Patents by Inventor Reinhard Feger

Reinhard Feger 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: 20230327929
    Abstract: An electronic device may include wireless circuitry that conveys data with a base station according to a communication standard and that detects range to an external object using a first antenna that transmits a waveform compliant with the standard. The waveform may be a Sounding Reference Signal (SRS) waveform, a transmit data waveform, or another waveform. A second antenna may receive a reflected signal that includes the transmitted waveform. The communications circuitry may perform element-wise division on symbols of a selected subcarrier in the reflected signal using corresponding phases and magnitudes of a set of complex OFDM symbols used to generate the transmitted waveform. Peak detection may be performed to detect the range. Using standard-compliant transmit waveforms to also perform spatial ranging may allow the communications circuitry to avoid dedicated radar circuitry while also minimizing impact to the transfer of the data.
    Type: Application
    Filed: February 9, 2023
    Publication date: October 12, 2023
    Inventors: Jochen Schrattenecker, Michael Hofstadler, Andreas Springer, Reinhard Feger, Andreas Stelzer, Harald Pretl, Bernhard Sogl, Andreas Menkhoff
  • Patent number: 11482771
    Abstract: A radio-frequency device comprises a semiconductor package, which comprises a radio-frequency chip and a radio-frequency antenna. The semiconductor package is designed to be mechanically and electrically connected to a circuit board via at least one connecting element of the semiconductor package, with one surface of the semiconductor package facing the circuit board. The radio-frequency device also comprises a waveguide structure oriented in a direction parallel to the surface of the semiconductor package, the radio-frequency antenna being designed for at least one of the following: to emit radiation into the waveguide structure in the direction parallel to the surface of the semiconductor package, or to receive signals via the waveguide structure in the direction parallel to the surface of the semiconductor package.
    Type: Grant
    Filed: January 12, 2021
    Date of Patent: October 25, 2022
    Assignee: Infineon Technologies AG
    Inventors: Thomas Lampersberger, Reinhard Feger, Markus Josef Lang, Juergen Minichshofer, Ernst Seler, Andreas Stelzer
  • Publication number: 20210218127
    Abstract: A radio-frequency device comprises a semiconductor package, which comprises a radio-frequency chip and a radio-frequency antenna. The semiconductor package is designed to be mechanically and electrically connected to a circuit board via at least one connecting element of the semiconductor package, with one surface of the semiconductor package facing the circuit board. The radio-frequency device also comprises a waveguide structure oriented in a direction parallel to the surface of the semiconductor package, the radio-frequency antenna being designed for at least one of the following: to emit radiation into the waveguide structure in the direction parallel to the surface of the semiconductor package, or to receive signals via the waveguide structure in the direction parallel to the surface of the semiconductor package.
    Type: Application
    Filed: January 12, 2021
    Publication date: July 15, 2021
    Inventors: Thomas LAMPERSBERGER, Reinhard FEGER, Markus Josef LANG, Juergen MINICHSHOFER, Ernst SELER, Andreas STELZER
  • Patent number: 9507014
    Abstract: A method is described for detecting a rotating wheel of a vehicle that is travelling on a roadway in a travel direction, the wheels of which are at least partially exposed laterally, the method comprising: emitting an electromagnetic measurement beam having a known temporal progression of its frequency onto a first section above the roadway in a direction in a slant with respect to the vertical and normally or at a slant with respect to the travel direction; receiving a reflected measurement beam and recording the temporal progression of its frequencies, relative to the known progression, as a reception frequency mixture progression; and detecting a frequency band, which is continuously inclining or declining over a period of time, in the reception frequency mixture progression as a wheel. A device for conducting the method is also described.
    Type: Grant
    Filed: June 19, 2012
    Date of Patent: November 29, 2016
    Assignee: Kapsch TrafficCom AG
    Inventors: Andreas Stelzer, Markus Pichler, Clemens Pfeffer, Oliver Nagy, Werner Scheiblhofer, Reinhard Feger
  • Patent number: 8854264
    Abstract: Embodiments relate to two-dimensional antenna arrays. In one embodiment, an antenna array includes single-ended fed patch antennas and differentially fed patches. Field polarization of the radiated and/or received EM waves is different by 90 degrees for each different antenna type. Thus, an aligned polarization pattern can be achieved using orthogonal feeding direction for single-ended and differential patches. Embodiments can be used in radar or virtually any other 2D array antenna system.
    Type: Grant
    Filed: August 22, 2011
    Date of Patent: October 7, 2014
    Assignee: Infineon Technologies AG
    Inventors: Reinhard Feger, Stefan Scheiblhofer, Christoph Wagner, Christian Michael Schmid, Andreas Stelzer, Erich Kolmhofer, Ziqiang Tong
  • Publication number: 20140218227
    Abstract: A method is described for detecting a rotating wheel of a vehicle that is travelling on a roadway in a travel direction, the wheels of which are at least partially exposed laterally, the method comprising: emitting an electromagnetic measurement beam having a known temporal progression of its frequency onto a first section above the roadway in a direction in a slant with respect to the vertical and normally or at a slant with respect to the travel direction; receiving a reflected measurement beam and recording the temporal progression of its frequencies, relative to the known progression, as a reception frequency mixture progression; and detecting a frequency band, which is continuously inclining or declining over a period of time, in the reception frequency mixture progression as a wheel. A device for conducting the method is also described.
