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    • 7. 发明申请
    • RADIO COMMUNICATION SYSTEM AND METHOD
    • 无线电通信系统和方法
    • US20110058517A1
    • 2011-03-10
    • US12875675
    • 2010-09-03
    • Hideya YOSHIUCHIPeng YangYuanchen Ma
    • Hideya YOSHIUCHIPeng YangYuanchen Ma
    • H04W8/00
    • H04W60/005H04W8/22H04W8/26H04W80/04
    • A radio communication system for connecting mobile nodes to public network, include base stations connected to mobile nodes by radio, node registration devices connected to control the stations and register node registration information representing contents of node connection to the node registration device through the station into node information management device which is connected to public network and manages mobile node address information in registration information registered by the node registration devices. A combination of the base station and node registration device controlling the station and a combination of the station, node registration device controlling the station, other node registration device and one or a plurality of the node information management device constitute different communication routes any of which is utilized to realize connection from node to public network.
    • 用于将移动节点连接到公共网络的无线电通信系统包括通过无线电连接到移动节点的基站,连接到控制站的节点注册装置,并且通过站到节点注册表示节点连接的节点连接的节点登记信息 信息管理装置,其连接到公共网络,并且管理由节点注册装置登记的注册信息中的移动节点地址信息。 控制站的基站和节点登记装置的组合以及站的组合,控制站的节点登记装置,其他节点注册装置和一个或多个节点信息管理装置构成不同的通信路由,其中​​任何一个是 用于实现从节点到公网的连接。
    • 10. 发明授权
    • Method for manufacturing membrane electrode assembly of fuel cell by printing processes
    • 通过印刷工艺制造燃料电池的膜电极组件的方法
    • US07041191B2
    • 2006-05-09
    • US10854342
    • 2004-05-27
    • Charn-Ying ChenPeng YangYing-Sheng LeeKin-Fu Lin
    • Charn-Ying ChenPeng YangYing-Sheng LeeKin-Fu Lin
    • B05D5/12H01M4/86H01M4/90
    • H01M4/926B41M1/12B41M1/26H01M4/881H01M4/8835H01M4/8882
    • A method for manufacturing membrane electrode assembly of fuel cell includes positioning an ion exchange membrane that is cleaned and trimmed to a predetermined size in advance to a base plate, mounting the base plate to a printing platform, attaching a printing plate to the platform, coating a catalyst solution on the printing plate with a scraper, printing the catalyst solution onto the ion exchange membrane with the scraper, heating the ion exchange with a heating board to a temperature of 70–80° C., and waiting for the ion exchange membrane to return flat to complete the coating of the catalyst solution on the ion exchange membrane. The printing and heating steps are repeated for both anode and cathode of the ion exchange membrane. The ion exchange membrane is further subject to hot pressing and then a piece of carbon cloth is positioned on the catalyst coating to serve as a diffusion layer. This completes the manufacturing of the membrane electrode assembly.
    • 一种制造燃料电池的膜电极组件的方法包括:将预先清洁和修整的预定尺寸的离子交换膜定位到基板上,将基板安装到印刷平台上,将印版安装到平台上,涂布 用刮刀在印版上的催化剂溶液,用刮刀将催化剂溶液印刷到离子交换膜上,加热与加热板的离子交换到70-80℃的温度,并等待离子交换膜 以平整以完成催化剂溶液在离子交换膜上的涂层。 对于离子交换膜的阳极和阴极都重复印刷和加热步骤。 离子交换膜进一步进行热压,然后将一块碳布置于催化剂涂层上,作为扩散层。 这完成了膜电极组件的制造。