Patents by Inventor Keith Mullins
Keith Mullins 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: 11980459Abstract: A pulse sensor is capable of measuring a pulse rate of a wearer at a peripheral artery. In an embodiment, the pulse sensor includes a magnet supported to move responsive to an arterial pulse and a magnetometer configured to detect changes in a magnetic field produced by the magnet. The magnet may include a plurality of ferromagnetic particles disposed in or on a flexible substrate configured to be held adjacent to human skin subject to arterial palpation and a magnetic sensor configured to sense movement of the ferromagnetic particles. A system and method may measure hydration includes using a pulse sensor to measure pulse rate and modulation. The wearer is prompted when the pulse rate and pulse modulation indicate a response to dehydration of the wearer.Type: GrantFiled: September 28, 2022Date of Patent: May 14, 2024Assignee: INNOVAURA CORPORATIONInventors: C. Macgill Lynde, Alan B. Corwin, Ronald J. Schoenberg, Keith Mullins, David B. Goodson, Derek Platt, Christopher A. Wiklof
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Publication number: 20230088355Abstract: A pulse sensor is capable of measuring a pulse rate of a wearer at a peripheral artery. In an embodiment, the pulse sensor includes a magnet supported to move responsive to an arterial pulse and a magnetometer configured to detect changes in a magnetic field produced by the magnet. The magnet may include a plurality of ferromagnetic particles disposed in or on a flexible substrate configured to be held adjacent to human skin subject to arterial palpation and a magnetic sensor configured to sense movement of the ferromagnetic particles. A system and method may measure hydration includes using a pulse sensor to measure pulse rate and modulation. The wearer is prompted when the pulse rate and pulse modulation indicate a response to dehydration of the wearer.Type: ApplicationFiled: September 28, 2022Publication date: March 23, 2023Inventors: C. MACGILL LYNDE, ALAN B. CORWIN, RONALD J. SCHOENBERG, KEITH MULLINS, DAVID B. GOODSON, DEREK PLATT, CHRISTOPHER A. WIKLOF
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Patent number: 11471072Abstract: A pulse sensor is capable of measuring a pulse rate of a wearer at a peripheral artery. In an embodiment, the pulse sensor includes a magnet supported to move responsive to an arterial pulse and a magnetometer configured to detect changes in a magnetic field produced by the magnet. The magnet may include a plurality of ferromagnetic particles disposed in or on a flexible substrate configured to be held adjacent to human skin subject to arterial palpation and a magnetic sensor configured to sense movement of the ferromagnetic particles. A system and method may measure hydration includes using a pulse sensor to measure pulse rate and modulation. The wearer is prompted when the pulse rate and pulse modulation indicate a response to dehydration of the wearer.Type: GrantFiled: March 18, 2021Date of Patent: October 18, 2022Assignee: INNOVAURA CORPORATIONInventors: C. Macgill Lynde, Alan B. Corwin, Ronald J. Schoenberg, Keith Mullins, David B. Goodson, Derek Platt, Christopher A. Wiklof
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Publication number: 20210275036Abstract: A pulse sensor is capable of measuring a pulse rate of a wearer at a peripheral artery. In an embodiment, the pulse sensor includes a magnet supported to move responsive to an arterial pulse and a magnetometer configured to detect changes in a magnetic field produced by the magnet. The magnet may include a plurality of ferromagnetic particles disposed in or on a flexible substrate configured to be held adjacent to human skin subject to arterial palpation and a magnetic sensor configured to sense movement of the ferromagnetic particles. A system and method may measure hydration includes using a pulse sensor to measure pulse rate and modulation. The wearer is prompted when the pulse rate and pulse modulation indicate a response to dehydration of the wearer.Type: ApplicationFiled: March 18, 2021Publication date: September 9, 2021Inventors: C. MACGILL LYNDE, ALAN B. CORWIN, RONALD J. SCHOENBERG, KEITH MULLINS, DAVID B. GOODSON, DEREK PLATT, CHRISTOPHER A. WIKLOF
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Patent number: 10791964Abstract: A heart rate monitor includes a magnet supported to move responsive to an arterial pulse and a magnetometer configured to detect changes in a magnetic field produced by the magnet. The magnet can include a plurality of ferromagnetic particles disposed in or on a flexible substrate configured to be held adjacent to human skin subject to arterial palpation and a magnetic sensor configured to sense movement of the ferromagnetic particles.Type: GrantFiled: May 10, 2017Date of Patent: October 6, 2020Assignee: INNOVAURA CORPORATIONInventors: C. Macgill Lynde, Alan B. Corwin, Ronald J. Schoenberg, Keith Mullins, David B. Goodson, Christopher A. Wiklof
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Patent number: 10466290Abstract: An automated circuit test system includes a magnetic sensor array configured to measure, at a plurality of locations, a magnetic field induced by a circuit under test. A circuit drive module can energize the circuit under test to induce the magnetic field. Optionally, the circuit drive module detects an electrical response from the circuit under test. Optionally, magnetic field data is combined with electrical response data prior to outputting the test result.Type: GrantFiled: March 4, 2016Date of Patent: November 5, 2019Assignee: INNOVAURA CORPORATIONInventors: Alan B. Corwin, Keith Mullins, Ronald J. Schoenberg, C. MacGill Lynde, David B. Goodson, Christopher A. Wiklof
