Patents by Inventor FEIYU WANG

FEIYU WANG 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: 20260135532
    Abstract: A scheme for frequency detection and flatness compensation in electronics systems such as amplifiers is presented. A circuit for automatic detection of a frequency in a radio frequency (RF) input signal is used to determine a frequency-response flatness compensation, and adjust a gain of the overall system to improve flatness errors. Where a power meter is used to measure power levels of RF output signals, automatic input of a detected frequency is applied to the power meter to negate having to input the frequency to the power meter to be used for a given power measurement. The scheme may also perform frequency-response flatness compensation to address flatness errors that are introduced from automatic level control circuit elements that maintain a consistent power level.
    Type: Application
    Filed: November 11, 2024
    Publication date: May 14, 2026
    Inventors: STEPHEN D. WHITE, FEIYU WANG
  • Publication number: 20250139331
    Abstract: The present invention relates to a targeted perception-oriented twin substructure interaction method and system, and application. The method includes: acquiring multivariate inspection and monitoring data and finite element influence line data of a main structure; solving, on the basis of the inspection and monitoring data and the finite element influence line data of a non-focus region, boundary conditions of a focus region; establishing, for the focus region, a refined twin substructure finite element model, and correcting material properties of the refined twin substructure finite element model on the basis of the inspection and monitoring data and the finite element influence line data of the focus region; and calculating a correction force on the basis of the boundary conditions of the focus region and the material properties, and using the correction force as an equivalent external load to act on nodes of a global finite element model.
    Type: Application
    Filed: November 6, 2023
    Publication date: May 1, 2025
    Applicant: Southeast University
    Inventors: Jian Zhang, Yixuan Chen, Feiyu Wang, Chenhao Gao
  • Patent number: 11750161
    Abstract: A power combiner circuit comprises a network topology for broadband RF and microwave systems that includes coupling elements, internodal matching sections, and an output matching section. The network topology serves as a combining mechanism for power from multiple power amplifiers. The network topology is designed so that characteristic impedances of transmissions lines serving as the coupling elements, internodal matching sections, and an output matching section produce a load impedance at an output port that is matched to the impedances seen by each power amplifier providing power to the power combiner circuit. Such a network topology is scalable to an unlimited number of power amplifiers, and enables a desired broadband frequency response for power amplification, while realizing a very low level of power output loss between input and output ports.
    Type: Grant
    Filed: May 24, 2021
    Date of Patent: September 5, 2023
    Assignee: OPHIR, INC.
    Inventors: Ramon A. Beltran, Feiyu Wang, Gregorio Villagrana
  • Publication number: 20210281230
    Abstract: A power combiner circuit comprises a network topology for broadband RF and microwave systems that includes coupling elements, internodal matching sections, and an output matching section. The network topology serves as a combining mechanism for power from multiple power amplifiers. The network topology is designed so that characteristic impedances of transmissions lines serving as the coupling elements, internodal matching sections, and an output matching section produce a load impedance at an output port that is matched to the impedances seen by each power amplifier providing power to the power combiner circuit. Such a network topology is scalable to an unlimited number of power amplifiers, and enables a desired broadband frequency response for power amplification, while realizing a very low level of power output loss between input and output ports.
    Type: Application
    Filed: May 24, 2021
    Publication date: September 9, 2021
    Inventors: RAMON A. BELTRAN, FEIYU WANG, GREGORIO VILLAGRANA
  • Patent number: 11018641
    Abstract: A power combiner circuit comprises a network topology for broadband RF and microwave systems that includes coupling elements, internodal matching sections, and an output matching section. The network topology serves as a combining mechanism for power from multiple power amplifiers. The network topology is designed so that characteristic impedances of transmissions lines serving as the coupling elements, internodal matching sections, and an output matching section produce a load impedance at an output port that is matched to the impedances seen by each power amplifier providing power to the power combiner circuit. Such a network topology is scalable to an unlimited number of power amplifiers, and enables a desired broadband frequency response for power amplification, while realizing a very low level of power output loss between input and output ports.
    Type: Grant
    Filed: August 3, 2019
    Date of Patent: May 25, 2021
    Assignee: OPHIR RF, INC.
    Inventors: Ramon A. Beltran, Feiyu Wang, Gregorio Villagrana
  • Publication number: 20210036673
    Abstract: A power combiner circuit comprises a network topology for broadband RF and microwave systems that includes coupling elements, internodal matching sections, and an output matching section. The network topology serves as a combining mechanism for power from multiple power amplifiers. The network topology is designed so that characteristic impedances of transmissions lines serving as the coupling elements, internodal matching sections, and an output matching section produce a load impedance at an output port that is matched to the impedances seen by each power amplifier providing power to the power combiner circuit. Such a network topology is scalable to an unlimited number of power amplifiers, and enables a desired broadband frequency response for power amplification, while realizing a very low level of power output loss between input and output ports.
    Type: Application
    Filed: August 3, 2019
    Publication date: February 4, 2021
    Inventors: RAMON A. BELTRAN, FEIYU WANG, GREGORIO VILLAGRANA