Patents by Inventor Armin Meisenberg

Armin Meisenberg has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20170109956
    Abstract: A measuring device for measuring magnetic properties of the surroundings of the device includes at least one magnetoresistive element extending in a line direction, and a support field device generating a magnetic support field in an area over the line direction. A pre-magnetization device of one or more magnets is arranged at a distance from the sensor line in a direction vertical to the line direction and extending parallel to the line direction. The pre-magnetization device is arranged relative to the sensor line such that the fields of the pre-magnetization device and the support magnetic field overlap to provide an overlapping magnetic field with a field strength component pointing in the line direction that is greater at one location on the sensor line than the strength of a field component pointing vertically toward the line direction and not in the direction of the height of the magnetoresistive element.
    Type: Application
    Filed: October 31, 2016
    Publication date: April 20, 2017
    Inventors: Axel Bartos, Armin Meisenberg, Reinhold Pieper
  • Publication number: 20170074715
    Abstract: A measuring device for measuring a level of a liquid in a container is disclosed. The measuring device comprises a sensor line and a float. The sensor line has a plurality of magnetic-field sensors, at least one of the plurality of magnetic-field sensors uses a magnetoresistive effect or is a Hall effect sensor or a magnetoresistor or an extraordinary magnetoresistive sensor. The float is movable along and relative to the sensor line between a first measuring location and a second measuring location. The float has a magnet generating a magnetic field extending substantially parallel to the sensor line at both the first measuring location and the second measuring location.
    Type: Application
    Filed: November 2, 2016
    Publication date: March 16, 2017
    Applicant: TE Connectivity Sensors Germany GmbH
    Inventors: Axel Bartos, Armin Meisenberg, Andreas Voss
  • Patent number: 9482725
    Abstract: A measuring device for measuring magnetic properties of the surroundings of the device includes at least one magnetoresistive element extending in a line direction, and a support field device generating a magnetic support field in an area over the line direction. A pre-magnetization device of one or more magnets are arranged at a distance from the sensor line in a direction vertical to the line direction and extending parallel to the line direction. The pre-magnetization device is arranged relative to the sensor line such that the fields of the pre-magnetization device and the support magnetic field overlap to provide an overlapping magnetic field with a field strength component pointing in the line direction that is greater at one location on the sensor line than the strength of a field component pointing vertically toward the line direction not in the direction of the height of the magnetoresistive element.
    Type: Grant
    Filed: August 15, 2012
    Date of Patent: November 1, 2016
    Assignee: MEAS Deutschland GmbH
    Inventors: Axel Bartos, Armin Meisenberg, Reinhold Pieper
  • Patent number: 9297634
    Abstract: The invention relates to a device for generating a sensor signal, the profile thereof depending on the position of a magnetic field-generating element relative to the device, with at least two magnetically sensitive sensors disposed along a measurement path, wherein a support field device, which generates a magnetic support field in the magnetically sensitive sensors, has at least in the magnetically sensitive sensors an essentially identical direction and an essentially homogeneous field strength.
    Type: Grant
    Filed: June 17, 2011
    Date of Patent: March 29, 2016
    Assignee: MEAS DEUTSCHLAND GMBH
    Inventors: Axel Bartos, Reinhold Pieper, Francois Limouzineau, Andreas Voss, Armin Meisenberg
  • Publication number: 20150348349
    Abstract: A measuring device for measuring magnetic properties in a vicinity of the measuring device, in connection with a sensor line having sensor elements, includes a magnetization device for generating a magnetic field substantially homogeneous in a region of the sensor line, the field direction of the magnetic field, in the region of the sensor line, being at an angle of greater than 0° and less than 90° to the direction of the sensor line.
