IP Library › Granted Patent US 9,601,272
Granted Patent B2
US 9,601,272 · App. 14/339,774 · Granted Mar 21, 2017

Wireless power transmission system and wireless power relay apparatus

Inventors: Chi Hyung Ahn (Suwon-si, KR); Sang Wook Kwon (Seongnam-si, KR); Ki Young Kim (Yongin-si, KR); Nam Yun Kim (Seoul, KR); Dong Zo Kim (Yongin-si, KR); Bong Chul Kim (Seoul, KR); Yun Kwon Park (Dongducheon-si, KR); Jae Hyun Park (Yongin-si, KR); Keum Su Song (Seoul, KR); Young Ho Ryu (Yongin-si, KR); Byoung Hee Lee (Yongin-si, KR)
Assignee: Samsung Electronics Co., Ltd.
H01F38/14B60L11/182B60L11/1824B60L11/1846B60L11/1861H02J5/005H02M7/06H04B5/0037B60L2210/10B60L2210/30B60L2210/40B60L2230/16B60L2240/36H01F6/06H02J7/025Y02T10/7005Y02T10/705Y02T10/7044Y02T10/7088Y02T10/7216Y02T10/7241Y02T90/121Y02T90/122Y02T90/127Y02T90/128Y02T90/14Y02T90/163Y02T90/169Y04S30/14
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Quick Facts
Patent No.
US 9,601,272
App. No.
14/339,774
Granted
Mar 21, 2017
Kind
B2
Abstract

A wireless power relay apparatus includes a relay resonator configured to relay power from a source resonator configured to wirelessly transmit the power, to a target resonator configured to wirelessly receive the power through a mutual resonance, the relay resonator having a higher quality factor than the source resonator and the target resonator.

Claims (37)

1. A wireless power relay apparatus, comprising:

a relay resonator configured to relay power from a source resonator configured to wirelessly transmit the power, to a target resonator configured to wirelessly receive the power through a mutual resonance, the relay resonator having a higher quality factor than the source resonator and the target resonator.

2. The wireless power relay apparatus of claim 1 , wherein the relay resonator is configured to form a parasitic coupling to either one or both of the source resonator and the target resonator.

3. The wireless power relay apparatus of claim 1 , wherein the relay resonator is disposed in the same plane as either one or both of the source resonator and the target resonator.

4. The wireless power relay apparatus of claim 1 , wherein the relay resonator comprises a material with a higher quality factor than a material of each of the source resonator and the target resonator.

5. The wireless power relay apparatus of claim 1 , wherein:

the relay resonator comprises a multi-array resonator comprising resonators; and

the resonators are electrically connected based on a magnetic field formed between the resonators.

6. The wireless power relay apparatus of claim 1 , wherein a size of the relay resonator is larger than a size of each of the source resonator and the target resonator.

7. The wireless power relay apparatus of claim 1 , wherein a coil included in the relay resonator is thicker than a coil included in each of the source resonator and the target resonator.

8. The wireless power relay apparatus of claim 1 , wherein a number of turns of a coil included in the relay resonator is greater than a number of turns of a coil included in each of the source resonator and the target resonator.

9. The wireless power relay apparatus of claim 1 , wherein the relay resonator is enclosed by a magnetic material.

10. The wireless power relay apparatus of claim 1 , wherein the quality factor comprises a value enabling the relay resonator to mutually resonate with the source resonator and the target resonator at an efficiency that is greater than or equal to a predetermined efficiency, in response to a quality factor of either one or both of the source resonator and the target resonator being lower than a predetermined threshold.

11. The wireless power relay apparatus of claim 10 , wherein the predetermined threshold is “100”.

12. A wireless power relay apparatus, comprising:

a relay resonator configured to mutually resonate with a source resonator and a target resonator, to wirelessly transfer power from the source resonator to the target resonator, the relay resonator having a higher quality factor than the source resonator and the target resonator.

13. The wireless power relay apparatus of claim 12 , further comprising:

a cooler configured to cool the relay resonator to maintain a superconductive property of the relay resonator, the relay resonator comprising a superconductive material.

14. The wireless power relay apparatus of claim 12 , wherein the relay resonator comprises:

a parasitic resonator disposed in the same plane as either one or both of the source resonator and the target resonator, and configured to form a parasitic coupling.

15. The wireless power relay apparatus of claim 12 , wherein the relay resonator is disposed either one or both of inside and outside at least one of the source resonator and the target resonator.

16. The wireless power relay apparatus of claim 12 , wherein any one or any combination of a material, a structure, and a size of the relay resonator has a higher quality factor than the source resonator and the target resonator.

17. The wireless power relay apparatus of claim 12 , wherein:

the relay resonator comprises a multi-array resonator comprising resonators; and

the resonators are electrically connected based on a magnetic field formed between the resonators.

18. The wireless power relay apparatus of claim 12 , wherein the relay resonator is enclosed by a magnetic material.

19. The wireless power relay apparatus of claim 12 , wherein the quality factor comprises a value enabling the relay resonator to mutually resonate with the source resonator and the target resonator at an efficiency that is greater than or equal to a predetermined efficiency, in response to a quality factor of either one or both of the source resonator and the target resonator being lower than a predetermined threshold.

20. The wireless power relay apparatus of claim 19 , wherein the predetermined threshold is set to “100”.

21. A wireless power relay apparatus, comprising:

a first resonator configured to transfer power from a second resonator to a third resonator, and having a higher quality factor than the second and third resonators.

22. The wireless power relay apparatus of claim 21 , wherein a number of turns of a coil included in the first resonator is greater than a number of turns of a coil included in each of the second and third resonators.

23. The wireless power relay apparatus of claim 21 , wherein:

the first resonator comprises resonators in an array; and

the resonators are connected based on a magnetic field formed between the resonators.

24. The wireless power relay apparatus of claim 21 , further comprising:

a cooler configured to cool the first resonator to maintain a superconductive property of the first resonator.

25. The wireless power relay apparatus of claim 21 , wherein the first resonator is disposed inside or outside the second resonator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2016
From: AHN, CHI HYUNG; KWON, SANG WOOK; KIM, KI YOUNG; KIM, NAM YUN; KIM, DONG ZO; KIM, BONG CHUL; PARK, YUN KWON; PARK, JAE HYUN; SONG, KEUM SU; RYU, YOUNG HO; LEE, BYOUNG HEE
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 040537/0655 →
Priority Claims (1)
KR 10-2013-0093766 · Aug 7, 2013 · national
Continuity (1)
Related Publication 20150045227A1 · Feb 12, 2015