Patents by Inventor Quinton Michael SMITH

Quinton Michael SMITH 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: 20230131400
    Abstract: The operational parameters of a respiratory apparatus can be controlled through the use of a user interface located on a separate or separable mobile computing device. Sensors or features located on the mobile computing apparatus can be used to adjust the operation parameters or therapy of the respiratory apparatus or otherwise improve the compliance of a patient utilizing the respiratory apparatus.
    Type: Application
    Filed: October 18, 2022
    Publication date: April 27, 2023
    Inventors: Guohua BAO, Venkata Subbarao POTHARAJU, Arjen David KAT, Gavin Andrew Bryson RYAN, Ian Patrick Sarsfield HICKEY, Benjamin Wilson CASSE, Sujeewa WANNIGAMA, Gregory Martyn SMITH, Nordyn ALAMI, Nimansha BUDHIRAJA, Donald Roy KURIGER, Adam John DARBY, Bernhard Florian LAMPRECHT, Jeremy Livingston MILLER, Johannes Nicolaas BOTHMA, Dean Antony BARKER, Quinton Michael SMITH, Emma Louise NASIMI, Andrew Jun LI, Nicholas Edward VAUGHAN, Zarin KASAD
  • Patent number: 11517689
    Abstract: The operational parameters of a respiratory apparatus can be controlled through the use of a user interface located on a separate or separable mobile computing device. Sensors or features located on the mobile computing apparatus can be used to adjust the operation parameters or therapy of the respiratory apparatus or otherwise improve the compliance of a patient utilizing the respiratory apparatus.
    Type: Grant
    Filed: August 5, 2014
    Date of Patent: December 6, 2022
    Assignee: Fisher & Paykel Healthcare Limited
    Inventors: Guohua Bao, Venkata Subbarao Potharaju, Arjen David Kat, Gavin Andrew Bryson Ryan, Ian Patrick Sarsfield Hickey, Benjamin Wilson Casse, Sujeewa Wannigama, Gregory Martyn Smith, Nordyn Alami, Nimansha Budhiraja, Donald Roy Kuriger, Adam John Darby, Bernhard Florian Lamprecht, Jeremy Livingston Miller, Johannes Nicolaas Bothma, Dean Antony Barker, Quinton Michael Smith, Emma Louise Nasimi, Andrew Jun Li, Nicholas Edward Vaughan, Zarin Kasad
  • Publication number: 20200261671
    Abstract: A respiratory therapy system configured to deliver gases to a patient can have a non-sealed gas flow generating arrangement configured to deliver a high flow of positive gas to an airway of a patient and a negative flow of gas away from an airway of the patient. The positive and negative flows of gas can be generated simultaneously. The flow of positive and negative gases reduces exhaled gases in anatomical dead spaces of the patient.
    Type: Application
    Filed: February 27, 2020
    Publication date: August 20, 2020
    Inventors: Callum James Thomas Spence, John Whitney Storey, Jonathan David Harwood, Quinton Michael Smith, Alicia Jerram Hunter Evans
  • Patent number: 10610653
    Abstract: A respiratory therapy system configured to deliver gases to a patient can have a non-sealed gas flow generating arrangement configured to deliver a high flow of positive gas to an airway of a patient and a negative flow of gas away from an airway of the patient. The positive and negative flows of gas can be generated simultaneously. The flow of positive and negative gases reduces exhaled gases in anatomical dead spaces of the patient.
    Type: Grant
    Filed: April 10, 2015
    Date of Patent: April 7, 2020
    Assignee: Fisher & Paykel Healthcare Limited
    Inventors: Callum James Thomas Spence, John Whitney Storey, Jonathan David Harwood, Quinton Michael Smith, Alicia Jerram Hunter Evans
  • Publication number: 20180318531
    Abstract: A respiratory therapy system configured to deliver gases to a patient can have a non-sealed gas flow generating arrangement configured to deliver a high flow of positive gas to an airway of a patient and a negative flow of gas away from an airway of the patient. The positive and negative flows of gas can be generated simultaneously. The flow of positive and negative gases reduces exhaled gases in anatomical dead spaces of the patient.
    Type: Application
    Filed: April 10, 2015
    Publication date: November 8, 2018
    Inventors: Callum James Thomas SPENCE, John Whitney STOREY, Jonathan David HARWOOD, Quinton Michael SMITH, Alicia Jerram Hunter EVANS
  • Publication number: 20180078719
    Abstract: A respiratory therapy system configured to deliver gases to a patient can have a non-sealed gas flow generating arrangement configured to deliver a high flow of positive gas to an airway of a patient and a negative flow of gas away from an airway of the patient. The positive and negative flows of gas can be generated simultaneously. The flow of positive and negative gases reduces exhaled gases in anatomical dead spaces of the patient.
    Type: Application
    Filed: February 10, 2015
    Publication date: March 22, 2018
    Inventors: Callum James Thomas SPENCE, John Whitney STOREY, Jonathan David HARWOOD, Quinton Michael SMITH, Alicia Jerram Hunter EVANS
  • Publication number: 20160193437
    Abstract: The operational parameters of a respiratory apparatus can be controlled through the use of a user interface located on a separate or separable mobile computing device. Sensors or features located on the mobile computing apparatus can be used to adjust the operation parameters or therapy of the respiratory apparatus or otherwise improve the compliance of a patient utilizing the respiratory apparatus.
    Type: Application
    Filed: August 5, 2014
    Publication date: July 7, 2016
    Inventors: Guohua BAO, Venkata Subbarao POTHARAJU, Arjen David KAT, Gavin Andrew Bryson RYAN, Ian Patrick Sarsfield HICKEY, Benjamin Wilson CASSE, Sujeewa WANNIGAMA, Gregory Martyn SMITH, Nordyn ALAMI, Nimansha BUDHIRAJA, Donald Roy KURIGER, Adam John DARBY, Bernhard Florian LAMPRECHT, Jeremy Livingston MILLER, Johannes Nicolaas BOTHMA, Dean Antony BARKER, Quinton Michael SMITH, Emma Louise NASIMI, Andrew Jun LI, Nicholas Edward VAUGHAN, Zarin KASAD