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    • 5. 发明授权
    • Magnetic sensor device
    • 磁传感器装置
    • US08502529B2
    • 2013-08-06
    • US12956544
    • 2010-11-30
    • Daisuke MuraokaMinoru AriyamaTomoki HikichiManabu Fujimura
    • Daisuke MuraokaMinoru AriyamaTomoki HikichiManabu Fujimura
    • G01R33/02
    • G01R33/072H01L43/06
    • Provided is a magnetic sensor device capable of suppressing a variation in determination for detection or canceling of a magnetic field intensity, which is caused by noise generated from respective constituent elements included in the magnetic sensor device and external noise, to thereby achieve high-precision magnetic reading. The magnetic sensor device includes: a first D-type flip-flop and a second D-type flip-flop each having an input terminal connected to an output terminal of a comparator; an XOR circuit having a first input terminal and a second input terminal which are connected to an output terminal of the first D-type flip-flop and an output terminal of the second D-type flip-flop, respectively; a selector circuit; and a third D-type flip-flop having an input terminal connected to an output terminal of the selector circuit. The selector circuit includes: a first input terminal (A) and a second input terminal (B) which are connected to the output terminal of the second D-type flip-flop and an output terminal of the third D-type flip-flop, respectively; and a select terminal connected to an output terminal of the XOR circuit. The selector circuit selectively outputs input signals from the first input terminal (A) and the second input terminal (B), according to an output of the XOR circuit.
    • 提供一种磁传感器装置,其能够抑制由磁传感器装置中包含的各构成元件产生的噪声和外部噪声引起的磁场强度的检测或取消的判定的变化,从而实现高精度磁性 读。 磁传感器装置包括:第一D型触发器和第二D型触发器,每个具有连接到比较器的输出端子的输入端子; 具有分别连接到第一D型触发器的输出端和第二D型触发器的输出端的第一输入端和第二输入端的异或电路; 选择器电路; 以及具有连接到选择器电路的输出端的输入端的第三D型触发器。 选择器电路包括:连接到第二D型触发器的输出端和第三D型触发器的输出端的第一输入端(A)和第二输入端(B) 分别; 以及连接到XOR电路的输出端子的选择端子。 选择器电路根据异或电路的输出选择性地输出来自第一输入端(A)和第二输入端(B)的输入信号。
    • 6. 发明授权
    • Magnetic sensor device
    • 磁传感器装置
    • US08193807B2
    • 2012-06-05
    • US12779582
    • 2010-05-13
    • Daisuke MuraokaMinoru AriyamaTomoki HikichiManabu Fujimura
    • Daisuke MuraokaMinoru AriyamaTomoki HikichiManabu Fujimura
    • G01R33/06
    • G01R33/0029
    • Provided is a magnetic sensor device including: a switching circuit that controls switching of a terminal pair of the magnetoelectric conversion element to which a supply voltage is applied and a terminal pair to which detection voltage of a magnetic intensity is output; a differential amplifier that differentially amplifies the detection voltage; a first capacitor connected to a first output terminal of the differential amplifier; a second switch connected to a second output terminal of the differential amplifier; a comparator that has a first input terminal connected to the first capacitor and a second input terminal connected to the second switch; a first switch connected between the first input terminal and an output terminal of the comparator; and a second capacitor connected to the second input terminal of the comparator; and a detection voltage setting circuit connected to the second capacitor, in which effects of respective offset voltages of the magnetoelectric conversion element, the amplifier, and the comparator are suppressed, and an arbitrary detection magnetic field intensity is set to enable accurate magnetic reading.
    • 提供一种磁传感器装置,包括:切换电路,其控制施加电源电压的磁电转换元件的端子对和输出磁场强度检测电压的端子对的切换; 差分放大器,差分放大检测电压; 连接到差分放大器的第一输出端的第一电容器; 连接到差分放大器的第二输出端的第二开关; 比较器,其具有连接到第一电容器的第一输入端子和连接到第二开关的第二输入端子; 连接在比较器的第一输入端子和输出端子之间的第一开关; 以及连接到比较器的第二输入端的第二电容器; 以及连接到第二电容器的检测电压设置电路,其中抑制了磁电转换元件,放大器和比较器的各个偏移电压的影响,并且设置任意检测磁场强度以使得能够进行精确的磁读取。
    • 8. 发明授权
    • Magnetic sensor circuit
    • 磁传感器电路
    • US08305075B2
    • 2012-11-06
    • US12891286
    • 2010-09-27
    • Tomoki HikichiMinoru Ariyama
    • Tomoki HikichiMinoru Ariyama
    • G01R33/07
    • G01R33/072
    • Provided is a magnetic sensor circuit of low power consumption, in which a magnetic detection level less depends on a resistance value of an internal resistor of a power source. A comparator circuit compares a voltage which is based on a magnetic field and generated after sampling under a state in which power is supplied to mainly a Hall element and an amplifier circuit to drop a power supply voltage, with a reference voltage after sampling under the same state. Both the voltages are generated based on the power supply voltage dropped by an internal resistor. Therefore, the magnetic detection level less depends on a resistance value of the internal resistor. The comparator circuit may be disabled during a sample period, and the Hall element and the amplifier circuit may be disabled during a comparison period, and hence power consumption of the magnetic sensor circuit is reduced by corresponding power.
