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    • 1. 发明授权
    • Polymer electrolyte fuel cell
    • 聚合物电解质燃料电池
    • US09005834B2
    • 2015-04-14
    • US13818445
    • 2012-02-10
    • Mitsuo YoshimuraHirokazu HonkawaKenji Arai
    • Mitsuo YoshimuraHirokazu HonkawaKenji Arai
    • H01M8/04H01M8/02H01M8/24H01M8/10
    • H01M8/04007H01M8/0258H01M8/0267H01M8/241H01M8/2483H01M2008/1095Y02E60/50
    • A polymer electrolyte fuel cell comprises a plurality of stacked cells each having an ionic conductive electrolyte membrane, an anode placed on one side of the electrolyte membrane, a cathode placed on the other side of the electrolyte membrane, and a conductive separator on which a first refrigerant channel for flow of a refrigerant is formed in center part thereof. The separator comprises penetration holes constituting a manifold which extend in a direction of stacking of the plurality of cells and through which the refrigerant flows and second refrigerant channels for communication between the penetration holes and the first refrigerant channel. A plurality of protrusions that protrude into the penetration holes from parts of wall surfaces of the penetration holes that are located peripherally in connection parts between the penetration holes and the second refrigerant channels.
    • 聚合物电解质燃料电池包括多个堆叠单元,每个堆叠单元具有离子导电电解质膜,放置在电解质膜一侧的阳极,放置在电解质膜另一侧的阴极以及导电隔板 制冷剂流动的制冷剂通道形成在其中心部分。 分离器包括构成歧管的穿透孔,该歧管在多个单元的堆叠方向上延伸,制冷剂流过该歧管,第二制冷剂通道用于在穿透孔和第一制冷剂通道之间连通。 多个突起,其从穿透孔的壁面的部分突出到穿透孔中,所述孔的表面周边位于穿透孔和第二制冷剂通道之间的连接部分中。
    • 2. 发明申请
    • POLYMER ELECTROLYTE FUEL CELL
    • 聚合物电解质燃料电池
    • US20130157160A1
    • 2013-06-20
    • US13818445
    • 2012-02-10
    • Mitsuo YoshimuraHirokazu HonkawaKenji Arai
    • Mitsuo YoshimuraHirokazu HonkawaKenji Arai
    • H01M8/04
    • H01M8/04007H01M8/0258H01M8/0267H01M8/241H01M8/2483H01M2008/1095Y02E60/50
    • A polymer electrolyte fuel cell comprises a plurality of stacked cells each having an ionic conductive electrolyte membrane, an anode placed on one side of the electrolyte membrane, a cathode placed on the other side of the electrolyte membrane, and a conductive separator on which a first refrigerant channel for flow of a refrigerant is formed in center part thereof. The separator comprises a penetration holes constituting a manifold which extend in a direction of stacking of the plurality of cells and through which the refrigerant flows, a second refrigerant channels for communication between the penetration holes and the first refrigerant channel, and a plurality of protrusions that protrude into the penetration holes from parts of wall surfaces of the penetration holes that located peripherally in connection parts between the penetration holes and the second refrigerant channels.
    • 聚合物电解质燃料电池包括多个堆叠单元,每个堆叠单元具有离子导电电解质膜,放置在电解质膜一侧的阳极,放置在电解质膜另一侧的阴极以及导电隔板 制冷剂流动的制冷剂通道形成在其中心部分。 分离器包括构成歧管的穿透孔,该歧管在多个单元的堆叠方向上延伸,制冷剂流过该歧管,用于在穿透孔和第一制冷剂通道之间连通的第二制冷剂通道,以及多个突起, 从穿透孔的壁表面的部分突出到贯穿孔和第二制冷剂通道之间的连接部分周边。
    • 6. 发明授权
    • Semiconductor device and control method thereof
    • 半导体装置及其控制方法
    • US08085588B2
    • 2011-12-27
    • US12433084
    • 2009-04-30
    • Naoharu ShinozakiKenji AraiSatoshi Sakurakawa
    • Naoharu ShinozakiKenji AraiSatoshi Sakurakawa
    • G11C16/04
    • G11C8/12G11C16/08
    • Systems and methods for programming data to a memory device (MD). The methods involve receiving the data at MD (100) from an external data source. MD includes a memory cell array (MCA) for storing the data including numbers in data blocks (DB) or memory cell array planes (MCAP). Each DB (122a, 122b, 122c, 122d) and MCAP (1020a, 1020b, 1020c, 1020d) includes memory addresses (Ads) corresponding to locations of respective transistor circuits (2021, 2022, . . . , 202n, . . . , 202m) within the MCA (120, 1020a, 1020b, 1020c, 1020d). Two or more of the transistor circuits have different threshold voltages (TVs) with respect to each other. The methods further involve programming the data to each DB or MCAP in accordance with a first mode. In the first mode, each number is programmed to a different MA of each DB or MCAP based at least in part on the different TVs.
    • 用于将数据编程到存储器件(MD)的系统和方法。 该方法涉及从外部数据源接收MD(100)的数据。 MD包括用于存储包括数据块(DB)或存储单元阵列平面(MCAP)中的数字的数据的存储单元阵列(MCA)。 每个DB(122a,122b,122c,122d)和MCAP(1020a,1020b,1020c,1020d)包括对应于各个晶体管电路(2021,2022,...,202n,...)的位置的存储器地址(Ads) 202m)在MCA(120,1020a,1020b,1020c,1020d)内。 两个或多个晶体管电路相对于彼此具有不同的阈值电压(TV)。 所述方法还包括根据第一模式将数据编程到每个DB或MCAP。 在第一模式中,至少部分地基于不同的电视机将每个数字编程到每个数据块或MCAP的不同MA。
    • 7. 发明授权
    • Oscillator circuit
    • 振荡电路
    • US08044731B2
    • 2011-10-25
    • US12694481
    • 2010-01-27
    • Kenji Arai
    • Kenji Arai
    • H03B5/36H03L5/00
    • H03L3/00H03B5/366
    • There is provided an oscillator circuit including: a current source; a resonant unit; an oscillation amplification unit connected to the current source and connected in parallel to the resonant unit; a feedback resistor connected in parallel to the oscillation amplification unit; a switch unit having a first end connected to the current source side of the oscillation amplification unit; a replica circuit connected between a second end of the switch unit and a ground side of the oscillation amplification unit and having a configuration identical to a configuration of the oscillation amplification unit; and a level detecting unit that detects an input voltage of the oscillation amplification unit, and, when the detected input voltage is higher than a bias voltage level at a time of oscillation, cause the switch unit to allow a current from the current sources to bypass through the replica circuit.
    • 提供了一种振荡器电路,包括:电流源; 谐振单元; 连接到电流源并与谐振单元并联连接的振荡放大单元; 与振荡放大单元并联连接的反馈电阻器; 开关单元,其具有连接到所述振荡放大单元的电流源侧的第一端; 连接在开关单元的第二端和振荡放大单元的接地侧之间并具有与振荡放大单元的配置相同的配置的复制电路; 以及电平检测单元,其检测振荡放大单元的输入电压,并且当检测到的输入电压高于振荡时的偏置电压电平时,使开关单元允许来自电流源的电流旁路 通过复制电路。