Patents by Inventor Gerald Stocker

Gerald Stocker 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: 12235170
    Abstract: A fluid sensor includes a support structure having a top main surface region; a thermal emitter on the top main surface region of the support structure; a thermal radiation detector on the top main surface region of the support structure; and a waveguide structure having a first and a second waveguide section on the top main surface region of the support structure. The first waveguide section guides a first portion of the thermal radiation to the thermal radiation detector and the second waveguide section guides a second portion of the thermal radiation to the thermal radiation detector. The waveguide structure enables an interaction of an evanescence field of the guided first and/or second portion of the thermal radiation with a surrounding fluid.
    Type: Grant
    Filed: April 8, 2022
    Date of Patent: February 25, 2025
    Assignee: Infineon Technologies AG
    Inventors: Gerald Stocker, Elmar Aschauer, Ulf Bartl, Thomas Grille, Christoph Kovatsch, Thomas Krotscheck Ostermann
  • Patent number: 12140514
    Abstract: A fluid sensor for performing a reference measurement includes a support structure having a top main surface region; a thermal emitter on the top main surface region of the support structure; a first waveguide section and a first thermal radiation detector on the top main surface region of the support structure; and a cover structure on at least one part of the first waveguide section. The first waveguide section guides a first portion of the thermal radiation emitted by the thermal emitter to the first thermal radiation detector. The first thermal radiation detector detects the guided first portion of the thermal radiation for performing the reference measurement.
    Type: Grant
    Filed: April 8, 2022
    Date of Patent: November 12, 2024
    Assignee: Infineon Technologies AG
    Inventors: Gerald Stocker, Elmar Aschauer, Ulf Bartl, Thomas Grille, Christoph Kovatsch, Thomas Krotscheck Ostermann
  • Publication number: 20240347223
    Abstract: A device (100) for controlling trapped ions (180) includes a first semiconductor substrate (120) comprising a semiconductor and/or dielectric material. A first micro-fabricated electrode structure (125) is disposed at a main side of the first substrate (120). The device (100) further includes a second substrate (140) comprising a semiconductor and/or dielectric material. A second micro-fabricated electrode structure (145) is disposed at a main side of the second substrate (140) opposite the main side of the first substrate (120). A plurality of spacer members (160) is disposed between the first substrate (120) and the second substrate (140). At least one ion trap is configured to trap ions (180) in a space between the first substrate (120) and the second substrate (140). The first micro-fabricated electrode structure (125) and the second micro-fabricated electrode structure (145) comprise electrodes of the ion trap.
    Type: Application
    Filed: July 12, 2022
    Publication date: October 17, 2024
    Inventors: Clemens Rössler, Silke Auchter, Gerald Stocker, Sokratis Sgouridis, Chiara Decaroli, Jonathan Home, Marco Valentini, Yves Colombe, Philip Holz
  • Patent number: 12080541
    Abstract: A device for trapping ions includes: a first substrate having an upper multi-layer electrode structure implemented at a top side of the first substrate; a second substrate disposed over the first substrate and having a lower multi-layer electrode structure implemented at a bottom side of the second substrate; and one or more first level ion traps configured to trap ions in a space between the first substrate and the second substrate. The one or more first level ion traps includes the upper multi-layer electrode structure of the first substrate and the lower multi-layer electrode structure of the second substrate. A method of controlling trapped ions in a device is also described.
    Type: Grant
    Filed: June 19, 2023
    Date of Patent: September 3, 2024
    Assignee: Infineon Technologies Austria AG
    Inventors: Clemens Roessler, Silke Katharina Auchter, Johanna Elisabeth Roessler, Gerald Stocker
  • Publication number: 20240255450
    Abstract: A fluid sensor detects a target fluid and comprises thermal radiation emitters emitting a broadband thermal radiation, a waveguide structure guiding the thermal radiation comprising an evanescent field component, an optical filter structure coupled to the waveguide structure to provide a filtered thermal radiation having a center wavelength, a thermal radiation detector configured to provide a detector output signal based on a radiation strength of the filtered thermal radiation, and an actuation device for connecting the plurality of thermal radiation emitters with a power source such that the plurality of thermal radiation emitters has an operating temperature between 400 to 1300 K.
