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    • 2. 发明专利
    • Composite structure of resin and brittle material and production method used for it, and electronic device
    • 树脂和脆性材料的复合结构及其用于电子设备的生产方法
    • JP2006175375A
    • 2006-07-06
    • JP2004372127
    • 2004-12-22
    • National Institute Of Advanced Industrial & TechnologySony Corpソニー株式会社独立行政法人産業技術総合研究所
    • MIYAI SEIICHIOKAYAMA KATSUMIKOBAYASHI KAORUKATO YOSHIHIROITO YOSHIKIAKETO JUN
    • B05D7/24B32B27/00C23C24/04
    • PROBLEM TO BE SOLVED: To provide a composite composition enabling a brittle material layer to be stably formed on a resin material, and also to provide a production method used for it. SOLUTION: The composite composition of the resin material and the brittle material has a base layer comprising an adhesive material adhered to the surface of a resin substrate and a polycrystalline brittle material layer on a part or a whole of the base layer. In the production method of the composite composition of the resin material and the brittle material, fine particles of the brittle material harder than the adhesive material are made to bite into the surface of the adhesive material adhered to the surface of the resin material to form the basic layer. The fine particles of the brittle material are made to collide with the base layer at high speed and are deformed or crushed by the impact of the collision. The polycrystalline brittle material layer is formed on the base layer by recombining the fine particles through an active newly prepared surface caused by the deformation or the crush. COPYRIGHT: (C)2006,JPO&NCIPI
    • 待解决的问题:提供使脆性材料层稳定地形成在树脂材料上的复合组合物,并且还提供了用于其的生产方法。 解决方案:树脂材料和脆性材料的复合组合物具有包括粘附在树脂基材表面上的粘合材料和基底层的整体上的多晶脆性材料层的基层。 在树脂材料和脆性材料的复合组合物的制造方法中,将比粘合剂材料硬的脆性材料的细小颗粒咬入粘附到树脂材料表面的粘合剂材料的表面,形成 基本层 使脆性材料的细颗粒高速碰撞基底层,并且由于碰撞的冲击而变形或破碎。 通过由变形或粉碎引起的活性新制备的表面将微粒重新组合,在基底层上形成多晶脆性材料层。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Magnetic shielding member, magnetic shielding structure, and magnetic memory device
    • 磁屏蔽构件,磁屏蔽结构和磁记忆装置
    • JP2005236169A
    • 2005-09-02
    • JP2004045859
    • 2004-02-23
    • Sony Corpソニー株式会社
    • KATO YOSHIHIROITO YOSHIKIHIRATA TATSUJIROUOKAYAMA KATSUMIKOBAYASHI KAORU
    • H01L23/00G11C11/16H01L21/8246H01L23/552H01L27/105
    • H01L23/552G11C11/16H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To obtain a high-performance magnetic shielding effect suitable for a magnetic device such as MRAM by lightening magnetic saturation.
      SOLUTION: A magnetic sealing structure is suitable for a magnetic memory device. In the magnetic memory device, a magnetization pinned layer having a fixed magnetization direction and a magnetic layer (storage layer) having a variable magnetization direction are laminated with a tunnel barrier layer disposed therebetween to form a TMR (Tunnel MagnetoResistance) element, and a magnetic random access memory (MRAM) 30 made of the TMR element is sealed with a sealing material 32 such as resin. In the magnetic sealing structure, planar or cross-sectional shapes of magnetic shielding plates 62A, 62B provided on the sealing material 32 for magnetically sealing the MRAM 30 are made not to be perpendicular to a side nearly parallel to a side nearly normal to the direction of an external magnetic field, in particular, to be circular, polygonal or the like. Consequently, the magnetic saturation of the magnetic shielding plate can be relaxed and a magnetic shielding effect can be held.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:通过减轻磁饱和度,获得适合于诸如MRAM的磁性装置的高性能磁屏蔽效果。 解决方案:磁性密封结构适用于磁存储器件。 在磁存储器件中,具有固定的磁化方向的磁化固定层和具有可变的磁化方向的磁性层(存储层)层叠有设置在它们之间的隧道势垒层,以形成TMR(隧道磁阻)元件,并且磁 由TMR元件制成的随机存取存储器(MRAM)30用诸如树脂的密封材料32密封。 在磁性密封结构中,设置在用于磁性密封MRAM 30的密封材料32上的磁屏蔽板62A,62B的平面或横截面形状不与垂直于几乎垂直于方向的一侧垂直 的外部磁场,特别是圆形,多边形等。 因此,可以松弛磁屏蔽板的磁饱和,并且可以保持磁屏蔽效果。 版权所有(C)2005,JPO&NCIPI
    • 10. 发明专利
    • Magnetic film
    • 磁性膜
    • JP2003297629A
    • 2003-10-17
    • JP2002097176
    • 2002-03-29
    • Koichiro InomataSony CorpSatoshi Sugimotoソニー株式会社諭 杉本浩一郎 猪俣
    • OKAYAMA KATSUMIKOBAYASHI KAORUINOMATA KOICHIROSUGIMOTO SATOSHIAKETO JUN
    • H01F1/00H01F1/34H01F10/20H01F17/06H03H7/01H05K9/00
    • PROBLEM TO BE SOLVED: To provide a magnetic film having high electromagnetic wave absorbing performance, even in a high frequency band. SOLUTION: This magnetic film 30, formed by the AD method by using an NiZn ferrite powder and an MnZn ferrite powder as a powdered material, turns to have a nano-granular structure, in which crystal grains are constituted of an NiZn ferrite 31 and an MnZn ferrite 32 and grain boundaries are constituted of an NiZn/MnZn ferrite 33. Since both the crystal grains and grain boundaries of this magnetic film 30 are formed of the oxide magnetic materials having high electrical resistances, the electrical resistance of this film 30 can be made higher, as compared with the conventional magnetic film containing metallic magnetic materials. Consequently, the permeability and high-frequency characteristics of this film 30 can be improved. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:即使在高频带中,也提供具有高电磁波吸收性能的磁性膜。 解决方案:通过使用NiZn铁氧体粉末和MnZn铁氧体粉末作为粉末材料通过AD方法形成的磁性膜30变成具有纳米粒状结构,其中晶粒由NiZn铁氧体构成 31和MnZn铁氧体32和晶界由NiZn / MnZn铁氧体33构成。由于该磁性膜30的晶粒和晶界都由具有高电阻的氧化物磁性材料形成,所以该膜的电阻 与传统的含有金属磁性材料的磁性膜相比,可以制得较高的30。 因此,可以提高该膜30的导磁率和高频特性。 版权所有(C)2004,JPO