EP0330045A2

Fluxgate magnetometer apparatus with wide temperature range accuracy and method for adjusting fluxgates in same for temperature compensation.

Abstract

A fluxgate magnetometer having wide temperature range accuracy, without adding temperature compensating components, is obtained by: (1) a fluxgate adjusted by aligning a permeable magnetic tape core relative to the secondary winding of the fluxgate so as to substantially equalize each of the pulses induced in the secondary winding by the transition from core saturation to unsaturation in both directions, and (2) increasing the fluxgate magnetometer primary drive current above what is normally considered saturation current to reduce sensitivity of the output to temperature and primary drive changes.

EP0330045A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 13 February 2009, 17.6 years ago.

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18 claims: 9 independent, 9 dependent

  1. 1
    A fluxgate magnetometer comprising a highly permeable magnetic core means of essentially constant magnetic path cross section;a primary winding means disposed on said core means for applying an alternating voltage to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;a secondary winding means disposed on said core means and primary winding means to form a fluxgate and being responsive to said alternate saturation and unsaturation of said core means inducing in said secondary winding means a voltage pulse upon each transition from core saturation to unsaturation, said secondary winding means being aligned relative to said core means such that, when the axis of said core means and the axis of said secondary winding means are oriented in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means, the voltage pulses induced in said secondary winding means by the transition from core saturation to unsaturation in one direction are substantially equal to the voltage pulses induced in said secondary winding means by the transition from core saturation to unsaturation in the opposite direction;input means for supplying an alternating voltage to said primary winding means;output circuit means for measuring and summing the voltage pulses induced in said secondary winding means;and means for determining the magnitude or direction of said external magnetic field from said measured and summed voltage pulses for given orientations of said fluxgate.
  2. 2
    A fluxgate magnetometer comprising a highly permeable magnetic core means of essentially constant magnetic path cross section;a primary winding means disposed on said core means for applying an alternating voltage to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;a secondary winding means disposed on said core means and said primary winding means to form a fluxgate and being responsive to said alternate saturation and unsaturation of said core means inducing in said secondary winding means a voltage pulse upon each transition from core saturation to unsaturation and a voltage pulse of opposite polarity upon each transition from core unsaturation to saturation, said secondary winding means being aligned relative to said core means such that, when the axis of said core means and the axis of said secondary winding means are oriented in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means, there is substantial symmetry between the voltage pulses induced in said secondary winding means by the transition from core saturation to unsaturation in both directions and between the voltage pulses induced in said secondary winding means by the transition from core unsaturation to saturation in both directions;input means for supplying an alternating voltage to said primary winding means;output circuit means for converting the voltage pulses induced in said secondary winding means to an output signal;means for determining the magnitude or direction of said magnetic field from said output signal for given orientations of said fluxgate.
  3. 3
    A fluxgate magnetometer comprising a highly permeable magnetic core means of essentially constant magnetic path cross section;a primary winding means disposed on said core means for applying an alternating voltage to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;a secondary winding means disposed on said core means and primary winding means to form a fluxgate and being responsive to said alternate saturation and unsaturation of said core means inducing in said secondary winding means a voltage pulse upon each transition from core unsaturation to saturation, said secondary winding means being aligned relative to said core means such that, when the axis of said core means and the axis of said secondary winding means are oriented in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means, the voltage pulses induced in said secondary winding means by the transition from core unsaturation to saturation in one direction are substantially equal to the voltage pulses induced in said secondary winding means by the transition from core unsaturation to saturation in the opposite direction;input means for supplying an alternating voltage to said primary winding means;output circuit means for measuring and summing the voltage pulses induced in said secondary winding means;and means for determining the magnitude or direction of said magnetic field from said measured and summed voltage pulses for given orientations of said fluxgate.
  4. 6
    A method for adjusting a fluxgate for temperature compensation, said fluxgate including a highly permeable magnetic core means of essentially constant magnetic path cross section, a primary winding means disposed on said core means, and a secondary winding means encompassing said core means and primary winding means, the method comprising the steps of:connecting said primary winding means to an alternating voltage source to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;maintaining the axis of said core means in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means;detecting at said secondary winding means the voltage pulse induced in said secondary winding means upon each transition from core saturation to unsaturation;and aligning said core means relative to said secondary winding means to substantially equalize each of said detected pulses induced in said secondary winding means by the transition from core saturation to unsaturation in one direction with each of said detected pulses induced in said secondary winding means by the transition from core saturation to unsaturation in the opposite direction.
