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    • 111. 发明申请
    • FUEL CELL MODULE AND FUEL CELL STACK
    • 燃料电池模块和燃料电池堆
    • US20140045101A1
    • 2014-02-13
    • US14059571
    • 2013-10-22
    • Kenji SatoHiroo YoshikawaAkito Kawasumi
    • Kenji SatoHiroo YoshikawaAkito Kawasumi
    • H01M8/02
    • H01M8/0286H01M8/0278H01M2008/1095H01M2250/20Y02T90/32
    • A fuel cell stack and fuel cell modules that constitute such a fuel cell stack are provided, wherein adhesion of foreign materials to an electrolyte membrane of each fuel cell can be effectively prevented, and highly efficient maintenance is possible by replacing a fuel cell with degraded performance out of the fuel cell stack. A plurality of fuel cells 10 each having a membrane electrode assembly 1, gas-permeable layers 2,3,5,6 on the anode and cathode sides, sandwiching the membrane electrode assembly 1 therebetween, and a separator 7 on at least one of the anode and cathode sides are stacked. A gasket 8 is integrally molded with peripheral edges of the membrane electrode assembly 1 and the gas-permeable layers 2,3,5,6 of each of the stacked cells, whereby a single fuel cell module 100 is formed. Stacking and compressing such modules 100, . . . can form a fuel cell stack.
    • 提供构成这样的燃料电池堆的燃料电池堆和燃料电池模块,其中可以有效地防止异物粘附到每个燃料电池的电解质膜,并且可以通过以降低的性能替换燃料电池来进行高效的维护 离开燃料电池堆。 多个燃料电池10分别具有膜电极组件1,在阳极侧和阴极侧的透气性层2,3,5,6,夹在其间的膜电极组件1和分离器7, 阳极和阴极侧面堆叠。 垫圈8与膜电极组件1的周边边缘和每个堆叠的电池的透气层2,3,5,6整体模制,由此形成单个燃料电池模块100。 堆叠和压缩这些模块100, 。 。 可以形成燃料电池堆。
    • 112. 发明申请
    • OPTICAL SIGNAL CONTROL DEVICE AND OPTICAL SIGNAL CONTROL METHOD
    • 光信号控制装置和光信号控制方法
    • US20130272700A1
    • 2013-10-17
    • US13991936
    • 2011-12-06
    • Mineto SatohTomoaki KatoKenji Sato
    • Mineto SatohTomoaki KatoKenji Sato
    • H04B10/516
    • H04B10/516H04B10/50
    • An optical signal control device includes an optical signal control unit and a drive circuit. The optical signal control unit includes m number of optical waveguides for propagating carrier light and (m×n) number of interaction regions, n number of interaction regions formed on each of the optical waveguides. The drive circuit includes (m×n) number of phase control units. The (m×n) number of phase control unit output a data signal for controlling the action of the (m×n) number of interaction regions to each of the (m×n) number of interaction regions. Each of the (m×n) number of phase control units outputs the data signal so that timing when the carrier light propagates to the interaction region to output the data signal and timing when the data signal arrives at the interaction region are synchronized. One of m and n is two or more.
    • 光信号控制装置包括光信号控制单元和驱动电路。 光信号控制单元包括m个用于传播载波光的光波导和(m×n)个相互作用区,在每个光波导上形成n个相互作用区。 驱动电路包括(m×n)个相位控制单元。 (m×n)个相位控制单元输出用于控制(m×n)个数量的交互区域对(m×n)个交互区域的数量的动作的数据信号。 (m×n)个相位控制单元中的每一个输出数据信号,使得载波传播到交互区域以输出数据信号的定时和数据信号到达交互区域时的定时同步。 m和n之一是两个或更多。
    • 113. 发明申请
    • FUEL CELL AND FUEL CELL STACK
    • 燃料电池和燃料电池堆
    • US20130260281A1
    • 2013-10-03
    • US13991598
    • 2011-12-05
    • Kenji Sato
    • Kenji Sato
    • H01M8/04
    • H01M8/04746H01M8/006H01M8/0232H01M8/0271H01M8/0273H01M8/2465H01M8/2483H01M2008/1095Y02E60/50
    • A fuel cell (2) includes: a membrane electrode assembly (6) having an electrolyte membrane (3), an anode (5) disposed on one side of the electrolyte membrane, and a cathode (4) disposed on the other side thereof; a porous passage (8) that is disposed on at least one side of the membrane electrode assembly (6), and through which a fuel gas is supplied to the anode (5) or an oxidant gas is supplied to the cathode (4); and a manifold portion (20a), through which the fuel gas or the oxidant gas is supplied to the porous passage (8), and that is provided so as to pass through the fuel cell (2) in a stacking direction, in which the electrolyte membrane (3), the anode (5), the cathode (4), and the porous passage (8) are stacked, wherein a manifold portion-side end portion of the porous passage (8) has a gas inlet at at least one of stacking surfaces of the porous passage (8) that face in the stacking direction.
