Patents by Inventor Gerhard Maierbacher

Gerhard Maierbacher 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: 20240142584
    Abstract: In embodiments a detection system includes a detector configured to provide a received signal and a processing circuit configured to provide a plurality of quantized signals, each quantized signal being associated with a respective threshold level, and each quantized signal being representative of portions of the received signal in which a signal level of the received signal is greater than the respective threshold level and to provide an encoded signal based on the plurality of quantized signals, the encoded signal including a first plurality of first encoded signal values being representative of the portions of the received signal in which the signal level of the received signal becomes greater than one of the threshold levels, and a second plurality of second encoded signal values being representative of the portions of the received signal in which the signal level of the received signal becomes less than one of the threshold levels.
    Type: Application
    Filed: December 20, 2021
    Publication date: May 2, 2024
    Inventors: Gerhard Maierbacher, Florian Kolb, Martin Schnarrenberger
  • Publication number: 20240094353
    Abstract: The present disclosure provides a light detection and ranging (LIDAR) system, which comprises: a distance measuring unit configured to emit a plurality of first pulses towards an object located in a field of view (FOV), wherein the object is associated with one or more markers; and a detector configured to receive at least one second pulse from the one or more markers of the object, wherein each of the at least one second pulse indicates object information identifying the object.
    Type: Application
    Filed: November 20, 2023
    Publication date: March 21, 2024
    Inventors: Ricardo Ferreira, Stefan Hadrath, Peter Hoehmann, Herbert Kaestle, Florian Kolb, Norbert Magg, Jiye Park, Tobias Schmidt, Martin Schnarrenberger, Norbert Haas, Helmut Horn, Bernhard Siessegger, Guido Angenendt, Charles Braquet, Gerhard Maierbacher, Oliver Neitzke, Sergey Khrushchev
  • Publication number: 20240027591
    Abstract: In an embodiment a light detection system includes a detector configured to provide a received light signal and a processing circuit configured to identify a number of peaks in the received light signal and to estimate a signal-to-noise ratio associated with the received light signal based on the number of identified peaks.
    Type: Application
    Filed: December 9, 2021
    Publication date: January 25, 2024
    Inventors: Gerhard Maierbacher, Bernhard Siessegger
  • Patent number: 11726184
    Abstract: The present disclosure relates to various embodiments of an optical component for a LIDAR Sensor System. The optical component may include an optical element having a first main surface and a second main surface opposite to the first main surface, a first lens array formed on the first main surface, and/or a second lens array formed on the second main surface. The optical element has a curved shape in a first direction of the LIDAR Sensor System.
    Type: Grant
    Filed: March 5, 2020
    Date of Patent: August 15, 2023
    Assignee: LeddarTech Inc.
    Inventors: Ricardo Ferreira, Stefan Hadrath, Peter Hoehmann, Herbert Kaestle, Florian Kolb, Norbert Magg, Jiye Park, Tobias Schmidt, Martin Schnarrenberger, Norbert Haas, Helmut Horn, Bernhard Siessegger, Guido Angenendt, Charles Braquet, Gerhard Maierbacher, Oliver Neitzke, Sergey Khrushchev
  • Patent number: 11476978
    Abstract: A method for the redundant transmission of data by means of light-based communication may include a data stream to be transmitted that is converted into symbols. This data stream is converted from bipolar symbols into multiple partial data streams having e.g. unipolar-positive symbols. The partial data streams are converted into multiple semi-redundant signals that are then transmitted to the receiver via multiple light-based channels. In the receiver, the received signals are converted back again analogously to when they were sent, in order to obtain the original data stream again.
