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    • 2. 发明授权
    • Monopolar membrane-electrode assembly
    • 单极膜电极组件
    • US08110315B2
    • 2012-02-07
    • US11702087
    • 2007-02-05
    • Jae-yong LeeJin-ho KimKyoung-hwan Choi
    • Jae-yong LeeJin-ho KimKyoung-hwan Choi
    • H01M8/10
    • H01M8/0245H01M8/0232H01M8/0239H01M8/0247H01M8/0269H01M8/04246H01M8/04552H01M8/04955H01M8/1004H01M8/1009H01M8/2455H01M2008/1095
    • A monopolar membrane-electrode assembly includes an electrolyte membrane with a plurality of cell regions, an anode supporting body and a cathode supporting body on both sides of the electrolyte membrane, respectively having a plurality of apertures corresponding to the cell regions, a plurality of anode and cathode current collectors, each including a current collecting portion to correspond to each aperture of the respective anode or cathode supporting body to collect current, a conducting portion connected to a side of the current collecting portion, and a connecting line that connects the conducting portion to an outside terminal, a plurality of anode and cathode electrodes respectively formed on the and the cathode current collecting portions, and a circuit unit connected to the connecting lines of the anode current collectors and the cathode current collectors, wherein the cells are connected in series or parallel, or electrically separated through the circuit unit.
    • 单极膜 - 电极组件包括具有多个电池区的电解质膜,阳极支撑体和阴极支撑体,电解质膜的两侧分别具有对应于电池区的多个孔,多个阳极 和阴极集电体,每个阴极集电器包括与各个阳极或阴极支撑体的每个孔相对应的电流收集部分以收集电流;连接到集电部分的一侧的导电部分;以及连接导线部分 分别形成在阴极集电部上的多个阳极电极和阴极电极以及与阳极集电体和阴极集电体的连接线连接的电路单元,其中,电池串联连接 或并联,或通过电路单元电隔离。
    • 3. 发明授权
    • Fuel cell stack structure
    • 燃料电池堆结构
    • US08048586B2
    • 2011-11-01
    • US11928864
    • 2007-10-30
    • Jae-yong LeeKyoung-hwan ChoiChan-ho Pak
    • Jae-yong LeeKyoung-hwan ChoiChan-ho Pak
    • H01M8/04H01M2/14
    • H01M8/0228H01M8/0206H01M8/0221H01M8/0254H01M8/1007
    • A fuel cell stack induces smooth current collection and liquid or gas flow without using a heavy bipolar plate. The fuel cell stack includes: a membrane and electrode assembly (MEA) in which an electrolyte membrane is disposed between a cathode electrode and an anode electrode; a current collector disposed in the MEA to form an electrical path with an adjacent MEA; and a non-conductive separation plate disposed between the MEA and the adjacent MEA, the non-conductive separation plate forming flow channels to supply a liquid or gas to the cathode electrode and the anode electrode. A fuel cell stack structure having the above structure is simple and lightweight as the MEA includes a thin and lightweight non-conductive polymer separation plate and a current collector to connect adjacent MEAs.
    • 燃料电池堆引起平滑的电流收集和液体或气体流动,而不使用重的双极板。 燃料电池堆包括:膜和电极组件(MEA),其中电解质膜设置在阴极电极和阳极电极之间; 设置在MEA中以形成具有相邻MEA的电路径的集电器; 以及设置在MEA和相邻的MEA之间的非导电分隔板,所述非导电分离板形成流路以向液体或气体供给阴极电极和阳极电极。 具有上述结构的燃料电池堆结构简单且重量轻,因为MEA包括薄而轻的非导电聚合物分离板和用于连接相邻MEA的集电器。
    • 10. 发明申请
    • SEMICONDUCTOR EQUIPMENT CONTROL SYSTEM AND METHOD
    • 半导体设备控制系统及方法
    • US20080097640A1
    • 2008-04-24
    • US11877542
    • 2007-10-23
    • Pyong-Il CHOHyun-Sik SIMKyoung-Hwan CHOI
    • Pyong-Il CHOHyun-Sik SIMKyoung-Hwan CHOI
    • G06F19/00
    • G05B19/042G05B2219/2602
    • A semiconductor equipment control system and method is provided. The semiconductor equipment control system preferably includes semiconductor equipment having a process recipe stored therein and a host connected to the semiconductor equipment through a network. The host preferably includes a database in which a reference recipe is stored and is preferably configured to receive and compare a final modification time of the process recipe with a final modification time of the reference recipe. When the final modifications times are equal, the host is preferably configured to instruct the semiconductor equipment to perform a process according to the process recipe. When the final modification times are different, the host is preferably configured to check a recipe body of the process recipe against a recipe body of the reference recipe to determine if the process recipe is within an established tolerance. If the process recipe is within tolerance, the host may instruct the semiconductor equipment to perform the process according to the process recipe. If the process recipe is not within tolerance, the host preferably interlocks the process. Using this semiconductor equipment and control method, unconditional checking of the process recipe body can be eliminated, thereby resulting in significant time savings and a more efficient manufacturing process.
    • 提供了一种半导体设备控制系统和方法。 半导体设备控制系统优选地包括其中存储有工艺配方的半导体设备和通过网络连接到半导体设备的主机。 主机优选地包括其中存储参考食谱的数据库,并且优选地被配置为接收和比较处理食谱的最终修改时间与参考食谱的最终修改时间。 当最终修改时间相等时,主机优选地被配置为指示半导体设备执行根据处理配方的处理。 当最终修改时间不同时,主机优选地被配置为根据参考食谱的配方主体检查处理配方的配方主体,以确定处理配方是否在建立的公差内。 如果处理配方在公差范围内,则主机可以指示半导体设备根据处理配方进行处理。 如果工艺配方不在公差范围内,则主机优选地将该过程互锁。 利用这种半导体设备和控制方法,可以消除对过程配方体的无条件检查,从而节省大量的时间和更高效的制造过程。