    • 燃料电池(2)包括:具有电解质膜(3)的膜电极组件(6),设置在电解质膜的一侧的阳极(5)和设置在电解质膜的另一侧的阴极(4) 设置在所述膜电极组件(6)的至少一侧的多孔通路(8),向所述阳极(5)供给燃料气体或向所述阴极(4)供给氧化剂气体。 以及歧管部分(20a),燃料气体或氧化剂气体通过该歧管部分供应到多孔通道(8),并且被设置为沿堆叠方向通过燃料电池(2),其中 电解质膜(3),阳极(5),阴极(4)和多孔通道(8),其中多孔通道(8)的歧管部分侧端部至少具有气体入口 所述多孔通道(8)的堆叠方向之一是沿堆叠方向。
    • 116. 发明授权
    • Inertial sensor, inertial sensor device and manufacturing method of the same
    • 惯性传感器,惯性传感器装置及其制造方法相同
    • US08309385B2
    • 2012-11-13
    • US12984133
    • 2011-01-04
    • Masayuki MatsunagaKenji Sato
    • Masayuki MatsunagaKenji Sato
    • H01L21/54H01L23/047
    • G01P1/023G01C19/56H01L2924/181H05K3/3426Y10T29/49002H01L2924/00012
    • An inertial sensor, comprises a detection element detecting an amount of a physical quantity in a detection axis direction, a plurality of support members having flexibility and supporting nearly a center of the detection element, and a package substrate housing the detection element and the plurality of support members. In a case when an X-axis is defined as an extending direction of the plurality of support members, a Y-axis is perpendicular to the X-axis in a plane including the detection element, and a Z-axis is perpendicular to the X-axis and the Y-axis, one of load components in a direction of the Y-axis of the detection member applied to the plurality of support members is nearly equal to other among the plurality of support members, and one of load components in a direction of the Z-axis is nearly equal to the other among the plurality of support members.
    • 一种惯性传感器,包括检测检测轴方向的物理量的检测元件,具有柔性并支撑检测元件的近似中心的多个支撑部件,以及容纳检测元件的多个 支持会员 在X轴被定义为多个支撑构件的延伸方向的情况下,Y轴在包括检测元件的平面中与X轴垂直,Z轴垂直于X 轴和Y轴,施加到多个支撑构件的检测构件的Y轴方向上的负载分量之一几乎等于多个支撑构件中的其它载荷分量,并且一个载荷分量 Z轴的方向几乎等于多个支撑构件中的另一个。
    • 119. 发明申请
    • GAS TURBINE COMBUSTION BURNER
    • 燃气涡轮燃烧器
    • US20120167569A1
    • 2012-07-05
    • US13395763
    • 2010-11-08
    • Satoshi TakiguchiShinji AkamatsuKenji SatoNaoki Abe
    • Satoshi TakiguchiShinji AkamatsuKenji SatoNaoki Abe
    • F23R3/28
    • F23R3/14F23C2900/07001F23D2900/00003F23D2900/00008F23D2900/14004F23D2900/14701F23R3/286F23R3/36
    • Provided is a gas turbine combustion burner capable of uniformly ejecting fuel from ejection holes for reduced NOx emissions of gas turbine combustors. The gas turbine combustion burner includes a plurality of swirling vanes (20) for ejecting fuel from fuel ejection holes (23, 24) into air or a mixture of air and fuel flowing from an upstream side while applying a swirling force to form a swirling mixed airflow and a nozzle (21) having the swirling vanes (20) arranged radially on an outer circumferential surface thereof and having a first fuel passage (26), through which the fuel is guided to the fuel ejection holes (23, 24), provided therein, a cavity (25) communicating with the fuel ejection holes (23, 24) is provided in each swirling vane (20), and at least two second fuel passages (27) are provided between the cavity (25) and the first fuel passage (26) along an axial direction.
    • 提供一种燃气轮机燃烧器,其能够从用于减少燃气轮机燃烧器的NOx排放的喷射孔均匀地排出燃料。 燃气轮机燃烧器包括多个旋转叶片(20),用于将燃料从燃料喷射孔(23,24)喷射到空气中或从上游侧流出的空气和燃料的混合物,同时施加旋转力以形成旋转混合 气流和具有涡旋叶片(20)的喷嘴(21),径向布置在其外圆周表面上并且具有第一燃料通道(26),燃料被引导到燃料喷射孔(23,24),所述第一燃料通道 在每个回旋叶片(20)中设置有与燃料喷射孔(23,24)连通的空腔(25),并且至少两个第二燃料通道(27)设置在空腔(25)和第一燃料 通道(26)。
    • 120. 发明授权
    • Information processing apparatus with multiple power receiving units
    • 具有多个电力接收单元的信息处理装置
    • US08193663B2
    • 2012-06-05
    • US12236944
    • 2008-09-24
    • Kenji Sato
    • Kenji Sato
    • H02J1/00H02J3/00
    • G06F1/263G06F1/266G06F1/3203G06F1/3284H02J9/061Y02D10/159Y10T307/62Y10T307/696Y10T307/735
    • An information processing apparatus is provided that has a processor for performing an information processing, a power supply unit for receiving an external electric power from an external electric power source and for supplying the external electric power to the processor, a first power receiving unit connected to a first communication medium, the first power receiving unit receiving a first electric power from the first communication medium and supplying the first electric power to the processor, a second power receiving unit connected to a second communication medium, the second power receiving unit receiving a second electric power from the second communication medium and supplying the second electric power to the processor, an electric power detection unit for detecting the first electric power or the second electric power, and a switching unit for supplying one of the external electric power, the first electric power, and the second electric power to the processor according to a result of detection made by the electric power detection unit.
    • 提供一种信息处理装置,其具有用于执行信息处理的处理器,用于从外部电源接收外部电力并将外部电力提供给处理器的电源单元,连接到 第一通信介质,第一电力接收单元从第一通信介质接收第一电力并向处理器提供第一电力;第二电力接收单元,连接到第二通信介质,第二电力接收单元接收第二电力;第二电力接收单元, 来自第二通信介质的电力并将第二电力供应到处理器;检测第一电力或第二电力的电力检测单元;以及用于提供外部电力之一的开关单元,第一电力 电源和根据a的处理器的第二电力 由电力检测单元进行的检测结果。