    • 提供了一种低功耗的磁传感器电路,其中磁检测电平较小取决于电源的内部电阻器的电阻值。 比较器电路将基于磁场的电压并且在向主要霍尔元件供电的状态下的采样之后产生的电压和放大电路降低电源电压,同时对其进行采样之后的参考电压 州。 两个电压都是基于内部电阻下降的电源电压产生的。 因此,磁检测电平较小取决于内部电阻器的电阻值。 在采样周期期间可以禁止比较器电路,并且在比较期间可以禁止霍尔元件和放大器电路,因此磁传感器电路的功率消耗由相应的功率降低。
    • 9. 发明申请
    • MAGNETIC SENSOR DEVICE
    • 磁传感器装置
    • US20110241662A1
    • 2011-10-06
    • US12956544
    • 2010-11-30
    • Daisuke MuraokaMinoru AriyamaTomoki HikichiManabu Fujimura
    • Daisuke MuraokaMinoru AriyamaTomoki HikichiManabu Fujimura
    • G01R33/02
    • G01R33/072H01L43/06
    • Provided is a magnetic sensor device capable of suppressing a variation in determination for detection or canceling of a magnetic field intensity, which is caused by noise generated from respective constituent elements included in the magnetic sensor device and external noise, to thereby achieve high-precision magnetic reading. The magnetic sensor device includes: a first D-type flip-flop and a second D-type flip-flop each having an input terminal connected to an output terminal of a comparator; an XOR circuit having a first input terminal and a second input terminal which are connected to an output terminal of the first D-type flip-flop and an output terminal of the second D-type flip-flop, respectively; a selector circuit; and a third D-type flip-flop having an input terminal connected to an output terminal of the selector circuit. The selector circuit includes: a first input terminal (A) and a second input terminal (B) which are connected to the output terminal of the second D-type flip-flop and an output terminal of the third D-type flip-flop, respectively; and a select terminal connected to an output terminal of the XOR circuit. The selector circuit selectively outputs input signals from the first input terminal (A) and the second input terminal (B), according to an output of the XOR circuit.
    • 提供一种磁传感器装置,其能够抑制由磁传感器装置中包含的各构成元件产生的噪声和外部噪声引起的磁场强度的检测或取消的判定的变化,从而实现高精度磁性 读。 磁传感器装置包括:第一D型触发器和第二D型触发器,每个具有连接到比较器的输出端子的输入端子; 具有分别连接到第一D型触发器的输出端和第二D型触发器的输出端的第一输入端和第二输入端的异或电路; 选择器电路; 以及具有连接到选择器电路的输出端的输入端的第三D型触发器。 选择器电路包括:连接到第二D型触发器的输出端和第三D型触发器的输出端的第一输入端(A)和第二输入端(B) 分别; 以及连接到XOR电路的输出端子的选择端子。 选择器电路根据异或电路的输出选择性地输出来自第一输入端(A)和第二输入端(B)的输入信号。
    • 10. 发明授权
    • Resistor circuit
    • 电阻电路
    • US06725436B2
    • 2004-04-20
    • US10267364
    • 2002-10-09
    • Toshiyuki KoikeYoshihide KanakuboMinoru Ariyama
    • Toshiyuki KoikeYoshihide KanakuboMinoru Ariyama
    • G06F1750
    • H01L27/0802
    • To provide a resistor circuit with which a resistance ratio among voltage division resistors in a semiconductor integrated circuit can be realized with high accuracy. The resistor circuit of the present invention includes: a reference resistor portion; and a resistor portion including resistor elements and fuse connected in parallel with the resistor elements, respectively, for trimming the resistor elements. The resistor elements are arranged in order from the resistor element having a largest resistance value so as to be adjacent to the reference resistor portion in the periphery of the reference resistor portion. As a result, it is possible to obtain accurately the ratio between a resistance value of a reference resistor and a desired resistance value determined with the ratio from the resistance value of the reference resistor.
    • 提供一种可以高精度地实现半导体集成电路中的分压电阻之间的电阻比的电阻电路。 本发明的电阻电路包括:基准电阻部分; 以及分别包括与电阻元件并联连接的电阻元件和熔丝的电阻部分,用于修整电阻元件。 电阻元件从具有最大电阻值的电阻元件的顺序排列成与参考电阻器部分周围的参考电阻器部分相邻。 结果,可以准确地获得参考电阻器的电阻值与由参考电阻器的电阻值的比率确定的期望电阻值之间的比率。