Patents by Inventor Andrew Hung

Andrew Hung 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: 20200084983
    Abstract: A self-contained air filtration system is disclosed herein. The system includes a processor. The processor can receive data from one or several components of the system and can provide control signals to one or several components of the system. The system can include a housing. The housing can include: a reservoir portion; and a greenhouse portion. The greenhouse portion can connect to the reservoir portion via a grow tray. A top of the reservoir portion and the greenhouse portion define an enclosed volume. The greenhouse portion can include an inlet aperture and an outlet aperture. The inlet aperture can be obstructed by an inlet filter such that air flowing into the greenhouse portion passes through the inlet filter, and the greenhouse portion can be connected to a fan that can propel air through the inlet aperture and out of the outlet aperture.
    Type: Application
    Filed: September 14, 2018
    Publication date: March 19, 2020
    Inventors: Kevin Z. Liang, Andrew Hung, Mark Huang
  • Patent number: 10532373
    Abstract: A method of prepping a cylindrical inner surface of a bore using a high-frequency forced pulsed waterjet apparatus entails generating a pressurized waterjet using a high-pressure water pump, generating a high-frequency signal using a high-frequency signal generator, applying the high-frequency signal to a transducer having a microtip to cause the microtip to vibrate to thereby generate the high-frequency forced pulsed waterjet, and rotating the rotatable ultrasonic nozzle inside the bore to prep the inner cylindrical surface of the bore using the high-frequency forced pulsed waterjets exiting from the angled exit orifices of the rotatable ultrasonic nozzle.
    Type: Grant
    Filed: December 12, 2018
    Date of Patent: January 14, 2020
    Assignee: VLN Advanced Technologies Inc.
    Inventors: Mohan M. Vijay, Andrew Hung Tieu, Wenzhuo Yan, Bruce R. Daniels
  • Publication number: 20190151590
    Abstract: An adjustable mask system (100) includes a cushion with a seal (130) having the ability to change size and/or shape. The seal is preferably a one-piece, continuous member without interruptions. To effect adjustment of the size and/or shape of the seal, an actuator may be provided, which may take the form of a dial (190).
    Type: Application
    Filed: January 3, 2019
    Publication date: May 23, 2019
    Inventors: Memduh GUNEY, David Anthony Pidcock, Joel Edward Gibson, Gerard Michael Rummery, Lachlan Richard Goldspink, Craig David Edwards, Andrew Hung, Renee Frances Flower, Rupert Christian Scheiner
  • Patent number: 10272468
    Abstract: An integrated liquidjet system capable of stripping, prepping and coating a part includes a cell defining an enclosure, a jig for holding the part inside the cell, an ultrasonic nozzle having an ultrasonic transducer for generating a pulsed liquidjet, a coating particle source for supplying coating particles to the nozzle, a pressurized liquid source for supplying the nozzle with a pressurized liquid to enable the nozzle to generate the pulsed liquidjet to sequentially strip, prep and coat the part, a high-voltage electrode and a ground electrode inside the nozzle for charging the coating particles, and a human-machine interface external to the cell for receiving user commands and for controlling the pulsed liquidjet exiting from the nozzle in response to the user commands.
    Type: Grant
    Filed: October 23, 2017
    Date of Patent: April 30, 2019
    Assignee: VLN Advanced Technologies Inc.
    Inventors: Mohan M. Vijay, Meisheng M. Xu, Emilio Panarella, Wenzhuo Yan, Andrew Hung Tieu, Bruce R. Daniels
  • Publication number: 20190118211
    Abstract: A method of prepping a cylindrical inner surface of a bore using a high-frequency forced pulsed waterjet apparatus entails generating a pressurized waterjet using a high-pressure water pump, generating a high-frequency signal using a high-frequency signal generator, applying the high-frequency signal to a transducer having a microtip to cause the microtip to vibrate to thereby generate the high-frequency forced pulsed waterjet, and rotating the rotatable ultrasonic nozzle inside the bore to prep the inner cylindrical surface of the bore using the high-frequency forced pulsed waterjets exiting from the angled exit orifices of the rotatable ultrasonic nozzle.
