IP Library Granted Patent US 9,906,076
Granted Patent B2
US 9,906,076 · App. 14/536,471 · Granted Feb 27, 2018

Non-contact type power transmitting coil and non-contact type power supplying apparatus

Inventors: Hyun Keun Lim (Suwon-Si, KR); Ki Won Chang (Suwon-Si, KR); Jae Suk Sung (Suwon-si, KR); Sung Uk Lee (Suwon-Si, KR); Chang Soo Kang (Suwon-Si, KR); Si Hyung Kim (Suwon-Si, KR)
Assignee: Samsung Electro-Mechanics Co., Ltd.
H02J50/10H01F27/2804H01F38/14H01Q1/2225H01Q7/00H02J5/005
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,906,076
App. No.
14/536,471
Granted
Feb 27, 2018
Kind
B2
Abstract

A non-contact type power transmitting coil may include at least one conductor pattern disposed on at least one surface of a base having a predetermined area, having a plurality of turns, and transmitting received power externally in a non-contact manner. The intervals between at least some of adjacent pattern portions of the conductor pattern in a direction from a center portion of an inner diameter of the conductor pattern to an outermost pattern portion conductor pattern may be different from one another.

Claims (74)

1. A non-contact type power transmitting coil comprising:

at least one conductor pattern having a plurality of turns, and configured to transmit power in a non-contact manner,

wherein intervals between at least some of adjacent pattern portions of the conductor pattern in a direction from a center of the conductor pattern to an outermost pattern portion of the conductor pattern are different from one another, and

wherein at least some of the adjacent pattern portions of the conductor pattern in the direction comprise different widths.

2. The non-contact type power transmitting coil of claim 1 , wherein the intervals between the adjacent pattern portions of the conductor pattern in the direction are gradually decreased.

3. The non-contact type power transmitting coil of claim 1 , wherein:

the intervals between the some of the adjacent pattern portions of the conductor pattern in the direction are provided at different first ratios,

intervals between at least some of the adjacent pattern portions of the conductor pattern in another direction from the center of the conductor pattern to another outermost pattern portion of the conductor pattern are provided at different second ratios, and

the first ratios are different from the second ratios.

4. The non-contact type power transmitting coil of claim 1 , wherein:

the intervals between the some of the adjacent pattern portions of the conductor pattern in the direction are provided at different first ratios,

intervals between at least some of the adjacent pattern portions of the conductor pattern in another direction from the center of the conductor pattern to another outermost pattern portion of the conductor pattern are provided at different second ratios, and

the first ratios are the same as the second ratios.

5. The non-contact type power transmitting coil of claim 1 , wherein:

at least some of the adjacent pattern portions of the conductor pattern in the direction have different intervals in at least one section of the conductor pattern, and

at least others of the adjacent pattern portions of the conductor pattern in the direction have the same interval in another section of the conductor pattern.

6. A non-contact type power transmitting coil comprising:

at least one conductor pattern having a plurality of turns, and configured to transmit power externally in a non-contact manner,

wherein widths of at least some of adjacent pattern portions of the conductor pattern in a direction from a center of the conductor pattern to an outermost pattern portion of the conductor pattern are different from one another.

7. The non-contact type power transmitting coil of claim 6 , wherein the widths of the adjacent pattern portions of the conductor pattern in the direction are gradually decreased.

8. The non-contact type power transmitting coil of claim 6 , wherein:

the widths of the some of the adjacent pattern portions of the conductor pattern in the direction are provided at different first ratios,

widths of at least some of the adjacent pattern portions of the conductor pattern in another direction from the center of the conductor pattern to another outermost pattern portion of the conductor pattern are provided at different second ratios, and

the first ratios are different from the second ratios.

9. The non-contact type power transmitting coil of claim 6 , wherein:

the widths of the some of the adjacent pattern portions of the conductor pattern in the direction are provided at different first ratios,

widths of at least some of the adjacent pattern portions of the conductor pattern in another direction from the center of the conductor pattern to another outermost pattern portion of the conductor pattern are provided at different second ratios, and

the first ratios are the same as the second ratios.

10. The non-contact type power transmitting coil of claim 6 , wherein:

at least some of the adjacent pattern portions of the conductor pattern in the direction have different widths in at least one section of the conductor pattern, and

at least others of the adjacent pattern portions of the conductor pattern in the direction have the same width in at another section of the conductor pattern.

11. A non-contact type power supplying apparatus, comprising:

a coil comprising a base, and at least one conductor pattern disposed on at least one surface of the base and comprising a plurality of turns; and

a power unit configured to supply power to the coil to transmit the power in a non-contact manner,

wherein intervals between at least some of adjacent pattern portions of the conductor pattern in a direction from a center of the conductor pattern to an outermost pattern portion of the conductor pattern are different from one another, and

wherein at least some of the adjacent pattern portions of the conductor pattern in the direction comprise different widths.

