Patents by Inventor Wladimiro Villarroel

Wladimiro Villarroel 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: 20200225073
    Abstract: Disclosed is a filling level measurement system and method for determining the level of a material within a container. The system and method are operative to provide a configuration that enables the transmission of an acoustic or an electromagnetic signal, which propagates along a channel having an end disposed at least in proximity to such material and produces a reflected signal. The system comprises a sensor capable of detecting such reflected signal, measuring the time from the transmission to the detection of the signal, and estimating the distance traveled by the signal to provide a measurement of the filling level of the container to a readout unit. The method provides the steps for properly calibrating and measuring the filling level of a container for different channel layouts. The system and method are particularly suitable for determining the appropriate timing for emptying the tank according to a specific application.
    Type: Application
    Filed: January 15, 2019
    Publication date: July 16, 2020
    Inventors: Wladimiro Villarroel, Eric Walton
  • Patent number: 9837707
    Abstract: A window assembly for a vehicle has a transparent layer including a metal compound such that the transparent layer is electrically conductive. The transparent layer defines an area covering the window assembly. An outer region which is electrically non-conductive surrounds the area. The window assembly includes an antenna element including wire or transparent coating which overlaps the transparent layer and overlaps the outer region. The antenna element is configured to receive linearly or circularly polarized radio frequency (RF) signals. A feeding element is coupled to the antenna element for energizing the antenna element. The antenna element is capacitively coupled to the transparent layer. The transparent layer operates as a parasitic or active antenna element with respect to the antenna element.
    Type: Grant
    Filed: December 9, 2011
    Date of Patent: December 5, 2017
    Assignees: AGC AUTOMOTIVE AMERICAS R&D, INC., AGC FLAT GLASS NORTH AMERICA, INC.
    Inventors: Wladimiro Villarroel, Ming Lee, Yasutaka Horiki
  • Patent number: 9755299
    Abstract: A window assembly for a vehicle has a transparent layer including a metal compound such that the transparent layer as is electrically conductive. The transparent layer defines an area covering the window assembly. An outer region which is electrically non-conductive surrounds the area. The window assembly includes an antenna element including wire or transparent coating disposed within and surrounded by the outer region without extending into the transparent layer. The antenna element is electrically disconnected from the transparent layer such that the antenna element operates independent of the transparent layer. A feeding element is coupled to the antenna element for energizing the antenna element. The feeding element is electrically disconnected from the transparent layer such that the feeding element energizes the antenna element independent of the transparent layer.
    Type: Grant
    Filed: December 9, 2011
    Date of Patent: September 5, 2017
    Assignees: AGC AUTOMOTIVE AMERICAS R&D, INC., AGC FLAT GLASS NORTH AMERICA, INC.
    Inventors: Ming Lee, Wladimiro Villarroel, Yasutaka Horiki, Kwan-ho Lee
  • Patent number: 9502751
    Abstract: Disclosed is an antenna system and method to design a desensitized antenna element. The system and method are operative to design a configuration of an antenna to overcome a number of operational conditions in which the frequency response of the antenna element may be uniquely or significantly detuned or offset or in which undesired noise, signal interference, or electromagnetic coupling effects may affect or be induced by the antenna element. These operational conditions may include the presence of any combination of user body parts, conductive materials, or dielectric materials as well as neighboring electronic systems or other sources of undesired noise, signal interference, and electromagnetic coupling. The system is designed to mitigate adverse effects, when operating in a potentially antenna-detuning environment or under conditions that may affect other systems or be susceptible to being affected by other sources, by using a desensitizer element comprising at least one electrical circuit component.
    Type: Grant
    Filed: September 2, 2014
    Date of Patent: November 22, 2016
    Assignee: PANERATECH, INC.
    Inventors: Yakup Bayram, Wladimiro Villarroel, Eric Walton
  • Patent number: 9413059
    Abstract: Disclosed is an antenna feeding system and method to optimize the design of the feeding system to feed an antenna made of a resistive sheet. The system and method are operative to design a topology of the antenna feeding system to adapt to a topology of the resistive sheet antenna to mitigate the adverse effects caused by the inherent losses of resistive sheets while operating as antennas. The system is designed to reduce a convergence of radiofrequency currents that may create a localized high density current concentration, such as “hot spots” and “pinch points,” on the resistive sheet, by a sufficient extent so as to prevent power losses that substantially decrease the radiation efficiency of the antenna as compared with feeding systems designed using traditional design techniques.
