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    • 3. 发明申请
    • Method and apparatus for probing a computer bus
    • 用于探测计算机总线的方法和装置
    • US20050010845A1
    • 2005-01-13
    • US10888641
    • 2004-07-08
    • James FentonKevin TaylorGene Markozen
    • James FentonKevin TaylorGene Markozen
    • G01R31/28G06F11/00G11C5/00
    • G06F11/0751G06F11/0745
    • The subject invention facilitates the efficient operation of the disassembly of the microprocessor bus by providing an apparatus and method for detecting and correcting a strobe phase inversion and predrive filtering in a 2× source synchronous data transfer bus. Apparatus according to the subject invention detects a data strobe inversion in a source synchronous 2× data bus and corrects for this inversion by reordering the received data as well as filtering predrive effects in real time. Specifically, this apparatus according to the subject invention monitors bus traffic in a multiprocessor environment and correctly captures all double data rate exchanges regardless of the source IC or destination IC in the system.
    • 本发明通过提供一种用于在2x源同步数据传输总线中检测和校正选通相位反转和预驱动滤波的装置和方法,有助于微处理器总线的拆卸的有效操作。 根据本发明的装置在源同步2x数据总线中检测数据选通反转,并通过重新排序所接收的数据以及实时滤除预驱动效应来校正该反演。 具体而言,根据本发明的这种装置在多处理器环境中监视总线业务,并且无论系统中的源IC还是目的IC,都能正确地捕获所有的双数据速率交换。
    • 4. 发明授权
    • Bipolar plate for fuel cell
    • 燃料电池用双极板
    • US08097385B2
    • 2012-01-17
    • US11811762
    • 2007-06-12
    • H. Russell KunzLeonard BonvilleRachid ZaffouRuichun JiangJames Fenton
    • H. Russell KunzLeonard BonvilleRachid ZaffouRuichun JiangJames Fenton
    • H01M2/16H01M2/22H01M4/80
    • H01M8/0234H01M8/0239H01M8/0243H01M8/0245H01M8/0258H01M8/0263H01M8/0267H01M8/0297H01M8/086H01M8/1011H01M8/241H01M8/2457H01M2008/1095Y02E60/523Y02P70/56Y10T156/10
    • The present disclosure provides for a bipolar plate assembly for use in a fuel cell stack. The bipolar plate assembly includes: (a) at least one flow field layer defining a flow field portion and a perimeter portion; (b) at least one core assembly including at least one porous carbon layer and at least one impermeable layer; and (c) a cathode side reactant and an anode side reactant. The at least a first flow field layer is made from a porous carbon material and the perimeter portion is impregnated with a polymer material. The porous carbon layer is joined to: (i) the at least one impermeable layer on a first side by an adhesive material; and (ii) the flow field layer perimeter on a second side by a second adhesive material. The at least a first flow field layer defines reactant inlet and outlet ports and reactant flow passageways for each of the cathode side reactant and the anode side reactant. A method of making such a bipolar plate as described herein is also provided, as well as a method for rendering a layer of carbon material substantially impervious to a liquid agent such as an acid and rendering the porous carbon components wettable to retain an acidic liquid electrolyte. Fuel cell bipolar plates made in accordance with the teachings herein exhibit excellent heat transfer characteristics, and are particularly effective in conducting heat to the edge of a fuel cell stack.
    • 本公开提供了一种用于燃料电池堆的双极板组件。 双极板组件包括:(a)限定流场部分和周边部分的至少一个流场层; (b)至少一个芯组件,其包括至少一个多孔碳层和至少一个不渗透层; 和(c)阴极侧反应物和阳极侧反应物。 至少第一流场层由多孔碳材料制成,周边部分用聚合物材料浸渍。 多孔碳层通过粘合剂材料连接到:(i)第一侧上的至少一个不可渗透层; 和(ii)通过第二粘合剂材料在第二侧上的流场层周界。 至少第一流场层限定了阴极侧反应物和阳极侧反应物中的每一个的反应物入口和出口以及反应物流通道。 还提供了制造如本文所述的这种双极板的方法,以及用于使碳材料层基本上不透液体剂如酸的方法,并使多孔碳组分可润湿以保持酸性液体电解质 。 根据本文教导制造的燃料电池双极板表现出优异的传热特性,并且对于燃料电池堆的边缘传导热量特别有效。
    • 6. 发明申请
    • Bipolar plate for fuel cell
    • 燃料电池用双极板
    • US20080090129A1
    • 2008-04-17
    • US11811762
    • 2007-06-12
    • H. KunzLeonard BonvilleRachid ZaffouRuichun JiangJames Fenton
    • H. KunzLeonard BonvilleRachid ZaffouRuichun JiangJames Fenton
    • H01M2/00B29C65/02H01M8/00
    • H01M8/0234H01M8/0239H01M8/0243H01M8/0245H01M8/0258H01M8/0263H01M8/0267H01M8/0297H01M8/086H01M8/1011H01M8/241H01M8/2457H01M2008/1095Y02E60/523Y02P70/56Y10T156/10
    • The present disclosure provides for a bipolar plate assembly for use in a fuel cell stack. The bipolar plate assembly includes: (a) at least one flow field layer defining a flow field portion and a perimeter portion; (b) at least one core assembly including at least one porous carbon layer and at least one impermeable layer; and (c) a cathode side reactant and an anode side reactant. The at least a first flow field layer is made from a porous carbon material and the perimeter portion is impregnated with a polymer material. The porous carbon layer is joined to: (i) the at least one impermeable layer on a first side by an adhesive material; and (ii) the flow field layer perimeter on a second side by a second adhesive material. The at least a first flow field layer defines reactant inlet and outlet ports and reactant flow passageways for each of the cathode side reactant and the anode side reactant. A method of making such a bipolar plate as described herein is also provided, as well as a method for rendering a layer of carbon material substantially impervious to a liquid agent such as an acid and rendering the porous carbon components wettable to retain an acidic liquid electrolyte. Fuel cell bipolar plates made in accordance with the teachings herein exhibit excellent heat transfer characteristics, and are particularly effective in conducting heat to the edge of a fuel cell stack.
    • 本公开提供了一种用于燃料电池堆的双极板组件。 双极板组件包括:(a)限定流场部分和周边部分的至少一个流场层; (b)至少一个芯组件,其包括至少一个多孔碳层和至少一个不渗透层; 和(c)阴极侧反应物和阳极侧反应物。 至少第一流场层由多孔碳材料制成,周边部分用聚合物材料浸渍。 多孔碳层通过粘合剂材料连接到:(i)第一侧上的至少一个不可渗透层; 和(ii)通过第二粘合剂材料在第二侧上的流场层周界。 至少第一流场层限定了阴极侧反应物和阳极侧反应物中的每一个的反应物入口和出口以及反应物流通道。 还提供了制造如本文所述的这种双极板的方法,以及用于使碳材料层基本上不透液体剂如酸的方法,并使多孔碳组分可润湿以保持酸性液体电解质 。 根据本文的教导制造的燃料电池双极板表现出优异的传热特性,并且特别有效地将热量传导到燃料电池堆的边缘。