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    • 2. 发明申请
    • Activated Carbon for Electric Double Layer Capacitor, Activated Carbon Electrode for Electric Double Layer Capacitor, and an Electric Double Layer Capacitor Using Same
    • 电双层电容器的活性炭,双电层电容器的活性炭电极和使用相同的双电层电容器
    • US20070247787A1
    • 2007-10-25
    • US11631852
    • 2004-07-09
    • Yoshiteru NakagawaHiroyuki TajiriAkihiro Mabuchi
    • Yoshiteru NakagawaHiroyuki TajiriAkihiro Mabuchi
    • H01G9/00
    • H01G11/42C01B32/342H01G9/058H01G9/155H01G11/34Y02E60/13
    • An electric double layer capacitor excellent in cycle characteristic with which a high electrostatic capacity is obtained by impression of a low voltage is provided. Carbonization treatment is carried out in which 1 kg of meso carbon micro beads whose particle diameter is 25 μm is heated in a nitrogen atmosphere at 800° C. for 2 hours, and is cooled to room temperature. The carbide of meso carbon micro beads and sodium hydroxide powder are mixed in a ratio by weight of 1:2.5. Alkali activation treatment is carried out in which the mixture is heated in a helium atmosphere at 600° C. for 1 hour, and the carbide is exposed to sodium vapor. After cooling to room temperature, 8 g of this carbon powder, 1 g of ketchen black 1 g and 1 g of polytetrafluoroethylene are kneaded and rolled into a sheet 0.5 mm thick. The sheet-like carbon material is stamped out 16 mm in diameter to be active carbon layers 3 which form polarizable electrodes 4 in combination with collecting layers 2. The polarizable electrodes 4 and a separator 1 are combined and impregnated with an organic electrolytic solution to produce an electric double layer capacitor A.
    • 提供一种具有优异的循环特性的双电层电容器,通过低压电压获得高静电电容。 进行碳化处理,其中将1kg粒径为25μm的中小碳微球在氮气气氛中在800℃下加热2小时,并冷却至室温。 将中碳微珠和氢氧化钠粉末的碳化物以1:2.5的重量比混合。 进行碱处理,其中将混合物在600℃的氦气氛中加热1小时,碳化物暴露于钠蒸汽。 冷却至室温后,将8g该碳粉,1g的ketchen黑1g和聚四氟乙烯1g混合并卷成0.5mm厚的片。 将板状碳材料冲压成直径16mm,作为与收集层2组合形成极化电极4的活性碳层3.将可极化电极4和隔板1合并并浸渍有机电解液,以产生 双电层电容器A.
    • 6. 发明授权
    • Acceleration sensor and method of fabricating it
    • 加速度传感器及其制造方法
    • US08047076B2
    • 2011-11-01
    • US12444426
    • 2008-05-16
    • Yasuhiro YoshikawaHiroyuki Tajiri
    • Yasuhiro YoshikawaHiroyuki Tajiri
    • G01P15/125H05K3/30H01L29/82
    • G01P15/125G01P15/0802G01P15/18G01P2015/0814G01P2015/082G01P2015/084Y10T29/49139
    • Provided is an acceleration sensor that has high detection sensitivity and that can enhance production efficiency. The acceleration sensor has: a ceramic substrate made of Al2O3; a ferroelectric layer formed in a predetermined area on the ceramic substrate by screen printing, the ferroelectric layer being made of BaTiO3; a proof mass disposed so as to face the ferroelectric layer, the proof mass being formed at a predetermined distance d from the ferroelectric layer; and a first electrode and a second electrode that are formed on that side of the proof mass which faces the ferroelectric layer, so as to be fixed thereto. The first electrode and the second electrode are each formed in the shape of comb teeth, and comb tooth portions and thereof are arranged in an alternating manner.
    • 提供了具有高检测灵敏度并且可以提高生产效率的加速度传感器。 加速度传感器具有:由Al2O3制成的陶瓷基板; 通过丝网印刷形成在陶瓷基板上的预定区域中的铁电层,所述铁电层由BaTiO 3制成; 以与铁电体层相对的方式配置的检验质量块,与铁电体层隔开规定的距离d形成有检体; 以及第一电极和第二电极,其形成在面向强电介质层的证明块的该侧上,以便固定在其上。 第一电极和第二电极各自形成为梳齿形状,并且梳齿部分以交替的方式布置。
    • 7. 发明申请
    • ACCELERATION SENSOR AND METHOD OF FABRICATING IT
    • 加速传感器及其制作方法
    • US20100000324A1
    • 2010-01-07
    • US12444426
    • 2008-05-16
    • Yasuhiro YoshikawaHiroyuki Tajiri
    • Yasuhiro YoshikawaHiroyuki Tajiri
    • G01P15/125H05K3/30
    • G01P15/125G01P15/0802G01P15/18G01P2015/0814G01P2015/082G01P2015/084Y10T29/49139
    • Provided is an acceleration sensor that has high detection sensitivity and that can enhance production efficiency. The acceleration sensor (50) has: a ceramic substrate (1) made of Al2O3; a ferroelectric layer (2) formed in a predetermined area on the ceramic substrate (1) by screen printing, the ferroelectric layer (2) being made of BaTiO3; a proof mass (4) disposed so as to face the ferroelectric layer (2), the proof mass (4) being formed at a predetermined distance d from the ferroelectric layer (2); and a first electrode (7) and a second electrode (8) that are formed on that side of the proof mass (4) which faces the ferroelectric layer (2), so as to be fixed thereto. The first electrode (7) and the second electrode (8) are each formed in the shape of comb teeth, and comb tooth portions (7a) and (8a) thereof are arranged in an alternating manner.
    • 提供了具有高检测灵敏度并且可以提高生产效率的加速度传感器。 加速度传感器(50)具有:由Al 2 O 3构成的陶瓷基板(1) 通过丝网印刷形成在陶瓷基板(1)上的预定区域中的铁电体层(2),所述铁电体层(2)由BaTiO 3制成; 以与铁电层(2)相对的方式配置的检验质量块(4),与强电介质层(2)形成规定距离d的检测质量体(4)。 以及形成在与所述铁电体层(2)相对的所述证明块(4)的所述一侧上的第一电极(7)和第二电极(8),以固定在所述第一电极(7)和第二电极(8)上。 第一电极(7)和第二电极(8)各自形成为梳齿形状,并且梳齿部(7a)和(8a)以交替的方式排列。