Invention Grant
- Patent Title: Thermally conductive sheet and method for manufacturing thermally conductive sheet
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Application No.: US16093299Application Date: 2017-03-29
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Publication No.: US10995196B2Publication Date: 2021-05-04
- Inventor: Takashi Mizuno , Yasuhiro Kawaguchi
- Applicant: KITAGAWA INDUSTRIES CO., LTD.
- Applicant Address: JP Inazawa
- Assignee: KITAGAWA INDUSTRIES CO., LTD.
- Current Assignee: KITAGAWA INDUSTRIES CO., LTD.
- Current Assignee Address: JP Inazawa
- Agency: Wenderoth, Lind & Ponack, L.L.P.
- Priority: JPJP2016-088912 20160427
- International Application: PCT/JP2017/012862 WO 20170329
- International Announcement: WO2017/187870 WO 20171102
- Main IPC: C08K3/22
- IPC: C08K3/22 ; B29C43/06 ; B29C43/46 ; C08J5/18 ; H05K7/20 ; H01L21/48 ; C08J3/18 ; H01L23/373 ; B29C43/00 ; B29C43/18 ; B32B27/08 ; B32B27/18 ; B32B27/30 ; C08K5/00 ; B29K33/00 ; B29K509/02

Abstract:
A thermally conductive sheet including: an acrylic polymer; a high-soda alumina in an amount of 70 to 75% by volume; and a magnesium hydroxide having a particle size smaller than a particle size of the high-soda alumina in an amount of 2.7 to 5.3% by volume, the magnesium hydroxide is coated with a higher fatty acid. The thermally conductive sheet has a compressive force required in a deformation with a compressibility of 20% or less of 200 N or less, and has a thermal resistance of 0.45° C./W or less.
Public/Granted literature
- US20190127550A1 THERMALLY CONDUCTIVE SHEET AND METHOD FOR MANUFACTURING THERMALLY CONDUCTIVE SHEET Public/Granted day:2019-05-02
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