Patents by Inventor Wolfram Bauer

Wolfram Bauer 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).

  • Patent number: 9863781
    Abstract: A yaw rate sensor (10) includes a movable mass structure (12) and a drive component (13) which is suitable for setting the movable mass structure (12) in motion (14), and an analysis component (15) which is suitable for detecting a response (40) of the movable mass structure (12) to a yaw rate (?). A method for functional testing of a yaw rate sensor (10) includes the following steps: driving a movable mass structure (12), feeding a test signal (42) into a quadrature control loop (44) at a feed point (48) of the quadrature control loop (44), feeding back a deflection (40) of the movable mass structure (12), detecting a measure of the feedback of the movable mass structure (12), and reading out the response signal (47) from the quadrature control loop (44).
    Type: Grant
    Filed: November 13, 2014
    Date of Patent: January 9, 2018
    Assignee: ROBERT BOSCH GMBH
    Inventors: Wolfram Bauer, Johannes Classen, Rainer Willig, Matthias Meier, Burkhard Kuhlmann, Mathias Reimann, Ermin Esch, Hans-Dieter Schwarz, Michael Veith, Christoph Lang, Udo-Martin Gomez
  • Publication number: 20150121990
    Abstract: A yaw rate sensor (10) includes a movable mass structure (12) and a drive component (13) which is suitable for setting the movable mass structure (12) in motion (14), and an analysis component (15) which is suitable for detecting a response (40) of the movable mass structure (12) to a yaw rate (?). A method for functional testing of a yaw rate sensor (10) includes the following steps: driving a movable mass structure (12), feeding a test signal (42) into a quadrature control loop (44) at a feed point (48) of the quadrature control loop (44), feeding back a deflection (40) of the movable mass structure (12), detecting a measure of the feedback of the movable mass structure (12), and reading out the response signal (47) from the quadrature control loop (44).
    Type: Application
    Filed: November 13, 2014
    Publication date: May 7, 2015
    Inventors: Wolfram BAUER, Johannes CLASSEN, Rainer WILLIG, Matthias MEIER, Burkhard KUHLMANN, Mathias REIMANN, Ermin ESCH, Hans-Dieter SCHWARZ, Michael VEITH, Christoph LANG, Udo-Martin GOMEZ
  • Patent number: 8938364
    Abstract: A sensor device includes: a sensor module mounted on a conductor board; a sensitive element which is sensitive to a variable; a self-test control unit implementing a self-test program, the self-test control unit applying a self-test variable to the sensitive element, taking the self-test program into account; a detection unit detecting a characteristic of the sensitive element which is altered as a result of the applied self-test variable and providing an actual self-test response, taking the altered characteristic into account; and a comparator unit provided on or in the sensor module, the comparator unit comparing the actual self-test response to at least one specified setpoint self-test response and providing comparative information.
    Type: Grant
    Filed: July 9, 2010
    Date of Patent: January 20, 2015
    Assignee: Robert Bosch GmbH
    Inventors: Patrick Goerlich, Riad Stefo, Wolfram Bauer, Rainer Willig, Burkhard Kuhlmann, Mathias Reimann, Ermin Esch, Michael Baus, Gregor Wetekam, Michael Veith, Emma Abel, Wolfgang Fuerst
  • Patent number: 8910518
    Abstract: A yaw rate sensor (10) includes a movable mass structure (12) and a drive component (13) which is suitable for setting the movable mass structure (12) in motion (14), and an analysis component (15) which is suitable for detecting a response (40) of the movable mass structure (12) to a yaw rate (?). A method for functional testing of a yaw rate sensor (10) includes the following steps: driving a movable mass structure (12), feeding a test signal (42) into a quadrature control loop (44) at a feed point (48) of the quadrature control loop (44), feeding back a deflection (40) of the movable mass structure (12), detecting a measure of the feedback of the movable mass structure (12), and reading out the response signal (47) from the quadrature control loop (44).
    Type: Grant
    Filed: April 6, 2010
    Date of Patent: December 16, 2014
    Assignee: Robert Bosch GmbH
    Inventors: Wolfram Bauer, Johannes Classen, Rainer Willig, Matthias Meier, Burkhard Kuhlmann, Mathias Reimann, Ermin Esch, Hans-Dieter Schwarz, Michael Veith, Christoph Lang, Udo-Martin Gomez
  • Publication number: 20120186345
    Abstract: A yaw rate sensor (10) includes a movable mass structure (12) and a drive component (13) which is suitable for setting the movable mass structure (12) in motion (14), and an analysis component (15) which is suitable for detecting a response (40) of the movable mass structure (12) to a yaw rate (?). A method for functional testing of a yaw rate sensor (10) includes the following steps: driving a movable mass structure (12), feeding a test signal (42) into a quadrature control loop (44) at a feed point (48) of the quadrature control loop (44), feeding back a deflection (40) of the movable mass structure (12), detecting a measure of the feedback of the movable mass structure (12), and reading out the response signal (47) from the quadrature control loop (44).