    Type: Application
    Filed: January 23, 2024
    Publication date: August 1, 2024
    Inventors: Thomas Grille, Gerald Stocker, Thomas Krotscheck Ostermann, Pooja Thakkar, David Tumpold, Reyhaneh Jannesari
  • Patent number: 12050340
    Abstract: An optical resonator system includes a multi-strip waveguide structure having spaced semiconductor strips for guiding an IR radiation, a STP resonance structure (STP=slab tamm-plasmon-polariton), wherein the STP resonance structure includes an alternating arrangement of semiconductor strips and interjacent dielectric strips and includes a metal strip adjacent to the semiconductor strip at a boundary region of the STP resonance structure, wherein the metal strip and the adjacent semiconductor strip are arranged to provide a metal-semiconductor interface, and wherein the semiconductor strips of the multi-strip waveguide structure and the semiconductor strips of the STP resonance structure are arranged perpendicular to each other, and an optical coupling structure having a semiconductor layer, wherein the semiconductor layer is arranged between the multi-strip waveguide structure and the STP resonance structure for optically coupling the IR radiation between the multi-strip waveguide structure and the STP resona
    Type: Grant
    Filed: October 13, 2022
    Date of Patent: July 30, 2024
    Assignee: INFINEON TECHNOLOGIES AG
    Inventors: Gerald Puehringer, Gerald Stocker, Andreas Tortschanoff, Reyhaneh Jannesari, Clement Fleury, Thomas Grille, Bernhard Jakoby, Cristina Consani
  • Publication number: 20230343576
    Abstract: A device for trapping ions includes: a first substrate having an upper multi-layer electrode structure implemented at a top side of the first substrate; a second substrate disposed over the first substrate and having a lower multi-layer electrode structure implemented at a bottom side of the second substrate; and one or more first level ion traps configured to trap ions in a space between the first substrate and the second substrate. The one or more first level ion traps includes the upper multi-layer electrode structure of the first substrate and the lower multi-layer electrode structure of the second substrate. A method of controlling trapped ions in a device is also described.
    Type: Application
    Filed: June 19, 2023
    Publication date: October 26, 2023
    Inventors: Clemens Roessler, Silke Katharina Auchter, Johanna Elisabeth Roessler, Gerald Stocker
  • Publication number: 20230296502
    Abstract: A monolithic fluid sensor system includes a sensor arrangement and a reference sensor arrangement that are monolithically arranged, wherein respective substrates or semiconductor substrates (wafers or semiconductor wafers) are bonded (fusion bonded or wafer bonded on wafer-level) to each other for providing the resulting monolithic fluid sensor system. The monolithic fluid sensor system particularly includes the sensor arrangement, a cover substrate, the reference sensor arrangement, and a reference cover substrate.
    Type: Application
    Filed: February 9, 2023
    Publication date: September 21, 2023
    Inventors: Christoph Kovatsch, Elmar Aschauer, Ulf Bartl, Thomas Grille, Thomas Krotscheck Ostermann, Gerald Stocker
  • Patent number: 11721537
    Abstract: A device for controlling trapped ions includes a first substrate. A second substrate is disposed over the first substrate. One or a plurality of first level ion traps is configured to trap ions in a space between the first substrate and the second substrate. One or a plurality of second level ion traps is configured to trap ions in a space above the second substrate. An opening in the second substrate is provided through which ions can be transferred between a first level ion trap and a second level ion trap.
    Type: Grant
    Filed: September 29, 2021
    Date of Patent: August 8, 2023
    Assignee: Infineon Technologies Austria AG
    Inventors: Clemens Roessler, Silke Auchter, Johanna Elisabeth Roessler, Gerald Stocker
  • Publication number: 20230148014
    Abstract: A MEMS component is described herein, which according to one exemplary embodiment includes: a semiconductor body; an insulation layer arranged on the semiconductor body; a boundary structure arranged on the insulation layer, the semiconductor body including an opening below the boundary structure; first and second structured electrodes arranged on the insulation layer; and a piezoelectric layer comprising a thermoplastic, and at least partially bounded by the boundary structure and arranged on the insulation layer and on the first and second electrodes.