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Patent number: 10295616Abstract: According to embodiments, multi-axis magnetic sensors (magnetometers) are disposed in an array or a plurality of arrays. The magnetic sensors can be disposed on modules that form the array. The magnetic sensors can each sense a local magnetic field coincident with the respective sensors. Data corresponding to the local magnetic fields can be analyzed by a magnetic field analysis circuit and assembled to form an image corresponding to the sensed magnetic field(s). The magnetic field analysis circuit can output the image corresponding to near-field magnetic features.Type: GrantFiled: March 12, 2014Date of Patent: May 21, 2019Assignee: INNOVAURA CORPORATIONInventors: David B. Goodson, Keith Mullins, Alan Corwin, Ronald J. Schoenberg, C. Macgill Lynde, Christopher A. Wiklof
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Publication number: 20170311849Abstract: A heart rate monitor includes a magnet supported to move responsive to an arterial pulse and a magnetometer configured to detect changes in a magnetic field produced by the magnet. The magnet can include a plurality of ferromagnetic particles disposed in or on a flexible substrate configured to be held adjacent to human skin subject to arterial palpation and a magnetic sensor configured to sense movement of the ferromagnetic particles.Type: ApplicationFiled: May 10, 2017Publication date: November 2, 2017Inventors: C. MACGILL LYNDE, ALAN B. CORWIN, RONALD J. SCHOENBERG, KEITH MULLINS, DAVID B. GOODSON, CHRISTOPHER A. WIKLOF
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Publication number: 20170242062Abstract: An automated circuit test system includes a magnetic sensor array configured to measure, at a plurality of locations, a magnetic field induced by a circuit under test. A circuit drive module can energize the circuit under test to induce the magnetic field. Optionally, the circuit drive module detects an electrical response from the circuit under test. Optionally, magnetic field data is combined with electrical response data prior to outputting the test result.Type: ApplicationFiled: March 4, 2016Publication date: August 24, 2017Inventors: ALAN B. CORWIN, KEITH MULLINS, RONALD J. SCHOENBERG, C. MACGILL LYNDE, DAVID B. GOODSON, CHRISTOPHER A. WIKLOF
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Publication number: 20160370441Abstract: According to embodiments, multi-axis magnetic sensors (magnetometers) are disposed in an array or a plurality of arrays. The magnetic sensors can be disposed on modules that form the array. The magnetic sensors can each sense a local magnetic field coincident with the respective sensors. Data corresponding to the local magnetic fields can be analyzed by a magnetic field analysis circuit and assembled to form an image corresponding to the sensed magnetic field(s). The magnetic field analysis circuit can output the image corresponding to near-field magnetic features.Type: ApplicationFiled: March 12, 2014Publication date: December 22, 2016Inventors: DAVID B. GOODSON, KEITH MULLINS, ALAN CORWIN, RONALD J. SCHOENBERG, C. MACGILL LYNDE, CHRISTOPHER A. WIKLOF
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Patent number: 8296474Abstract: A peripheral device is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device has first and second communication conductors. The peripheral device includes an interface detection component coupled to the first and second communication conductors and configured to detect which of the first and second interfaces the peripheral device is connected to.Type: GrantFiled: December 29, 2011Date of Patent: October 23, 2012Assignee: Microsoft CorporationInventors: Mark T. Hanson, Nathan C. Sherman, Lord Nigel Featherston, Mark W. Casebolt, Victor P. Drake, Keith Mullins, David L. Holo, Terry M. Lipscomb
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Publication number: 20120124247Abstract: A peripheral device is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device has first and second communication conductors. The peripheral device includes an interface detection component coupled to the first and second communication conductors and configured to detect which of the first and second interfaces the peripheral device is connected to.Type: ApplicationFiled: December 29, 2011Publication date: May 17, 2012Applicant: MICROSOFT CORPORATIONInventors: Mark T. Hanson, Nathan C. Sherman, Lord Nigel Featherston, Mark W. Casebolt, Victor P. Drake, Keith Mullins, David L. Holo, Terry M. Lipscomb
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Patent number: 8112556Abstract: A peripheral device, with first and second communication conductors, is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device includes an interface detection component coupled to the first and second communication conductors to detect which of the first and second interfaces the peripheral device is connected to.Type: GrantFiled: May 31, 2011Date of Patent: February 7, 2012Assignee: Microsoft CorporationInventors: Mark T. Hanson, Lord Nigel Featherston, Nathan C. Sherman, Victor P. Drake, Keith Mullins, David L. Holo
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Publication number: 20110231585Abstract: A peripheral device is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device has first and second communication conductors configured for connection to the first and second data conductors in the differential data connection when the computer includes the first interface and is configured for connection to the first data conductor in the single ended data connection and the clock conductor when the computer is provided with the second interface.Type: ApplicationFiled: May 31, 2011Publication date: September 22, 2011Applicant: MICROSOFT CORPORATIONInventors: Mark T. Hanson, Lord Nigel Featherston, Nathan C. Sherman, Victor P. Drake, Keith Mullins, David L. Holo
