Patents by Inventor Richard Francis

Richard Francis 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: 20240108466
    Abstract: The present technology is a prosthetic heart valve device, and related systems and methods, for treating a native valve of a human heart having a native annulus and native leaflets. One embodiment comprises a valve support, a prosthetic valve assembly within the valve support, and an anchoring member having an upstream portion and a downstream portion. The device further includes an extension member coupled to the fixation frame and extending radially outward therefrom. The extension member includes a plurality of discrete fabric segments having a first end at the anchoring member and a second end spaced apart from the anchoring member, wherein each discrete fabric segment includes lateral edges extending from the first end to the second end of the discrete fabric segment. The discrete fabric segments are configured to move circumferentially relative to each other.
    Type: Application
    Filed: December 15, 2023
    Publication date: April 4, 2024
    Inventors: Richard Francis, Scott Robertson, Marian Lally, Alexander Hill, Katherine Miyashiro, Paraic Frisby, James R. Keogh
  • Publication number: 20240082514
    Abstract: In one embodiment, a filter assembly for use in an insufflation system is described. The filter assembly comprises: a filter medium operative to filter medical gases; a housing comprising an inlet, an outlet and the filter medium, the housing defining a gases flow path through the filter medium between the inlet and the outlet; and at least one heating element being positioned in the housing and being configured to heat the filter medium; and wherein, the at least one heating element is spaced apart from the filter medium and from an inner surface of the housing.
    Type: Application
    Filed: November 15, 2023
    Publication date: March 14, 2024
    Inventors: Richard John BOYES, Christian Francis FISCHER, Ali Ghalib Abdul Rahman GHALIB, Jessica Kristen SLOANE, Monika BAUMANN, Bernard Tsz Lun IP
  • Patent number: 11929433
    Abstract: The present disclosure relates generally to semiconductor structures, and more particularly to asymmetric field effect transistors (FET) on fully depleted silicon on insulator (FDSOI) semiconductor devices for high frequency and high voltage applications and their method of manufacture. The semiconductor device of the present disclosure includes a semiconductor-on-insulator (SOI) layer disposed above a substrate, the SOI layer having a source region, a channel region, a drift region and a drain region, where the drift region adjoins the drain region and the channel region, a gate structure disposed on the channel region, a multilayer drain spacer disposed on a drain-facing sidewall of the gate structure and covering the drift region, and a source spacer disposed on a source-facing sidewall of the gate structure, where the source and drain spacers are asymmetric with each other.
    Type: Grant
    Filed: November 10, 2021
    Date of Patent: March 12, 2024
    Assignee: GlobalFoundries U.S. Inc.
    Inventors: Ignasi Cortes, Alban Zaka, Tom Herrmann, El Mehdi Bazizi, Richard Francis Taylor, III
  • Patent number: 11917935
    Abstract: A seed treater includes a baffle which includes a fin that is selectively movable to adjust an extent to which the fin extends into a mixing chamber during mixing of seeds and a seed treatment within the mixing chamber to facilitate mixing of the seeds and the seed treatment within the mixing chamber. The fin defines an internal flow passage configured to deliver forced fluid through the fin and into the mixing chamber.
    Type: Grant
    Filed: September 30, 2020
    Date of Patent: March 5, 2024
    Assignee: Monsanto Technology LLC
    Inventors: Richard Bailey, Damien Douglas Brewer, Vallabh Makadia, Michael Francis Migliazzo, Daniel James Seyer
  • Patent number: 11898646
    Abstract: The present invention relates to adjustable flow control valves, for example to an Adjustable Pressure Limiting (APL) valve. The adjustable valve (2) described comprises a valve body (4) comprising a valve seat (6), a valve member (10) movable relative to the valve seat (6), a first valve cap (20), a second valve cap (50) and a biasing element (30) to bias the valve member (10) away from the first valve cap (20). The first valve cap (20) is movable to increase the biasing force applied by the biasing element (30). The second valve cap (50) is engageable with the first valve cap (20) to prevent such movement of the first valve cap (20) beyond a selected position, but to allow movement of the first valve cap (20) in an opposite direction, way from said position.