    Type: Grant
    Filed: May 12, 2014
    Date of Patent: August 9, 2016
    Assignee: PANERATECH, INC.
    Inventors: Yakup Bayram, Wladimiro Villarroel, Alexander Ruege, Eric Walton
  • Patent number: 9391360
    Abstract: Disclosed is an antenna system and method to optimize the design of an antenna using resistive sheets. The system and method are operative to design a topology of a resistive sheet to mitigate the adverse effects caused by the inherent losses of resistive sheets while operating as antennas. The system is designed to reduce a plurality of radiofrequency current “hot spots” and “pinch points,” associated with the flow of a current on a resistive sheet, by a sufficient extent so as to enable radiation of electromagnetic waves at substantially higher radiation efficiency as compared with antennas designed using traditional design techniques.
    Type: Grant
    Filed: April 15, 2014
    Date of Patent: July 12, 2016
    Assignee: PANERATECH, INC.
    Inventors: Yakup Bayram, Wladimiro Villarroel, Alexander Ruege, Eric Walton
  • Patent number: 9270017
    Abstract: An antenna (10) suitable for receiving circularly polarized RF signals from a satellite is integrated with a window (12) of a vehicle (14), such as a roof window (12). The antenna (10) includes a patch element (18) disposed adjacent to the window (12). Radiating strips (26) forming at least one dipole pair are disposed below the patch element (18) and connectable to a transmission line. A coupling element (20) surrounds the radiating strips (26) and a dielectric layer (38) is sandwiched between the patch element (18) and the radiating strips (26). A ground plane (36) is also disposed below the radiating strip (26). A conductive casing (46) perpendicularly surrounds the antenna (10) elements while electrically connecting the ground plane (36) to the coupling element (20) such that the radiating strips (26) are generally disposed within a cavity (24).
    Type: Grant
    Filed: December 29, 2008
    Date of Patent: February 23, 2016
    Assignee: AGC AUTOMOTIVE AMERICAS R&D, INC.
    Inventors: Wladimiro Villarroel, Jesus Gedde
  • Patent number: 9094115
    Abstract: An antenna system and method utilize a splitter electrically connectable to a single antenna for splitting an RF signal into two signals. A variable phase shifter shifts the phase of one of the signals. A combiner combines the phase shifted and non-phase shifted signals to produce a conditioned signal. A quality examiner circuit changes the amount of phase shift provided by the variable phase shifter to produce a plurality of different conditioned signals. The quality examiner circuit then determines a quality of each conditioned signal and changes the phase shift again to provide the highest quality conditioned signal to a receiver.
    Type: Grant
    Filed: July 2, 2013
    Date of Patent: July 28, 2015
    Assignee: AGC AUTOMOTIVE AMERICAS R&D, INC.
    Inventors: Ming Lee, Wladimiro Villarroel, Yasutaka Horiki, Kwan-ho Lee
  • Publication number: 20150061961
    Abstract: Disclosed is an antenna system and method to design a desensitized antenna element. The system and method are operative to design a configuration of an antenna to overcome a number of operational conditions in which the frequency response of the antenna element may be uniquely or significantly detuned or offset or in which undesired noise, signal interference, or electromagnetic coupling effects may affect or be induced by the antenna element. These operational conditions may include the presence of any combination of user body parts, conductive materials, or dielectric materials as well as neighboring electronic systems or other sources of undesired noise, signal interference, and electromagnetic coupling. The system is designed to mitigate adverse effects, when operating in a potentially antenna-detuning environment or under conditions that may affect other systems or be susceptible to being affected by other sources, by using a desensitizer element comprising at least one electrical circuit component.
    Type: Application
    Filed: September 2, 2014
    Publication date: March 5, 2015
    Inventors: Yakup Bayram, Wladimiro Villarroel, Eric Walton
  • Patent number: 8948702
    Abstract: An antenna system and method utilize an evaluation branch circuit and an implementation branch circuit. These circuits are each connected to both a first antenna input and a second antenna input. An output of the evaluation branch circuit is in communication with a controller while an output of the implementation branch circuit is in communication with a receiver. Each branch circuit includes at least one signal conditioner to change an electrical characteristic of RF signals received from antennas via the antenna inputs. The evaluation branch circuit, controlled by the controller, changes the electrical characteristics of the RF signals in a variety of different ways to discover an optimized evaluation RF signal. Once the optimized evaluation RF signal is determined, the implementation branch circuit is controlled, by the controller, to produce an optimized implementation RF signal in accordance with that discovered by the evaluation branch circuit.
