Patents Assigned to Hahn-Schickard-Gesellschaft fur angewandte Forschung E.V.
  • Patent number: 11879832
    Abstract: The invention relates, in a first aspect, to a photoacoustic spectroscope for analyzing gas, comprising an infrared emitter (3), which can be modulated, an analysis volume (1), which can be filled with gas, and a sound pressure detector. The sound pressure detector comprises a structure (5) capable of vibrating, an actuator and a measurement unit, wherein the actuator is configured to actively excite vibration of the structure (5) capable of vibrating and the measurement unit can measure the vibration properties of the structure (5) capable of vibrating, which measurement depends on the formation of the sound pressure waves.
    Type: Grant
    Filed: February 26, 2020
    Date of Patent: January 23, 2024
    Assignee: HAHN-SCHICKARD-GESELLSCHAFT FÜR ANGEWANDTE FORSCHUNG E. V.
    Inventors: Daniel Biesinger, Achim Bittner
  • Patent number: 11879784
    Abstract: The invention relates to a modulatable infrared emitter comprising a MEMS heating element and an actuator, wherein the actuator triggers shape and/or structure changes of the MEMS heating element. Said change in shape and/or structure of the MEMS heating element may vary the ratio of the emitting area to the total area, thereby producing a change in intensity of the emitted infrared beam. The invention further relates to a manufacturing method for the infrared emitter, a method for modulated emission of infrared radiation using the infrared emitter, and preferred uses of the infrared emitter. In further preferred aspects the invention relates to a system comprising the infrared emitter and a control device for regulating the actuator.
    Type: Grant
    Filed: September 13, 2019
    Date of Patent: January 23, 2024
    Assignee: Hahn-Schickard-Gesellschaft für angewandte Forschung e. V.
    Inventors: Alfons Dehé, Achim Bittner, Daniel Biesinger
  • Patent number: 11874218
    Abstract: The invention relates to a modulatable infrared emitter comprising a heating element, a planar base element, a dielectric interlayer, and a planar cover element which is a structured metamaterial, and an actuator, wherein the actuator is configured for a relative movement of the cover element and the base element between a first and a second position in order to modulate the intensity of the emission of the infrared emitter. The invention further relates to production methods for the infrared emitter, methods for the modulated emission of infrared red radiation by means of the infrared emitter, and preferred uses of the infrared emitter. A system comprising the infrared emitter and a control device for regulating the actuator are also preferably the subject matter of the invention.
    Type: Grant
    Filed: February 11, 2020
    Date of Patent: January 16, 2024
    Assignee: Hahn-Schickard-Gesellschaft für angewandte Forschung e. V.
    Inventors: Daniel Biesinger, Achim Bittner
  • Publication number: 20230407376
    Abstract: The present invention concerns a mediator probe for the detection of at least one target molecule comprising at least two oligonucleotides. A first oligonucleotide of the mediator probe according to the invention comprises a probe region and a mediator binding region, wherein the probe region has an affinity to a target molecule and/or template molecule, and the mediator binding region has an affinity to at least one mediator. At least one further oligonucleotide of the mediator probe is a mediator which is bound to the first oligonucleotide of the mediator probe via the mediator binding region and has an affinity for at least one detection molecule, wherein the mediator triggers a detectable signal by interaction with the detection molecule after release from the first oligonucleotide of the mediator probe.
    Type: Application
    Filed: February 24, 2023
    Publication date: December 21, 2023
    Applicants: Albert-Ludwigs-Universitat Freiburg, Hahn-Schickard-Gesellschaft Fur Angewandte Forschung E.V.
    Inventors: Martin Trotter, Simon Wadle, Felix Von Stetten, Lisa Becherer
  • Patent number: 11800294
    Abstract: The invention relates to a MEMS transducer comprising a vibratable membrane for generating or receiving pressure waves in a fluid in a vertical direction, wherein the vibratable membrane is supported by a carrier and the vibratable membrane exhibits two or more vertical sections which are formed parallel to the vertical direction and comprise at least one layer of actuator material. The end of the vibratable membrane is preferably connected to an electrode, such that the two or more vertical sections can be induced to vibrate horizontally by driving the at least one electrode, or such that an electrical signal can be generated at the at least one electrode when the two or more vertical sections are induced to vibrate horizontally.
    Type: Grant
    Filed: January 15, 2021
    Date of Patent: October 24, 2023
    Assignee: Hahn-Schickard-Gesellschaft für Angewandte Forschung e. V.
