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    • 14. 发明授权
    • Fuel cell system
    • 燃料电池系统
    • US08293416B2
    • 2012-10-23
    • US12298421
    • 2007-04-25
    • Susumu KobayashiSusumu Hatano
    • Susumu KobayashiSusumu Hatano
    • H01M8/04
    • H01M8/0612H01M8/04014H01M8/04029H01M8/04141H01M8/04164H01M8/04291H01M2008/1095
    • A fuel cell system includes at least: a hydrogen generator (4) which is supplied with a raw material to generate a fuel gas containing hydrogen; a humidifier (5) which is supplied with the fuel gas, generated in the hydrogen generator, to humidify the fuel gas by utilizing heat energy and an off gas supplied thereto; and a fuel cell (8) which is supplied with the fuel gas humidified in the humidifier and an oxidizing gas to generate electric power while discharging the heat energy and the off gas, and further includes a condenser (6) which cools down steam of the off gas, discharged from the fuel cell, by heat exchange with a cooling medium to convert the steam into condensed water, and supplies the condensed water to the humidifier to humidify the fuel cell. With this, the present invention provides a durable, reliable, and cheap fuel cell system capable of adequately and surely humidifying the fuel gas supplied to a polymer electrolyte fuel cell by a simple configuration using the humidifier without disposing a particular exclusive auxiliary device.
    • 燃料电池系统至少包括:氢气发生器(4),其供应原料以产生含氢的燃料气体; 在氢发生器中产生的燃料气体加湿器(5)通过利用供给的热能和废气来加热燃料气体; 以及燃料电池(8),其供给在加湿器中加湿的燃料气体和氧化气体,以在排出热能和废气的同时产生电力,并且还包括冷凝器(6),冷凝器 从燃料电池排出的废气通过与冷却介质的热交换而将蒸汽转化为冷凝水,并将冷凝水供给到加湿器以加湿燃料电池。 由此,本发明提供了一种耐用,可靠且廉价的燃料电池系统,其能够通过使用加湿器的简单配置来充分且可靠地加湿供应给聚合物电解质燃料电池的燃料气体而不设置特定的专用辅助装置。
    • 17. 发明授权
    • Memory system
    • 内存系统
    • US07257725B2
    • 2007-08-14
    • US10294594
    • 2002-11-15
    • Hideki OsakaToyohiko KomatsuMasashi HoriguchiSusumu HatanoKazuya Ito
    • Hideki OsakaToyohiko KomatsuMasashi HoriguchiSusumu HatanoKazuya Ito
    • G06F1/00
    • G06F13/4086
    • A clock is located at a position close to a plurality of memory modules connected to a memory controller and located away from the controller, and wiring is carried out so that read access is preferential for transmission of read data. With respect to write data, a delay amount corresponding to a round-trip propagation delay time to each of the modules is measured and writing of the write data is carried out while maintaining a known time relationship between the clock and data. To measure round-trip reflection, lines are wired between the modules and a location detection circuit in a 1:1 relationship, and the circuit measures a time taken from a signal output time of a driver having the same impedance as that of the wired lines to a reflected-wave reception time of a hysteresis receiver.
    • 时钟位于靠近与存储器控制器并且远离控制器的多个存储器模块的位置,并且执行布线,使得读取访问优先于读取数据的传输。 对于写数据,测量对应于每个模块的往返传播延迟时间的延迟量,并且在保持时钟和数据之间的已知时间关系的同时执行写入数据的写入。 为了测量往返反射,线路以1:1的关系连接到模块和位置检测电路之间,并且电路测量从具有与有线线路相同阻抗的驱动器的信号输出时间所花费的时间 到滞后接收器的反射波接收时间。