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Patent number: 7975078Abstract: A peripheral device, connected to a computer, has either a first or second interface. The first interface communicates over a differential data connection and the second interface communicates over a clock conductor and a single ended data connection. The peripheral device has first and second communication conductors that are either connected to the differential data connection when the computer includes the first interface or to the single ended data connection and the clock conductor when the computer includes the second interface. The peripheral device has an interface detection component that detects which of the first and second interfaces the peripheral device is connected to. The peripheral device also has a controller that communicates according to a protocol corresponding to the detected interface.Type: GrantFiled: June 17, 2010Date of Patent: July 5, 2011Assignee: Microsoft CorporationInventors: Mark T. Hanson, Nathan C. Sherman, Lord Nigel Featherston, Mark W. Casebolt, Victor P. Drake, Keith Mullins, David L. Holo, Terry M. Lipscomb
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Publication number: 20100257286Abstract: A peripheral device is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device has first and second communication conductors configured for connection to the first and second data conductors in the differential data connection when the computer includes the first interface and is configured for connection to the first data conductor in the single ended data connection and the clock conductor when the computer is provided with the second interface.Type: ApplicationFiled: June 17, 2010Publication date: October 7, 2010Applicant: MICROSOFT CORPORATIONInventors: Mark T. Hanson, Nathan C. Sherman, Lord Nigel Featherston, Mark W. Casebolt, Victor P. Drake, Keith Mullins, David L. Holo, Terry M. Lipscomb
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Patent number: 7779171Abstract: A peripheral device is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device has first and second communication conductors configured for connection to the first and second data conductors in the differential data connection when the computer includes the first interface and is configured for connection to the first data conductor in the single ended data connection and the clock conductor when the computer is provided with the second interface.Type: GrantFiled: October 16, 2007Date of Patent: August 17, 2010Assignee: Microsoft CorporationInventors: Mark T. Hanson, Nathan C. Sherman, Lord Nigel Featherston, Mark W. Casebolt, Victor P. Drake, Keith Mullins, David L. Holo, Terry M. Lipscomb
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Publication number: 20080177908Abstract: A peripheral device is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device has first and second communication conductors configured for connection to the first and second data conductors in the differential data connection when the computer includes the first interface and is configured for connection to the first data conductor in the single ended data connection and the clock conductor when the computer is provided with the second interface.Type: ApplicationFiled: October 16, 2007Publication date: July 24, 2008Applicant: Microsoft CorporationInventors: Mark T. Hanson, Nathan C. Sherman, Lord Nigel Featherston, Mark W. Casebolt, Victor P. Drake, Keith Mullins, David L. Holo, Terry M. Lipscomb
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Patent number: 7277966Abstract: A peripheral device is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device has first and second communication conductors configured for connection to the first and second data conductors in the differential data connection when the computer includes the first interface and is configured for connection to the first data conductor in the single ended data connection and the clock conductor when the computer is provided with the second interface.Type: GrantFiled: August 18, 2006Date of Patent: October 2, 2007Assignee: Microsoft CorporationInventors: Mark T. Hanson, Nathan C. Sherman, Lord Nigel Featherston, Mark W. Casebolt, Victor P. Drake, Keith Mullins, David L. Holo, Terry M. Lipscomb
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Publication number: 20060282556Abstract: A peripheral device is connectable to a computer having one of a first interface and a second interface. The first interface communicates with the peripheral device over a differential data connection having a first data conductor and a second data conductor. The second interface communicates with the peripheral device over a clock conductor and a single ended data connection which includes a data conductor. The peripheral device has first and second communication conductors configured for connection to the first and second data conductors in the differential data connection when the computer includes the first interface and is configured for connection to the first data conductor in the single ended data connection and the clock conductor when the computer is provided with the second interface.Type: ApplicationFiled: August 18, 2006Publication date: December 14, 2006Applicant: Microsoft CorporationInventors: Mark Hanson, Nathan Sherman, Lord Featherston, Mark Casebolt, Victor Drake, Keith Mullins, David Holo, Terry Lipscomb