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    • 3. 发明申请
    • MAGNETIC DETECTION DEVICE HAVING BRIDGE CIRCUIT PROVIDED WITH RESISTANCE ADJUSTMENT PORTION AND METHOD OF MANUFACTURING THE SAME
    • 具有电阻调节部的桥式电路的磁性检测装置及其制造方法
    • US20090315552A1
    • 2009-12-24
    • US12545639
    • 2009-08-21
    • Hideto AndoHideki GochouMotoki Hirayama
    • Hideto AndoHideki GochouMotoki Hirayama
    • G01R33/09
    • G01D5/142
    • In a magnetic detection device using a magnetic resistance element, the resistance of a layer having a multi-layer structure can be easily adjusted without causing damages to the layer. A magneto-resistance layer is connected in series to a reference resistance layer, and a magneto-resistance layer is connected in series to a reference resistance layer on a substrate. A voltage is applied between a power supply layer and a grounding layer. A first output conductive layer and the reference resistance layer extend in parallel to each other so that they are partially electrically connected to each other via a connection layer. A second output conductive layer and the reference resistance layer extend in parallel to each other so that they are partially electrically connected to each other via a connection layer. Accordingly, it is possible to adjust the resistance of the reference resistance layers by selecting the respective positions of the connection layers.
    • 在使用磁阻元件的磁检测装置中,可以容易地调整具有多层结构的层的电阻而不会对该层造成损害。 磁阻层与基准电阻层串联连接,并且磁电阻层与衬底上的参考电阻层串联连接。 在电源层和接地层之间施加电压。 第一输出导电层和参考电阻层彼此并联延伸,使得它们经由连接层部分地彼此电连接。 第二输出导电层和参考电阻层彼此并联延伸,使得它们经由连接层部分地彼此电连接。 因此,可以通过选择连接层的各个位置来调整参考电阻层的电阻。
    • 5. 发明申请
    • MAGNETIC DETECTION DEVICE HAVING BRIDGE CIRCUIT PROVIDED WITH RESISTANCE ADJUSTMENT PORTION AND METHOD OF MANUFACTURING THE SAME
    • 具有电阻调节部的桥式电路的磁性检测装置及其制造方法
    • US20080054888A1
    • 2008-03-06
    • US11679015
    • 2007-02-26
    • Hideto AndoHideki GochouMotoki Hirayama
    • Hideto AndoHideki GochouMotoki Hirayama
    • G01D5/12
    • G01D5/142
    • In a magnetic detection device using a magnetic resistance element, the resistance of a layer having a multi-layer structure can be easily adjusted without causing damages to the layer. A magneto-resistance layer is connected in series to a reference resistance layer, and a magneto-resistance layer is connected in series to a reference resistance layer on a substrate. A voltage is applied between a power supply layer and a grounding layer. A first output conductive layer and the reference resistance layer extend in parallel to each other so that they are partially electrically connected to each other via a connection layer. A second output conductive layer and the reference resistance layer extend in parallel to each other so that they are partially electrically connected to each other via a connection layer. Accordingly, it is possible to adjust the resistance of the reference resistance layers by selecting the respective positions of the connection layers.
    • 在使用磁阻元件的磁检测装置中,可以容易地调整具有多层结构的层的电阻而不会对该层造成损害。 磁阻层与基准电阻层串联连接,并且磁电阻层与衬底上的参考电阻层串联连接。 在电源层和接地层之间施加电压。 第一输出导电层和参考电阻层彼此并联延伸,使得它们经由连接层部分地彼此电连接。 第二输出导电层和参考电阻层彼此并联延伸,使得它们经由连接层部分地彼此电连接。 因此,可以通过选择连接层的各个位置来调整参考电阻层的电阻。
    • 6. 发明授权
    • Force sensor and method of manufacturing the same
    • 力传感器及其制造方法
    • US08516906B2
    • 2013-08-27
    • US13475579
    • 2012-05-18
    • Eiji UmetsuMasahiko IshizoneMotoki HirayamaHideki Gochou
    • Eiji UmetsuMasahiko IshizoneMotoki HirayamaHideki Gochou
    • G01L1/04G01L1/10H01L21/00
    • G01L1/18G01L5/162
    • A sensor substrate includes a plurality of piezoresistance elements. The electrical resistance of each piezoresistance element changes in accordance with an amount of displacement of a displacement portion displaced by an external load applied through a pressure receiving unit. A base substrate supports the sensor substrate. The sensor substrate and the base substrate each include a support supporting the displacement portion such that the displacement portion can be displaced and a plurality of electrically connecting portions electrically connected to the plurality of piezoresistance elements. The supports of the sensor and base substrates are joined to each other and the plurality of electrically connecting portions of the sensor and base substrates are joined to each other. Furthermore, in each of the sensor and base substrates, either the support or the plurality of electrically connecting portions or both extend to the periphery of the sensor substrate or the base substrate.
    • 传感器基板包括多个压阻元件。 每个压电元件的电阻根据通过压力接收单元施加的外部负载而移位的位移部分的位移量而变化。 基底支撑传感器基底。 传感器基板和基板各自包括支撑位移部分的支撑件,使得位移部分可以移位,并且多个电连接部分电连接到多个压阻元件。 传感器和基底基板的支撑件彼此接合,并且传感器和基底基板的多个电连接部分彼此接合。 此外,在每个传感器和基底基板中,支撑件或多个电连接部分或两者都延伸到传感器基板或基底基板的周边。
    • 7. 发明授权
    • Magnetic detection device having bridge circuit provided with resistance adjustment portion and method of manufacturing the same
    • 具有电路调节部的桥接电路的磁检测装置及其制造方法
    • US07592805B2
    • 2009-09-22
    • US11679015
    • 2007-02-26
    • Hideto AndoHideki GochouMotoki Hirayama
    • Hideto AndoHideki GochouMotoki Hirayama
    • G01R33/02
    • G01D5/142
    • In a magnetic detection device using a magnetic resistance element, the resistance of a layer having a multi-layer structure can be easily adjusted without causing damages to the layer. A magneto-resistance layer is connected in series to a reference resistance layer, and a magneto-resistance layer is connected in series to a reference resistance layer on a substrate. A voltage is applied between a power supply layer and a grounding layer. A first output conductive layer and the reference resistance layer extend in parallel to each other so that they are partially electrically connected to each other via a connection layer. A second output conductive layer and the reference resistance layer extend in parallel to each other so that they are partially electrically connected to each other via a connection layer. Accordingly, it is possible to adjust the resistance of the reference resistance layers by selecting the respective positions of the connection layers.
    • 在使用磁阻元件的磁检测装置中,可以容易地调整具有多层结构的层的电阻而不会对该层造成损害。 磁阻层与参考电阻层串联连接,并且磁阻层与衬底上的参考电阻层串联连接。 在电源层和接地层之间施加电压。 第一输出导电层和参考电阻层彼此并联延伸,使得它们经由连接层部分地彼此电连接。 第二输出导电层和参考电阻层彼此并联延伸,使得它们经由连接层部分地彼此电连接。 因此,可以通过选择连接层的各个位置来调整参考电阻层的电阻。