    Type: Application
    Filed: December 12, 2018
    Publication date: April 25, 2019
    Inventors: Mohan M. Vijay, Andrew Hung Tieu, Wenzhuo Yan, Bruce R. Daniels
  • Publication number: 20190099575
    Abstract: A mask apparatus for a respiratory treatment can permit delivery of breathable gas to a user. In one example, the mask may employ a frame and cushion to form a seal for both mouth and nose. The frame may be adapted for coupling with a respiratory treatment apparatus so as to permit communication of a pressurized gas from the respiratory treatment apparatus. The cushion, which may be foam, may have a substantially under the nose configuration or over the nose configuration. The mask may have a common plenum chamber for both nose and mouth. The cushion may further define a centrally open lip superior region. The cushion may be adapted to couple with the frame directly or to the frame in conjunction with a cushion support clip. Various features of the cushion may further promote sealing and comfort for the under the nose design.
    Type: Application
    Filed: September 21, 2018
    Publication date: April 4, 2019
    Applicant: Resmed Limited
    Inventors: Craig David Edwards, Lachian Richard Goldspink, Robert Edward Henry, Andrew Hung, Paul Jan Klasek, Kam Man Law, Grant Milton Ovzinsky, Stuart Norris Plascott, Rupert Christian Scheiner, James Sung, Lance Ian Swift, Matthew Robin Wells
  • Publication number: 20190046752
    Abstract: An interfacing structure for a mask system includes a cushion component adapted to contact the patient's face in use and a cushion-to-frame component provided to the cushion component. The cushion-to-frame component is structured to secure the cushion component to a mask frame of the mask system. The cushion-to-frame component includes a cushion side adapted to interface with the cushion component and a frame side adapted to interface with the mask frame. The cushion side includes a platform to engage and support the cushion component. The platform provides an engagement surface to engage the cushion component and inner and outer flanges provided to opposing ends of the platform to guide, support and/or retain the cushion component on the platform.
    Type: Application
    Filed: October 19, 2018
    Publication date: February 14, 2019
    Inventors: Melanie Lucia Cariola, Andrew Hung, Alicia Kristianne Wells, Thomas Kirby, Memduh Guney, Craig David Edwards, Lee James Veliss
  • Patent number: 10201678
    Abstract: An adjustable mask system (100) includes a cushion with a seal (130) having the ability to change size and/or shape. The seal is preferably a one-piece, continuous member without interruptions. To effect adjustment of the size and/or shape of the seal, an actuator may be provided, which may take the form of a dial (190).
    Type: Grant
    Filed: June 24, 2010
    Date of Patent: February 12, 2019
    Assignee: RESMED LIMITED
    Inventors: Memduh Guney, David Anthony Pidcock, Joel Edward Gibson, Gerard Michael Rummery, Lachlan Richard Goldspink, Craig David Edwards, Andrew Hung, Renee Frances Flower, Rupert Christian Scheiner
  • Patent number: 10188820
    Abstract: A mask apparatus for a respiratory treatment can permit delivery of breathable gas to a user. In one example, the mask may employ a frame and cushion to form a seal for both mouth and nose. The frame may be adapted for coupling with a respiratory treatment apparatus so as to permit communication of a pressurized gas from the respiratory treatment apparatus. The cushion, which may be foam, may have a substantially under the nose configuration or over the nose configuration. The mask may have a common plenum chamber for both nose and mouth. The cushion may further define a centrally open lip superior region. The cushion may be adapted to couple with the frame directly or to the frame in conjunction with a cushion support clip. Various features of the cushion may further promote sealing and comfort for the under the nose design.
    Type: Grant
    Filed: February 4, 2014
    Date of Patent: January 29, 2019
    Assignee: ResMed Limited
    Inventors: Craig David Edwards, Lachlan Richard Goldspink, Robert Edward Henry, Andrew Hung, Paul Jan Klasek, Kam Man Law, Grant Milton Ovzinsky, Stuart Norris Plascott, Rupert Christian Scheiner, James Sung, Lance Ian Swift, Matthew Robin Wells
  • Patent number: 10189046
    Abstract: A method of prepping a cylindrical inner surface of a bore using a high-frequency forced pulsed waterjet apparatus entails generating a pressurized waterjet using a high-pressure water pump, generating a high-frequency signal using a high-frequency signal generator, applying the high-frequency signal to a transducer having a microtip to cause the microtip to vibrate to thereby generate the high-frequency forced pulsed waterjet, and rotating the rotatable ultrasonic nozzle inside the bore to prep the inner cylindrical surface of the bore using the high-frequency forced pulsed waterjets exiting from the angled exit orifices of the rotatable ultrasonic nozzle.