    Type: Grant
    Filed: June 25, 2020
    Date of Patent: February 13, 2024
    Assignee: INTERSURGICAL AG
    Inventors: David Simon Bottom, Christopher Edgerly Booth, Simon Robert Payne, Richard Francis Bowsher
  • Patent number: 11877926
    Abstract: The present technology is a prosthetic heart valve device, and related systems and methods, for treating a native valve of a human heart having a native annulus and native leaflets. One embodiment comprises a valve support, a prosthetic valve assembly within the valve support, and an anchoring member having an upstream portion and a downstream portion. The device further includes an extension member coupled to the fixation frame and extending radially outward therefrom. The extension member includes a plurality of wires, at least a portion of which include an inner core surrounded by an outer material. The wires include a plurality of recesses extending through at least a portion of the thickness of the outer material, and a therapeutic agent in the recesses for delivery to the anatomy when the prosthetic heart valve device is positioned at a native annulus.
    Type: Grant
    Filed: July 31, 2020
    Date of Patent: January 23, 2024
    Assignee: Twelve, Inc.
    Inventors: Richard Francis, Scott Robertson, Marian Lally, Alexander Hill, Katherine Miyashiro, Paraic Frisby, James R. Keogh
  • Publication number: 20230364297
    Abstract: Methods for controlling properties of structural elements of implantable medical devices, where the structural elements contain shape memory alloys (SMAs) include promoting or inhibiting in vivo formation of R-phase crystal structure or converging or separating the R-phase from the austenite phase.
    Type: Application
    Filed: April 28, 2023
    Publication date: November 16, 2023
    Inventors: Richard Francis, Brett Vegoe, Curtis Goreham-Voss, Dhiraj Catoor, Scott Robertson
  • Publication number: 20230292076
    Abstract: A method includes providing, for each respective audio channel of a plurality of audio channels provided by an operating system of a computing device, a set of successive audio processing stages to apply to the respective audio channel. The method also includes providing, by the operating system, an application programming interface (API) configured to set a plurality of parameters for adjusting the set of successive audio processing stages for each respective audio channel. The method additionally includes receiving, via the API and from an application running on the computing device, one or more values for one or more parameters of the plurality of parameters. The method further includes adjusting, by the operating system, the plurality of audio channels based on the received one or more values for the one or more parameters.
    Type: Application
    Filed: May 15, 2023
    Publication date: September 14, 2023
    Inventors: Ricardo Antonio Garcia, Brian Kemler, Justin Wooyoung Lee, Richard Francis Lyon, Malcolm Graham Slaney
  • Patent number: 11715362
    Abstract: A wearable device can include a wearable band configured to contact a user of the wearable device, an actuator, a sensor, and one or more processors in communication with the actuator and the sensor. The processors can be configured to measure a back electromotive force (“EMF”) of the actuator; determine, based on the measured back EMF, data that describes a contact force between the wearable band and the user; and determine, based on the data that describes the contact force, a quality metric describing a data quality of sensor data collected by the sensor. In some embodiments, the processor(s) can determine, generate sensor output data based on the sensor data and based at least in part on the data describing the contact force between the wearable band and the user. For example, one or more machine-learned models maybe leveraged to generate sensor output data that is compensated for the wearable band being too tight or too loose.
    Type: Grant
    Filed: July 2, 2021
    Date of Patent: August 1, 2023
    Assignee: GOOGLE LLC
    Inventors: Franziska Schlagenhauf, Nina R. Sinatra, Kurtis Robert Gross, Kelly Elizabeth Dobson, Artem Dementyev, Alex Olwal, Richard Francis Lyon
  • Publication number: 20230233788
    Abstract: Disclosed is a respiratory interface device (1) and components thereof. The respiratory interface device (1) comprises a body (2), a frame (3), and an inlet conduit (4). The frame has a front wall (10a), side walls (10b), and side arms (12), and a support platform (11) extending rearwardly from the front wall (10a). An inlet opening (13) is defined in the support platform (11). The body (2) forms a chamber with the support platform (11) and comprises at least one nasal outlet (5), a base opening (7), and at least one further opening (6), through which the support platform (11) extends. The inlet conduit (4) comprises a connector (18) that clamps the body (2) and the support platform (11) together.