    Type: Grant
    Filed: September 18, 2018
    Date of Patent: October 18, 2022
    Assignee: OSRAM GmbH
    Inventor: Gerhard Maierbacher
  • Publication number: 20220276352
    Abstract: The present disclosure relates to various embodiments of an optical package for a LIDAR sensor system having a substrate including an array of a plurality of capacitors formed in the substrate, a plurality of switches formed in the substrate, where each switch is connected between at least one laser diode and at least one capacitor of the plurality of capacitors; and at least one laser diode being mounted in close proximity to the plurality of capacitors on the substrate in order to provide small parasitic inductances and capacitances. A processor is configured to control the plurality of switches to control a first current flow to charge the plurality of capacitors, wherein the processor is configured to control the plurality of switches to control a second current flow to drive the at least one laser diode with current discharged from at least one capacitor of the plurality of capacitors.
    Type: Application
    Filed: May 12, 2022
    Publication date: September 1, 2022
    Inventors: Ricardo FERREIRA, Stefan HADRATH, Peter HOEHMANN, Herbert KAESTLE, Florian KOLB, Norbert MAGG, Jiye PARK, Tobias SCHMIDT, Martin SCHNARRENBERGER, Norbert HAAS, Helmut HORN, Bernhard SIESSEGGER, Guido ANGENENDT, Charles BRAQUET, Gerhard MAIERBACHER, Oliver NEITZKE, Sergey KHRUSHCHEV
  • Publication number: 20220276351
    Abstract: The present disclosure relates to various embodiments of an optical component for a LIDAR Sensor System. The optical component includes a first photo diode implementing a LIDAR sensor pixel in a first semiconductor structure and configured to absorb received light in a first wavelength region, a second photo diode implementing a camera sensor pixel in a second semiconductor structure over the first semiconductor structure and configured to absorb received light in a second wavelength region, and an interconnect layer (e.g. arranged between the first semiconductor structure and the second semiconductor structure) including an electrically conductive structure configured to electrically contact the second photo diode. The received light of the second wavelength region has a shorter wavelength than the received light of the first wavelength region.
    Type: Application
    Filed: May 12, 2022
    Publication date: September 1, 2022
    Inventors: Ricardo FERREIRA, Stefan HADRATH, Peter HOEHMANN, Herbert KAESTLE, Florian KOLB, Norbert MAGG, Jiye PARK, Tobias SCHMIDT, Martin SCHNARRENBERGER, Norbert HAAS, Helmut HORN, Bernhard SIESSEGGER, Guido ANGENENDT, Charles BRAQUET, Gerhard MAIERBACHER, Oliver NEITZKE, Sergey KHRUSHCHEV
  • Publication number: 20220252705
    Abstract: In an embodiment a LIDAR device includes a processing circuit configured to receive a request for a software modification of the LIDAR device and authenticate the request for the software modification via an exchange of authentication data over a standard communication interface and an optical communication interface, wherein the optical communication interface is provided by an optoelectronic component of the LIDAR device.
    Type: Application
    Filed: February 8, 2022
    Publication date: August 11, 2022
    Inventors: Bernhard Siessegger, Gerhard Maierbacher
  • Patent number: 11101888
    Abstract: A system may involve transmitting data via a light-based data link. The aim of the invention is to establish a data connection which is as simple and efficient as possible. In order to achieve this, the system comprises various components which deflect the light containing the data and distribute it in a targeted manner. The invention also relates to various fields of application for the system, such as mechanical joints and robot joints, rail systems and luminaires.
    Type: Grant
    Filed: September 19, 2018
    Date of Patent: August 24, 2021
    Assignee: OSRAM GMBH
    Inventors: Gerhard Maierbacher, Bernhard Siessegger
  • Patent number: 10931373
    Abstract: A wireless communication link between a communication network and a communication terminal device positioned in a predeterminable region may be established and improve capacity for wireless communication. A line-bound communication link to the communication network may be established via a communication base device arranged in a fixed location, and an optically-based communication link to the communication terminal device may be established via an optical deflection device.
    Type: Grant
    Filed: May 16, 2018
    Date of Patent: February 23, 2021
    Assignee: Osram GmbH
    Inventors: Gerhard Maierbacher, Alexander Wanderer
  • Publication number: 20200287661
    Abstract: A method for the redundant transmission of data by means of light-based communication may include a data stream to be transmitted that is converted into symbols. This data stream is converted from bipolar symbols into multiple partial data streams having e.g. unipolar-positive symbols. The partial data streams are converted into multiple semi-redundant signals that are then transmitted to the receiver via multiple light-based channels. In the receiver, the received signals are converted back again analogously to when they were sent, in order to obtain the original data stream again.
