Patents by Inventor RYAN ALAN SHERRY
RYAN ALAN SHERRY 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).
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Patent number: 12360081Abstract: A gas sensor device including a housing, a porous member through which the analyte gas is transportable in operative connection with the a of the housing to separate an inner chamber of the housing from the ambient environment, a gas sensor responsive to the analyte gas within the inner chamber, a source of pressure waves positioned within the inner chamber and spaced from the porous member so that any pressure waves emitted from the source of pressure waves that are transmitted out of the inner chamber are transmitted through the porous member, a sensor responsive to pressure waves, and circuitry in operative connection with the sensor responsive to pressure waves to relate a phase of a measured response of the sensor responsive to pressure waves to a state of blockage in the porous member.Type: GrantFiled: September 1, 2020Date of Patent: July 15, 2025Assignee: MSA Technology, LLCInventors: Jerin Miller, Ryan Alan Sherry, Robert Kevin Sexton, Robert Eric Uber
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Patent number: 12360080Abstract: A gas sensor device to detect an analyte gas in an ambient environment includes a housing including an inner chamber and a port, a porous member through which the analyte gas transports in operative connection with the port to separate the inner chamber from the ambient environment, a sensor responsive to the analyte positioned within the inner chamber, a source of pressure waves positioned within the inner chamber, a sensor responsive to pressure waves positioned within the inner chamber; and circuitry in operative connection with the sensor responsive to pressure waves to relate a response of the sensor responsive to pressure waves to a state of blockage in the porous member.Type: GrantFiled: September 1, 2020Date of Patent: July 15, 2025Assignee: MSA Technology, LLCInventors: Jerin Miller, Ryan Alan Sherry, Robert Kevin Sexton, Robert Eric Uber
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Patent number: 11761935Abstract: A combustible gas sensor for detecting an analyte gas includes a first element including a first electric heating element, a first support structure on the first electric heating element and a first catalyst supported on the first support structure and electronic circuitry in electrical connection with the first element. The electronic circuitry is configured to provide energy to the first element to heat the first element to at least a first temperature at which the first catalyst catalyzes combustion of the analyte gas and to determine if the analyte gas is present based on a response of the first element to being heated to at least the first temperature. The electronic circuitry is further configured to apply an interrogation pulse to the first element in which energy to the first element is increased or decreased to induce an associated response from the first element.Type: GrantFiled: March 1, 2021Date of Patent: September 19, 2023Assignee: MSA TECHNOLOGY, LLCInventors: Mark Flori Zanella, Sr., Michael Alvin Brown, Meghan E. Swanson, Daniel D. Santoro, Jr., Jeff Audia, Ryan Alan Sherry
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Publication number: 20210181171Abstract: A combustible gas sensor for detecting an analyte gas includes a first element including a first electric heating element, a first support structure on the first electric heating element and a first catalyst supported on the first support structure and electronic circuitry in electrical connection with the first element. The electronic circuitry is configured to provide energy to the first element to heat the first element to at least a first temperature at which the first catalyst catalyzes combustion of the analyte gas and to determine if the analyte gas is present based on a response of the first element to being heated to at least the first temperature. The electronic circuitry is further configured to apply an interrogation pulse to the first element in which energy to the first element is increased or decreased to induce an associated response from the first element.Type: ApplicationFiled: March 1, 2021Publication date: June 17, 2021Inventors: Mark Flori Zanella, SR., Michael Alvin Brown, Meghan E. Swanson, Daniel D. Santoro, JR., Jeff Audia, Ryan Alan Sherry
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Patent number: 10948469Abstract: A combustible gas sensor for detecting an analyte gas includes a first element including a first electric heating element, a first support structure on the first electric heating element and a first catalyst supported on the first support structure and electronic circuitry in electrical connection with the first element. The electronic circuitry is configured to provide energy to the first element to heat the first element to at least a first temperature at which the first catalyst catalyzes combustion of the analyte gas and to determine if the analyte gas is present based on a response of the first element to being heated to at least the first temperature. The electronic circuitry is further configured to apply an interrogation pulse to the first element in which energy to the first element is increased or decreased to induce an associated response from the first element.Type: GrantFiled: May 17, 2017Date of Patent: March 16, 2021Assignee: MSA TECHNOLOGY, LLCInventors: Mark Flori Zanella, Sr., Michael Alvin Brown, Meghan E. Swanson, Daniel D. Santoro, Jr., Jeff Audia, Ryan Alan Sherry
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Publication number: 20200400615Abstract: A gas sensor device including a housing, a porous member through which the analyte gas is transportable in operative connection with the a of the housing to separate an inner chamber of the housing from the ambient environment, a gas sensor responsive to the analyte gas within the inner chamber, a source of pressure waves positioned within the inner chamber and spaced from the porous member so that any pressure waves emitted from the source of pressure waves that are transmitted out of the inner chamber are transmitted through the porous member, a sensor responsive to pressure waves, and circuitry in operative connection with the sensor responsive to pressure waves to relate a phase of a measured response of the sensor responsive to pressure waves to a state of blockage in the porous member.Type: ApplicationFiled: September 1, 2020Publication date: December 24, 2020Inventors: JERIN MILLER, RYAN ALAN SHERRY, ROBERT KEVIN SEXTON, ROBERT ERIC UBER