    Type: Application
    Filed: December 30, 2013
    Publication date: December 3, 2015
    Inventors: Armin Meisenberg, Axel Bartos, Reinhold Pieper
  • Patent number: 9140766
    Abstract: A magneto-resistive sensor for measuring a magnetic field based on an anisotropic magneto-resistive (AMR) effect or a gigantic magneto-resistive (GMR) effect comprises a substrate and a plurality of resistors that include first magneto-resistive layer strips arranged in form of a bridge circuit on the substrate. The plurality of resistors have a resistance value that depends on a magnetic field strength. At least one second layer strip is connected in series with the first magneto-resistive layer strips of at least one of the plurality of resistors. The first magneto-resistive layer strips have a resistance that depends on temperature according to a first positive temperature coefficient; and the at least one second layer strip has a resistance that depends on temperature according to a second temperature coefficient different from the first temperature coefficient, the second temperature coefficient being non-negative.
    Type: Grant
    Filed: June 25, 2012
    Date of Patent: September 22, 2015
    Assignee: MEAS Deutschland GmbH
    Inventors: Axel Bartos, Armin Meisenberg, Fritz Dettmann
  • Publication number: 20140312894
    Abstract: A measuring device for measuring magnetic properties of the surroundings of the device includes at least one magnetoresistive element extending in a line direction, and a support field device generating a magnetic support field in an area over the line direction. A pre-magnetization device of one or more magnets are arranged at a distance from the sensor line in a direction vertical to the line direction and extending parallel to the line direction. The pre-magnetization device is arranged relative to the sensor line such that the fields of the pre-magnetization device and the support magnetic field overlap to provide an overlapping magnetic field with a field strength component pointing in the line direction that is greater at one location on the sensor line than the strength of a field component pointing vertically toward the line direction not in the direction of the height of the magnetoresistive element.
    Type: Application
    Filed: August 15, 2012
    Publication date: October 23, 2014
    Inventors: Axel Bartos, Armin Meisenberg, Reinhold Pieper
  • Patent number: 8803518
    Abstract: Measuring apparatus for measuring magnetic properties of the area surrounding the measuring apparatus with a sensor row comprising at least two magnetoresistive sensor elements, which are arranged in a row that extends in a row direction, and a supporting field apparatus with generates a magnetic supporting field having a magnetic field component which points in the row direction and the field strength of which varies in the row direction, wherein this field strength profile in the row direction does not have a zero crossing and/or a maximum or minimum on at least two sensor edges of the sensor elements which for the sensor row, which sensor edges are arranged after one another in the row direction.
    Type: Grant
    Filed: July 17, 2009
    Date of Patent: August 12, 2014
    Assignee: MEAS Deutschland GmbH
    Inventors: Armin Meisenberg, Axel Bartos
  • Publication number: 20130200887
    Abstract: The invention relates to a device for generating a sensor signal, the profile thereof depending on the position of a magnetic field-generating element relative to the device, with at least two magnetically sensitive sensors disposed along a measurement path, wherein a support field device, which generates a magnetic support field in the magnetically sensitive sensors, has at least in the magnetically sensitive sensors an essentially identical direction and an essentially homogeneous field strength.
    Type: Application
    Filed: June 17, 2011
    Publication date: August 8, 2013
    Applicant: MEAS DEUTSCHLAND GMBH
    Inventors: Axel Bartos, Reinhold Pieper, Francois Limouzineau, Andreas Voss, Armin Meisenberg
  • Patent number: 8415946
    Abstract: Disclosed are absolute measuring systems comprising measuring rods that are composed of groups of at least two magnetic segments. The magnetic segments of at least one group have the same length in the direction of measurement while the magnetic segments of the different groups have different lengths. For arrangements encompassing more than two sensors on the single-track measuring rods, multistage phase difference processes are disclosed which result in high resolutions and accurate measurements while allowing for great measured lengths and, when anisotropic magnetoresistive sensors are used, for example, an unambiguous angle measurement range of 360°. FIG. 6a best represents the essence of the invention.
