave except for a signal to be transmitted during wireless power transmission, the wireless power transmission device including a transmitter configured to generate a magnetic field by inputting a high-frequency power signal generated by a transmission circuit into a first coil, a receiver configured to generate an induced current by allowing the generated magnetic field to pass through a second coil, and a reducer configured to reduce a harmonic component of the high-frequency power signal using a third coil inserted on a path between the transmitter and the receiver.

Claims (13)

1. A wireless charge transmitter comprising:

a transmission coil configured to transmit wireless power into a reception coil of a wireless charge receiver; and

a reducing coil connected to a resonant circuit for reducing a unnecessary harmonic component generated by the transmission coil,

a controller configured to set a resonant frequency of the reducing coil to a frequency corresponding to the harmonic component to be reduced,

wherein the controller is configured to adjust the resonant frequency of the reducing coil in view of a frequency domain of the harmonic component to be reduced by blocking signals in a domain greater than a predetermined frequency using a high pass characteristic,

wherein the reducing coil encloses the transmission coil and the reception coil with a diameter greater than a diameter of the transmission coil and the reception coil,

wherein a coiling direction of the reducing coil is the same as a coiling direction of the transmission coil for reducing an even mode of the harmonic component, and

wherein the coiling direction of the reducing coil is different from the coiling direction of the transmission coil for reducing an odd mode of the harmonic component.

2. The wireless charge transmitter of claim 1 , wherein the reducing coil is disposed on a plane on which the transmission coil is disposed.

3. The wireless charge transmitter of claim 1 , wherein the reducing coil is disposed at a lower position than a plane on which the transmission coil is disposed.

4. The wireless charge transmitter of claim 1 , wherein the transmission coil, the reception coil and the reducing coil are disposed on a ferromagnetic material such as ferrite.

5. The wireless charge transmitter of claim 1 , wherein an inductance or a number of turns of the reducing coil is determined based on a frequency of the unnecessary harmonic component.

6. The wireless charge transmitter of claim 1 , wherein the reducing coil is disposed to tilt with respect to a plane on which the transmission coil is disposed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2016
From: MOON, JUNG ICK; BAEK, SEONG UK; LEE, BYOUNG IN; LEE, WOO CHUL; LEE, JONG SEUP; CHEON, DONG WOO; JEON, SANG BONG; KIM, SEONG MIN; AHN, DUK JU; CHO, IN KUI; KIM, BYUNG CHAN; YUN, JE HOON; JANG, DONG WON; CHOI, HYUNG DO
To: ELECTRONICS AND TELECOMMUNICATIONS RESEARCH INSTITUTE; DONGYANG E&P INC.
Reel/Frame 039765/0849 →
Priority Claims (2)
KR 10-2015-0101908 · Jul 17, 2015 · national
KR 10-2015-0161889 · Nov 18, 2015 · national
Continuity (1)
Related Publication 20170141615A1 · May 18, 2017