    Type: Application
    Filed: April 6, 2010
    Publication date: July 26, 2012
    Inventors: Wolfram Bauer, Johannes Classen, Rainer Willig, Matthias Meier, Burkhard Kuhlmann, Matthias Mathias Reimann, Ermin Esch, Hans-Dieter Schwarz, Michael Veith, Christoph Lang, Udo-Martin Gomez
  • Patent number: 8188900
    Abstract: In a system based on an analog-digital converter (ADC) having an analog input signal and at least one quantization threshold, the analog-digital converter (ADC) includes an arrangement for varying the at least one quantization threshold.
    Type: Grant
    Filed: December 12, 2005
    Date of Patent: May 29, 2012
    Assignee: Robert Bosch GmbH
    Inventors: Wolfram Bauer, Christoph Lang
  • Publication number: 20110102215
    Abstract: The present system is based on an analog-digital converter (ADC) having an analog input signal and at least one quantization threshold. The analog-digital converter (ADC) includes an arrangement for varying the at least one quantization threshold.
    Type: Application
    Filed: December 12, 2005
    Publication date: May 5, 2011
    Applicant: ROBERT BOSCH GMBH
    Inventors: Wolfram Bauer, Christoph Lang
  • Publication number: 20110066396
    Abstract: A sensor device includes: a sensor module mounted on a conductor board; a sensitive element which is sensitive to a variable; a self-test control unit implementing a self-test program, the self-test control unit applying a self-test variable to the sensitive element, taking the self-test program into account; a detection unit detecting a characteristic of the sensitive element which is altered as a result of the applied self-test variable and providing an actual self-test response, taking the altered characteristic into account; and a comparator unit provided on or in the sensor module, the comparator unit comparing the actual self-test response to at least one specified setpoint self-test response and providing comparative information.
    Type: Application
    Filed: July 9, 2010
    Publication date: March 17, 2011
    Inventors: Patrick Goerlich, Riad Stefo, Wolfram Bauer, Rainer Willig, Burkhard Kuhlmann, Mathias Reimann, Ermin Esch, Michael Baus, Gregor Wetekam, Michael Veith, Emma Abel, Wolfgang Fuerst
  • Patent number: 7839227
    Abstract: An oscillating circuit includes an analog oscillation element. The oscillating circuit includes at least one analog-to-digital conversion device. A method is for operating an oscillating circuit, in which a mechanical oscillator oscillates at a natural frequency. The oscillation amplitude is measured and digitized. A digital control signal is generated from this with the aid of a digital amplitude controller. A driving signal is generated, in turn, from the digital control signal, the driving signal driving the mechanical oscillator with the aid of a drive unit. This control loop stabilizes the oscillation amplitude.
    Type: Grant
    Filed: December 9, 2005
    Date of Patent: November 23, 2010
    Assignee: Robert Bosch GmbH
    Inventors: Hans-Dieter Schwarz, Arnd Gangei, Wolfram Bauer, Gerhard Wucher, Christoph Lang, Ermin Esch, Michael Veith, Thomas Mayer, Markus Brockmann
  • Patent number: 7825840
    Abstract: A delta sigma modulator includes an oscillatory system having a natural frequency and an electronics and a control loop which acts upon the electronics from the oscillatory system and again upon the oscillatory system from the electronics. The control loop provides that a gain in the control loop demonstrates a peaking in a frequency range around the natural frequency of the oscillatory system.
    Type: Grant
    Filed: December 13, 2005
    Date of Patent: November 2, 2010
    Assignee: Robert Bosch GmbH
    Inventors: Rainer Willig, Burkhard Kuhlmann, Udo-Martin Gomez, Wolfram Bauer, Reinhard Neul, Christoph Lang, Michael Veith
  • Publication number: 20100181944
    Abstract: A micromechanical component includes a first electrode and a second electrode, the first electrode being moveable relative to the second electrode in a main direction of movement, and the first electrode and/or the second electrode being configured such that a movement of the first electrode parallel to the main direction of movement results in a modification of the average distance in a region of overlap of the projection of the first electrode with the projection of the second electrode, both perpendicular to the main direction of movement and in a main plane of extension.
