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    • 96. 发明申请
    • MANUFACTURING METHOD AND APPARATUS OF ORGANIC RESIN COATED METAL SHEET
    • 有机树脂涂层金属板的制造方法和装置
    • US20090283200A1
    • 2009-11-19
    • US12306025
    • 2007-06-18
    • Takuji NakamuraHiroshi InazawaNorimasa MaidaYasuhiro Matsubara
    • Takuji NakamuraHiroshi InazawaNorimasa MaidaYasuhiro Matsubara
    • B32B37/02
    • B29C47/025B29C47/0019B29C47/92B29C2947/92019B29C2947/9218B29C2947/92209B29C2947/92314B29C2947/92409B29C2947/92447B32B15/08B32B37/153B32B38/0036B32B38/105B32B41/00B32B2309/02B32B2309/72B32B2310/0843B32B2311/00Y10T156/17Y10T156/1741
    • [Problem] The present invention provides a manufacturing method and apparatus of an organic resin coated metal sheet which can surely remove resin portions projecting from both edges of a metal sheet.[Means for Resolution] A long strip metal sheet 1 is continuously fed using a metal-sheet supply means 13. Temperatures of edge portions 1a, 1b of the metal sheet 1 and a temperature of an approximately central portion 1c of the metal sheet 1 are respectively measured using a metal-sheet temperature measuring means 7 arranged directly upstream of lamination rolls 10. Respectively measured temperature values are inputted to a heating temperature control means 14. An output value calculated by the heating temperature control means is inputted to a metal sheet center portion heating means 3 arranged directly upstream of the T-die 8 so as to heat a widthwise approximately center portion of the metal sheet 1 to a first temperature by the metal sheet center portion heating means 3. Output values calculated by the heating temperature control means 14 are fed to metal sheet edge portion heating means 5 arranged directly upstream of the T-die 8 so as to heat the widthwise edge portions of the metal sheet 1 to a second temperature higher than the first temperature by the metal sheet edge portion heating means 5. A resin film is extruded to pre-rolls 9 such that the resin film projects from both widthwise edge portions of the metal sheet 1. The resin film is applied to the metal sheet 1 by sandwiching and pressure-bonding the metal sheet 1 and the resin film between a pair of lamination rolls 10. Resin portions 2a in a semi-molten state and projecting from both edge portions of the metal sheet are removed by press cutting.
    • 发明内容本发明提供一种有机树脂被覆金属片的制造方法和装置,其可以确实地去除从金属片的两个边缘突出的树脂部分。 [解决方法]使用金属片供给装置13连续地供给长条金属片1.金属片1的边缘部分1a,1b的温度和金属片1的大致中央部分1c的温度是 分别使用布置在层压辊10的正上方的金属板温度测量装置7进行测量。将分别测量的温度值输入到加热温度控制装置14.由加热温度控制装置计算出的输出值被输入到金属板中心 部分加热装置3,其直接设置在T型模具8的上游,以通过金属片中心部分加热装置3将金属片1的横向大致中心部分加热到第一温度。由加热温度控制装置 14被馈送到直接设置在T形模8的上游的金属片边缘部加热装置5,以加热m的宽度方向的边缘部分 通过金属片边缘部加热装置5将等级片1压制成高于第一温度的第二温度。将树脂膜挤压成预辊9,使得树脂膜从金属片1的两个宽度方向的边缘部分突出。 树脂膜通过将金属板1和树脂膜夹在并压接在一对层压辊10之间而被施加到金属板1上。半熔融状态的树脂部分2a和从金属板的两个边缘部分突出的树脂部分 通过冲压切割除去。
    • 97. 发明申请
    • Printed wiring board and method for manufacturing printed wiring board
    • 印刷电路板及制造印刷线路板的方法
    • US20090145630A1
    • 2009-06-11
    • US11719803
    • 2005-11-18
    • Mitsuhiro WatanabeKinji SaijoShinji OhsawaKazuo YoshidaKoji Nanbu
    • Mitsuhiro WatanabeKinji SaijoShinji OhsawaKazuo YoshidaKoji Nanbu
    • H05K1/09H05K1/02B32B37/02
    • H05K3/427H05K1/0265H05K1/116H05K3/062H05K3/20H05K3/4658H05K2201/0352H05K2201/0355H05K2201/0361H05K2201/0376H05K2201/09509H05K2201/09736H05K2203/0361H05K2203/0384H05K2203/1476Y10T156/10
    • To provide a printed wiring board and a method for manufacturing the printed wiring board in which circuit widths of a signal transmission circuit and a power supply circuit or the like, which conventionally require to have greatly different circuit widths, are close to each other as much as possible and substantial miniaturization can be achieved. In order to achieve this object, a printed wiring board obtained by etching a metal-clad laminate including a conductive layer and an insulating layer is employed, in which a first circuit and a second circuit having different thicknesses formed in a same reference plane coexist. In addition, it is characterized in that a thicker circuit of the first circuit or the second circuit has a clad-like configuration in which three layers of a first copper layer/a different kind of metal layer/a second copper layer are sequentially stacked. Further, a manufacture of the printed wiring board is characterized in that a clad composite material in which three layers of a first copper layer/a different kind of metal layer/a second copper layer are sequentially stacked is a start material, and selective etching characteristic between the different kind of metal layer and the copper layer is effectively utilized.