    Type: Grant
    Filed: June 15, 2010
    Date of Patent: February 3, 2015
    Assignee: AGC Automotive Americas R&D, Inc.
    Inventors: Ming Lee, Wladimiro Villarroel, Kwan-ho Lee, Yasutaka Horiki
  • Publication number: 20140340279
    Abstract: Disclosed is an antenna feeding system and method to optimize the design of the feeding system to feed an antenna made of a resistive sheet. The system and method are operative to design a topology of the antenna feeding system to adapt to a topology of the resistive sheet antenna to mitigate the adverse effects caused by the inherent losses of resistive sheets while operating as antennas. The system is designed to reduce a convergence of radiofrequency currents that may create a localized high density current concentration, such as “hot spots” and “pinch points,” on the resistive sheet, by a sufficient extent so as to prevent power losses that substantially decrease the radiation efficiency of the antenna as compared with feeding systems designed using traditional design techniques.
    Type: Application
    Filed: May 12, 2014
    Publication date: November 20, 2014
    Applicant: PaneraTech, Inc.
    Inventors: Yakup Bayram, Wladimiro Villarroel, Alexander Ruege, Eric Walton
  • Patent number: 8754819
    Abstract: An antenna system includes a circularly polarized (CP) antenna for receiving and/or transmitting a circularly polarized RF signal. The CP antenna includes a pair of radiating patches each having an elongated shape. An elongated axis is defined along a longest length of each of the radiating patches. The elongated axes are disposed generally perpendicular to one another to generate the circular polarization. A coplanar waveguide feeding element is disposed between the radiating patches for feeding RF signals from and/or to the radiating patches via electromagnetic coupling. A width of the slot of the coplanar waveguide is varied to provide impedance matching of the CP antenna with a transmission line.
    Type: Grant
    Filed: March 12, 2010
    Date of Patent: June 17, 2014
    Assignee: AGC Automotive Americas R&D, Inc.
    Inventors: Qian Li, Wladimiro Villarroel
  • Publication number: 20140104122
    Abstract: A window assembly for a vehicle has a transparent layer including a metal compound such that the transparent layer as is electrically conductive. The transparent layer defines an area covering the window assembly. An outer region which is electrically non-conductive surrounds the area. The window assembly includes an antenna element including wire or transparent coating disposed within and surrounded by the outer region without extending into the transparent layer. The antenna element is electrically disconnected from the transparent layer such that the antenna element operates independent of the transparent layer. A feeding element is coupled to the antenna element for energizing the antenna element. The feeding element is electrically disconnected from the transparent layer such that the feeding element energizes the antenna element independent of the transparent layer.
    Type: Application
    Filed: December 9, 2011
    Publication date: April 17, 2014
    Applicant: AGC Automotive Americas R&D, Inc.
    Inventors: Ming Lee, Wladimiro Villarroel, Yasutaka Horiki, Kwan-ho Lee
  • Publication number: 20140015716
    Abstract: A window assembly for a vehicle has a transparent layer including a metal compound such that the transparent layer is electrically conductive. The transparent layer defines an area covering the window assembly. An outer region which is electrically non-conductive surrounds the area. The window assembly includes an antenna element including wire or transparent coating which overlaps the transparent layer and overlaps the outer region. The antenna element is configured to receive linearly or circularly polarized radio frequency (RF) signals. A feeding element is coupled to the antenna element for energizing the antenna element. The antenna element is capacitively coupled to the transparent layer. The transparent layer operates as a parasitic or active antenna element with respect to the antenna element.
    Type: Application
    Filed: December 9, 2011
    Publication date: January 16, 2014
    Applicant: AGC Automotive Americans R&D, Inc.
    Inventors: Wladimiro Villarroel, Ming Lee, Yasutaka Horiki
  • Publication number: 20130295864
    Abstract: An antenna system and method utilize a splitter electrically connectable to a single antenna for splitting an RF signal into two signals. A variable phase shifter shifts the phase of one of the signals. A combiner combines the phase shifted and non-phase shifted signals to produce a conditioned signal. A quality examiner circuit changes the amount of phase shift provided by the variable phase shifter to produce a plurality of different conditioned signals. The quality examiner circuit then determines a quality of each conditioned signal and changes the phase shift again to provide the highest quality conditioned signal to a receiver.