    Inventors: Alfons Dehé, Achim Bittner, Lenny Castellanos
  • Patent number: 11791473
    Abstract: A method is proposed by means of which a composite layer is producible in as simple and controlled a manner as possible, and by means of which composite layers with different predetermined properties can be produced with as little expenditure as possible, and thus economically. The method includes: providing a nanofiber material, comminuting the nanofiber material while forming nanorods, providing a liquid medium, which comprises an ionomer component and a dispersant, dispersing the nanorods in the liquid medium while forming a nanorod ionomer dispersion, and applying the nanorod ionomer dispersion to a surface region of a substrate while forming a composite layer. An electrochemical unit including the composite layer is provided. The composite layer is useful in a fuel cell (hydrogen fuel cell or direct alcohol fuel cell), in a redox flow cell, in an electrolytic cell, or in an ion exchanger, and useful for anion or proton conduction.
    Type: Grant
    Filed: August 20, 2021
    Date of Patent: October 17, 2023
    Assignee: Hahn-Schickard-Gesellschaft für angewandte Forschung e.V.
    Inventors: Matthias Breitwieser, Florian Lombeck
  • Patent number: 11726029
    Abstract: The invention relates to a modulatable infrared emitter comprising an aperture structure, a structured micro-heating element, and an actuator, wherein the aperture structure and the structured micro-heating element are movable relative to each other in parallel planes by means of the actuator to modulate the intensity of emitted infrared radiation. The invention further relates to methods of manufacturing the infrared emitter, a method of modulating emission of infrared radiation using the infrared emitter, and preferred uses of the infrared emitter. In further aspects the invention relates to a system comprising the infrared emitter and a control device for regulating the actuator.
    Type: Grant
    Filed: September 13, 2019
    Date of Patent: August 15, 2023
    Assignee: Hahn-Schickard-Gesellschaft für angewandte Forschung e. V
    Inventors: Alfons Dehé, Achim Bittner, Daniel Biesinger
  • Patent number: 11686695
    Abstract: Evaluation arrangement for a thermal gas sensor with at least one heater and at least one detector. The evaluation arrangement is configured to obtain information about an amplitude of a detector signal of a first detector, and information about a first phase difference between a heater signal and the detector signal of the first detector. In addition, the evaluation arrangement is configured to form as an intermediate quantity, dependent on the information about the amplitudes of the detector signal and dependent on the information about the first phase difference, a combination signal, and to determine information about a gas concentration or information about a thermal diffusivity of a fluid on the basis of the combination signal.
    Type: Grant
    Filed: July 6, 2020
    Date of Patent: June 27, 2023
    Assignees: Hahn-Schickard-Gesellschaft für angewandte Forschung e.V., GS Elektromedizinische Geräte G. Stemple GmbH
    Inventors: Frank Hedrich, Bernd Ehrbrecht, Gerhard Kattinger, Kurt Kliche
  • Patent number: 10885422
    Abstract: A device has a latching mechanism including a catch element having at least two catches, and a pawl configured to engage in a catch interstice between two catches. The catch element is movable in relation to the pawl in a freewheeling direction, and a movement of the catch element in relation to the pawl in a blocking direction may be blocked by means of the pawl. The device further includes a deflectable actuator configured to move the catch element and the pawl relative to each other on a catch-by-catch basis in the freewheeling direction by means of deflection. According to the invention, the device also includes an electric component configured to change its electric property as a function of the catch-wise movement of the catch element in relation to the pawl.
    Type: Grant
    Filed: April 11, 2019
    Date of Patent: January 5, 2021
    Assignee: Hahn-Schickard-Gesellschaft fur angewandte Forschung e.V.
    Inventor: Sven Spieth
  • Patent number: 10563656
    Abstract: A fluidics module rotatable about a rotational center includes first and second chambers and a compression chamber. First and second fluid channels are provided between the first and second chambers and the compression chamber, respectively. The flow resistance of the second fluid channel is smaller, for a flow of liquid from the compression chamber to the second chamber, than a flow resistance of the first fluid channel for a flow of liquid from the compression chamber to the first chamber. Upon rotation at a high rotational frequency, liquid is initially introduced from the first chamber into the compression chamber via the first fluid channel, so that a compressible medium is compressed within the compression chamber. Subsequently, the rotational frequency is reduced, so that the compressible medium within the compression chamber will expand and so that, thereby, liquid is driven into the second chamber via the second fluid channel.
    Type: Grant
    Filed: June 15, 2018
    Date of Patent: February 18, 2020
    Assignee: HAHN-SCHICKARD-GESELLSCHAFT FÜR ANGEWANDTE FORSCHUNG E.V.
