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    • 6. 发明申请
    • LTR/OBFF DESIGN SCHEME FOR ETHERNET ADAPTER APPLICATION
    • 用于以太网适配器的LTR / OBFF设计方案
    • US20160162421A1
    • 2016-06-09
    • US14907649
    • 2013-08-07
    • Xuhong XIONGKevin ZHANGXiaofeng YANJack DUQUALCOMM INCORPORATED
    • Xuhong XiongKevin ZhangXiaofeng YanJack Du
    • G06F13/20G06F13/40G06F13/42
    • G06F13/20G06F13/385G06F13/4068G06F13/4282G06F2213/3808Y02D10/14Y02D10/151
    • A method of reducing power consumption in a computing platform is disclosed. An endpoint-device that is coupled to the computing platform includes a first data buffer and a second data buffer. The first data buffer buffers outgoing data to be transmitted to an external device via a first communications medium. The second data buffer buffers incoming data received from the external device via the first communications medium. At least one of the first or second data buffers may selectively communicate with the computing platform, via a second communications medium, during an active window of the other data buffer. The active window may be requested by the first and/or second data buffers based, at least in part, on a system idle signal. For some embodiments, the first communications medium is an Ethernet link. Further, for some embodiments, the second communications medium is a Peripheral Component Interconnect Express (PCIe) link.
    • 公开了一种降低计算平台功耗的方法。 耦合到计算平台的端点设备包括第一数据缓冲器和第二数据缓冲器。 第一数据缓冲器缓冲经由第一通信介质发送到外部设备的输出数据。 第二数据缓冲器缓冲经由第一通信介质从外部设备接收的输入数据。 第一或第二数据缓冲器中的至少一个可以在另一数据缓冲器的活动窗口期间经由第二通信介质选择性地与计算平台通信。 至少部分地基于系统空闲信号,可以由第一和/或第二数据缓冲器请求活动窗口。 对于一些实施例,第一通信介质是以太网链路。 此外,对于一些实施例,第二通信介质是外围组件互连Express(PCIe)链路。
    • 8. 发明申请
    • Fuel cell stack
    • 燃料电池堆
    • US20050142426A1
    • 2005-06-30
    • US11063579
    • 2005-02-24
    • Maximilian DanzerFranz WetzelXiaofeng YanThomas HoeflerBernd KuhnAndreas StoermerOlav Finkenwirth
    • Maximilian DanzerFranz WetzelXiaofeng YanThomas HoeflerBernd KuhnAndreas StoermerOlav Finkenwirth
    • H01M8/02H01M8/04H01M8/24
    • H01M8/0247H01M8/2415H01M8/2485
    • A fuel cell stack comprises several mutually stacked fuel cells, each of which has a cathode-electrolyte-anode unit, and a perforated foil for distributing a fuel gas over a first electrode surface. The foil carries the cathode-electrolyte-anode unit and is assembled with a further structure to form an enclosure having a cavity through which fuel gas flows to the first electrode. Opposite the cathode-electrolyte-anode unit, each enclosure has a distribution configuration for distributing air-oxygen over the surface of the second electrode of an adjacent enclosure, so that a cathode-electrolyte-anode unit and a distribution configuration are situated between the foil and the further structure of adjacent enclosures in the stack. In addition, the stack contains at least one bracing enclosure whose walls have an impermeable construction and which is filled with a material expands when heated.
    • 燃料电池堆包括几个相互堆叠的燃料电池,每个燃料电池具有阴极 - 电解质 - 阳极单元和用于在第一电极表面上分配燃料气体的穿孔箔。 箔片承载阴极 - 电解质 - 阳极单元并且被组装成另外的结构以形成具有空腔的外壳,燃料气体通过空腔流到第一电极。 在阴极 - 电解质 - 阳极单元的对面,每个外壳具有用于在相邻外壳的第二电极的表面上分配空气氧的分配结构,使得阴极 - 电解质 - 阳极单元和分配构型位于箔 以及堆叠中相邻外壳的进一步结构。 此外,堆叠包含至少一个支撑外壳,其壁具有不可渗透的结构,并且在加热时填充材料膨胀。
    • 9. 发明授权
    • Fuel cell stack
    • 燃料电池堆
    • US07348093B2
    • 2008-03-25
    • US11063579
    • 2005-02-24
    • Maximilian DanzerFranz-Josef WetzelXiaofeng YanThomas HoeflerBernd KuhnAndreas Oswald StoermerOlav Finkenwirth
    • Maximilian DanzerFranz-Josef WetzelXiaofeng YanThomas HoeflerBernd KuhnAndreas Oswald StoermerOlav Finkenwirth
    • H01M8/02H01M8/04H01M8/24
    • H01M8/0247H01M8/2415H01M8/2485
    • The invention relates to a fuel cell stack which is composed of several individual fuel cells that are stacked on top of each other. Each of said fuel cells comprises a cathode-electrolyte-anode unit (7) and a perforated film (1) which distributes a combustible gas across the first electrode surface thereof, supports the cathode-electrolyte-anode unit (7), and is combined into a cassette (4) that is provided with a hollow space along with an additional structure (3). The combustible gas reaches the first electrode (7A) via said cassette (4). The side of each cassette (4), which is located opposite the cathode-electrolyte-anode unit (7), is provide with a structure for distributing atmospheric oxygen across the surface of the second electrode of a neighboring cassette such that the stack is formed by several superimposed cassettes (4), between the film (1) of which a cathode-electrolyte-anode unit (7) and the structure for distributing atmospheric oxygen across the surface of the second electrode are disposed along with the additional structure (3). In order to brace the individual cassettes against each other in a housing or similar, the inventive stack comprises at least one bracing cassette, the walls of which are impermeable and which is filled with a material that expands to a relatively great extent when being heated.
    • 本发明涉及一种燃料电池堆,其由堆叠在彼此顶部的多个单个燃料电池组成。 每个所述燃料电池包括阴极 - 电解质 - 阳极单元(7)和在其第一电极表面上分布可燃气体的穿孔膜(1),支撑阴极 - 电解质阳极单元(7),并且被组合 进入具有中空空间的附加结构(3)的盒(4)中。 可燃气体经由所述盒(4)到达第一电极(7A)。 与阴极 - 电解质 - 阳极单元(7)相对的每个盒(4)的侧面提供了用于在相邻盒的第二电极的表面上分布大气氧的结构,使得形成叠层 通过多个叠加的盒(4),在其附近的结构(3)之间布置有阴极 - 电解质 - 阳极单元(7)的膜(1)和分布在第二电极的表面上的大气氧的结构, 。 为了在各个壳体或类似物中将各个盒体相互支撑起来,本发明的叠层包括至少一个支撑盒,其壁是不可渗透的,并且填充有当被加热时膨胀到较大程度的材料。