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    • 1. 发明授权
    • AUTOMATIC SHOE COVERING APPARATUS
    • 自动鞋套装
    • KR100913617B1
    • 2009-08-26
    • KR20090038711
    • 2009-05-01
    • JEON WAN MINKIM BO SUN
    • JEON WAN MINKIM BO SUN
    • A43B3/20B65B1/10B65B35/20B65B57/10
    • A43B3/16A43B3/20B65B1/10B65B35/20B65B57/10
    • An automatic shoe cover apparatus is provided, which automatically supplies the hygiene cover to make an inlet opened to put the hygiene cover on the shoe without using hands. An automatic shoe cover apparatus comprises: a main body(100) in which the upper side is opened and guide rails are formed in the both side inner circumferences; a cover box(200) in which a plurality of hygiene covers are laminated; a cover withdrawal member including two first hook members; a sliding body(400) which can slide to the front and rear of the main body along the guide rail; a rotation axis member which rotates the hook rotary shaft in order to move the end part of the first hook member to the upper or the bottom side; a hook expansion member(600); and a body carrying member(700) transferring the sliding body.
    • 提供一种自动鞋套装置,其自动提供卫生罩以使入口打开以将卫生罩放置在鞋上而不用手。 一种自动鞋套装置,包括:主体(100),其上侧开口,导轨形成在两侧内周中; 覆盖多个卫生罩的盖盒(200); 包括两个第一钩构件的盖取出构件; 滑动体(400),其可以沿着导轨滑动到主体的前后; 旋转轴构件,其使所述钩旋转轴旋转,以使所述第一钩构件的端部移动到所述上侧或底侧; 钩扩展构件(600); 和传送滑动体的主体承载部件(700)。
    • 2. 发明申请
    • METHOD, SYSTEM AND DEVICE FOR COMMUNICATION IN THE OPTICAL NETWORK SYSTEM
    • 光网络系统通信的方法,系统和设备
    • WO2011144110A3
    • 2012-05-03
    • PCT/CN2011074789
    • 2011-05-27
    • HUAWEI TECH CO LTDWAN MINWEI YONGQUAN
    • WAN MINWEI YONGQUAN
    • H04B10/08
    • H04Q11/0067H04J3/0682H04J3/1652H04Q2011/0079
    • A method, system and device for data communication in an optical network system are provided in the embodiment of the present invention. After the communication between the central office and multiple optical network units (ONUs) is switched to a second optical line terminal (OLT) port from a first OLT port, a downlink frame, which indicates that at least one ONU sends a uplink frame with a first preamble, is sent to at least one optical network unit (ONU) via the second OLT port; or, a deactivation message or a message carrying a reassigned ONU identifier are sent to at least one ONU. The present invention implements that the switched optical network system even without supporting a POPUP message can also perform ranging again. Moreover, the data communication between the switched OLT and the ONU can swiftly recovered, the influence for the normal service communication after being switched can be avoided, the switching delay is decreased, and the user satisfaction is improved.
    • 在本发明的实施例中提供了一种用于光网络系统中数据通信的方法,系统和设备。 在中心局和多个光网络单元(ONU)之间的通信从第一OLT端口切换到第二光线路终端(OLT)端口之后,指示至少一个ONU发送上行链路帧的下行链路帧 第一前导码经由第二OLT端口被发送到至少一个光网络单元(ONU); 或者,将至少一个ONU发送去激活消息或携带重新分配的ONU标识符的消息。 本发明实现了即使不支持POPUP消息的交换光网络系统也可以再次执行测距。 此外,切换OLT与ONU之间的数据通信可以迅速恢复,可以避免切换后的正常业务通信的影响,切换延迟降低,提高用户满意度。
    • 9. 发明授权
    • Method for making membrane fuel cell electrodes by low-voltage electrophoretic deposition of carbon nanomaterial-supported catalysts
    • 通过碳纳米材料负载催化剂的低压电泳沉积制备膜燃料电池电极的方法
    • US08273230B2
    • 2012-09-25
    • US12071165
    • 2008-02-15
    • King-Tsai JengWan-Min Huang
    • King-Tsai JengWan-Min Huang
    • C25D1/12
    • C25D15/02B82Y30/00C25D17/002H01M4/8853H01M4/8882H01M4/9083H01M4/926H01M8/1011H01M2008/1095Y02E60/523Y02P70/56
    • A cathode electrophoretic deposition (EPD) suspension is provided by mixing an ionomer solution with an electrolyte. An anode EPD suspension is provided via mixing carbon nanomaterial (CNM)-supported catalyst with a solution of the same composition as that of the cathode EPD suspension. Ultrasonication and high-speed stirring are executed on the cathode and anode EPD suspensions, thus turning them into homogenous suspensions. There is provided a low-voltage EPD apparatus incorporated with a porous material to separate it into anode and cathode compartments. The anode and cathode EPD suspensions are filled in the anode and cathode compartments, respectively. An inert gas is introduced into the anode compartment for stirring the anode EPD suspension. An electrode base substrate is used as the anode of the EPD apparatus. A low-voltage direct current (DC) power supply is used to supply DC low voltage to the EPD apparatus, thus evenly coating a catalyst layer on the substrate. The catalyst layer coated on the substrate is washed with de-ionized water and dried, thus forming a membrane fuel cell (MFC) electrode.