    Inventors: Nils Paust, Steffen Zehnle, Felix Von Stetten
  • Patent number: 10446314
    Abstract: The invention relates to a method for producing a coil integrated in a substrate or applied to a substrate, wherein the coil has first winding portions, which each have first ends and second ends, and wherein the coil has second winding portions and third winding portions, wherein each two of the first ends are electrically interconnected by the second winding portions and two corresponding second ends of the first winding portions are electrically interconnected by the third winding portions, such that coil windings of the coil are formed hereby, wherein at least the first winding portions are applied by means of a 3D printing method, wherein this is aerosol jet or inkjet printing, for example.
    Type: Grant
    Filed: July 6, 2015
    Date of Patent: October 15, 2019
    Assignee: Hahn-Schickard-Gesellschaft für angewandte Forschung e.V.
    Inventors: Jan Kostelnik, Alina Schreivogel, Jürgen Wolf, Jürgen Keck, Ing. Metin Giousouf, rer. nat. Thomas Reininger, Ing. Albert Kiessling
  • Patent number: 10001125
    Abstract: A fluidics module rotatable about a rotational center includes first and second chambers and a compression chamber. First and second fluid channels are provided between the first and second chambers and the compression chamber, respectively. The flow resistance of the second fluid channel is smaller, for a flow of liquid from the compression chamber to the second chamber, than a flow resistance of the first fluid channel for a flow of liquid from the compression chamber to the first chamber. Upon rotation at a high rotational frequency, liquid is initially introduced from the first chamber into the compression chamber via the first fluid channel, so that a compressible medium is compressed within the compression chamber. Subsequently, the rotational frequency is reduced, so that the compressible medium within the compression chamber will expand and so that, thereby, liquid is driven into the second chamber via the second fluid channel.
    Type: Grant
    Filed: August 14, 2014
    Date of Patent: June 19, 2018
    Assignee: HAHN-SCHICKARD-GESELLSCHAFT FÜR ANGEWANDTE FORSCHUNG E.V.
    Inventors: Nils Paust, Steffen Zehnle, Felix Von Stetten
  • Patent number: 9581425
    Abstract: Sensor having a primary coil, two secondary coils as well as an evaluator. An excitation signal may be applied to the primary coil. An output signal depending on a position of a coupling element may be induced in each secondary coil. An evaluator is configured to evaluate the output signals in order to evaluate a phase offset between the output signals. Further, the evaluator is configured to provide a sensor output signal indicating the position or change in position of the coupling element.
    Type: Grant
    Filed: August 1, 2014
    Date of Patent: February 28, 2017
    Assignee: Hahn-Schickard-Gesellschaft für angewandte Forschung e.V.
    Inventors: André Buelau, Karl-Peter Fritz, Frank Wolter
  • Patent number: 9174006
    Abstract: A dermal access device for fluid injection comprising a bearing block for fixation of the device onto a patient's skin, a slider movably connected to the bearing block and a hollow needle arranged at the slider for puncturing the skin, wherein the needle creates a puncture angle with respect to the skin surface when puncturing the skin, which does not exceed 25°. A dermal access device for fluid injection comprising a bearing block for fixation of the device onto a patient's skin, a movable slider connected to the bearing block and a hollow needle arranged at the slider for puncturing the skin, wherein the device comprises a first stop for limiting a first moving direction of the slider at a first puncture position of the needle, where the device comprises a second stop at a second puncture position of the needle for limiting the second moving direction of the slider.
    Type: Grant
    Filed: February 1, 2011
    Date of Patent: November 3, 2015
    Assignee: Hahn-Schickard-Gesellschaft Fur Angewandte Forschung E.V.
    Inventors: Michael Vosseler, Kai Hiltmann, Michael Jugl
  • Publication number: 20150310982
    Abstract: The invention relates to a method for producing a coil integrated in a substrate or applied to a substrate, wherein the coil has first winding portions, which each have first ends and second ends, and wherein the coil has second winding portions and third winding portions, wherein each two of the first ends are electrically interconnected by the second winding portions and two corresponding second ends of the first winding portions are electrically interconnected by the third winding portions, such that coil windings of the coil are formed hereby, wherein at least the first winding portions are applied by means of a 3D printing method, wherein this is aerosol jet or inkjet printing, for example.
    Type: Application
    Filed: July 6, 2015
    Publication date: October 29, 2015
    Applicants: Würth Elektronik Gmbh & Co. KG, Hahn-Schickard-Gesellschaft für angewandte Forschung e.V.