    Type: Application
    Filed: June 16, 2008
    Publication date: July 22, 2010
    Inventors: Wolfram Bauer, Johannes Classen
  • Patent number: 7523663
    Abstract: A micromechanical rotation rate sensor has a seismic mass and driving devices which cause a driving vibration of the seismic mass in a first direction x. The rotation rate sensor has measuring devices which measure a deflection of the seismic mass in a second direction y, and generate a deflection signal. The deflection includes a measurement deflection caused by a Coriolis force and an interference deflection, the interference deflection being phase-shifted with respect to the measurement deflection by 90°. Compensation devices are provided at the seismic mass to reduce the interference deflection. Regulation devices are provided, to which the deflection signal is supplied as an input variable, which demodulate an interference deflection signal from the deflection signal, and which generate a compensation signal from the interference deflection signal, which is supplied to the compensation devices.
    Type: Grant
    Filed: December 22, 2005
    Date of Patent: April 28, 2009
    Assignee: Robert Bosch GmbH
    Inventors: Rainer Willig, Buckhard Kuhlmann, Udo-Martin Gomez, Wolfram Bauer, Johannes Classen, Christoph Lang, Michael Veith
  • Publication number: 20080297264
    Abstract: An oscillating circuit includes an analog oscillation element. The oscillating circuit includes at least one analog-to-digital conversion device. A method is for operating an oscillating circuit, in which a mechanical oscillator oscillates at a natural frequency. The oscillation amplitude is measured and digitized. A digital control signal is generated from this with the aid of a digital amplitude controller. A driving signal is generated, in turn, from the digital control signal, the driving signal driving the mechanical oscillator with the aid of a drive unit. This control loop stabilizes the oscillation amplitude.
    Type: Application
    Filed: December 9, 2005
    Publication date: December 4, 2008
    Inventors: Hans-Dieter Schwarz, Arnd Gangei, Wolfram Bauer, Gerhard Wucher, Christoph Lang, Ermin Esch, Michael Veith, Thomas Mayer, Markus Brockmann
  • Publication number: 20080284628
    Abstract: A delta sigma modulator includes an oscillatory system having a natural frequency and an electronics and a control loop which acts upon the electronics from the oscillatory system and again upon the oscillatory system from the electronics. The control loop provides that a gain in the control loop demonstrates a peaking in a frequency range around the natural frequency of the oscillatory system.
    Type: Application
    Filed: December 13, 2005
    Publication date: November 20, 2008
    Inventors: Rainer Willig, Burkhard Kuhlmann, Udo-Martin Gomez, Wolfram Bauer, Reinhard Neul, Christoph Lang, Michael Veith
  • Patent number: 7316161
    Abstract: A rotation rate sensor having a substrate and a Coriolis element is proposed, the Coriolis element being situated above a surface of a substrate; the Coriolis element being able to be induced to vibrate in parallel to a first axis (X); an excursion of the Coriolis element being detectable, based on a Coriolis force in a second axis (Y), which is provided to be essentially perpendicular to the first axis (X); the first and second axes (X, Y) being provided parallel to the surface of the substrate, wherein force-conveying means are provided, the means being provided to convey a dynamic force effect between the substrate and the Coriolis element.
    Type: Grant
    Filed: September 25, 2002
    Date of Patent: January 8, 2008
    Assignee: Robert Bosch GmbH
    Inventors: Rainer Willig, Jochen Franz, Burkhard Kuhlmann, Joerg Hauer, Udo-Martin Gomez, Dieter Maurer, Christian Doering, Wolfram Bauer, Udo Bischof, Reinhard Neul, Johannes Classen, Christoph Lang, Jens Frey
  • Patent number: 7313958
    Abstract: A rotational rate sensor having a substrate and a Coriolis element is proposed, the Coriolis element being situated over a surface of a substrate; a driving arrangement being provided, by which the Coriolis element is induced to vibrations parallel to a first axis; a detection arrangement being provided, by which an excursion of the Coriolis elements is detectable on the basis of a Coriolis force in a second axis that is provided to be essentially perpendicular to the first axis; the first and second axis being parallel to the surface of the substrate; sensor elements that are designated to be at least partially movable with respect to the substrate being provided; a force-conveying arrangement being provided; the force-conveying arrangement being provided to convey a static force effect between the substrate and at least one of the sensor elements.