    Type: Grant
    Filed: February 21, 2008
    Date of Patent: April 9, 2013
    Assignee: Meas Deutschland GmbH
    Inventors: Axel Bartos, Fritz Dettmann, Armin Meisenberg
  • Publication number: 20120262164
    Abstract: Magneto-resistive sensors based on the AMR or GMR effect exhibit substantially enlarged linear characteristic curve regions as a result of the fact that their resistances are composed of magneto-resistive layer strips of differing anisotropic forms. Differing anisotropic forms can be achieved by different strip widths, strip thicknesses, strip intervals or strip materials. The temperature compensation for the output voltage of the magneto-resistive sensors, at least at one point on the characteristic curve, is achieved by the series connection of an additional layer strip with a temperature coefficient that differs from that of the magneto-resistive material to at least one magneto-resistive resistance of the sensor.
    Type: Application
    Filed: June 25, 2012
    Publication date: October 18, 2012
    Applicant: MEAS DEUTSCHLAND GMBH
    Inventors: Axel Bartos, Armin Meisenberg, Fritz Dettmann
  • Patent number: 8207732
    Abstract: Magnetoresistive sensors based on the AMR or GMR effect exhibit substantially enlarged linear characteristic curve regions as a result of the fact that their resistances are composed of magnetoresistive layer strips of differing anisotropic forms. Differing anisotropic forms can be achieved by different strip widths, strip thicknesses, strip intervals or strip materials. The temperature compensation for the output voltage of the magnetoresistive sensors, at least at one point on the characteristic curve, is achieved by the series connection of an additional layer strip with a temperature coefficient that differs from that of the magnetoresistive material to at least one magnetoresistive resistance of the sensor.
    Type: Grant
    Filed: September 13, 2004
    Date of Patent: June 26, 2012
    Assignee: Meas Deutschland GmbH
    Inventors: Axel Bartos, Armin Meisenberg, Fritz Dettmann
  • Patent number: 8164332
    Abstract: A magneto-resistive resistor for use in sensors for determining alignment of the sensor relative to a homogeneous magnetic field include an anisotropic magnetoresistive (AMR) strip having a longitudinal extent and a first and second edge along the longitudinal extent. The first and second edge have a shape along the longitudinal extent such that the direction of current flowing through the strip varies continuously along the longitudinal extent of the strip. The shape of the first and second edges produce a resistance determining angle with respect to the homogeneous magnetic field, the angle varying throughout the length of the strip and filtering out harmonics. A sensor bridge comprising at least one AMR resistor pair, each resistor electrically connected to the other resistor, a positive input contact and a negative input, and an output voltage tap electrically connected between the resistors in each resistor pair.
    Type: Grant
    Filed: December 7, 2010
    Date of Patent: April 24, 2012
    Assignee: Meas Deutschland GmbH
    Inventors: Axel Bartos, Armin Meisenberg, Fritz Dettmann
  • Publication number: 20110148408
    Abstract: Measuring apparatus for measuring magnetic properties of the area surrounding the measuring apparatus with a sensor row comprising at least two magnetoresistive sensor elements, which are arranged in a row that extends in a row direction, and a supporting field apparatus with generates a magnetic supporting field having a magnetic field component which points in the row direction and the field strength of which vanes in the row direction, wherein this field strength profile in the row direction does not have a zero crossing and/or a maximum or minimum on at least two sensor edges of the sensor elements which for the sensor row, which sensor edges are arranged after one another in the row direction.
    Type: Application
    Filed: July 17, 2009
    Publication date: June 23, 2011
    Applicant: MEAS Deutschland GMBH
    Inventors: Armin Meisenberg, Axel Bartos
  • Publication number: 20110074399
    Abstract: A magneto-resistive resistor for use in sensors for determining alignment of the sensor relative to a homogeneous magnetic field include an anisotropic magnetoresistive (AMR) strip having a longitudinal extent and a first and second edge along the longitudinal extent. The first and second edge have a shape along the longitudinal extent such that the direction of current flowing through the strip varies continuously along the longitudinal extent of the strip. The shape of the first and second edges produce a resistance determining angle with respect to the homogeneous magnetic field, the angle varying throughout the length of the strip and filtering out harmonics. A sensor bridge comprising at least one AMR resistor pair, each resistor electrically connected to the other resistor, a positive input contact and a negative input, and an output voltage tap electrically connected between the resistors in each resistor pair.