    Type: Application
    Filed: May 6, 2021
    Publication date: July 27, 2023
    Inventors: Simon Robert PAYNE, Richard Francis BOWSHER, David Simon BOTTOM, Emma Diaz GONZALEZ
  • Patent number: 11689876
    Abstract: A method includes providing, for each respective audio channel of a plurality of audio channels provided by an operating system of a computing device, a set of successive audio processing stages to apply to the respective audio channel. The method also includes providing, by the operating system, an application programming interface (API) configured to set a plurality of parameters for adjusting the set of successive audio processing stages for each respective audio channel. The method additionally includes receiving, via the API and from an application running on the computing device, one or more values for one or more parameters of the plurality of parameters. The method further includes adjusting, by the operating system, the plurality of audio channels based on the received one or more values for the one or more parameters.
    Type: Grant
    Filed: December 22, 2021
    Date of Patent: June 27, 2023
    Assignee: Google LLC
    Inventors: Ricardo Antonio Garcia, Brian Kemler, Justin Wooyoung Lee, Richard Francis Lyon, Malcolm Graham Slaney
  • Patent number: 11672883
    Abstract: Methods for controlling properties of structural elements of implantable medical devices, where the structural elements contain shape memory alloys (SMAs) include promoting or inhibiting in vivo formation of R-phase crystal structure or converging or separating the R-phase from the austenite phase.
    Type: Grant
    Filed: April 27, 2018
    Date of Patent: June 13, 2023
    Assignee: MEDTRONIC, INC.
    Inventors: Richard Francis, Brett Vegoe, Curtis Goreham-Voss, Dhiraj Catoor, Scott Robertson
  • Patent number: 11637519
    Abstract: The present disclosure provides systems and methods for using a linear resonant actuator (“LRA”) to determine a type of contact between a device and its surroundings. The LRA may be coupled to an amplifier by one or more switches. The audio amplifier may receive a signal from a microcontroller and transmit the signal the LRA when the switches are closed. When the switches are in an open position, the LRA may be actively sensing for the type of contact. The back EMF may be measured when the switches are open. The measured back EMF waveform may be used to determine the type of contact. When the signal is not being transmitted, the LRA may be passively sensing to determine whether the device was tapped.
    Type: Grant
    Filed: April 29, 2022
    Date of Patent: April 25, 2023
    Assignee: GOOGLE LLC
    Inventors: Artem Dementyev, Richard Francis Lyon, Alex Olwal
  • Publication number: 20230122798
    Abstract: A sealing cushion for a respiratory mask assembly, the sealing cushion comprising a patient interface portion having a resiliently deformable sealing membrane for engagement with a patient’s face, and an aperture formed therein for receiving a nasal and/or mouth region of a patient’s face, the sealing membrane comprising a plurality of regions of different thicknesses, the plurality of regions comprising: a compliant nasal region (20) for engagement with the patient’s nasal bridge; a nasal support regions (25) disposed either side of the compliant nasal region for engagement with the sides of the patient’s nose; cheek support regions (30) extending from each of the nasal support regions for engagement at least with the patient’s cheeks, and a compliant base region (35) extending between the cheek support regions, wherein the sealing membrane in the nasal support regions has a greater thickness than in the cheek support regions, and wherein the sealing membrane in the compliant nasal region and the compliant b
    Type: Application
    Filed: February 26, 2021
    Publication date: April 20, 2023
    Inventor: Richard Francis BOWSHER
  • Publication number: 20230005354
    Abstract: A wearable device can include a wearable band configured to contact a user of the wearable device, an actuator, a sensor, and one or more processors in communication with the actuator and the sensor. The processors can be configured to measure a back electromotive force (“EMF”) of the actuator; determine, based on the measured back EMF, data that describes a contact force between the wearable band and the user; and determine, based on the data that describes the contact force, a quality metric describing a data quality of sensor data collected by the sensor. In some embodiments, the processor(s) can determine, generate sensor output data based on the sensor data and based at least in part on the data describing the contact force between the wearable band and the user. For example, one or more machine-learned models maybe leveraged to generate sensor output data that is compensated for the wearable band being too tight or too loose.