    Type: Application
    Filed: September 18, 2018
    Publication date: September 10, 2020
    Inventor: Gerhard Maierbacher
  • Publication number: 20200284883
    Abstract: The present disclosure relates to various embodiments of an optical component for a LIDAR Sensor System. The optical component may include an optical element having a first main surface and a second main surface opposite to the first main surface, a first lens array formed on the first main surface, and/or a second lens array formed on the second main surface. The optical element has a curved shape in a first direction of the LIDAR Sensor System.
    Type: Application
    Filed: March 5, 2020
    Publication date: September 10, 2020
    Inventors: Ricardo Ferreira, Stefan Hadrath, Peter Hoehmann, Herbert Kaestle, Florian Kolb, Norbert Magg, Jiye Park, Tobias Schmidt, Martin Schnarrenberger, Norbert Haas, Helmut Horn, Bernhard Siessegger, Guido Angenendt, Charles Braquet, Gerhard Maierbacher, Oliver Neitzke, Sergey Khrushchev
  • Publication number: 20200228203
    Abstract: A system may involve transmitting data via a light-based data link. The aim of the invention is to establish a data connection which is as simple and efficient as possible. In order to achieve this, the system comprises various components which deflect the light containing the data and distribute it in a targeted manner. The invention also relates to various fields of application for the system, such as mechanical joints and robot joints, rail systems and luminaires.
    Type: Application
    Filed: September 19, 2018
    Publication date: July 16, 2020
    Inventors: Gerhard Maierbacher, Bernhard Siessegger
  • Publication number: 20200083957
    Abstract: A wireless communication link between a communication network and a communication terminal device positioned in a predeterminable region may be established and improve capacity for wireless communication. A line-bound communication link to the communication network may be established via a communication base device arranged in a fixed location, and an optically-based communication link to the communication terminal device may be established via an optical deflection device.
    Type: Application
    Filed: May 16, 2018
    Publication date: March 12, 2020
    Inventors: Gerhard MAIERBACHER, Alexander WANDERER
  • Patent number: 10374720
    Abstract: A light guide arrangement for a mobile communications device for optical data transmission by an optoelectronic interface component of the communications device is provided. The light guide arrangement includes a light guide body with a greatest extent in the principal light guiding direction, a first optical coupling member for coupling the optoelectronic interface component to the light guide body, a second optical coupling member with a first lens element that has a first optical axis transverse to the principal light guiding direction and with a first optical deflection element arranged along the first optical axis, and a third optical coupling member with a second lens element that has a second optical axis transverse to the principal light guiding direction and with a second optical deflection element arranged along the second optical axis. The second optical axis differs from the first optical axis.
    Type: Grant
    Filed: May 25, 2018
    Date of Patent: August 6, 2019
    Assignee: OSRAM GmbH
    Inventors: Gerhard Maierbacher, Bernhard Siessegger, Markus Jung
  • Publication number: 20180351649
    Abstract: A light guide arrangement for a mobile communications device for optical data transmission by an optoelectronic interface component of the communications device is provided. The light guide arrangement includes a light guide body with a greatest extent in the principal light guiding direction, a first optical coupling member for coupling the optoelectronic interface component to the light guide body, a second optical coupling member with a first lens element that has a first optical axis transverse to the principal light guiding direction and with a first optical deflection element arranged along the first optical axis, and a third optical coupling member with a second lens element that has a second optical axis transverse to the principal light guiding direction and with a second optical deflection element arranged along the second optical axis. The second optical axis differs from the first optical axis.
    Type: Application
    Filed: May 25, 2018
    Publication date: December 6, 2018
    Inventors: Gerhard Maierbacher, Bernhard Siessegger, Markus Jung