Patents by Inventor Ivan Tsvelykh
Ivan Tsvelykh 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).
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Patent number: 12181581Abstract: A wireless multimode system includes: an array of N antenna elements that includes a first portion of M antenna elements and a second portion of L antenna elements; M transmission amplifiers configured to transmit, via the M antenna elements, frames of transmit data, where the frames of transmit data include transmit radar signals and transmit communication signals; M reception amplifiers configured to receive, via the M antenna elements, frames of receive data, where the frames of receive data includes receive communication signals; and L reception amplifiers configured to receive, via the L antenna elements, receive radar signals; and a resource scheduler configured to allocate bandwidth for transmit radar signals and transmit communication signals within the frames of transmit data based on one or more predetermined parameters.Type: GrantFiled: August 23, 2023Date of Patent: December 31, 2024Assignee: Infineon Technologies AGInventors: Ivan Tsvelykh, Ashutosh Baheti, Avik Santra, Samo Vehovc
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Publication number: 20230393275Abstract: A wireless multimode system includes: an array of N antenna elements that includes a first portion of M antenna elements and a second portion of L antenna elements; M transmission amplifiers configured to transmit, via the M antenna elements, frames of transmit data, where the frames of transmit data include transmit radar signals and transmit communication signals; M reception amplifiers configured to receive, via the M antenna elements, frames of receive data, where the frames of receive data includes receive communication signals; and L reception amplifiers configured to receive, via the L antenna elements, receive radar signals; and a resource scheduler configured to allocate bandwidth for transmit radar signals and transmit communication signals within the frames of transmit data based on one or more predetermined parameters.Type: ApplicationFiled: August 23, 2023Publication date: December 7, 2023Inventors: Ivan Tsvelykh, Ashutosh Baheti, Avik Santra, Samo Vehovc
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Patent number: 11774592Abstract: A wireless multimode system includes: an array of N antenna elements that includes a first portion of M antenna elements and a second portion of L antenna elements; M transmission amplifiers configured to transmit, via the M antenna elements, frames of transmit data, where the frames of transmit data include transmit radar signals and transmit communication signals; M reception amplifiers configured to receive, via the M antenna elements, frames of receive data, where the frames of receive data includes receive communication signals; and L reception amplifiers configured to receive, via the L antenna elements, receive radar signals; and a resource scheduler configured to allocate bandwidth for transmit radar signals and transmit communication signals within the frames of transmit data based on one or more predetermined parameters.Type: GrantFiled: September 18, 2019Date of Patent: October 3, 2023Assignee: Infineon Technologies AGInventors: Ivan Tsvelykh, Ashutosh Baheti, Avik Santra, Samo Vehovc
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Patent number: 11454696Abstract: In an embodiment, a millimeter-wave system includes a first circuit having M channels, one or more antennas coupled to the first circuit, and a controller that includes a resource scheduler module. The controller is configured to operate the millimeter-wave system as a radar device and as a communication device based on an output of the resource scheduler module.Type: GrantFiled: April 5, 2019Date of Patent: September 27, 2022Assignee: Infineon Technologies AGInventors: Ivan Tsvelykh, Ashutosh Baheti, Samo Vehovc, Avik Santra
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Patent number: 11322837Abstract: A calibration method for a phased array system comprises sequentially injecting a tone into a first plurality of antenna elements of an antenna array, receiving the tone by a second plurality of antenna elements of the antenna array through parasitic coupling between the first plurality of antenna elements and the second plurality of antenna elements, measuring a plurality of phase errors between the first plurality of antenna elements and the second plurality of antenna elements, populating a lookup table with the plurality of phase errors, and calibrating a plurality of phase shifters associated with a plurality of channels in the phased array system using the plurality of phase errors in the lookup table.Type: GrantFiled: February 24, 2020Date of Patent: May 3, 2022Assignee: INFINEON TECHNOLOGIES AGInventors: Marc Tiebout, Daniele Dal Maistro, Ivan Tsvelykh, Samo Vehovc, Peter Pfann
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Publication number: 20210159594Abstract: A calibration method for a phased array system comprises sequentially injecting a tone into a first plurality of antenna elements of an antenna array, receiving the tone by a second plurality of antenna elements of the antenna array through parasitic coupling between the first plurality of antenna elements and the second plurality of antenna elements, measuring a plurality of phase errors between the first plurality of antenna elements and the second plurality of antenna elements, populating a lookup table with the plurality of phase errors, and calibrating a plurality of phase shifters associated with a plurality of channels in the phased array system using the plurality of phase errors in the lookup table.Type: ApplicationFiled: February 24, 2020Publication date: May 27, 2021Inventors: Marc Tiebout, Daniele Dal Maistro, Ivan Tsvelykh, Samo Vehovc, Peter Pfann