    • 通过将离聚物溶液与电解质混合来提供阴极电泳沉积(EPD)悬浮液。 通过将碳纳米材料(CNM)负载的催化剂与具有与阴极EPD悬浮液相同的组成的溶液混合来提供阳极EPD悬浮液。 在阴极和阳极EPD悬浮液上进行超声波和高速搅拌,从而将它们变成均匀的悬浮液。 提供了一种结合有多孔材料以将其分离成阳极和阴极隔室的低压EPD设备。 阳极和阴极EPD悬浮液分别填充在阳极和阴极隔室中。 将惰性气体引入阳极室中以搅拌阳极EPD悬浮液。 电极基底用作EPD装置的阳极。 使用低压直流(DC)电源向EPD装置提供DC低电压,从而在基板上均匀涂覆催化剂层。 涂布在基材上的催化剂层用去离子水洗涤并干燥,从而形成膜燃料电池(MFC)电极。
    • 10. 发明申请
    • Method for making membrane fuel cell electrodes by low-voltage electrophoretic deposition of carbon nanomaterial-supported catalysts
    • 通过碳纳米材料负载催化剂的低压电泳沉积制备膜燃料电池电极的方法
    • US20110024294A1
    • 2011-02-03
    • US12071165
    • 2008-02-15
    • King-Tsai JengWan-Min Huang
    • King-Tsai JengWan-Min Huang
    • C25D1/12
    • C25D15/02B82Y30/00C25D17/002H01M4/8853H01M4/8882H01M4/9083H01M4/926H01M8/1011H01M2008/1095Y02E60/523Y02P70/56
    • A cathode electrophoretic deposition (EPD) suspension is provided by mixing an ionomer solution with an electrolyte. An anode EPD suspension is provided via mixing carbon nanomaterial (CNM)-supported catalyst with a solution of the same composition as that of the cathode EPD suspension. Ultrasonication and high-speed stirring are executed on the cathode and anode EPD suspensions, thus turning them into homogenous suspensions. There is provided a low-voltage EPD apparatus incorporated with a porous material to separate it into anode and cathode compartments. The anode and cathode EPD suspensions are filled in the anode and cathode compartments, respectively. An inert gas is introduced into the anode compartment for stirring the anode EPD suspension. An electrode base substrate is used as the anode of the EPD apparatus. A low-voltage direct current (DC) power supply is used to supply DC low voltage to the EPD apparatus, thus evenly coating a catalyst layer on the substrate. The catalyst layer coated on the substrate is washed with de-ionized water and dried, thus forming a membrane fuel cell (MFC) electrode.
    • 通过将离聚物溶液与电解质混合来提供阴极电泳沉积(EPD)悬浮液。 通过将碳纳米材料(CNM)负载的催化剂与具有与阴极EPD悬浮液相同的组成的溶液混合来提供阳极EPD悬浮液。 在阴极和阳极EPD悬浮液上进行超声波和高速搅拌,从而将它们变成均匀的悬浮液。 提供了一种结合有多孔材料以将其分离成阳极和阴极隔室的低压EPD设备。 阳极和阴极EPD悬浮液分别填充在阳极和阴极隔室中。 将惰性气体引入阳极室中以搅拌阳极EPD悬浮液。 电极基底用作EPD装置的阳极。 使用低压直流(DC)电源向EPD装置提供DC低电压,从而在基板上均匀涂覆催化剂层。 涂布在基材上的催化剂层用去离子水洗涤并干燥,从而形成膜燃料电池(MFC)电极。