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    • 2. 发明专利
    • Pressure contact semiconductor device and converter using same
    • 压力接触半导体器件和转换器
    • JP2005209784A
    • 2005-08-04
    • JP2004013046
    • 2004-01-21
    • Hitachi LtdKansai Electric Power Co Inc:The株式会社日立製作所関西電力株式会社
    • MIYAUCHI AKIHIROSUGAWARA YOSHITAKATAKAYAMA DAISUKE
    • H01L21/52
    • PROBLEM TO BE SOLVED: To provide a pressure contact semiconductor device which can hold a uniform pressurizing status in the area of a pressure contact package, in which a gap is not caused between the semiconductor element and a main electrode plate, even if a temperature expansion change or the change of an applied pressure occurs at a pressure sealing package in use, and which has high reliability; and to provide a power converter.
      SOLUTION: A flat package is provided with an elastic body 105 and a metallic mesh sheet 107 between a first main electrode plate 106 and a first intermediate electrode 103. Thus, a highly reliable pressure contact package can be obtained wherein no gap exists between a semiconductor element and a main electrode plate to temperature change or a change in applied pressure when a pressure contact package is used, and a converter can also be obtained.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:为了提供一种压接触点半导体装置,其能够在压接部件的区域内保持均匀的加压状态,其中在半导体元件和主电极板之间不产生间隙,即使 在使用的压力密封包装中发生温度膨胀变化或施加压力的变化,其可靠性高; 并提供一个电源转换器。 解决方案:扁平封装在第一主电极板106和第一中间电极103之间设置有弹性体105和金属网片107.因此,可以获得高度可靠的压力接触封装,其中不存在间隙 半导体元件和主电极板之间的温度变化或使用压力接触封装时的施加压力的变化,并且还可以获得转换器。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • Imprinting stamper and imprinting method
    • 冲压件和冲压方法
    • JP2010005972A
    • 2010-01-14
    • JP2008169772
    • 2008-06-30
    • Hitachi Ltd株式会社日立製作所
    • SASAKI YOSHIOANDO TAKUJIOGINO MASAHIKOMIYAUCHI AKIHIRO
    • B29C59/02B29C33/38B29L11/00H01L21/027
    • PROBLEM TO BE SOLVED: To provide a durable stamper and a transfer method that can reduce a defective area of pattern transfer following local protrusions of a substrate to be transferred.
      SOLUTION: This imprinting stamper 101 formed with rugged shape on the surface includes a resin pattern layer 102 formed with the rugged shape; a resin buffer layer 103 arranged on the back face of the pattern layer 102; and a base material layer 104 arranged on the back face of the buffer layer 103. The Young's modulus of the buffer layer 103 is smaller than that of the pattern layer 102, and the Young's modulus of the base material layer 104 is larger than that of the buffer layer 103.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种耐用的压模和转印方法,其可以减少在待转印的基板的局部突起之后的图案转印的缺陷区域。 在表面上形成有凹凸形状的该压印模具101包括形成有凹凸形状的树脂图案层102。 布置在图案层102的背面上的树脂缓冲层103; 以及布置在缓冲层103的背面上的基材层104.缓冲层103的杨氏模量小于图案层102的杨氏模量,并且基材层104的杨氏模量大于 缓冲层103.版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Nonaqueous electrolyte secondary battery and its manufacturing method
    • 非电解电解质二次电池及其制造方法
    • JP2005174563A
    • 2005-06-30
    • JP2003408383
    • 2003-12-08
    • Hitachi Ltd株式会社日立製作所
    • NISHIMURA SHINOKUMURA SOUBUNMIYAUCHI AKIHIRO
    • H01M10/05H01M10/052H01M10/0565H01M10/058H01M10/40
    • Y02P70/54
    • PROBLEM TO BE SOLVED: To provide a nonaqueous electrolyte battery composed by interlaying a polymer electrolyte membrane having large irregularity on a surface, extremely stereoscopic and having a large surface area in applying a solid electrolyte to the battery; and to provide its manufacturing method.
      SOLUTION: In a secondary battery provided with an oxide containing lithium in a positive electrode, a substance capable of doping/dedoping lithium in a negative electrode, and an electrolyte containing a lithium salt, this nonaqueous electrolyte secondary battery is so structured that the polymer electrolyte membrane containing the lithium salt is interlaid between the positive electrode and the negative electrode; and the polymer electrolyte membrane has a minute projection group formed by plastic working on one surface or both surfaces thereof.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决方案:提供一种非水电解质电池,其通过在表面上具有大的不规则性的高分子电解质膜,在将固体电解质施加到电池上时具有极高的立体感和大的表面积; 并提供其制造方法。 解决方案:该非水电解质二次电池在具有在正极中含锂的氧化物的二次电池中,能够在负极中掺杂/脱掺杂锂的物质和含有锂盐的电解质构成, 含有锂盐的高分子电解质膜被夹在正极和负极之间; 并且高分子电解质膜具有通过塑料加工形成在其一个表面或两个表面上的微小突起组。 版权所有(C)2005,JPO&NCIPI