Current sensor and overload current protective device comprising the same
First Claim
1. A current sensor, comprising:
- two magnetic detection elements which has a magnetic impedance effect and is provided near wiring leading a current;
a current applying unit applying an alternating current to both ends of the magnetic detection element;
a DC bias magnetic field applying unit applying a DC bias magnetic field to the magnetic detection element;
two detection units detecting variations in magnetic field by a current from variations in alternating current varying depending on an external magnetic field applied to the magnetic detection element corresponding to the magnetic detection element;
a differential amplification unit differentiation amplifying output of the two detection units; and
a negative feedback magnetic field applying unit applying a predetermined negative feedback magnetic field to the magnetic detection element depending on the output of the detection unit or the differential amplification unit.
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Abstract
A small, low-cost, wide-range current sensor excellent in environmental resistance and noise resistance and high in accuracy, and an application device, a DC magnetic field is applied to two magnetic elements (1a, 1b) having a magnetic impedance effect by means of a magnet (3), while a negative feedback magnetic field is applied to both elements by means of a coil (2). The variation of the magnetic field depending on the external magnetic field applied to the magnetic elements (1a, 1b) is detected by detection units (7a, 7b) The difference between the output is amplified by a differential amplifier unit (8). Thus, detection is achieved in a wide range while eliminating the influence of the noise.
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Citations
14 Claims
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1. A current sensor, comprising:
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two magnetic detection elements which has a magnetic impedance effect and is provided near wiring leading a current;
a current applying unit applying an alternating current to both ends of the magnetic detection element;
a DC bias magnetic field applying unit applying a DC bias magnetic field to the magnetic detection element;
two detection units detecting variations in magnetic field by a current from variations in alternating current varying depending on an external magnetic field applied to the magnetic detection element corresponding to the magnetic detection element;
a differential amplification unit differentiation amplifying output of the two detection units; and
a negative feedback magnetic field applying unit applying a predetermined negative feedback magnetic field to the magnetic detection element depending on the output of the detection unit or the differential amplification unit. - View Dependent Claims (3, 5, 6, 7)
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2. A current sensor, comprising:
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two magnetic detection elements which has a magnetic impedance effect and is provided near wiring leading a current;
a current applying unit applying an alternating current to both ends of the magnetic detection element;
a DC bias magnetic field applying unit applying a DC bias magnetic field to the magnetic detection element;
a negative feedback magnetic field applying unit applying a negative feedback magnetic field to the magnetic detection element;
a predetermined magnetic field applying unit applying a predetermined magnetic field to the magnetic detection element;
a switch unit applying one of the negative feedback magnetic field and the predetermined magnetic field to the magnetic detection element;
two detection units detecting variations in magnetic field by a current from variations in alternating current varying depending on an external magnetic field applied to the magnetic detection element corresponding to the magnetic detection element; and
a differential amplification unit differentiation amplifying output of the two detection units, characterized in that depending on the output of the detection unit or the output of the differential amplification unit, a negative feedback magnetic field is applied to two magnetic detection elements in a period, a predetermined magnetic field is applied to two magnetic detection elements in another period, and a predetermined amendment is made to the output of the differential amplification unit depending on the output of the detection unit or the output of the differential amplification unit of each period.
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4. A current sensor, comprising:
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two magnetic detection elements which has a magnetic impedance effect and is provided near wiring leading a current;
a current applying unit applying an alternating current to both ends of the magnetic detection element;
a DC bias magnetic field applying unit applying a DC bias magnetic field to the magnetic detection element;
a negative feedback coil applying a negative feedback magnetic field to the magnetic detection element and a plurality of negative feedback elements;
a switch unit switching the plurality of negative feedback elements;
two detection units detecting variations in magnetic field by a current from variations in alternating current varying depending on an external magnetic field applied to the magnetic detection element corresponding to the magnetic detection element; and
a differential amplification unit differentiation amplifying output of the two detection units, characterized in that depending on the output of the detection unit or output of the differential amplification unit, the plurality of negative feedback elements are selected.
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8. An overload current protective device which is provided with a switch for supplying a current from a power source to a load or cutting it off, a current detector for detecting the current, and a control power source for providing power to each unit of the device, for cutting off the current to a load when an overcurrent occurs, comprising:
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two magnetic detection elements which has a magnetic impedance effect and is provided near wiring leading a current;
a current applying unit applying an alternating current to both ends of the magnetic detection element;
a DC bias magnetic field applying unit applying a DC bias magnetic field to the magnetic detection element;
two detection units detecting variations in magnetic field by a current from variations in alternating current varying depending on an external magnetic field applied to the magnetic detection element corresponding to the magnetic detection element;
a differential amplification unit differentiation amplifying the output of the two detection units; and
a negative feedback magnetic field applying unit applying a predetermined negative feedback magnetic field to the magnetic detection element depending on output of the detection unit or the differential amplification unit. - View Dependent Claims (10, 12, 13, 14)
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9. An overload current protective device, which is provided with a switch for supplying a current from a power source to a load or cutting it off, a current detector for detecting the current, and a control power source for providing power to each unit of the device, for cutting off the current to the load when an overcurrent occurs, comprising:
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two magnetic detection elements which has a magnetic impedance effect and is provided near wiring leading a current;
a current applying unit applying an alternating current to both ends of the magnetic detection element;
a DC bias magnetic field applying unit applying a DC bias magnetic field to the magnetic detection element;
a negative feedback magnetic field applying unit applying a negative feedback magnetic field to the magnetic detection element;
a predetermined magnetic field applying unit applying a predetermined magnetic field to the magnetic detection element;
a switch unit applying one of the negative feedback magnetic field and the predetermined magnetic field to the magnetic detection element;
two detection units detecting variations in magnetic field by a current from the variations in alternating current varying depending on an external magnetic field applied to the magnetic detection element corresponding to the magnetic detection element; and
a differential amplification unit differentiation amplifying output of the two detection units, characterized in that depending on the output of the detection unit or the output of the differential amplification unit, a negative feedback magnetic field is applied to two magnetic detection elements in a period, a predetermined magnetic field is applied to two magnetic detection elements in another period, and a predetermined amendment is made to the output of the differential amplification unit depending on the output of the detection unit or the output of the differential amplification unit of each period.
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11. An overload current protective device, which is provided with a switch for supplying a current from a power source to a load or cutting it off, a current detector for detecting the current, and a control power source for providing power to each unit of the device, for cutting off the current to the load when an overcurrent occurs, comprising:
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two magnetic detection elements which has a magnetic impedance effect and is provided near the wiring leading a current;
a current applying unit applying an alternating current to both ends of the magnetic detection element;
a DC bias magnetic field applying unit applying a DC bias magnetic field to the magnetic detection element;
a negative feedback coil applying a negative feedback magnetic field to the magnetic detection element and a plurality of negative feedback elements;
a switch unit switching the plurality of negative feedback elements;
two detection units detecting variations in magnetic field by a current from variations in alternating current varying depending on an external magnetic field applied to the magnetic detection element corresponding to the magnetic detection element; and
a differential amplification unit differentiation amplifying the output of the two detection units, characterized in that, depending on the output of the detection unit or the output of the differential amplification unit, the plurality of negative feedback elements are selected.
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Specification