12. The non-contact type power supplying apparatus of claim 11 , wherein the intervals between the adjacent pattern portions of the conductor pattern in the direction are gradually decreased.

13. The non-contact type power supplying apparatus of claim 11 , wherein:

the intervals between the some of the adjacent pattern portions of the conductor pattern in the direction are provided at different first ratios,

intervals between at least some of the adjacent pattern portions of the conductor pattern in another direction from the center of the conductor pattern to another outermost pattern portion of the conductor pattern are provided at different second ratios, and

the first ratios are different from the second ratios.

14. The non-contact type power supplying apparatus of claim 11 , wherein:

the intervals between the some of the adjacent pattern portions of the conductor pattern in the direction are provided at different first ratios,

intervals between at least some of the adjacent pattern portions of the conductor pattern in another direction from the center of the conductor pattern to another outermost pattern portion of the conductor pattern are provided at different second ratios, and

the first ratios are the same as the second ratios.

15. The non-contact type power supplying apparatus of claim 11 , wherein:

intervals of at least some of the adjacent pattern portions of the conductor pattern in the direction are different from each other in at least one section of the conductor pattern, and

at least others of the adjacent pattern portions of the conductor pattern in the direction have the same interval in another section of the conductor pattern.

16. A non-contact type power supplying apparatus, comprising: a base;

at least one conductor pattern disposed on at least one surface of the base and having a plurality of turns; and

a power unit configured to supply power to the conductor pattern to transmit the power externally in a non-contact manner,

wherein widths of at least some of adjacent pattern portions of the conductor pattern in a direction from a center of the conductor pattern to an outermost pattern portion of the conductor pattern are different from one another.

17. The non-contact type power supplying apparatus of claim 16 , wherein the widths of the adjacent pattern portions of the conductor pattern in the direction are gradually decreased.

18. The non-contact type power supplying apparatus of claim 16 , wherein:

the widths of the some of the adjacent pattern portions of the conductor pattern in the direction are provided at different first ratios,

widths of at least some of adjacent pattern portions of the conductor pattern in another direction from the center of the conductor pattern to another outermost pattern portion of the conductor pattern are provided at different second ratios, and

the first ratios are different from the second ratios.

19. The non-contact type power supplying apparatus of claim 16 , wherein:

the widths of the some of the adjacent pattern portions of the conductor pattern in the direction are provided at different first ratios,

widths of at least some of adjacent pattern portions of the conductor pattern in another direction from the center of the conductor pattern to another outermost pattern portion of the conductor pattern are provided at different second ratios, and

the first ratios are the same as the second ratios.

20. The non-contact type power supplying apparatus of claim 16 , wherein

at least some of the adjacent pattern portions of the conductor pattern in the direction have different widths in at least one section of the conductor pattern, and

at least others of the adjacent pattern portions of the conductor pattern have the same width in another section of the conductor pattern.

21. A non-contact type power supply apparatus comprising:

at least one conductor pattern comprising a plurality of turns and configured to supply power in a non-contact manner,

wherein at least some spacings between the turns of the conductor pattern are different from each other, and

wherein at least some of the turns of the conductor pattern comprise different widths from each other.

22. The non-contact type power supply apparatus of claim 21 , wherein the spacings between the turns of the conductor pattern are decreased in order from innermost to outermost turns of the conductor pattern.

23. The non-contact type power supply apparatus of claim 21 , wherein other spacings between the turns of the conductor pattern are the same.

24. A non-contact type power supply apparatus comprising:

at least one conductor pattern having a plurality of turns and configured to supply power in a non-contact manner, wherein at least some of the turns of the conductor pattern have different widths from each other.

25. The non-contact type power supply apparatus of claim 24 , wherein the widths of the turns of the conductor pattern are decreased in order from innermost to outermost turns of the conductor pattern.

26. The non-contact type power supply apparatus of claim 24 , wherein other widths of the turns of the conductor pattern are the same.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2019
From: SAMSUNG ELECTRO-MECHANICS CO., LTD.
To: WITS CO., LTD.
Reel/Frame 050451/0803 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2015
From: LIM, HYUN KEUN; CHANG, KI WON; SUNG, JAE SUK; LEE, SUNG UK; KANG, CHANG SOO; KIM, SI HYUNG
To: SAMSUNG ELECTRO-MECHANICS CO., LTD.
Reel/Frame 034744/0161 →
Priority Claims (3)
KR 10-2013-0136570 · Nov 11, 2013 · national
KR 10-2014-0078487 · Jun 25, 2014 · national
KR 10-2014-0096826 · Jul 29, 2014 · national
Continuity (1)
Related Publication 20150130291A1 · May 14, 2015