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    • 61. 发明申请
    • EASY-TO-ASSEMBLE STRUCTURE OF POWER CONVERTER
    • 电力转换器易于组装的结构
    • US20120300521A1
    • 2012-11-29
    • US13480662
    • 2012-05-25
    • Kenshiro HIDASatoshi IguchiKosuke Tokunaga
    • Kenshiro HIDASatoshi IguchiKosuke Tokunaga
    • H02M7/5387
    • H05K7/1432H02M7/003H05K7/20927
    • An easy-to-assemble structure of a power converter includes a control circuit board, semiconductor modules with power terminals and control terminals extending therefrom, and a capacitor to smooth voltage to be applied to the semiconductor modules. The capacitor includes capacitor devices coupled to the power terminals and voltage measuring terminals joined to electrodes of the capacitor devices. The control terminals and the voltage measuring terminals extend in a direction normal to the surface of the control circuit board. This permits the connections of the voltage measuring terminals and the control terminals with the control circuit board to be achieved simultaneously by bringing them close to the control circuit board from the normal direction.
    • 功率转换器的易于组装结构包括控制电路板,具有电源端子的半导体模块和从其延伸的控制端子,以及用于平滑施加到半导体模块的电压的电容器。 电容器包括耦合到电源端子的电容器件和连接到电容器器件的电极的电压测量端子。 控制端子和电压测量端子沿垂直于控制电路板表面的方向延伸。 这允许电压测量端子和控制端子与控制电路板的连接通过使其从正常方向接近控制电路板而同时实现。
    • 62. 发明授权
    • Membrane-electrode assembly and fuel cell
    • 膜 - 电极组件和燃料电池
    • US07718303B2
    • 2010-05-18
    • US11659539
    • 2005-08-17
    • Satoshi AoyamaSatoshi IguchiMakoto Taniguchi
    • Satoshi AoyamaSatoshi IguchiMakoto Taniguchi
    • H01M4/00
    • C01B3/501C01B2203/0405H01M4/9033H01M4/9041H01M4/94H01M8/0232H01M8/0267H01M8/0297H01M8/241H01M8/2457H01M8/2483H01M2008/1293
    • An electrolyte layer (121) and a hydrogen-permeable metal layer (122) are fitted in a fitting portion (131) of a low thermal expansion member (130), and a cathode electrode (110) is provided on the electrolyte layer (121). Gas separators (100, 150) are provided such that a low thermal expansion member (130) is held between the gas separators (100, 150). Since the low thermal expansion member (130) is made of metal which has a thermal expansion coefficient lower than that of the hydrogen-permeable metal layer (122), thermal expansion of the hydrogen-permeable metal layer (122) can be suppressed. Accordingly, it is possible to reduce shear stress applied to an interface between the electrolyte layer (121) and the hydrogen-permeable metal layer (122) due to the thermal expansion. It is possible to suppress separation of the electrolyte layer (121) from the hydrogen-permeable metal layer (122) and occurrence of a crack in the electrolyte layer (121).
    • 电解质层(121)和透氢性金属层(122)嵌合在低热膨胀部件(130)的嵌合部(131)中,阴极电极(110)设置在电解质层 )。 气体分离器(100,150)被设置成使得低热膨胀构件(130)保持在气体分离器(100,150)之间。 由于低热膨胀构件(130)由热膨胀系数低于透氢性金属层(122)的热膨胀系数的金属制成,所以可以抑制透氢性金属层(122)的热膨胀。 因此,由于热膨胀,可以减少施加到电解质层(121)和氢可渗透金属层(122)之间的界面的剪切应力。 可以抑制电解质层(121)与透氢性金属层(122)的分离,并且在电解质层(121)中产生裂纹。
    • 65. 发明申请
    • Dispenser, reagent dispenser and sample analyzer
    • 分配器,试剂分配器和样品分析仪
    • US20080044311A1
    • 2008-02-21
    • US11893919
    • 2007-08-17
    • Satoshi IguchiTakashi YamatoNobuhiro KitagawaAkio Toyoda
    • Satoshi IguchiTakashi YamatoNobuhiro KitagawaAkio Toyoda
    • G01N35/00B67D5/00
    • G01N35/1009G01N35/025G01N35/1002G01N2035/00425G05D23/1919G05D23/24
    • The present invention is to present a dispenser which is capable of heating a liquid to an approximately constant temperature in the same time regardless of an aspiration amount of the liquid. The dispenser comprises a liquid holder for holding a liquid; aspiration amount information obtaining means for obtaining aspiration amount information indicating an aspiration amount of the liquid; an aspiration-discharge part for aspirating the aspiration amount of the liquid indicated by the obtained aspiration amount information into the liquid holder and discharging the liquid from the liquid holder; a heater for heating the liquid held by the liquid holder; a temperature sensor for detecting a temperature of the liquid held by the liquid holder; target temperature determining means for determining a target temperature of the liquid based on the aspiration amount of the liquid indicated by the obtained aspiration amount information; and controlling means for controlling the heater so as to conform the temperature detected by the temperature sensor to the target temperature.