    Inventors: Jan Kostelnik, Alina Schreivogel, Jürgen Wolf, Jürgen Keck, Ing. Metin Giousouf, rer. nat. Thomas Reininger, Ing. Albert Kiessling
  • Publication number: 20140132386
    Abstract: The invention relates to a method for producing a coil (140) integrated in a substrate (100) or applied to a substrate, wherein the coil has first winding portions (136), which each have first ends (141) and second ends (147), and wherein the coil has second winding portions (138) and third winding portions (139), wherein each two of the first ends are electrically interconnected by the second winding portions and two corresponding second ends of the first winding portions are electrically interconnected by the third winding portions, such that coil windings of the coil are formed hereby, wherein at least the first winding portions are applied by means of a 3D printing method, wherein this is aerosol jet or inkjet printing, for example.
    Type: Application
    Filed: November 1, 2013
    Publication date: May 15, 2014
    Applicants: Hahn-Schickard-Gesellschaft fur angewandte Forschung e.V., Wurth Elektronik Gmbh & Co. KG
    Inventors: Jan Kostelnik, Alina Schreivogel, Jürgen Wolf, Jürgen Keck
  • Publication number: 20140060185
    Abstract: A device for measuring yaw rate, having a mechanical yaw rate sensor, which has an inert mass that can be set into a primary vibration along a primary axis by means of an excitation device and can be deflected along a secondary axis extending transversely with respect to the primary axis so that when a yaw rate occurs about a sensitive axis extending transversely with respect to the primary and to the secondary axis, said device carries out a secondary vibration excited by the Coriolis force. A sensor element detects an amplitude-modulated signal for the secondary vibration. A sigma-delta modulator has a low pass filter connected to the sensor element, a quantizer and a secondary actuator disposed in a feedback path for applying a force which counteracts the Coriolis force.
    Type: Application
    Filed: December 1, 2011
    Publication date: March 6, 2014
    Applicants: HAHN-SCHICKARD-GESELLSCHAFT FUR ANGEWANDTE FORSCHUNG E.V., ALBERT-LUDWIGS-UNIVERSITÄT FREIBURG
    Inventors: Stefan Rombach, Thomas Northemann, Michael Maurer, Mattias Dienger, Yiannos Manoli
  • Patent number: 7054778
    Abstract: An analogue output signal of a sensor which comprises a carrier signal with a carrier frequency ?C which is modulated by a measurement size is sampled with a sampling frequency ?A to receive a sampled sensor output signal. The frequency ?A of the sampling signal is set so that it is an integer divisor n of the carrier frequency ?C, wherein the phase of the sampling signal is set so that the sampling signal is synchronous to the sensor output signal. The sampled sensor output signal is filtered now to remove periodically repeated signal components from the sampled sensor output signal. Then a filtered useful signal is received, wherein its amplitude is proportional to the measurand detected by the sensor.
    Type: Grant
    Filed: November 30, 2001
    Date of Patent: May 30, 2006
    Assignee: Hahn-Schickard-Gesellschaft fur Angewandte Forschung e.V.
    Inventors: Wolfram Geiger, Alexander Gaisser, Norbert Niklasch
  • Patent number: 6561029
    Abstract: A rotational rate gyroscope for detecting rotation thereof comprises a base member, a primary oscillator supported by its primary oscillator suspension so as to be movable with respect to the base member, and a secondary oscillator supported by a secondary oscillator suspension, separate from primary oscillator suspension, so as to be movable with respect to the primary oscillator. The secondary oscillator suspension is designed such that movement that can be applied to the primary oscillator can be transferred to the secondary oscillator, whereas the movement of the secondary oscillator effected by the Coriolis force substantially is not transferred back to the primary oscillator. In addition thereto, the major surfaces of the primary oscillator and of the secondary oscillator extend substantially in the same plane, with the movement of the primary oscillator and/or of the secondary oscillator also taking place in this plane.
    Type: Grant
    Filed: November 6, 2001
    Date of Patent: May 13, 2003
    Assignee: Hahn-Schickard-Gesellschaft fur angewandte Forschung E.V.
    Inventors: Bernd Folkmer, Wolfram Geiger, Walter Lang, Udo Sobe
  • Patent number: 6399395
    Abstract: A device for applying microdroplets to a substrate includes a dosing head having a nozzle orifice and a liquid storage area in fluid communication with the orifice. A drive applies an acceleration to the dosing head. A quantity of liquid in the storage area cannot follow the acceleration due to its inertia. This inertia causes microdroplets to be driven out of the nozzle onto the substrate. In one embodiment, the dosing head includes a plurality of nozzle orifices each having an associated liquid storage area, so that a plurality of different analytes are deposited on the substrate.
    Type: Grant
    Filed: October 12, 1999
    Date of Patent: June 4, 2002
    Assignee: Hahn-Schickard-Gesellschaft für angewandte Forschung e.V.
    Inventors: Roland Zengerle, Nicolaus Hey, Holger Gruhler, Michael Freygang, Martin Müller