    Type: Grant
    Filed: May 22, 2014
    Date of Patent: January 29, 2019
    Assignee: VLN Advanced Technologies Inc.
    Inventors: Mohan M. Vijay, Andrew Hung Tieu, Wenzhuo Yan, Bruce R. Daniels
  • Patent number: 10137269
    Abstract: An interfacing structure for a mask system includes a cushion component adapted to contact the patient's face in use and a cushion-to-frame component provided to the cushion component. The cushion-to-frame component is structured to secure the cushion component to a mask frame of the mask system. The cushion-to-frame component includes a cushion side adapted to interface with the cushion component and a frame side adapted to interface with the mask frame. The cushion side includes a platform to engage and support the cushion component. The platform provides an engagement surface to engage the cushion component and inner and outer flanges provided to opposing ends of the platform to guide, support and/or retain the cushion component on the platform.
    Type: Grant
    Filed: February 14, 2012
    Date of Patent: November 27, 2018
    Assignee: RESMED LIMITED
    Inventors: Melanie Lucia Cariola, Andrew Hung, Alicia Kristianne Wells, Thomas Kirby, Memduh Guney, Craig David Edwards, Lee James Veliss
  • Publication number: 20180043394
    Abstract: An integrated liquidjet system capable of stripping, prepping and coating a part includes a cell defining an enclosure, a jig for holding the part inside the cell, an ultrasonic nozzle having an ultrasonic transducer for generating a pulsed liquidjet, a coating particle source for supplying coating particles to the nozzle, a pressurized liquid source for supplying the nozzle with a pressurized liquid to enable the nozzle to generate the pulsed liquidjet to sequentially strip, prep and coat the part, a high-voltage electrode and a ground electrode inside the nozzle for charging the coating particles, and a human-machine interface external to the cell for receiving user commands and for controlling the pulsed liquidjet exiting from the nozzle in response to the user commands.
    Type: Application
    Filed: October 23, 2017
    Publication date: February 15, 2018
    Inventors: Mohan M. Vijay, Meisheng M. Xu, Emilio Panarella, Wenzhuo Yan, Andrew Hung Tieu, Bruce R. Daniels
  • Patent number: 9821337
    Abstract: An integrated liquidjet system capable of stripping, prepping and coating a part includes a cell defining an enclosure, a jig for holding the part inside the cell, an ultrasonic nozzle having an ultrasonic transducer for generating a pulsed liquidjet, a coating particle source for supplying coating particles to the nozzle, a pressurized liquid source for supplying the nozzle with a pressurized liquid to enable the nozzle to generate the pulsed liquidjet to sequentially strip, prep and coat the part, a high-voltage electrode and a ground electrode inside the nozzle for charging the coating particles, and a human-machine interface external to the cell for receiving user commands and for controlling the pulsed liquidjet exiting from the nozzle in response to the user commands.
    Type: Grant
    Filed: October 19, 2016
    Date of Patent: November 21, 2017
    Assignee: VLN Advanced Technologies Inc.
    Inventors: Mohan M. Vijay, Meisheng M. Xu, Emilio Panarella, Wenzhuo Yan, Andrew Hung Tieu, Bruce R. Daniels
  • Patent number: 9757756
    Abstract: A method of prepping a cylindrical inner surface of a bore using a high-frequency forced pulsed waterjet apparatus entails generating a pressurized waterjet using a high-pressure water pump, generating a high-frequency signal using a high-frequency signal generator, applying the high-frequency signal to a transducer having a microtip to cause the microtip to vibrate to thereby generate the high-frequency forced pulsed waterjet, and rotating the rotatable ultrasonic nozzle inside the bore to prep the inner cylindrical surface of the bore using the high-frequency forced pulsed waterjets exiting from the angled exit orifices of the rotatable ultrasonic nozzle.
    Type: Grant
    Filed: September 5, 2013
    Date of Patent: September 12, 2017
    Assignee: VLN ADVANCED TECHNOLOGIES INC.
