ROLLER FOR MANUFACTURING MAGNETIC SHEET AND MANUFACTURING METHOD OF MAGNETIC SHEET
A method for manufacturing a magnetic sheet includes applying a roller having protrusions to a surface of a magnetic sheet to form recesses in the magnetic sheet. Functional regions having different degrees of compression are formed in the surface of the magnetic sheet by applying the roller.
1 . A method for manufacturing a magnetic sheet, the method comprising:
applying a roller having protrusions to a surface of a magnetic sheet to form recesses in the magnetic sheet,
wherein functional regions having different degrees of compression are formed in the surface of the magnetic sheet by applying the roller.
2 . The method of claim 1 , wherein spacing, sizes, or shapes of the recesses, or any combination thereof, are different from each other in at least two of the functional regions.
3 . The method of claim 1 , wherein heights of the recesses are different from each other in at least two of the functional regions.
4 . The method of claim 1 , wherein inclinations of the recesses are different from each other in at least two of the functional regions.
5 . The method of claim 1 , wherein one of the functional regions has a different magnetic permeability that of another functional region.
6 . The method of claim 1 , wherein the functional regions comprise first, second, and third regions, each having a different magnetic permeability,
the first region is a shielding part for wireless power charging, the second region is a shielding part for magnetic secure transmission, and the third region is a shielding part for near field communications.
7 . The method of claim 1 , wherein the roller further forms a flat region, without recesses, adjacent to the functional regions on the surface of the magnetic sheet.
8 . The method of claim 1 , wherein a single full rotation of the roller along to magnetic sheet forms the functional regions.
9 . A roller for manufacturing a magnetic sheet, the roller comprising:
a rotatable body; and
protrusion regions formed on a surface of the rotatable body and comprising protrusions,
wherein spacing, sizes, or shapes, or any combination thereof, of the protrusions in one of the protrusion regions are different from another protrusion region.
10 . The roller of claim 9 , wherein the protrusion regions are disposed adjacent to each other, and concentric.
11 . The roller of claim 9 , wherein the protrusion has a tetrahedral shape or a conical shape.
12 . The roller of claim 9 , wherein the protrusion regions form one group, and a plurality of groups are disposed on the rotatable body.
13 . The roller of claim 12 , wherein the group has a rectangular shape when projected on a two dimensional plane.
14 . The roller of claim 12 , wherein the plurality of groups are disposed to be adjacent to each other, and a flat region without protrusions is formed between the plurality of groups.
15 . The roller of claim 12 , wherein the plurality of groups have the same shape as each other.
16 . The roller of claim 12 , wherein at least two of the plurality of groups have different shapes from each other.
17 . The roller of claim 12 , wherein the protrusions in one group have different spacing, shapes, or sizes, or any combination thereof, than protrusions in another group of the plurality of groups.
18 . A roller comprising:
a rotatable body;
protrusion groups adjacently formed on a surface of the rotatable body comprising concentric protrusion regions,
wherein spacing, sizes, or shapes, or any combination thereof, of protrusions in one of the concentric protrusion regions are different from other protrusion regions.
19 . The roller of claim 18 , wherein the concentric protrusion regions of one protrusion group are different from the protrusion regions of another protrusion group.
20 . The roller of claim 19 , wherein the concentric protrusion regions of the one protrusion group comprises first protrusions with a different spacing, size, or shape than second protrusions of the protrusion regions of the other protrusion group.