    Type: Application
    Filed: July 2, 2013
    Publication date: November 7, 2013
    Inventors: Ming LEE, Wladimiro VILLARROEL, Yasutaka HORIKI, Kwan-ho LEE
  • Patent number: 8515378
    Abstract: An antenna system and method utilize a splitter electrically connectable to a single antenna for splitting an RF signal into two signals. A variable phase shifter shifts the phase of one of the signals. A combiner combines the phase shifted and non-phase shifted signals to produce a conditioned signal. A quality examiner circuit changes the amount of phase shift provided by the variable phase shifter to produce a plurality of different conditioned signals. The quality examiner circuit then determines a quality of each conditioned signal and changes the phase shift again to provide the highest quality conditioned signal to a receiver.
    Type: Grant
    Filed: June 15, 2010
    Date of Patent: August 20, 2013
    Assignee: AGC Automotive Americas R&D, Inc.
    Inventors: Ming Lee, Wladimiro Villarroel, Yasutaka Horiki, Kwan-ho Lee
  • Patent number: 8385868
    Abstract: An antenna system for receiving an RF signal from a first antenna and a second antenna includes a phase shift circuit. The phase shift circuit shifts a phase of the RF signal from the second antenna by one of a plurality of possible phase shifts to produce a phase shifted signal. A combiner combines the RF signal from the first antenna and the phase shifted signal to produce a combined signal. A comparator circuit compares a signal quality of the combined signal with a minimum threshold value to determine if the signal quality of the combined signal is equal to or greater than the threshold value. The comparator circuit is in communicative control of the phase shift circuit and maintains the phase shift of the RF signal received by the second antenna in response to the signal quality of the combined signal being equal to or greater than the threshold value.
    Type: Grant
    Filed: June 15, 2010
    Date of Patent: February 26, 2013
    Assignee: AGC Automotive Americas R&D, Inc.
    Inventors: Ming Lee, Wladimiro Villarroel, Kwan-ho Lee, Yasutaka Horiki
  • Patent number: 8188918
    Abstract: An antenna system (10) for receiving satellite signals in a vehicle exhibits a radiation pattern (11). The antenna system (10) includes a plurality of parasitic elements (18) which are electrically connectable together using linking switches (20). The geometry of the radiation pattern (11) changes as the linking switches (20) are activated and deactivated. Control of the linking switches (20), and thus the geometry of the radiation pattern (11), is based on the geographic location of the antenna system (10). Thus, the radiation pattern (10) can be steered based on geographic location to enhance signal reception. The geographic location may be obtained automatically via a GPS receiver (30) or manually via a user.
    Type: Grant
    Filed: November 1, 2007
    Date of Patent: May 29, 2012
    Assignee: AGC Automotive Americas R&D, Inc.
    Inventors: Nuttawit Surittikul, Wladimiro Villarroel, Kwan-ho Lee
  • Publication number: 20120108178
    Abstract: An antenna system and method utilize an evaluation branch circuit and an implementation branch circuit. These circuits are each connected to both a first antenna input and a second antenna input. An output of the evaluation branch circuit is in communication with a controller while an output of the implementation branch circuit is in communication with a receiver. Each branch circuit includes at least one signal conditioner to change an electrical characteristic of RF signals received from antennas via the antenna inputs. The evaluation branch circuit, controlled by the controller, changes the electrical characteristics of the RF signals in a variety of different ways to discover an optimized evaluation RF signal. Once the optimized evaluation RF signal is determined, the implementation branch circuit is controlled, by the controller, to produce an optimized implementation RF signal in accordance with that discovered by the evaluation branch circuit.
    Type: Application
    Filed: June 15, 2010
    Publication date: May 3, 2012
    Inventors: Ming Lee, Wladimiro Villarroel, Kwan-ho Lee, Yasutaka Horiki
  • Publication number: 20120019425
    Abstract: An antenna includes a ground plane, a dielectric, and an active radiating element. The dielectric is disposed on the ground plane, and the active radiating element is embedded in the dielectric for transmitting and/or receiving an RF signal. The antenna also includes a feeding element and a passive radiating element. The feeding element extends into the dielectric and is electrically coupled to the active radiating element. The passive radiating element is disposed on the ground plane and surrounds a periphery of the dielectric for perturbating the RF signal. The ground plane has a plurality of edges. At least one of the edges extends as a curvilinear lip. The curvilinear lip extends in a direction opposite the passive radiating element for directing the RF signal and for preventing abrupt discontinuity of the RF signal.
    Type: Application
    Filed: July 21, 2010
    Publication date: January 26, 2012
    Inventors: Kwan-ho LEE, Wladimiro VILLARROEL, Yasutaka HORIKI, Ming LEE