    Type: Application
    Filed: June 19, 2012
    Publication date: August 7, 2014
    Applicant: Kapsch TrafficCom AG
    Inventors: Andreas Stelzen, Markus Pichler, Clemens Pfeffer, Oliver Nagy, Werner Scheiblhofer, Reinhard Feger
  • Patent number: 8742981
    Abstract: One embodiment relates to a coupler that can be used in a radar system. The coupler includes differential ports, an antenna port, a receiver port, a local port and a transmission path. The differential ports are configured to receive a differential signal. The antenna port is configured to output a transmitted signal and to input a received signal. The transmitted signal is derived from the differential signal. The receiver port is configured to output a portion or version of the received signal. The local port outputs a local signal, which is also derived from the differential signal. The transmission path is coupled to the differential ports, the antenna port, the receiver port and the local port. The transmission path typically has a length selected to derive or output the signals at the above ports.
    Type: Grant
    Filed: August 22, 2011
    Date of Patent: June 3, 2014
    Assignee: Infineon Technologies AG
    Inventors: Reinhard-Wolfgang Jungmaier, Reinhard Feger, Bernhard Prammer, Andreas Stelzer
  • Publication number: 20130050012
    Abstract: One embodiment relates to a coupler that can be used in a radar system. The coupler includes differential ports, an antenna port, a receiver port, a local port and a transmission path. The differential ports are configured to receive a differential signal. The antenna port is configured to output a transmitted signal and to input a received signal. The transmitted signal is derived from the differential signal. The receiver port is configured to output a portion or version of the received signal. The local port outputs a local signal, which is also derived from the differential signal. The transmission path is coupled to the differential ports, the antenna port, the receiver port and the local port. The transmission path typically has a length selected to derive or output the signals at the above ports.
    Type: Application
    Filed: August 22, 2011
    Publication date: February 28, 2013
    Applicant: Infineon Technologies AG
    Inventors: Reinhard-Wolfgang Jungmaier, Reinhard Feger, Bernhard Prammer, Andreas Stelzer
  • Publication number: 20130050022
    Abstract: Embodiments relate to two-dimensional antenna arrays. In one embodiment, an antenna array includes single-ended fed patch antennas and differentially fed patches. Field polarization of the radiated and/or received EM waves is different by 90 degrees for each different antenna type. Thus, an aligned polarization pattern can be achieved using orthogonal feeding direction for single-ended and differential patches. Embodiments can be used in radar or virtually any other 2D array antenna system.
    Type: Application
    Filed: August 22, 2011
    Publication date: February 28, 2013
    Inventors: Reinhard Feger, Stefan Scheiblhofer, Christoph Wagner, Christian Michael Schmid, Andreas Stelzer, Erich Kolmhofer, Ziqiang Tong
  • Publication number: 20110181459
    Abstract: Embodiments relate to radar systems and methods. In an embodiment, a system includes a radio frequency (RF) sensor array comprising a plurality of spaced apart sensors; and a reflector element positioned proximate the RF sensor array to reflect waves toward the RF sensor array. In an embodiment, a system includes an antenna array comprising a transceive antenna and a plurality of receive antennas; a mirror arranged proximate the antenna array; a voltage controlled oscillator (VCO) configured to generate a signal to be transmitted by the transceive antenna; and a controller configured to resolve signals received by the plurality of receive antennas to determine an angular position of a target, wherein the signals received include a first portion of the signal reflected by the target and a second portion of the signal reflected by the target and the mirror.
    Type: Application
    Filed: January 28, 2010
    Publication date: July 28, 2011
    Applicant: Infineon Technologies AG
    Inventor: Reinhard Feger
  • Patent number: 7821443
    Abstract: One embodiment relates to a dual mode radar transceiver. The dual mode transceiver includes a plurality of transmit channels. Each of the plurality of transmit channels is adapted to switch between a first mode and a second mode. The first mode includes a first combination of the plurality of transmit channels adapted to concurrently transmit outgoing signals. The second mode includes a plurality of different combinations of the plurality of transmit channels. Each of the plurality of different combinations has fewer transmit channels than the first combination. Other methods and systems are also disclosed.
    Type: Grant
    Filed: February 12, 2008
    Date of Patent: October 26, 2010
    Assignee: Infineon Technologies AG
    Inventors: Volker Winkler, Reinhard Feger
  • Publication number: 20090201194
    Abstract: One embodiment relates to a dual mode radar transceiver. The dual mode transceiver includes a plurality of transmit channels. Each of the plurality of transmit channels is adapted to switch between a first mode and a second mode. The first mode includes a first combination of the plurality of transmit channels adapted to concurrently transmit outgoing signals. The second mode includes a plurality of different combinations of the plurality of transmit channels. Each of the plurality of different combinations has fewer transmit channels than the first combination. Other methods and systems are also disclosed.
    Type: Application
    Filed: February 12, 2008
    Publication date: August 13, 2009
    Applicant: Infineon Technologies AG
    Inventors: Volker Winkler, Reinhard Feger