    • 本发明是提供一种分配器,其能够在液体的吸入量无论在同一时间内将液体加热到近似恒定的温度。 分配器包括用于保持液体的液体保持器; 抽吸量信息获取装置,用于获得指示液体抽吸量的抽吸量信息; 抽吸排出部,用于将由所获取的吸液量信息指示的液体的吸入量吸入液体保持器并从液体保持器排出液体; 用于加热由液体保持器保持的液体的加热器; 用于检测由液体保持器保持的液体的温度的温度传感器; 目标温度确定装置,用于基于由所获得的抽吸量信息指示的液体的抽吸量来确定液体的目标温度; 以及用于控制加热器以使温度传感器检测的温度与目标温度一致的控制装置。
    • 69. 发明授权
    • Fuel gas production system for fuel cells
    • 燃料电池燃气生产系统
    • US06656617B2
    • 2003-12-02
    • US09758387
    • 2001-01-12
    • Satoshi AoyamaHiromichi SatoToshihide NakataSatoshi Iguchi
    • Satoshi AoyamaHiromichi SatoToshihide NakataSatoshi Iguchi
    • H01M804
    • H01M8/2483C01B3/384C01B3/48C01B3/505C01B2203/0233C01B2203/0283C01B2203/041C01B2203/044C01B2203/047C01B2203/066C01B2203/1076H01M8/0258H01M8/0267H01M8/04223H01M8/04225H01M8/04268H01M8/0631H01M8/0662H01M8/0668H01M8/0687
    • The technique of the present invention enhances the separation efficiency and the production efficiency of hydrogen in a hydrogen production system for fuel cells, while reducing the size of the whole fuel gas production system. In the fuel gas production system of the present invention, a hydrocarbon compound is subjected to multi-step chemical processes including a reforming reaction, a shift reaction, and a CO oxidation to give a hydrogen-rich fuel gas. Gaseous hydrogen produced through the reforming reaction is separated by a hydrogen separation membrane having selective permeability to hydrogen. The residual gas after the separation of hydrogen has a low hydrogen partial pressure and undergoes the shift reaction at the accelerated rate. The hydrogen-rich processed gas obtained through the shift reaction and the CO oxidation joins with the separated hydrogen and is supplied to fuel cells. A purge gas for carrying out the hydrogen is introduced into a separation unit of hydrogen, in order to lower the hydrogen partial pressure and thereby enhance the separation efficiency of hydrogen. The residual gas after the separation of hydrogen undergoes combustion and is subsequently used as the purge gas
    • 本发明的技术提高了燃料电池的氢生产系统中的氢的分离效率和生产效率,同时减小了整个燃料气体生产系统的尺寸。 在本发明的燃料气体生产系统中,烃化合物进行包括重整反应,转移反应和CO氧化在内的多步化学处理,得到富氢燃料气体。 通过重整反应产生的气态氢气通过对氢具有选择性渗透性的氢分离膜分离。 氢分离后的残留气体具有低的氢分压,并以加速速率进行转化反应。 通过转移反应和CO氧化获得的富氢处理气体与分离的氢气连接并供应到燃料电池。 用于进行氢气的吹扫气体被引入到氢的分离单元中,以便降低氢气分压,从而提高氢的分离效率。 氢气分离后的残余气体经历燃烧,随后用作净化气体