    Type: Grant
    Filed: September 25, 2002
    Date of Patent: January 1, 2008
    Assignee: Robert Bosch GmbH
    Inventors: Rainer Willig, Jochen Franz, Burkhard Kuhlmann, Joerg Hauer, Udo-Martin Gomez, Dieter Maurer, Christian Doering, Wolfram Bauer, Udo Bischof, Reinhard Neul, Johannes Classen, Christoph Lang, Jens Frey
  • Patent number: 7287427
    Abstract: A yaw-rate sensor having a resonant driving frequency and a resonant Coriolis frequency. In addition, the yaw-rate sensor has at least one operating voltage, of which the resonant Coriolis frequency is a function. The resonant Coriolis frequency is adjusted to the resonant driving frequency with the aid of an adjustment voltage. A change in the resonant Coriolis frequency as a result of a change in the operating voltage may be compensated for, in that a suitably changed adjusting voltage may be produced from a compensation circuit.
    Type: Grant
    Filed: May 25, 2005
    Date of Patent: October 30, 2007
    Assignee: Robert Bosch GmbH
    Inventors: Rainer Willig, Burkhard Kuhlmann, Udo-Martin Gomez, Wolfram Bauer, Christoph Lang
  • Patent number: 7134337
    Abstract: An exemplary embodiment of the present invention creates a micromechanical rotational rate sensor having a first Coriolis mass element and a second Coriolis mass element which may be situated over a surface of a substrate. An exemplary embodiment of a micromechanical rotational rate sensor may have an activating device by which the first Coriolis mass element and the second Coriolis mass element are able to have vibrations activated along a first axis. An exemplary embodiment of a micromechanical rotational rate sensor may have a detection device by which deflections of the first Coriolis mass elements and of the second Coriolis element are able to be detected along a second axis, which is perpendicular to the first axis, on the basis of a correspondingly acting Coriolis force. The first axis and second axis may run parallel to the surface of the substrate. The detecting device may have a first detection mass device and a second detection mass device.
    Type: Grant
    Filed: January 9, 2006
    Date of Patent: November 14, 2006
    Assignee: Robert Bosch GmbH
    Inventors: Rainer Willig, Andreas Thomae, Burkhard Kuhlmann, Joerg Hauer, Udo-Martin Gomez, Siegbert Goetz, Christian Doering, Michael Fehrenbach, Wolfram Bauer, Udo Bischof, Reinhard Neul, Karsten Funk, Markus Lutz, Gerhard Wucher, Jochen Franz
  • Publication number: 20060191338
    Abstract: A micromechanical rotation rate sensor has a seismic mass and driving devices which cause a driving vibration of the seismic mass in a first direction x. The rotation rate sensor has measuring devices which measure a deflection of the seismic mass in a second direction y, and generate a deflection signal. The deflection includes a measurement deflection caused by a Coriolis force and an interference deflection, the interference deflection being phase-shifted with respect to the measurement deflection by 90°. Compensation devices are provided at the seismic mass to reduce the interference deflection. Regulation devices are provided, to which the deflection signal is supplied as an input variable, which demodulate an interference deflection signal from the deflection signal, and which generate a compensation signal from the interference deflection signal, which is supplied to the compensation devices.
    Type: Application
    Filed: December 22, 2005
    Publication date: August 31, 2006
    Inventors: Rainer Willig, Buckhard Kuhlmann, Udo-Martin Gomez, Wolfram Bauer, Johannes Classen, Christoph Lang, Michael Veith
  • Publication number: 20060107738
    Abstract: An exemplary embodiment of the present invention creates a micromechanical rotational rate sensor having a first Coriolis mass element and a second Coriolis mass element which may be situated over a surface of a substrate. An exemplary embodiment of a micromechanical rotational rate sensor may have an activating device by which the first Coriolis mass element and the second Coriolis mass element are able to have vibrations activated along a first axis. An exemplary embodiment of a micromechanical rotational rate sensor may have a detection device by which deflections of the first Coriolis mass elements and of the second Coriolis element are able to be detected along a second axis, which is perpendicular to the first axis, on the basis of a correspondingly acting Coriolis force. The first axis and second axis may run parallel to the surface of the substrate. The detecting device may have a first detection mass device and a second detection mass device.
    Type: Application
    Filed: January 9, 2006
    Publication date: May 25, 2006
    Inventors: Rainer Willig, Andreas Thomae, Burkhard Kuhlmann, Joerg Hauer, Udo-Martin Gomez, Siegbert Goetz, Christian Doering, Michael Fehrenbach, Wolfram Bauer, Udo Bischof, Reinhard Neul, Karsten Funk, Markus Lutz, Gerhard Wucher, Jochen Franz