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    • 62. 发明授权
    • Current sensor
    • 电流传感器
    • US09423429B2
    • 2016-08-23
    • US14327182
    • 2014-07-09
    • ALPS GREEN DEVICES CO., LTD.
    • Hirofumi Fukui
    • G01R33/02G01R19/00G01R33/09G01R15/20
    • G01R19/0092G01R15/207G01R33/02G01R33/09G01R33/093
    • A first magnetoelectric conversion element group including magnetoelectric conversion elements, and a second magnetoelectric conversion element group including magnetoelectric conversion elements are arranged across a cutout of a wiring board. The first and second groups are arranged line-symmetrically with respect to a first imaginary line. The elements in the first and second groups are arranged line-symmetrically with respect to a second imaginary line. The first imaginary line and the second imaginary line orthogonally intersect each other at a placement position at which a current path to be measured is placed. The orientation of the sensitivity axis of each of a plurality of magnetoelectric-conversion-element sets having point symmetry about the placement position is parallel or antiparallel. An element spacing, which is spacing between neighboring elements in the first and second groups, is narrower than a group spacing, which is the narrowest spacing between the first and second groups.
    • 包括磁电转换元件的第一磁电转换元件组和包括磁电转换元件的第二磁电转换元件组布置在布线板的切口上。 第一组和第二组相对于第一假想线线对称布置。 第一组和第二组中的元件相对于第二假想线线对称布置。 第一假想线和第二假想线在放置当前测量路径的放置位置处彼此正交相交。 具有关于放置位置的点对称性的多个磁电转换元件组中的每一个的灵敏度轴的取向是平行的或反平行的。 作为第一组和第二组中的相邻元件之间的间隔的元件间隔窄于第一组和第二组之间最窄间距的组间距。
    • 63. 发明授权
    • Current sensor
    • 电流传感器
    • US09335349B2
    • 2016-05-10
    • US14137377
    • 2013-12-20
    • ALPS GREEN DEVICES CO., LTD.
    • Manabu Tamura
    • G01R15/20G01R33/02G01R19/00
    • G01R19/0092G01R15/20G01R15/207G01R19/00G01R33/02
    • A current sensor of the present invention includes a mounting unit including a disposition region in which a current path is disposed, a pair of magnetic detection elements disposed in the mounting unit so as to sandwich therebetween the disposition region, and an arithmetic circuit performing an arithmetic operation on the current value of the current path on the basis of the detection values of the pair of magnetic detection elements. The pair of magnetic detection elements is disposed on sides opposite to each other with respect to a virtual line passing through the gravity center of the current path in cross-sectional view of the current path, and individually has sensitivity axes parallel to a direction perpendicular to the direction of a current conducted through the current path and the direction of the virtual line.
    • 本发明的电流传感器包括安装单元,其包括布置有电流路径的布置区域,设置在安装单元中的一对磁性检测元件,以便将它们夹在其间,配置区域和运算电路, 基于一对磁检测元件的检测值对当前路径的当前值进行动作。 一对磁性检测元件相对于通过电流路径的重心的虚拟线路设置在与电流路径的横截面视图相对的侧上,并且分别具有与垂直于电流路径的方向平行的灵敏度轴 通过电流路径传导的电流的方向和虚拟线的方向。
    • 67. 发明授权
    • Current sensor
    • 电流传感器
    • US09046554B2
    • 2015-06-02
    • US13766664
    • 2013-02-13
    • ALPS GREEN DEVICES CO., LTD.
    • Masatoshi NomuraManabu Tamura
    • G01R33/09G01R27/02G01R19/257G01R15/20
    • G01R19/257G01R15/207
    • A current sensor includes: a first magnetic sensor and a second magnetic sensor; a first analog-to-digital converter which is connected to the first magnetic sensor and converts an output signal of the first magnetic sensor from an analog signal to a digital signal so as to be output; a second analog-to-digital converter which is connected to the second magnetic sensor and converts an output signal of the second magnetic sensor from an analog signal to a digital signal so as to be output; and an operation device which is connected to the first analog-to-digital converter and the second analog-to-digital converter, and outputs an operation value by subjecting the output signal of the first analog-to-digital converter and the output signal of the second analog-to-digital converter to differential operation.
    • 电流传感器包括:第一磁传感器和第二磁传感器; 第一模数转换器,连接到第一磁传感器,并将第一磁传感器的输出信号从模拟信号转换为数字信号,以输出; 第二模数转换器,其连接到第二磁传感器,并将第二磁传感器的输出信号从模拟信号转换为数字信号,以输出; 以及连接到第一模数转换器和第二模数转换器的操作装置,并且通过使第一模数转换器的输出信号和第一模数转换器的输出信号 第二个模数转换器进行差分运算。
    • 68. 发明授权
    • Current sensor
    • 电流传感器
    • US09041392B2
    • 2015-05-26
    • US13939075
    • 2013-07-10
    • ALPS GREEN DEVICES CO., LTD.
    • Yasuo KoteraManabu TamuraHisanori Kiyomatsu
    • G01R33/02G01R31/28G01R19/00G01R19/10G01R15/20
    • G01R31/2829G01R15/205G01R19/0092G01R19/10
    • There is provided a current sensor capable of performing malfunction determination with high accuracy even under the influence of an adscititious magnetic field. A current sensor includes first and second current sensor units, a computation unit, a storage unit, and a determination processing unit. The first current sensor unit measures a target current. The first and second current sensor units have almost the same sensitivity. The computation unit calculates and outputs an addition value and a difference value of outputs of the first and second current sensor units. In the storage unit, the addition and difference values output from the computation unit are stored. The determination processing unit determines whether a malfunction has occurred by using the addition and difference values stored in the storage unit. The determination processing unit determines that a malfunction has occurred, in a case where there is a correlation between the addition and difference values.
    • 提供了即使在不规则磁场的影响下也能够以高精度进行故障判定的电流传感器。 电流传感器包括第一和第二电流传感器单元,计算单元,存储单元和确定处理单元。 第一个电流传感器单元测量目标电流。 第一和第二电流传感器单元具有几乎相同的灵敏度。 计算单元计算并输出第一和第二电流传感器单元的输出的相加值和差值。 在存储单元中,存储从计算单元输出的加法和差值。 确定处理单元通过使用存储在存储单元中的加和差值来确定是否发生故障。 在加法和差值之间存在相关性的情况下,确定处理单元确定发生故障。