    • 为了提供印刷电路板和制造印刷电路板的方法,其中传统上需要具有大大不同的电路宽度的信号传输电路和电源电路等的电路宽度彼此接近 并且可以实现实质的小型化。 为了实现该目的,采用通过蚀刻包括导电层和绝缘层的覆金属层压板获得的印刷布线板,其中形成在相同参考平面中的具有不同厚度的第一电路和第二电路共存。 此外,其特征在于,第一电路或第二电路的较厚电路具有层叠结构,其中第一铜层/不同种类的金属层/第二铜层三层依次层叠。 此外,印刷布线板的制造的特征在于,其中顺序层叠有三层第一铜层/不同种类的金属层/第二铜层的复合材料是起始材料,并且选择性蚀刻特性 在不同种类的金属层和铜层之间有效地利用。
    • 98. 发明申请
    • Oligonucleotide probes and microarray for determining genome types
    • 用于确定基因组类型的寡核苷酸探针和微阵列
    • US20080188376A1
    • 2008-08-07
    • US11987919
    • 2007-12-05
    • Hiroshi IkegayaKoichi SakuradaKoichi HirayamaKenji Isogai
    • Hiroshi IkegayaKoichi SakuradaKoichi HirayamaKenji Isogai
    • C40B30/04C07H21/00C40B40/08C12Q1/70
    • C12Q1/701C07B2200/11C40B30/04C40B40/08
    • According to the present invention, a means of estimating the place of origin of a test subject by quickly and conveniently determining the genome type of JC virus infecting a test subject is provided. The present invention relates to a set of oligonucleotide probes for determining the genome type of JC virus infecting a test subject, such set containing: oligonucleotide probes (a-1) and (a-2); oligonucleotide probes (b-1) and (b-2); oligonucleotide probes (c-1) and (c-2); oligonucleotide probes (d-1), (d-2), (d-3), and (d-4); oligonucleotide probes (e-1), (e-2), and (e-3); oligonucleotide probes (f-1), (f-1), and (f-3); oligonucleotide probes (g-1), (g-2), and (g-3); oligonucleotide probes (h-1), (h-2), (h-3), and (h-4); oligonucleotide probes (i-1) and (i-2); oligonucleotide probes (j-1), (j-2), and (j-3); oligonucleotide probes (k-1), (k-2), and (k-3); and oligonucleotide probes (l-1) and (l-2).
    • 根据本发明,提供了通过快速方便地确定感染受试者的JC病毒的基因组类型来估计测试对象的原点的方法。 本发明涉及用于测定感染受试者的JC病毒的基因组类型的一组寡核苷酸探针,该组包含:寡核苷酸探针(a-1)和(a-2); 寡核苷酸探针(b-1)和(b-2); 寡核苷酸探针(c-1)和(c-2); 寡核苷酸探针(d-1),(d-2),(d-3)和(d-4) 寡核苷酸探针(e-1),(e-2)和(e-3); 寡核苷酸探针(f-1),(f-1)和(f-3); 寡核苷酸探针(g-1),(g-2)和(g-3); 寡核苷酸探针(h-1),(h-2),(h-3)和(h-4); 寡核苷酸探针(i-1)和(i-2); 寡核苷酸探针(j-1),(j-2)和(j-3); 寡核苷酸探针(k-1),(k-2)和(k-3); 和寡核苷酸探针(1-1)和(1-2)。