Invention Grant
US09153761B2 Thermally-conductive sheet, LED mounting substrate, and LED module
有权
导热片,LED安装基板和LED模块
- Patent Title: Thermally-conductive sheet, LED mounting substrate, and LED module
- Patent Title (中): 导热片,LED安装基板和LED模块
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Application No.: US14352445Application Date: 2012-10-03
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Publication No.: US09153761B2Publication Date: 2015-10-06
- Inventor: Yoshinari Takayama , Takafumi Hida , Daisuke Kitagawa , Kenichi Tagawa , Kunio Nagasaki , Ryoichi Matsushima , Susumu Kiyohara , Toshio Uota
- Applicant: Nitto Denko Corporation
- Applicant Address: JP Osaka
- Assignee: Nitto Denko Corporation
- Current Assignee: Nitto Denko Corporation
- Current Assignee Address: JP Osaka
- Agency: Hamre, Schumann, Mueller & Larson, P.C.
- Priority: JP2011-229438 20111019
- International Application: PCT/JP2012/006326 WO 20121003
- International Announcement: WO2013/057889 WO 20130425
- Main IPC: B29C43/02
- IPC: B29C43/02 ; B05D3/02 ; H01L23/48 ; H01L23/28 ; H01L33/64 ; H01L23/373 ; C09K5/14 ; C08L33/08 ; C08L33/10 ; C09D127/12

Abstract:
The present invention provides a thermally-conductive sheet excellent in heat dissipation properties. The thermally-conductive sheet includes a polymer matrix and a thermally-conductive filler dispersed in the polymer matrix. The present invention is a thermally-conductive sheet including a polymer matrix and non-spherical particles of a thermally-conductive filler that are dispersed in the polymer matrix. At least a part of the thermally-conductive filler particles are oriented in a thickness direction of the sheet. When a portion of the sheet where the thermally-conductive filler particles have the highest degree of orientation in the thickness direction of the sheet is defined as a center of orientation, and an axis passing through the center of orientation and perpendicular to sheet surfaces is defined as a central axis of orientation, the thermally-conductive sheet has a region where the thermally-conductive filler particles are oriented toward one point on the central axis of orientation and where the degree of orientation of the thermally-conductive filler particles in the thickness direction of the sheet decreases from the center of orientation toward a periphery of the sheet.
Public/Granted literature
- US20140252404A1 THERMALLY-CONDUCTIVE SHEET, LED MOUNTING SUBSTRATE, AND LED MODULE Public/Granted day:2014-09-11
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