    Type: Application
    Filed: October 25, 2022
    Publication date: May 11, 2023
    Inventors: Thomas Grille, Elmar Aschauer, Ulf Bartl, Christoph Kovatsch, Matic Krivec, Thomas Ostermann, Lukas Praster, Gerald Stocker
  • Publication number: 20230125167
    Abstract: An optical resonator system includes a multi-strip waveguide structure having spaced semiconductor strips for guiding an IR radiation, a STP resonance structure (STP=slab tamm-plasmon-polariton), wherein the STP resonance structure includes an alternating arrangement of semiconductor strips and interjacent dielectric strips and includes a metal strip adjacent to the semiconductor strip at a boundary region of the STP resonance structure, wherein the metal strip and the adjacent semiconductor strip are arranged to provide a metal-semiconductor interface, and wherein the semiconductor strips of the multi-strip waveguide structure and the semiconductor strips of the STP resonance structure are arranged perpendicular to each other, and an optical coupling structure having a semiconductor layer, wherein the semiconductor layer is arranged between the multi-strip waveguide structure and the STP resonance structure for optically coupling the IR radiation between the multi-strip waveguide structure and the STP resona
    Type: Application
    Filed: October 13, 2022
    Publication date: April 27, 2023
    Inventors: Gerald Puehringer, Gerald Stocker, Andreas Tortschanoff, Reyhaneh Jannesari, Clement Fleury, Thomas Grille, Bernhard Jakoby, Cristina Consani
  • Publication number: 20220381659
    Abstract: A fluid sensor for performing a reference measurement includes a support structure having a top main surface region; a thermal emitter on the top main surface region of the support structure; a first waveguide section and a first thermal radiation detector on the top main surface region of the support structure; and a cover structure on at least one part of the first waveguide section. The first waveguide section guides a first portion of the thermal radiation emitted by the thermal emitter to the first thermal radiation detector. The first thermal radiation detector detects the guided first portion of the thermal radiation for performing the reference measurement.
    Type: Application
    Filed: April 8, 2022
    Publication date: December 1, 2022
    Inventors: Gerald Stocker, Elmar Aschauer, Ulf Bartl, Thomas Grille, Christoph Kovatsch, Thomas Krotscheck Ostermann
  • Publication number: 20220381753
    Abstract: A fluid sensor includes a support structure having a top main surface region; a thermal emitter on the top main surface region of the support structure; a thermal radiation detector on the top main surface region of the support structure; and a waveguide structure having a first and a second waveguide section on the top main surface region of the support structure. The first waveguide section guides a first portion of the thermal radiation to the thermal radiation detector and the second waveguide section guides a second portion of the thermal radiation to the thermal radiation detector. The waveguide structure enables an interaction of an evanescence field of the guided first and/or second portion of the thermal radiation with a surrounding fluid.
    Type: Application
    Filed: April 8, 2022
    Publication date: December 1, 2022
    Inventors: Gerald Stocker, Elmar Aschauer, Ulf Bartl, Thomas Grille, Christoph Kovatsch, Thomas Krotscheck Ostermann
  • Publication number: 20220102134
    Abstract: A device for controlling trapped ions includes a first substrate. A second substrate is disposed over the first substrate. One or a plurality of first level ion traps is configured to trap ions in a space between the first substrate and the second substrate. One or a plurality of second level ion traps is configured to trap ions in a space above the second substrate. An opening in the second substrate is provided through which ions can be transferred between a first level ion trap and a second level ion trap.
    Type: Application
    Filed: September 29, 2021
    Publication date: March 31, 2022
    Inventors: Clemens Roessler, Silke Auchter, Johanna Elisabeth Roessler, Gerald Stocker