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    • 11. 发明申请
    • STORAGE SYSTEM AND DATA MANAGEMENT METHOD
    • 存储系统和数据管理方法
    • US20110271066A1
    • 2011-11-03
    • US13179403
    • 2011-07-08
    • Tatsuya NINOMIYAKazuo Tanaka
    • Tatsuya NINOMIYAKazuo Tanaka
    • G06F12/00
    • G06F12/0868G06F12/0811G06F2212/284
    • The present invention comprises a CHA 110 which transmits/receives data to/from an external device, a DKA 140 which transmits/receives data to/from an HDD unit 200, a primary cache unit 120 which has a primary cache memory 124, a secondary cache unit 130 which is installed between the primary cache unit 120 and the DKA 140 and has a secondary cache memory 134, a CCP 121 which stores write target data received by the CHA 110 in the primary cache memory 124, and a CCP 131 which stores the write target data in the secondary cache memory 134, and transfers the write target data stored in the secondary cache memory 134 to the DKA 140.
    • 本发明包括向外部设备发送/接收数据的CHA 110,从HDD单元200发送/接收数据的DKA140,具有主高速缓存存储器124的主高速缓存单元120,辅助缓存单元120 高速缓存单元130安装在主缓存单元120和DKA 140之间,并且具有二级高速缓存存储器134,存储由CHA 110接收的写目标数据在一级高速缓冲存储器124中的CCP 121和存储 在二次高速缓存存储器134中的写入目标数据,并将存储在二次高速缓冲存储器134中的写入目标数据传送到DKA 140。
    • 16. 发明申请
    • SEMICONDUCTOR INTEGRATED CIRCUIT
    • 半导体集成电路
    • US20090273870A1
    • 2009-11-05
    • US12501007
    • 2009-07-10
    • Hiroyasu IshizukaKazuo Tanaka
    • Hiroyasu IshizukaKazuo Tanaka
    • H02H9/00G11C13/04
    • H01L27/0251H01L2924/0002H01L2924/00
    • The present invention is provided to suppress occurrence of an erroneous operation in a protection circuit due to a relatively small power source fluctuation such as a power source noise. The protection circuit has a first resistor and a capacitor connected in series between a power source line and a ground line, an inverter whose input is connected between the first resistor and the capacitor, and a MOS transistor whose gate electrode receives an output of the inverter and whose drain electrode and source electrode are connected to the power source line and the ground line. When a high voltage fluctuation occurs in the power source line, a level change at a connection point between the first resistor and the capacitor is delayed according to a time constant. By the delay, the MOS transistor that receives an output of the inverter is temporarily turned on and discharges a high voltage to the ground line. Since an output of the inverter is pulled down to the ground line via a second resistor, even if an output of the inverter fluctuates undesirably, fluctuations in a gate input of the MOS transistor are suppressed.
    • 本发明是为了抑制电源噪声等电源波动较小的问题而抑制保护电路发生错误的动作。 保护电路具有串联连接在电源线和地线之间的第一电阻器和电容器,输入端连接在第一电阻器和电容器之间的反相器,以及栅极接收反相器的输出的MOS晶体管 并且其漏电极和源电极连接到电源线和接地线。 当电源线发生高电压波动时,第一电阻和电容器之间的连接点处的电平变化根据时间常数被延迟。 通过延迟,接收逆变器的输出的MOS晶体管暂时导通,并将高电压放电到地线。 由于逆变器的输出通过第二电阻被下拉到接地线,所以即使反相器的输出波动不期望,也抑制了MOS晶体管的栅极输入的波动。
    • 17. 发明授权
    • Fuel cell-atmospheric-pressure turbine hybrid system
    • 燃料电池 - 大气压涡轮机混合动力系统
    • US07563527B2
    • 2009-07-21
    • US10553692
    • 2004-06-29
    • Kazuo TanakaEiichi HaradaTakatoshi ShojiJunichi KitajimaSeiji Yamashita
    • Kazuo TanakaEiichi HaradaTakatoshi ShojiJunichi KitajimaSeiji Yamashita
    • H01M8/04
    • H01M8/04022F02C6/00F05D2220/60H01M8/0662H01M16/00
    • A fuel cell-atmospheric-pressure turbine hybrid system uses the thermal energy of a cell exhaust gas discharged from an atmospheric-pressure, high-temperature fuel cell effectively, does not need any additional emergency protective device, and enables the use of lightweight, easy-to-process structural and piping materials to reduces the cost.The fuel cell-atmospheric-pressure turbine hybrid system includes: a combustor 2 for burning an exhaust gas G1 discharged from an atmospheric-pressure, high-temperature fuel cell 1; a turbine 3 in which a combustion gas G2 discharged from the combustor 2 expands and the pressure of the combustion gas G2 drops to a negative pressure; a compressor 4 for compressing an exhaust gas G3 discharged from the turbine 3 to increase the pressure of the exhaust gas G3; and a heat exchanger 5 for transferring heat from the high-temperature exhaust gas G3 discharged from the turbine 3 to low-temperature air A to be supplied to the fuel cell 1.
    • 燃料电池 - 大气压涡轮机混合动力系统有效地利用从大气压高温燃料电池排出的电池废气的热能,不需要任何额外的紧急保护装置,并且能够使用轻便,容易 过程结构和管道材料,以降低成本。 燃料电池 - 大气压涡轮机混合动力系统包括:燃烧器2,用于燃烧从大气压高温燃料电池1排出的废气G1; 从燃烧器2排出的燃烧气体G2膨胀并且燃烧气体G2的压力下降到负压的涡轮3; 用于压缩从涡轮3排出的废气G3的压缩机4,以增加废气G3的压力; 以及用于将从涡轮机3排出的高温排气G3的热量传递给供给到燃料电池1的低温空气A的热交换器5。