    Inventors: Mohan M. Vijay, Andrew Hung Tieu, Wenzhuo Yan, Bruce R. Daniels
  • Patent number: 9718091
    Abstract: A method of stripping, prepping and coating a surface comprises first stripping the exiting coating from a surface, using continuous or pulsed fluid jet, followed by prepping the surface by the same fluid jet. The method also provides entraining particles into a fluid stream, if desired to generate a particle-entrained fluid stream that is directed at the surface to be stripped and prepped. The particles act as abrasive particles for prepping the surface to a prescribed surface roughness required for subsequent application of a coating to the surface. The method then entails coating the surface by electrically charging particles having the same chemical composition as the particles used to prep the surface. Finally, a charged-particle-entrained fluid stream is directed at high speed at the charged surface to coat the surface. The particles form both mechanical and electronic bonds with the surface.
    Type: Grant
    Filed: June 24, 2016
    Date of Patent: August 1, 2017
    Assignee: VLN Advanced Technologies Inc.
    Inventors: Mohan M. Vijay, Meisheng M. Xu, Emilio Panarella, Wenzhuo Yan, Andrew Hung Tieu, Bruce R. Daniels
  • Publication number: 20170036239
    Abstract: An integrated liquidjet system capable of stripping, prepping and coating a part includes a cell defining an enclosure, a jig for holding the part inside the cell, an ultrasonic nozzle having an ultrasonic transducer for generating a pulsed liquidjet, a coating particle source for supplying coating particles to the nozzle, a pressurized liquid source for supplying the nozzle with a pressurized liquid to enable the nozzle to generate the pulsed liquidjet to sequentially strip, prep and coat the part, a high-voltage electrode and a ground electrode inside the nozzle for charging the coating particles, and a human-machine interface external to the cell for receiving user commands and for controlling the pulsed liquidjet exiting from the nozzle in response to the user commands.
    Type: Application
    Filed: October 19, 2016
    Publication date: February 9, 2017
    Inventors: Mohan M. Vijay, Meisheng M. Xu, Emilio Panarella, Wenzhuo Yan, Andrew Hung Tieu, Bruce R. Daniels
  • Patent number: 9512531
    Abstract: A method of stripping, prepping and coating a surface includes first stripping the exiting coating from a surface, using continuous or pulsed fluid jet, followed by prepping the surface by the same fluid jet. The method also provides entraining particles into a fluid stream, if desired to generate a particle-entrained fluid stream that is directed at the surface to be stripped and prepped. The particles act as abrasive particles for prepping the surface to a prescribed surface roughness required for subsequent application of a coating to the surface. The method then entails coating the surface by electrically charging particles having the same chemical composition as the particles used to prep the surface. Finally, a charged-particle-entrained fluid stream is directed at high speed at the charged surface to coat the surface. The particles form both mechanical and electronic bonds with the surface.
    Type: Grant
    Filed: November 10, 2014
    Date of Patent: December 6, 2016
    Assignee: VLN Advanced Technologies Inc.
    Inventors: Mohan M. Vijay, Meisheng M. Xu, Emilio Panarella, Wenzhuo Yan, Andrew Hung Tieu, Bruce R. Daniels
  • Publication number: 20160339460
    Abstract: A method of stripping, prepping and coating a surface comprises first stripping the exiting coating from a surface, using continuous or pulsed fluid jet, followed by prepping the surface by the same fluid jet. The method also provides entraining particles into a fluid stream, if desired to generate a particle-entrained fluid stream that is directed at the surface to be stripped and prepped. The particles act as abrasive particles for prepping the surface to a prescribed surface roughness required for subsequent application of a coating to the surface. The method then entails coating the surface by electrically charging particles having the same chemical composition as the particles used to prep the surface. Finally, a charged-particle-entrained fluid stream is directed at high speed at the charged surface to coat the surface. The particles form both mechanical and electronic bonds with the surface.
    Type: Application
    Filed: June 24, 2016
    Publication date: November 24, 2016
    Inventors: Mohan M. Vijay, Meisheng M. Xu, Emilio Panarella, Wenzhuo Yan, Andrew Hung Tieu, Bruce R. Daniels
  • Patent number: D769440
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: October 18, 2016
    Assignee: ResMed Limited
    Inventors: Amal Shirley Amarasinghe, Robert Thomas Burnham, Andrew Hung, Ian James Matthews, Philip Michael Nurse, Christopher Scott Skipper
  • Patent number: D771241
    Type: Grant
    Filed: September 1, 2015
    Date of Patent: November 8, 2016
    Assignee: ResMed Limited
    Inventors: Christopher Scott Skipper, Robert Thomas Burnham, Andrew Hung