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    • 22. 发明授权
    • Alternating current power measuring apparatus
    • 交流电力测量装置
    • US09529024B2
    • 2016-12-27
    • US13405650
    • 2012-02-27
    • Hirotaka OshimaTakayuki AmbeAkio Ito
    • Hirotaka OshimaTakayuki AmbeAkio Ito
    • G01R21/06G01R21/133
    • G01R21/06G01R21/1331
    • An alternating current power measuring apparatus includes a first capacitance element having one end connected to a conductor wire of a first electrical cable of a set of electrical cables for supplying alternating current to a load and having the other end capacitively coupled to a conductor wire of a second electrical cable, a first voltage measuring part which measures a first voltage which is a voltage of both ends of the first capacitance element, a first current measuring part which measures a first current flowing in the first electrical cable, and a processing part which computes a power to be supplied to the load by the set of electrical cables by the multiplication among a proportion between a specified voltage value of a voltage applied to the set of electrical cables and an effective value of the first voltage, the first voltage and the first current.
    • 交流电力测量装置包括第一电容元件,第一电容元件的一端连接到一组电缆的第一电缆的导体线,用于向负载提供交流电流,并且另一端电容耦合到导线 第二电缆,测量作为第一电容元件的两端的电压的第一电压的第一电压测量部,测量在第一电缆中流动的第一电流的第一电流测量部,以及计算第 通过乘以所述一组电缆的负载而施加到所述一组电缆的电压的指定电压值与所述第一电压的有效值之间的比例,所述第一电压和所述第一电压 当前。
    • 23. 发明授权
    • Power distribution network estimation device
    • 配电网估算装置
    • US08560263B2
    • 2013-10-15
    • US13029392
    • 2011-02-17
    • Hiroshi YamamotoToshiaki FunakuboNobutsugu FujinoHirotaka Oshima
    • Hiroshi YamamotoToshiaki FunakuboNobutsugu FujinoHirotaka Oshima
    • G01R31/00
    • H02J13/002Y02E60/7815Y04S40/121
    • A device that estimates a positional relationship between loads individually connected through sensors to electric power-supply ends provided in a power distribution network includes a communication unit configured to change a resistance value located between each of electric power-supply ends and a ground terminal of each of sensors and measure a voltage value produced between each of the electric power-supply ends and the ground terminal; and a determination unit configured to acquire voltage values from the two selected sensors from among the sensors after a resistance value of one of the two sensors that has a higher acquired voltage value is changed, calculate a ratio between voltage values acquired before and after the resistance value is changed, and determine that the two sensors are connected to a branch circuit in a same system in the power distribution network, when each ratio about the two sensors is within a specified range.
    • 估计在配电网中提供的通过传感器单独连接到供电端的负载之间的位置关系的装置包括:通信单元,被配置为改变位于每个电源端和每个电源端的接地端之间的电阻值 并测量在每个电源端和接地端之间产生的电压值; 以及确定单元,被配置为在具有较高获取电压值的两个传感器之一的电阻值改变之后从传感器中从两个选择的传感器获取电压值,计算电阻之前和之后获取的电压值之间的比率 当两个传感器的每个比例在规定范围内时,确定两个传感器连接到配电网络中相同系统中的分支电路。
    • 25. 发明申请
    • Magnetoresistive effect device and method of manufacturing ferromagnetic structure
    • 磁阻效应器件及制造铁磁结构的方法
    • US20070217083A1
    • 2007-09-20
    • US11483565
    • 2006-07-11
    • Keiichi NagasakaHirotaka OshimaArata JogoYutaka Shimizu
    • Keiichi NagasakaHirotaka OshimaArata JogoYutaka Shimizu
    • G11B5/33
    • B82Y10/00B82Y25/00G01R33/093G11B5/3929G11B2005/3996
    • A spin valve film has a lamination structure of a pinned layer, a non-magnetic intermediate layer and a free layer. The pinned layer is made of ferromagnetic material and has a fixed magnetization direction. The non-magnetic intermediate layer is made of non-magnetic conductive material. The free layer is made of ferromagnetic material and changes a magnetization direction by external magnetic field. Electrodes let current flow through the spin valve film in a lamination direction. At least one of the pinned layer and the free layer includes a lamination portion of a first layer and a second layer stacked alternately. The first layer has a composition ratio of elements presenting ferromagnetism higher than that in the second layer. The second layer has a composition ratio of elements presenting non-magnetism higher than that in the first layer. The lamination portion includes at least two first layers and at least one second layer.
    • 自旋阀膜具有钉扎层,非磁性中间层和自由层的层压结构。 钉扎层由铁磁材料制成,具有固定的磁化方向。 非磁性中间层由非磁性导电材料制成。 自由层由铁磁材料制成,并通过外部磁场改变磁化方向。 电极使电流在层叠方向上流过自旋阀膜。 被钉扎层和自由层中的至少一个包括交替堆叠的第一层和第二层的层压部分。 第一层具有高于第二层中的铁磁性元素的组成比。 第二层具有高于第一层中的非磁性元素的组成比。 层压部分包括至少两个第一层和至少一个第二层。