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Publication number: 20210080580Abstract: A wireless multimode system includes: an array of N antenna elements that includes a first portion of M antenna elements and a second portion of L antenna elements; M transmission amplifiers configured to transmit, via the M antenna elements, frames of transmit data, where the frames of transmit data include transmit radar signals and transmit communication signals; M reception amplifiers configured to receive, via the M antenna elements, frames of receive data, where the frames of receive data includes receive communication signals; and L reception amplifiers configured to receive, via the L antenna elements, receive radar signals; and a resource scheduler configured to allocate bandwidth for transmit radar signals and transmit communication signals within the frames of transmit data based on one or more predetermined parameters.Type: ApplicationFiled: September 18, 2019Publication date: March 18, 2021Inventors: Ivan Tsvelykh, Ashutosh Baheti, Avik Santra, Samo Vehovc
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Patent number: 10903567Abstract: A method for calibration in a phased array antenna includes generating, by a master clock, a reference clock signal and generating an output signal corresponding to the reference clock signal by a phase-locked loop. The method further includes generating, by a local oscillator (LO), an LO signal corresponding to the output signal and generating a transmit calibration tone corresponding to a leakage of the LO signal and a direct current signal by an in-phase and quadrature (IQ) modulator. The method further includes receiving, by a phase detector in each of a plurality of RF devices in the phased array antenna, the transmit calibration tone and determining a relative phase shift between the transmit calibration tone and the reference clock signal received at an input of each of the plurality of RF devices by the phase detector.Type: GrantFiled: June 4, 2018Date of Patent: January 26, 2021Assignee: INFINEON TECHNOLOGIES AGInventors: Samo Vehovc, Ivan Tsvelykh
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Patent number: 10862207Abstract: Devices, methods and systems are disclosed relating to RF signals. A device may comprise a clock input terminal, a variable delay circuit coupled to the clock input terminal and a test terminal as well as a reference signal generator coupled to the variable delay circuit.Type: GrantFiled: December 4, 2017Date of Patent: December 8, 2020Assignee: INFINEON TECHNOLOGIES AGInventors: Samo Vehovc, Ivan Tsvelykh
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Publication number: 20200319327Abstract: In an embodiment, a millimeter-wave system includes a first circuit having M channels, one or more antennas coupled to the first circuit, and a controller that includes a resource scheduler module. The controller is configured to operate the millimeter-wave system as a radar device and as a communication device based on an output of the resource scheduler module.Type: ApplicationFiled: April 5, 2019Publication date: October 8, 2020Inventors: Ivan Tsvelykh, Ashutosh Baheti, Samo Vehovc, Avik Santra
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Publication number: 20190372218Abstract: A method for calibration in a phased array antenna includes generating, by a master clock, a reference clock signal and generating an output signal corresponding to the reference clock signal by a phase-locked loop. The method further includes generating, by a local oscillator (LO), an LO signal corresponding to the output signal and generating a transmit calibration tone corresponding to a leakage of the LO signal and a direct current signal by an in-phase and quadrature (IQ) modulator. The method further includes receiving, by a phase detector in each of a plurality of RF devices in the phased array antenna, the transmit calibration tone and determining a relative phase shift between the transmit calibration tone and the reference clock signal received at an input of each of the plurality of RF devices by the phase detector.Type: ApplicationFiled: June 4, 2018Publication date: December 5, 2019Inventors: Samo Vehovc, Ivan Tsvelykh
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Patent number: 10056922Abstract: A method of operating a radio frequency (RF) module includes filtering, by a substrate integrated waveguide (SIW) band-pass filter, an RF signal propagating between an antenna and an interface structure. The antenna is disposed at a first side of a substrate. The interface structure is disposed at a second side of the substrate opposite the first side The SIW band-pass filter is disposed within the substrate between the antenna and the interface structure. The method of operating the RF module further includes transferring, by the interface structure, the RF signal between the SIW band-pass filter and an RF front end circuit.Type: GrantFiled: June 14, 2017Date of Patent: August 21, 2018Assignee: Infineon Technologies AGInventors: Ivan Tsvelykh, Samo Vehovc
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Publication number: 20180159219Abstract: Devices, methods and systems are disclosed relating to RF signals. A device may comprise a clock input terminal, a variable delay circuit coupled to the clock input terminal and a test terminal as well as a reference signal generator coupled to the variable delay circuit.Type: ApplicationFiled: December 4, 2017Publication date: June 7, 2018Inventors: Samo Vehovc, Ivan Tsvelykh