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    • 101. 发明专利
    • Composite material for electromagnetic induction heating and cooking implement for electromagnetic induction heating
    • 用于电磁感应加热的电磁感应加热和烹饪实施用复合材料
    • JP2007144132A
    • 2007-06-14
    • JP2006271088
    • 2006-10-02
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • HOSOE AKIHISAINASAWA SHINJIKOMIYAMA MASAHIKOOKAZAKI HIROSHIYAMADA KATSUYA
    • A47J27/00A47J36/02B32B7/02B32B15/01C22C19/00C23C30/00C25D7/00H05B6/02
    • Y02P10/253
    • PROBLEM TO BE SOLVED: To provide a composite material for electromagnetic induction heating and a cooking implement for electromagnetic induction heating, achieving high output even when a heating element layer of a magnetic material layer is made thin in a composite material for electromagnetic induction heating in which a magnetic material layer is formed in at least a part of one side of non-magnetic base material. SOLUTION: This composite material for electromagnetic induction heating is characterized in that a magnetic material layer made of an alloy having high magnetic permeability and a metal material layer made of a metal material (except Cu) having lower electrical resistivity than the magnetic material are alternately formed in order at least in a pair at least on a part of one side of the non-magnetic base material. The magnetic material layer is an alloy plated layer made of nickel alloy, iron alloy or cobalt alloy, and the metal material layer is a metal plated layer made of Ag, Al, Au, Co, Fe, Mg or Ni. The overall thickness of the magnetic material layer is 40 to 100 μm, and the overall thickness of the metal material layer is 3 to 25 μm. This cooking implement for electromagnetic induction heating is formed of the above composite material. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供用于电磁感应加热的复合材料和用于电磁感应加热的烹饪工具,即使当在用于电磁感应的复合材料中使磁性材料层的加热元件层变薄时也实现高输出 在非磁性基材的一侧的至少一部分上形成有磁性体层的加热。 解决方案:用于电磁感应加热的复合材料的特征在于,由磁导率高的合金制成的磁性材料层和由金属材料(除Cu外)制成的金属材料层,其电阻率低于磁性材料 交替形成为非磁性基材的一侧的至少一对的至少一对。 磁性材料层是由镍合金,铁合金或钴合金制成的合金镀层,金属材料层是由Ag,Al,Au,Co,Fe,Mg或Ni制成的金属镀层。 磁性材料层的总体厚度为40〜100μm,金属材料层的总厚度为3〜25μm。 这种用于电磁感应加热的烹饪器具由上述复合材料形成。 版权所有(C)2007,JPO&INPIT
    • 103. 发明专利
    • Cooking container
    • 烹饪容器
    • JP2006314388A
    • 2006-11-24
    • JP2005137442
    • 2005-05-10
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • HOSOE AKIHISAINASAWA SHINJINITTA KOJIMATSUMURA KAZUHIROMATSUSHITA NOBUMASA
    • A47J36/02A47J27/00
    • PROBLEM TO BE SOLVED: To provide a cooking container capable of further reducing the power consumption for saving the energy used in an IH cooker, etc. for more efficiently conducting the energy applied from outside to an object to be cooked by increasing the quantity of heat transferred by radiation from the cooking container to the object to be cooked.
      SOLUTION: Carbon nano-fiber is included in the fluorocarbon resin coating on the inner side of the cooking container in contact with the object to be cooked. The average fiber length of the carbon nano-fiber is preferably at least 0.2 μm, and the content of the carbon nano-fiber is preferably 0.1-10 volume% of the total volume of the solid part forming the fluorocarbon resin coating.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够进一步降低功耗的烹饪容器,以节省IH烹饪器等中使用的能量,以更有效地将从外部施加的能量传导到待烹饪对象,通过增加 通过辐射从烹饪容器传递到待烹饪物体的热量。 解决方案:碳纳米纤维包含在烹饪容器内侧的氟化碳树脂涂层中,与待烹饪物体接触。 碳纳米纤维的平均纤维长度优选为0.2μm以上,碳纳米纤维的含量优选为形成氟碳树脂涂层的固体成分的总体积的0.1〜10体积%。 版权所有(C)2007,JPO&INPIT
    • 105. 发明专利
    • Injection molded circuit component, window frame and package for light emitting diode using same, and manufacturing method the component
    • 注射成型电路组件,窗框和使用其的发光二极管的封装和制造方法组件
    • JP2006210724A
    • 2006-08-10
    • JP2005022095
    • 2005-01-28
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • HOSOE AKIHISANISHIKAWA SHINYAKARIYA TAMIOMIKAGE MASANARIMUTO KOJI
    • H01L33/56H01L33/60H01L33/62
    • H01L2224/48091H01L2224/73265H01L2924/00014
    • PROBLEM TO BE SOLVED: To provide an MID and a manufacturing method thereof wherein two or more metal layers having different constitutions from each other can be so formed on the surface of a single primary molded product by as few processes as possible, as to be able to improve the productivity and the manufacturing yield of the MID more highly than the conventional ones; to provide a window frame manufactured by the MID; and to provide a package, having the MID, for light emitting diodes.
      SOLUTION: In the MID and the manufacturing method thereof, at least two electrically independent conductive layers m1, m2 are so formed on the surface of a primary molded product 4 as to laminate metal layers M1, M2 on the respective conductive layers m1, m2 by plating electrically the formed individual conductive layers m1, m2 by using them as cathodes. Further, in a package P for light emitting diodes, a window frame 1 having the abovementioned constitutions and a substrate 2 for mounting thereon a semiconductor light emitting element LE1 are integrated with each other by joining them to each other via a junction layer 3.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供一种MID及其制造方法,其中可以通过尽可能少的工艺在单个一次成型产品的表面上形成彼此具有不同结构的两个或更多个金属层,如 能够比传统MID更高效地提高MID的生产率和制造成品率; 提供由MID制造的窗框; 并提供具有MID的用于发光二极管的封装。 解决方案:在MID及其制造方法中,在一次成型品4的表面上形成至少两个电独立的导电层m1,m2,以将各导电层m1上的金属层M1,M2层压 ,m2,通过使用它们作为阴极电镀所形成的各个导电层​​m1,m2。 此外,在用于发光二极管的封装P中,具有上述结构的窗框1和用于安装半导体发光元件LE1的基板2通过连接层3彼此连接而彼此集成。 P>版权所有(C)2006,JPO&NCIPI