    Type: Application
    Filed: December 7, 2010
    Publication date: March 31, 2011
    Applicant: MEAS DEUTSCHLAND GMBH
    Inventors: AXEL BARTOS, ARMIN MEISENBERG, FRITZ DETTMANN
  • Patent number: 7847542
    Abstract: Magnetoresistive sensors which use the AMR or the GMR effect and indicate the direction of the homogeneous magnetic field of a rotatable permanent magnet in the angle measurement or the position of the sensor with respect to a scale, which is magnetized periodically in an alternating direction, for the position measurement, and in which the angle or position value is obtained from the quotient of the output signals from two bridges or half bridges with the aid of arctan interpolation, allow small measurement errors if the output signals have small harmonic components and hysteresis areas. In arrangements according to the invention, this is achieved by the resistors being composed of strips and by continuously varying the resistance-determining angle along the strip longitudinal extent for each constant magnetic field acting on the strips.
    Type: Grant
    Filed: February 24, 2004
    Date of Patent: December 7, 2010
    Assignee: Meas Deutschland GmbH
    Inventors: Axel Bartos, Armin Meisenberg, Fritz Dettmann
  • Publication number: 20100141244
    Abstract: Disclosed are absolute measuring systems comprising measuring rods that are composed of groups of at least two magnetic segments. The magnetic segments of at least one group have the same length in the direction of measurement while the magnetic segments of the different groups have different lengths. For arrangements encompassing more than two sensors on the single-track measuring rods, multistage phase difference processes are disclosed which result in high resolutions and accurate measurements while allowing for great measured lengths and, when anisotropic magnetoresistive sensors are used, for example, an unambiguous angle measurement range of 360°. FIG. 6a best represents the essence of the invention.
    Type: Application
    Filed: February 21, 2008
    Publication date: June 10, 2010
    Applicant: MEAS Deutschland GmbH
    Inventors: Axel Bartos, Fritz Dettmann, Armin Meisenberg
  • Publication number: 20080191694
    Abstract: Magnetoresistive sensors based on the AMR or GMR effect exhibit substantially enlarged linear characteristic curve regions as a result of the fact that their resistances are composed of magnetoresistive layer strips of differing anisotropic forms. Differing anisotropic forms can be achieved by different strip widths, strip thicknesses, strip intervals or strip materials. The temperature compensation for the output voltage of the magnetoresistive sensors, at least at one point on the characteristic curve, is achieved by the series connection of an additional layer strip with a temperature coefficient that differs from that of the magnetoresistive material to at least one magnetoresistive resistance of the sensor.
    Type: Application
    Filed: September 13, 2004
    Publication date: August 14, 2008
    Inventors: Axel Barton, Armin Meisenberg, Fritz Dettmann
  • Publication number: 20070080683
    Abstract: Magnetoresistive sensors which use the AMR or the GMR effect and indicate the direction of the homogeneous magnetic field of a rotatable permanent magnet in the angle measurement or the position of the sensor with respect to a scale, which is magnetized periodically in an alternating direction, for the position measurement, and in which the angle or position value is obtained from the quotient of the output signals from two bridges or half bridges with the aid of arctan interpolation, allow small measurement errors if the output signals have small harmonic components and hysteresis areas. In arrangements according to the invention, this is achieved by the resistors being composed of strips and by continuously varying the resistance-determining angle along the strip longitudinal extent for each constant magnetic field acting on the strips.
    Type: Application
    Filed: February 24, 2004
    Publication date: April 12, 2007
    Applicant: HL-PLANAR TECHNIK GMBH
    Inventors: Axel Bartos, Armin Meisenberg, Fritz Dettmann