Patents by Inventor Amaru Daniel Araya-Williams

Amaru Daniel Araya-Williams 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: 20240157399
    Abstract: An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity.
    Type: Application
    Filed: January 19, 2024
    Publication date: May 16, 2024
    Inventors: Justin Rorke Buckland, Adam John Robert Jackson, Amaru Daniel Araya-Williams, Benjamin John Oliver Long, Brian Kappus
  • Patent number: 11883847
    Abstract: An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity.
    Type: Grant
    Filed: December 13, 2022
    Date of Patent: January 30, 2024
    Assignee: ULTRALEAP LIMITED
    Inventors: Justin Rorke Buckland, Adam John Robert Jackson, Amaru Daniel Araya-Williams, Benjamin John Oliver Long, Brian Kappus
  • Publication number: 20240017260
    Abstract: Testing devices for testing a swab sample, the devices including a swab chamber configured to receive the swab sample; an elution source configured to supply an eluent to the swab chamber, wherein the eluent is a liquid that interacts with the swab sample to produce an eluate indicative of a property of the swab sample; a discard channel configured to receive a first portion of the eluate from the swab chamber to be discarded; an analysis channel configured to receive a second portion of the eluate from the swab chamber to be processed; and a channel selector configured to selectively direct the first portion into the discard channel and the second portion into the analysis channel.
    Type: Application
    Filed: November 10, 2021
    Publication date: January 18, 2024
    Inventors: Justin Rorke Buckland, Hoi Kei Chiu, Amelia Serena Kristelle Fernandez, Amaru Daniel Araya-Williams
  • Publication number: 20230124704
    Abstract: An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity.
    Type: Application
    Filed: December 13, 2022
    Publication date: April 20, 2023
    Inventors: Justin Rorke Buckland, Adam John Robert Jackson, Amaru Daniel Araya-Williams, Benjamin John Oliver Long, Brian Kappus
  • Patent number: 11529650
    Abstract: An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity.
    Type: Grant
    Filed: February 1, 2021
    Date of Patent: December 20, 2022
    Assignee: ULTRAHAPTICS IP LTD
    Inventors: Justin Rorke Buckland, Adam John Robert Jackson, Amaru Daniel Araya-Williams, Benjamin John Oliver Long, Brian Kappus
  • Publication number: 20210170447
    Abstract: An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity.
    Type: Application
    Filed: February 1, 2021
    Publication date: June 10, 2021
    Inventors: Justin Rorke Buckland, Adam John Robert Jackson, Amaru Daniel Araya-Williams, Benjamin John Oliver Long, Brian Kappus
  • Patent number: 10911861
    Abstract: An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity.
    Type: Grant
    Filed: May 2, 2019
    Date of Patent: February 2, 2021
    Assignee: ULTRAHAPTICS IP LTD
    Inventors: Justin Rorke Buckland, Adam John Robert Jackson, Amaru Daniel Araya-Williams, Benjamin John Oliver Long, Brian Kappus
  • Publication number: 20190342654
    Abstract: An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity.
    Type: Application
    Filed: May 2, 2019
    Publication date: November 7, 2019
    Inventors: Justin Rorke Buckland, Adam John Robert Jackson, Amaru Daniel Araya-Williams, Benjamin John Oliver Long, Brian Kappus