    Type: Application
    Filed: July 2, 2021
    Publication date: January 5, 2023
    Inventors: Franziska Schlagenhauf, Nina R. Sinatra, Kurt Gross, Kelly Elizabeth Dobson, Artem Dementyev, Alex Olwal, Richard Francis Lyon
  • Patent number: 11521952
    Abstract: A multi-die integrated circuit device and a method of fabricating the multi-die integrated circuit device involve a substrate. Two or more dice include components that implement functionality of the multi-die integrated circuit. The components include logic gates. The multi-die integrated circuit device also includes a spacer disposed between the substrate and each of the two or more dice. Each of the two or more dice makes direct electrical contact with the substrate without making direct electrical contact with the spacer through holes in the spacer.
    Type: Grant
    Filed: February 18, 2021
    Date of Patent: December 6, 2022
    Assignee: International Business Machines Corporation
    Inventors: Charles L. Arvin, Bhupender Singh, Richard Francis Indyk, Steve Ostrander, Thomas Weiss, Mark Kapfhammer
  • Publication number: 20220260166
    Abstract: The present invention relates to adjustable flow control valves, for example to an Adjustable Pressure Limiting (APL) valve. The adjustable valve (2) described comprises a valve body (4) comprising a valve seat (6), a valve member (10) movable relative to the valve seat (6), a first valve cap (20), a second valve cap (50) and a biasing element (30) to bias the valve member (10) away from the first valve cap (20). The first valve cap (20) is movable to increase the biasing force applied by the biasing element (30). The second valve cap (50) is engageable with the first valve cap (20) to prevent such movement of the first valve cap (20) beyond a selected position, but to allow movement of the first valve cap (20) in an opposite direction, way from said position.
    Type: Application
    Filed: June 25, 2020
    Publication date: August 18, 2022
    Inventors: David Simon BOTTOM, Christopher Edgerly BOOTH, Simon Robert PAYNE, Richard Francis BOWSHER
  • Publication number: 20220263447
    Abstract: The present disclosure provides systems and methods for using a linear resonant actuator (“LRA”) to determine a type of contact between a device and its surroundings. The LRA may be coupled to an amplifier by one or more switches. The audio amplifier may receive a signal from a microcontroller and transmit the signal the LRA when the switches are closed. When the switches are in an open position, the LRA may be actively sensing for the type of contact. The back EMF may be measured when the switches are open. The measured back EMF waveform may be used to determine the type of contact. When the signal is not being transmitted, the LRA may be passively sensing to determine whether the device was tapped.
    Type: Application
    Filed: April 29, 2022
    Publication date: August 18, 2022
    Inventors: Artem Dementyev, Richard Francis Lyon, Alex Olwal
  • Patent number: 11336216
    Abstract: The present disclosure provides systems and methods for using a linear resonant actuator (“LRA”) to determine a type of contact between a device and its surroundings. The LRA may be coupled to an amplifier by one or more switches. The audio amplifier may receive a signal from a microcontroller and transmit the signal the LRA when the switches are closed. When the switches are in an open position, the LRA may be actively sensing for the type of contact. The back EMF may be measured when the switches are open. The measured back EMF waveform may be used to determine the type of contact. When the signal is not being transmitted, the LRA may be passively sensing to determine whether the device was tapped.
    Type: Grant
    Filed: December 29, 2020
    Date of Patent: May 17, 2022
    Assignee: Google LLC
    Inventors: Artem Dementyev, Richard Francis Lyon, Alex Olwal
  • Publication number: 20220131448
    Abstract: Systems and methods to mitigate electrical voltage on a rotating plate are disclosed.
    Type: Application
    Filed: October 19, 2021
    Publication date: April 28, 2022
    Inventors: Richard Francis Nye, Mathew Roman