IP Library Patent Application 16163773
Patent Application
App. No. 16/163,773

MAGNETIC SHEET AND ELECTRONIC DEVICE

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Quick Facts
Patent No.
US None
App. No.
16/163,773
Abstract

A magnetic sheet includes a magnetic layer, a heat radiation layer having a prominence and a depression formed in a surface and that faces the magnetic layer, and an adhesive layer disposed between the magnetic layer and the heat radiation layer, and including a heat radiation filler that has shape anisotropy.

Claims (35)

1 . A magnetic sheet comprising:

a magnetic layer;

a heat radiation layer comprising a prominence and a depression formed in a surface that faces the magnetic layer; and

an adhesive layer disposed between the magnetic layer and the heat radiation layer, and comprising a heat radiation filler that has shape anisotropy.

2 . The magnetic sheet of claim 1 , wherein the heat radiation filler comprises a first heat radiation filler that has a flake shape, a plate shape, or a rod shape, and

a length of a long axis of the first heat radiation filler is different than a length of a minor axis of the first heat radiation filler.

3 . The magnetic sheet of claim 2 , wherein the first heat radiation filler is oriented in a thickness direction of the magnetic layer.

4 . The magnetic sheet of claim 2 , wherein the adhesive layer fills a space formed by the prominence and the depression.

5 . The magnetic sheet of claim 4 , wherein a thickness of the prominence and the depression is greater than or equal to one-fifth of a thickness of the adhesive layer.

6 . The magnetic sheet of claim 4 , wherein the first heat radiation filler is disposed in the space formed by the prominence and the depression.

7 . The magnetic sheet of claim 6 , wherein the prominence and the depression has an inclined surface that is inclined with respect to the magnetic layer, and

the first heat radiation filler disposed in the space is parallel to the inclined surface.

8 . The magnetic sheet of claim 7 , wherein a surface of the first heat radiation filler in a long axis direction faces the inclined surface.

9 . The magnetic sheet of claim 7 , wherein more than a half of the first heat radiation filler disposed in the space is parallel to the inclined surface.

10 . The magnetic sheet of claim 2 , wherein the length of the long axis of the first heat radiation filler is greater than or equal to one-third of a thickness of the prominence and the depression.

11 . The magnetic sheet of claim 2 , wherein the heat radiation filler comprises a second heat radiation filler in a form of a nanowire.

12 . The magnetic sheet of claim 11 , wherein the second heat radiation filler is configured to connect two or more first heat radiation fillers to each other.

13 . The magnetic sheet of claim 11 , wherein the second heat radiation filler comprises a silver (Ag) component.

14 . The magnetic sheet of claim 11 , wherein the second heat radiation filler has a shape corresponding to a shape of the prominence and the depression.

15 . The magnetic sheet of claim 1 , wherein the heat radiation filler comprises a nanowire having a shape corresponding to a shape of the prominence and the depression.

16 . The magnetic sheet of claim 1 , wherein the heat radiation layer is a copper foil.

17 . An electronic device comprising:

a coil part comprising a coil pattern; and

a magnetic sheet comprising

a magnetic layer configured to face the coil part,

a heat radiation layer comprising a prominence and a depression formed in a surface that faces the magnetic layer, and

an adhesive layer disposed between the magnetic layer and the heat radiation layer, and comprising a heat radiation filler that has shape anisotropy.

18 . The electronic device of claim 17 , wherein the heat radiation layer comprises two or more prominences and depressions and a distance between adjacent prominences and depressions is shorter than a length of the heat radiation filler.

19 . An apparatus comprising:

a coil part comprising a coil pattern;

a battery; and

a magnetic sheet disposed between the coil pattern and the battery and comprising

a magnetic layer configured to face the coil part,

a heat radiation layer comprising a projection projecting from a surface that faces the magnetic layer, and

an adhesive layer disposed between the magnetic layer and the heat radiation layer, and comprising a heat radiation filler that has shape anisotropy.

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 Oct 18, 2018
From: PARK, DOO HO; CHO, JUNG YOUNG; KYEONG, SAN; CHO, SUNG NAM; LEE, JI HYO; MOON, BYEONG CHEOL
To: SAMSUNG ELECTRO-MECHANICS CO., LTD.
Reel/Frame 047211/0930 →