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Publication number: 20200393415Abstract: A gas sensor device to detect an analyte gas in an ambient environment includes a housing including an inner chamber and a port, a porous member through which the analyte gas transports in operative connection with the port to separate the inner chamber from the ambient environment, a sensor responsive to the analyte positioned within the inner chamber, a source of pressure waves positioned within the inner chamber, a sensor responsive to pressure waves positioned within the inner chamber; and circuitry in operative connection with the sensor responsive to pressure waves to relate a response of the sensor responsive to pressure waves to a state of blockage in the porous member.Type: ApplicationFiled: September 1, 2020Publication date: December 17, 2020Inventors: JERIN MILLER, RYAN ALAN SHERRY, ROBERT KEVIN SEXTON, ROBERT ERIC UBER
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Patent number: 10788458Abstract: A method of detecting at least a partial blockage in a porous member separating an inner chamber of a device having a gas sensor responsive to an analyte positioned within the inner chamber and an ambient environment includes emitting pressure waves within the inner chamber and measuring a change in phase of a response via a sensor responsive to pressure waves.Type: GrantFiled: December 29, 2016Date of Patent: September 29, 2020Assignee: MSA Technology, LLCInventors: Jerin Miller, Ryan Alan Sherry, Robert Kevin Sexton, Robert Eric Uber
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Patent number: 10788457Abstract: A method of detecting at least a partial blockage in a porous member separating an inner chamber of a device having a gas sensor responsive to an analyte positioned within the inner chamber and an ambient environment includes emitting pressure waves within the inner chamber and measuring a response via a sensor responsive to pressure waves positioned within the inner chamber.Type: GrantFiled: December 29, 2016Date of Patent: September 29, 2020Assignee: MSA Technology, LLCInventors: Jerin Miller, Ryan Alan Sherry, Robert Kevin Sexton, Robert Eric Uber
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Patent number: 10234417Abstract: A method of operating a sensor to detect an analyte in an environment, wherein the sensor includes a working electrode and circuitry in operative connection with the working electrode, includes performing a sensor interrogation cycle including applying electrical energy to the working electrode to generate a non-faradaic current, measuring a response to the generation of the non-faradaic current to determine a state of the sensor, and actively controlling the circuitry to dissipate the non-faradaic current.Type: GrantFiled: February 2, 2016Date of Patent: March 19, 2019Assignee: MSA Technology, LLCInventors: Brian Keith Davis, Michael Alvin Brown, Jerin Miller, Ryan Alan Sherry
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Publication number: 20180335411Abstract: A combustible gas sensor for detecting an analyte gas includes a first element including a first electric heating element, a first support structure on the first electric heating element and a first catalyst supported on the first support structure and electronic circuitry in electrical connection with the first element. The electronic circuitry is configured to provide energy to the first element to heat the first element to at least a first temperature at which the first catalyst catalyzes combustion of the analyte gas and to determine if the analyte gas is present based on a response of the first element to being heated to at least the first temperature. The electronic circuitry is further configured to apply an interrogation pulse to the first element in which energy to the first element is increased or decreased to induce an associated response from the first element.Type: ApplicationFiled: May 17, 2017Publication date: November 22, 2018Inventors: Mark Flori Zanella, SR., Michael Alvin Brown, Meghan E. Swanson, Daniel Santoro, Jeff Audia, Ryan Alan Sherry
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Publication number: 20170227499Abstract: A method of detecting at least a partial blockage in a porous member separating an inner chamber of a device having a gas sensor responsive to an analyte positioned within the inner chamber and an ambient environment includes emitting pressure waves within the inner chamber and measuring a change in phase of a response via a sensor responsive to pressure waves.Type: ApplicationFiled: December 29, 2016Publication date: August 10, 2017Inventors: JERIN MILLER, RYAN ALAN SHERRY, ROBERT KEVIN SEXTON, ROBERT ERIC UBER
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Publication number: 20170227498Abstract: A method of detecting at least a partial blockage in a porous member separating an inner chamber of a device having a gas sensor responsive to an analyte positioned within the inner chamber and an ambient environment includes emitting pressure waves within the inner chamber and measuring a response via a sensor responsive to pressure waves positioned within the inner chamber.Type: ApplicationFiled: December 29, 2016Publication date: August 10, 2017Inventors: JERIN MILLER, RYAN ALAN SHERRY, ROBERT KEVIN SEXTON, ROBERT ERIC UBER
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Publication number: 20170219515Abstract: A method of operating a sensor to detect an analyte in an environment, wherein the sensor includes a working electrode and circuitry in operative connection with the working electrode, includes performing a sensor interrogation cycle including applying electrical energy to the working electrode to generate a non-faradaic current, measuring a response to the generation of the non-faradaic current to determine a state of the sensor, and actively controlling the circuitry to dissipate the non-faradaic current.Type: ApplicationFiled: February 2, 2016Publication date: August 3, 2017Inventors: BRIAN KEITH DAVIS, MICHAEL ALVIN BROWN, JERIN MILLER, RYAN ALAN SHERRY