IP Library Patent Application 12597988
Patent Application
App. No. 12/597,988

ELECTROMAGNETIC WAVE SUPPRESSOR AND METHOD FOR MANUFACTURING THE SAME

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Patent No.
US None
App. No.
12/597,988
Abstract

An electromagnetic wave suppression sheet ( 1 ) includes moisture-resistant films ( 11 a ), ( 11 b ) and an acrylate based polymer gel containing x wt % of an alcohol. The electromagnetic wave suppression sheet ( 1 ) is formed by molding so that its thickness (t 2 ) y in mm will be in a region formed by interconnecting a point a (10, 1.0), a point b (10, 3.0) and a point c (20, 1.0), totaling at three points, in an xy coordinate system (x, y). This yields a high non-freezing properties and a high incombustibility of the sheet.

Claims (26)

1 . An electromagnetic wave suppressor comprising an electromagnetic wave suppression sheet including a first moisture-resistant film, a second moisture-resistant film and an acrylate based polymer gel which is encapsulated in-between said first and second moisture-resistant films; wherein:

said acrylate based polymer gel contains x wt % of an alcohol; and wherein a thickness y in mm of said electromagnetic wave suppression sheet is within a region formed on interconnecting a point a (10, 1.0), a point b (10, 3.0) and a point c (20, 1.0), totaling at three points, in an xy coordinate system (x, y).

2 . The electromagnetic wave suppressor according to claim 1 , wherein said alcohol is at least one of methanol, ethanol, propanol, butanol, ethyleneglycol, propylene glycol and pentaerythrytol.

3 . The electromagnetic wave suppressor according to claim 1 , wherein said acrylate based polymer gel contains electrolyte and said electrolyte is at least one of sodium chloride, potassium chloride, calcium chloride, potassium acetate and calcium acetate.

4 . The electromagnetic wave suppressor according to claim 3 , wherein said electrolyte is added in a quantity of not less than 3.0 mol/L to a pre-cure composition of said acrylate based polymer gel.

5 . The electromagnetic wave suppressor according to claims 1 , further comprising:

a non-woven fabric based adhesive layer on at least one of a surface of said first moisture-resistant film and a surface of said second moisture-resistant film.

6 . The electromagnetic wave suppressor according to claim 5 , wherein said adhesive layer contains hexabromobenzene and antimony trioxide.

7 . A method for manufacturing an electromagnetic wave suppressor, comprising:

pouring a composition, composed of x wt % of an alcohol, an acrylate based monomer and a polymerization initiator in-between a first moisture-resistant film and a second moisture-resistant film;

hermetically sealing the composition therein; and

molding the resulting mass to form an electromagnetic wave suppression sheet made up of said first and second moisture-resistant films and an acrylate-based polymer gel formed on gellation of said composition so that a thickness y in mm of the electromagnetic wave suppression sheet is within a region formed on interconnecting a point a (10, 1.0), a point b (10, 3.0) and a point c (20, 1.0), totaling at three points, in an xy coordinate system (x, y).

8 . The method according to claim 7 wherein said alcohol is at least one of methanol, ethanol, propanol, butanol, ethyleneglycol, propylene glycol and pentaerythrytol.

9 . The method according to claim 7 wherein said composition includes an electrolyte and wherein said electrolyte is at least one of sodium chloride, potassium chloride, calcium chloride, potassium acetate and calcium acetate.

10 . The method according to claim 9 wherein an electrolyte is added in an amount of not less than 3.0 mol/L to said composition.

11 . The method according to claim 7 wherein, after molding said electromagnetic wave suppression sheet, a non-woven fabric based adhesive layer is formed on at least one of a surface of said first moisture-resistant film and a surface of said second moisture-resistant film.

12 . The method according to claim 11 wherein said adhesive layer contains hexabromobenzene and antimony trioxide.

13 . The electromagnetic wave suppressor according to claim 2 , further comprising:

a non-woven fabric based adhesive layer on at least one of a surface of said first moisture-resistant film and a surface of said second moisture-resistant film.

14 . The electromagnetic wave suppressor according to claim 3 , further comprising:

a non-woven fabric based adhesive layer on at least one of a surface of said first moisture-resistant film and a surface of said second moisture-resistant film.

15 . The electromagnetic wave suppressor according to claim 4 , further comprising:

a non-woven fabric based adhesive layer on at least one of a surface of said first moisture-resistant film and a surface of said second moisture-resistant film.

16 . The method according to claim 8 wherein, after molding said electromagnetic wave suppression sheet, a non-woven fabric based adhesive layer is formed on at least one of a surface of said first moisture-resistant film and a surface of said second moisture-resistant film.

17 . The method according to claim 9 wherein, after molding said electromagnetic wave suppression sheet, a non-woven fabric based adhesive layer is formed on at least one of a surface of said first moisture-resistant film and a surface of said second moisture-resistant film.

18 . The method according to claim 10 wherein, after molding said electromagnetic wave suppression sheet, a non-woven fabric based adhesive layer is formed on at least one of a surface of said first moisture-resistant film and a surface of said second moisture-resistant film

Assignments (2)
CHANGE OF NAME Recorded Apr 15, 2013
From: SONY CHEMICAL & INFORMATION DEVICE CORPORATION
To: DEXERIALS CORPORATION
Reel/Frame 030219/0679 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2009
From: IKEDA, YOSHITO; YAMAMOTO, NORIKAZU
To: SONY CHEMICAL & INFORMATION DEVICE CORPORATION
Reel/Frame 023451/0532 →