Patents by Inventor Andrew YUREK

Andrew YUREK 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: 20240108412
    Abstract: A catheter assembly is provided having a working lumen and a guide. The guide is configured to position a fragmentizing device within the working lumen. The guide is configured to prevent or minimize any unintended movement of a distal section of the fragmentizing device within the working lumen when the distal section of the fragmentizing device is positioned at a distal end of the working lumen.
    Type: Application
    Filed: September 26, 2023
    Publication date: April 4, 2024
    Inventors: Matthew YUREK, Ling TONG, Brian Y. TACHIBANA, Thomas R. JENKINS, Calvin LAM, Ailee PHAM, Kejin WANG, Joseph CATANESE, III, Jee SHIN, Caralin Riva ADAIR, Andrew J. HUDSON
  • Patent number: 11903175
    Abstract: A power converter includes an integrated multi-layer cooling structure. The power converter includes a plurality of printed circuit boards (PCBs) stacked together in a generally vertical arrangement. A liquid cooling mechanism is attached to a lower-most PCB, and high loss circuitry components are attached to an opposite side of the lower-most PCB. Low loss circuitry components are attached to further PCBs. Magnetic components may be attached to the further PCBs. The high loss components are actively cooled by the liquid cooling mechanism and the low loss components and magnetic components are passively cooled. The liquid cooling mechanism may be a cold plate heatsink. The power converter may include intermediate PCBs disposed between the upper-most PCB and the lower-most PCB, with low loss circuitry components attached to the intermediate PCBs.
    Type: Grant
    Filed: January 24, 2020
    Date of Patent: February 13, 2024
    Assignee: MAGNA INTERNATIONAL INC.
    Inventors: Yang Chen, Wenbo Liu, Andrew Yurek, Bo Sheng, Xiang Zhou, Yan-Fei Liu, Lakshmi Varaha Iyer, Gerd Schlager, Michael Neudorfhofer, Wolfgang Baeck
  • Publication number: 20220103081
    Abstract: A multi-phase LLC power converter comprises a plurality of LLC phases each including a resonant tank and a switching stage. The resonant tank includes a resonant inductor, a resonant capacitor, and a parallel inductance. The switching stage switches an input power at an operating frequency to apply a switched power to the resonant tank, with the switched power approximating an alternating current (AC) waveform having a switching frequency. A secondary-side controller varies the switching frequency to control an output voltage of the multi-phase LLC power converter. A primary-side controller measures primary-side currents, calculates an initial switch-controlled capacitor (SCC) conduction phase angle for each of the LLC phases, and operates an SCC switch in accordance with an SCC conduction phase angle to adjust the capacitance of the resonant capacitor of an LLC phase to cause each of the LLC phases to have equal resonant frequencies.
    Type: Application
    Filed: January 24, 2020
    Publication date: March 31, 2022
    Inventors: Bo SHENG, Xiang ZHOU, Wenbo LIU, Yang CHEN, Yan-Fei LIU, Andrew YUREK, Lakshmi Varaha IYER, Gerd SCHLAGER, Michael NEUDORFHOFER, Wolfgang BAECK
  • Publication number: 20220103083
    Abstract: An LLC power converter comprises a switching stage and a resonant tank, the switching stage configured to switch an input power at a switching frequency to apply a switched power to the resonant tank, and the resonant tank includes a resonant inductor, a resonant capacitor, and a parallel inductance. A transformer has a primary winding connected to the resonant tank and a secondary winding. A synchronous rectifier (SR) switch is configured to selectively switch current from the secondary winding to supply a rectified current to a load. An RC filter includes a filter capacitor and a filter resistor connected across the SR switch, with the filter capacitor defining a filter capacitor voltage thereacross. A rectifier driver is configured to drive the SR switch to a conductive state in response to the filter capacitor voltage being less than a threshold value.
    Type: Application
    Filed: January 24, 2020
    Publication date: March 31, 2022
    Inventors: Xiang ZHOU, Wenbo LIU, Bo SHENG, Yang CHEN, Andrew YUREK, Yan-Fei LIU, Lakshmi Varaha IYER, Gerd SCHLAGER, Michael NEUDORFHOFER, Wolfgang BAECK
  • Publication number: 20220094272
    Abstract: An inductor-inductor-capacitor (EEC) power converter with high efficiency for Electric Vehicle (EV) on-board low voltage DC-DC chargers (LDC) is disclosed. The converter includes a switching bridge with a plurality of bridge switches and configured to generate an output from a direct current input voltage. An EEC tank circuit is coupled to the switching bridge and includes a resonant inductor and a resonant capacitor and a parallel inductor connected between the resonant inductor and the resonant capacitor. The tank circuit is configured to output a resonant sinusoidal current from the output of the switching bridge. At least one transformer has at least one primary winding in parallel with the parallel inductor of the inductor-inductor-capacitor tank circuit and at least one secondary winding. At least one rectifier is coupled to the at least one secondary winding and is configured to output a rectified alternating current.
    Type: Application
    Filed: January 24, 2020
    Publication date: March 24, 2022
    Inventors: Wenbo LIU, Yang CHEN, Xiang ZHOU, Andrew YUREK, Mojtaba FOROUZESH, Bo SHENG, Sam WEBB, Yan-Fei LIU, Lakshmi Varaha IYER, Gerd SCHLAGER, Michael NEUDORFHOFER, Wolfgang BAECK
  • Publication number: 20220087079
    Abstract: A power converter includes an integrated multi-layer cooling structure. The power converter includes a plurality of printed circuit boards (PCBs) stacked together in a generally vertical arrangement. A liquid cooling mechanism is attached to a lower-most PCB, and high loss circuitry components are attached to an opposite side of the lower-most PCB. Low loss circuitry components are attached to further PCBs. Magnetic components may be attached to the further PCBs. The high loss components are actively cooled by the liquid cooling mechanism and the low loss components and magnetic components are passively cooled. The liquid cooling mechanism may be a cold plate heatsink. The power converter may include intermediate PCBs disposed between the upper-most PCB and the lower-most PCB, with low loss circuitry components attached to the intermediate PCBs.
    Type: Application
    Filed: January 24, 2020
    Publication date: March 17, 2022
    Inventors: Yang CHEN, Wenbo LIU, Andrew YUREK, Bo SHENG, Xiang ZHOU, Yan-Fei LIU, Lakshmi Varaha IYER, Gerd SCHLAGER, Michael NEUDORFHOFER, Wolfgang BAECK