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    • 73. 发明授权
    • Fuel cell separator and fuel cell including same
    • 燃料电池分离器和包括其的燃料电池
    • US08568941B2
    • 2013-10-29
    • US12767507
    • 2010-04-26
    • Shinsuke TakeguchiTakashi NakagawaYoichiro Tsuji
    • Shinsuke TakeguchiTakashi NakagawaYoichiro Tsuji
    • H01M8/04
    • H01M8/0265H01M8/0258H01M8/0263H01M8/0267H01M8/241H01M8/2457H01M8/2483H01M2008/1095
    • A separator for use in a fuel cell of the present disclosure includes: a plate; a first gas manifold hole (51) for supplying a reactant gas, formed to penetrate said plate in a thickness direction thereof; a second gas manifold hole (52) for discharging the reactant gas, formed to penetrate said plate in a thickness direction thereof; one or more groove-like first main gas channels (18) formed on a surface of said plate to have one end connected to said first gas manifold hole (51) and the other end connected to said second gas manifold hole; a groove-like first sub-gas channel (28) formed on the surface of said plate to have one end connected to at least one of said first gas manifold hole (51) and said second gas manifold hole (52); and a groove-like second sub-gas channel (38) formed on the surface of said plate to have one end branching from said first sub-gas channel (28) and the other end being closed.
    • 本公开的燃料电池用隔板包括:板; 第一气体歧管孔(51),用于供应形成为在其厚度方向上穿透所述板的反应气体; 第二气体歧管孔(52),用于排出反应气体,其形成为在其厚度方向上穿透所述板; 形成在所述板的表面上的一个或多个凹槽状的第一主气体通道(18),其一端连接到所述第一气体歧管孔(51),另一端连接到所述第二气体歧管孔; 形成在所述板的表面上的一个沟槽状的第一子气体通道(28),其一端连接到所述第一气体歧管孔(51)和所述第二气体歧管孔(52)中的至少一个; 以及形成在所述板的表面上的槽状第二子气体通道(38),以使得从所述第一子气体通道(28)分支的一端和另一端被封闭。
    • 76. 发明授权
    • Nonvolatile storage element and manufacturing method thereof
    • 非易失性存储元件及其制造方法
    • US08324608B2
    • 2012-12-04
    • US13451265
    • 2012-04-19
    • Takashi NakagawaEun-mi KimYuichi OtaniNaomu Kitano
    • Takashi NakagawaEun-mi KimYuichi OtaniNaomu Kitano
    • H01L47/00
    • H01L45/08H01L45/1233H01L45/1253H01L45/146H01L45/1625H01L45/1641
    • In a variable resistance nonvolatile storage element, an electrode suitable for a variable resistance operation and formed of a metallic nitride layer containing Ti and N is provided. In a nonvolatile storage device including: a first electrode; a second electrode; and a variable resistance layer which is sandwiched between the first electrode and the second electrode and in which a resistance value changes to two different resistance states, at least one of the first electrode and the second electrode is an electrode including a metallic nitride layer containing at least Ti and N, and a mole ratio (N/Ti ratio) between Ti and N in at least a part of the metallic nitride layer, the part being in contact with the variable resistance layer is 1.15 or more and a film density is 4.7 g/cc or more.
    • 在可变电阻非易失性存储元件中,提供了适用于可变电阻操作并由含有Ti和N的金属氮化物层形成的电极。 一种非易失性存储装置,包括:第一电极; 第二电极; 以及可变电阻层,其夹在所述第一电极和所述第二电极之间,并且电阻值变为两个不同的电阻状态,所述第一电极和所述第二电极中的至少一个是包括含有 在金属氮化物层的至少一部分中,最小的Ti和​​N以及Ti和N之间的摩尔比(N / Ti比),与可变电阻层接触的部分为1.15以上,膜密度为4.7 g / cc以上。
    • 79. 发明授权
    • Decoding method and decoding circuit
    • 解码方式和解码电路
    • US08055985B2
    • 2011-11-08
    • US12007861
    • 2008-01-16
    • Takashi Nakagawa
    • Takashi Nakagawa
    • H03M13/00
    • H03M13/1595
    • An approach to dividing syndrome calculations into two steps and serially processing them requires a long time for the syndrome calculations with respect to an entire decoding process. Therefore, there is disclosed an error correction decoding circuit for a playing signal having a code sequence having a decoding unit generating first decoded signal and second decoded signal based on the code sequence and an error correction unit performing error correction for the second signal in response to the first signal.
    • 将综合征计算分为两个步骤并连续处理它们的方法需要相对于整个解码过程的综合征计算的长时间。 因此,公开了一种用于播放信号的纠错解码电路,具有具有产生第一解码信号的解码单元的代码序列和基于代码序列的第二解码信号的代码序列,以及响应于第二信号对第二信号执行错误校正的纠错单元 第一个信号。
    • 80. 发明授权
    • Solid polymer fuel cell
    • 固体聚合物燃料电池
    • US08053140B2
    • 2011-11-08
    • US13126327
    • 2010-09-09
    • Takashi NakagawaToshihiro MatsumotoMiyuki YoshimotoKenji Arai
    • Takashi NakagawaToshihiro MatsumotoMiyuki YoshimotoKenji Arai
    • H01M8/02H01M8/04
    • H01M8/026H01M8/0258H01M8/0265H01M8/0267H01M8/0273H01M8/1004H01M2008/1095
    • Provided is a fuel cell comprising a membrane electrode assembly, a pair of separators that sandwich the membrane electrode assembly therebetween, and a gas inlet distribution part that connects a reactive gas supply manifold hole and a reactive gas flow channel, wherein the gas inlet distribution part comprises n (n is an integer of 2 or more) distribution ribs that divide the gas inlet distribution part into a plurality of spaces, and each have a long axis perpendicular to the long axis of the linear gas flow channel and have two or more slits parallel to the long axis of the linear gas flow channel, when among the ribs, a distribution rib closest to the reactive gas supply manifold hole is defined as a first distribution rib, a distribution rib closest to the reactive gas flow channel is defined as an n-th distribution rib, and among the spaces, a space on the reactive gas supply manifold hole side from the first distribution rib is defined as a diffusion space, the cross-sectional area of the diffusion space is larger than the cross-sectional area of the slit of the first distribution rib.
    • 本发明提供一种燃料电池,其包括膜电极组件,夹在其间的膜电极组件的一对分离器和连接反应性气体供给歧管孔和反应气体流路的气体入口分配部,其中,气体入口分配部 包括将气体入口分配部分分成多个空间的n(n为2以上的整数)分配肋,并且各自具有与线状气体流路的长轴垂直的长轴,并具有两个以上的狭缝 平行于线性气体流动通道的长轴,当肋中最靠近反应性气体供应歧管孔的分配肋被定义为第一分配肋时,最接近反应性气体流动通道的分配肋被定义为 第n分配肋,并且在空间中,将来自第一分配肋的反应性气体供给歧管孔侧的空间定义为扩散空间, 扩散空间的面积大于第一分配肋的狭缝的横截面面积。