  5. 8
    A method for adjusting a fluxgate for temperature compensation, said fluxgate including a highly permeable magnetic core means of essentially constant magnetic path cross section, a primary winding means disposed on said core means, and a secondary winding means encompassing said core means and primary winding means, the method comprising the steps of:connecting said primary winding means to an alternating voltage source to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;maintaining the axis of said core means in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means;detecting at said secondary winding means the voltage pulse induced in said secondary winding means upon each transition from core unsaturation to saturation;and aligning said core means relative to said secondary winding means to substantially equalize each of said detected second pulses induced in said secondary winding means by the transition from the core unsaturation to saturation in one direction with each of said detected pulses induced in said secondary winding means by the transition from core unsaturation to saturation in the opposite direction.
  6. 10
    A method for adjusting a fluxgate for temperature compensation, said fluxgate including a highly permeable magnetic core means of essentially constant magnetic path cross section, a primary winding means disposed on said core means, and a secondary winding means encompassing said core means and primary winding means, the method comprising the steps of:connecting said primary winding means to an alternating voltage source to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;maintaining the axis of said core means in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means;detecting at said secondary winding means the voltage pulse induced in said secondary winding means upon each transition from core saturation to unsaturation;detecting at said secondary winding means the voltage pulse of opposite polarity induced in said secondary winding means upon each transition from core unsaturation to saturation;and aligning said core means relative to said secondary winding means to obtain substantial symmetry between each of said detected pulses induced in said secondary winding means by the transition from core saturation to unsaturation in both directions and between each of said detected pulses induced in said secondary winding means by the transition from core unsaturation to saturation in both directions.
  7. 12
    A fluxgate comprising a highly permeable magnetic core means of essentially constant magnetic path cross section;a primary winding means disposed on said core means for applying an alternating voltage to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;and a secondary winding means disposed on said core means and said primary winding means and being responsive to said alternate saturation and unsaturation of said core means inducing in said secondary winding means a voltage pulse upon each transition from core saturation to unsaturation, said secondary winding means being aligned relative to said core means such that, when the axis of said core means and the axis of said secondary winding means are oriented in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means, the voltage pulses induced in said secondary winding means by the transition from core saturation to unsaturation in one direction are substantially equal to the voltage pulses induced in said secondary winding means by the transition from core saturation to unsaturation in the opposite direction.
  8. 13
    A fluxgate comprising a highly permeable magnetic core means of essentially constant magnetic path cross section;a primary winding means disposed on said core means for applying an alternating voltage to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;and a secondary winding means disposed on said core means and said primary winding means and being responsive to said alternate saturation and unsaturation of said core means inducing in said secondary winding means a voltage pulse upon each transition from core saturation to unsaturation and a voltage pulse of opposite polarity upon each transition from core unsaturation to saturation, said secondary winding means being aligned relative to said core means such that, when the axis of said core means and the axis of secondary winding means are oriented in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means, there is substantial symmetry between the voltage pulses induced in said secondary winding means by the transition from core saturation to unsaturation in both directions and between the voltage pulses induced in said secondary winding means by the transition from core unsaturation to saturation in both directions.
  9. 14
    A fluxgate comprising a highly permeable magnetic core means of essentially constant magnetic path cross section;a primary winding means disposed on said core means for applying an alternating voltage to alternately saturate and unsaturate said core means with magnetic fields of opposite polarities;and a secondary winding means disposed on said core means and said primary winding means and being responsive to said alternate saturation and unsaturation of said core means inducing in said secondary winding means a voltage pulse upon each transition from core unsaturation to saturation, said secondary winding means being aligned relative to said core means such that, when the axis of said core means and the axis of said secondary winding means are oriented in an external magnetic field so that a portion of the external magnetic field passes through the secondary winding means, the voltage pulses induced in said secondary winding means by the transition from core unsaturation to saturation in one direction are substantially equal to the voltage pulses induced in said secondary winding means by the transition from core unsaturation to saturation in the opposite direction.