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    • 1. 发明授权
    • Process for manufacturing electric double layer capacitor
    • 双电层电容器制造工艺
    • US6134760A
    • 2000-10-24
    • US158376
    • 1998-09-22
    • Naofumi MushiakeKoshi Inoue
    • Naofumi MushiakeKoshi Inoue
    • H01G9/00H01G9/155
    • H01G9/155Y02E60/13Y10T29/417
    • A plurality of polarizable electrodes, a laminate of a collector layer, a polarizable electrode layer of a porous sheet, and a carbon-based conductive material interposed therebetween, are disposed in a row arrangement, interposing separators between the polarizable electrodes, and an electrolyte is packed between said polarizable electrodes and said separators; the carbon-based conductive material penetrating into the voids in the polarizable electrode layers. A process is provided whereby the polarizable electrode is manufactured by applying a conductive material solution to the collector and/or polarizable electrode sheet surface, superposing the two, and then evaporating out the dispersion medium of the conductive material solution.
    • 多个极化电极,集电体层,多孔片的极化电极层和插入其间的碳系导电材料的层叠体配置成行排列,在可极化电极之间插入隔板,电解质为 包封在所述可极化电极和所述隔板之间; 该碳基导电材料穿透到可极化电极层中的空隙中。 提供了一种工艺,通过将导电材料溶液施加到集电体和/或可极化电极片表面,叠加两者,然后蒸发出导电材料溶液的分散介质,制造可极化电极。
    • 2. 发明申请
    • Cordless device system
    • 无线设备系统
    • US20050130682A1
    • 2005-06-16
    • US10514112
    • 2003-05-13
    • Ken TakaraNaofumi Mushiaketoyota Ikeuchi
    • Ken TakaraNaofumi Mushiaketoyota Ikeuchi
    • H02J7/00H02J7/04H02J7/34H04Q7/20
    • H02J7/045H02J7/0054H02J7/0055H02J7/345
    • A cordless instrument (20, 40) detachable from a charger (10, 30, 31) is attached to the charger (10, 30, 31), and is charged. A first storage part (12, 33) chargeable from a direct current source (11, 32) included in the charger (10, 30, 31), a first charge and discharge control circuit (13, 50) to control charge and discharge of the first storage part (12, 33), a second storage part (21, 43) included in the cordless instrument (20, 40), and a second charge and discharge control circuit (22, 45) to control charge and discharge of the second storage part (21, 43) are provided. Further, a third storage part (28) chargeable from the direct current source (11, 32) may be provided. Also to the cordless instrument (20, 40), a fourth storage part (44) may be provided. Upon attaching the cordless instrument, the second storage part (21, 43) is charged at least from the first storage part (12, 33). In comparison with charging time to conventional secondary batteries, it is capable of rapid charge, long life use, resulting in such merits as to realize the compact size of a charger and low cost.
    • 从充电器(10,30,31)可拆卸的无绳乐器(20,40)附接到充电器(10,30,31),并且被充电。 包括在充电器(10,30,31)中的从直流电源(11,32)充电的第一存储部件(12,33),用于控制充电器(10,30,31)中的充电和放电的第一充放电控制电路 第一存储部(12,33),包括在无绳乐器(20,40)中的第二存储部(21,43),以及第二充放电控制电路(22,45),用于控制 第二存储部(21,43)。 此外,可以提供可从直流源(11,32)充电的第三存储部(28)。 而且,对于无绳仪器(20,40),也可以设置第四存储部件(44)。 在连接无绳乐器时,至少从第一存储部分(12,33)充电第二存储部分(21,43)。 与常规二次电池的充电时间相比,它能够快速充电,使用寿命长,从而实现了充电器的紧凑尺寸和低成本的优点。
    • 3. 发明授权
    • Electric double layer capacitor and process for manufacturing same
    • 双电层电容器及其制造方法
    • US06359769B1
    • 2002-03-19
    • US09579373
    • 2000-05-26
    • Naofumi MushiakeKoshi Inoue
    • Naofumi MushiakeKoshi Inoue
    • H01G7058
    • H01G9/155Y02E60/13Y10T29/417
    • A plurality of polarizable electrodes, a laminate of a collector layer, a polarizable electrode layer of a porous sheet, and a carbon-based conductive material interposed therebetween, are disposed in a row arrangement, interposing separators between the polarizable electrodes, and an electrolyte is packed between said polarizable electrodes and said separators; the carbon-based conductive material penetrating into the voids in the polarizable electrode layers. A process is provided whereby the polarizable electrode is manufactured by applying a conductive material solution to the collector and/or polarizable electrode sheet surface, superposing the two, and then evaporating out the dispersion medium of the conductive material solution.
    • 多个极化电极,集电体层,多孔片的极化电极层和插入其间的碳系导电材料的层叠体配置成行排列,在可极化电极之间插入隔板,电解质为 包封在所述可极化电极和所述隔板之间; 该碳基导电材料穿透到可极化电极层中的空隙中。 提供了一种工艺,通过将导电材料溶液施加到集电体和/或可极化电极片表面,叠加两者,然后蒸发出导电材料溶液的分散介质,制造可极化电极。
    • 6. 发明授权
    • Solid electrolyte composite for electrochemical reaction apparatus
    • 用于电化学反应装置的固体电解质复合材料
    • US06242135B1
    • 2001-06-05
    • US08928207
    • 1997-09-12
    • Naofumi Mushiake
    • Naofumi Mushiake
    • H01M618
    • H01M6/181B01D69/10B01D69/141H01M2/1653H01M8/1044H01M8/1051H01M8/106
    • A solid polymer electrolyte composite for an electrochemical reaction apparatus that possesses satisfactory ion conduction properties and has excellent mechanical strength and heat resistance, is provided, the solid polymer electrolyte composite is characterized in that a solid polymer electrolyte is contained in the continuous pores of an expanded porous polytetrafluoroethylene sheet which has continuous pores and in which the inner surfaces defining the pores are covered with a functional material such as a metal oxide. An electrochemical reaction apparatus containing an electrolyte, wherein said electrochemical reaction apparatus is characterized in that the aforementioned solid polymer electrolyte composite is used as this electrolyte is also provided.
    • 提供了具有良好的离子传导性和良好的机械强度和耐热性的用于电化学反应装置的固体聚合物电解质复合材料,其特征在于固体聚合物电解质包含在膨胀的 具有连续孔的多孔聚四氟乙烯片,其中限定孔的内表面被诸如金属氧化物的功能材料覆盖。 包含电解质的电化学反应装置,其中所述电化学反应装置的特征在于使用上述固体高分子电解质复合材料作为该电解液。