Patents by Inventor Wilton Pyle
Wilton Pyle 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).
-
Patent number: 8237451Abstract: The present invention determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The system energizes the sensor with a low duty cycle, gated burst of RF energy having a predetermined frequency or set of frequencies and a predetermined amplitude. The energizing signal is coupled to the sensor via magnetic coupling and induces a current in the sensor which oscillates at the resonant frequency of the sensor. The system receives the ring down response of the sensor via magnetic coupling and determines the resonant frequency of the sensor, which is used to calculate the measured physical parameter. The system uses a pair of phase locked loops to adjust the phase and the frequency of the energizing signal.Type: GrantFiled: April 1, 2011Date of Patent: August 7, 2012Assignee: CardioMEMS, Inc.Inventors: James Joy, Jason Kroh, Michael Ellis, Mark Allen, Wilton Pyle
-
Publication number: 20110181297Abstract: The present invention determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The system energizes the sensor with a low duty cycle, gated burst of RF energy having a predetermined frequency or set of frequencies and a predetermined amplitude. The energizing signal is coupled to the sensor via magnetic coupling and induces a current in the sensor which oscillates at the resonant frequency of the sensor. The system receives the ring down response of the sensor via magnetic coupling and determines the resonant frequency of the sensor, which is used to calculate the measured physical parameter. The system uses a pair of phase locked loops to adjust the phase and the frequency of the energizing signal.Type: ApplicationFiled: April 1, 2011Publication date: July 28, 2011Applicant: CardioMEMS, INC.Inventors: James Joy, Jason Kroh, Michael Ellis, Mark Allen, Wilton Pyle
-
Patent number: 7839153Abstract: The present invention determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The system energizes the sensor with a low duty cycle, gated burst of RF energy having a predetermined frequency or set of frequencies and a predetermined amplitude. The energizing signal is coupled to the sensor via magnetic coupling and induces a current in the sensor which oscillates at the resonant frequency of the sensor. The system receives the ring down response of the sensor via magnetic coupling and determines the resonant frequency of the sensor, which is used to calculate the measured physical parameter. The system uses a pair of phase locked loops to adjust the phase and the frequency of the energizing signal.Type: GrantFiled: May 15, 2009Date of Patent: November 23, 2010Assignee: CardioMEMS, Inc.Inventors: James Joy, Jason Kroh, Michael Ellis, Mark Allen, Wilton Pyle
-
Publication number: 20090224773Abstract: The present invention determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The system energizes the sensor with a low duty cycle, gated burst of RF energy having a predetermined frequency or set of frequencies and a predetermined amplitude. The energizing signal is coupled to the sensor via magnetic coupling and induces a current in the sensor which oscillates at the resonant frequency of the sensor. The system receives the ring down response of the sensor via magnetic coupling and determines the resonant frequency of the sensor, which is used to calculate the measured physical parameter. The system uses a pair of phase locked loops to adjust the phase and the frequency of the energizing signal.Type: ApplicationFiled: May 15, 2009Publication date: September 10, 2009Applicant: CardioMEMS, Inc.Inventors: James Joy, Jason Kroh, Michael Ellis, Mark Allen, Wilton Pyle
-
Publication number: 20090224837Abstract: The present invention determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The system energizes the sensor with a low duty cycle, gated burst of RF energy having a predetermined frequency or set of frequencies and a predetermined amplitude. The energizing signal is coupled to the sensor via magnetic coupling and induces a current in the sensor which oscillates at the resonant frequency of the sensor. The system receives the ring down response of the sensor via magnetic coupling and determines the resonant frequency of the sensor, which is used to calculate the measured physical parameter. The system uses a pair of phase locked loops to adjust the phase and the frequency of the energizing signal.Type: ApplicationFiled: May 15, 2009Publication date: September 10, 2009Applicant: CardioMEMS, Inc.Inventors: James Joy, Jason Kroh, Michael Ellis, Mark Allen, Wilton Pyle
-
Patent number: 7550978Abstract: The present invention determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The system energizes the sensor with a low duty cycle, gated burst of RF energy having a predetermined frequency or set of frequencies and a predetermined amplitude. The energizing signal is coupled to the sensor via magnetic coupling and induces a current in the sensor which oscillates at the resonant frequency of the sensor. The system receives the ring down response of the sensor via magnetic coupling and determines the resonant frequency of the sensor, which is used to calculate the measured physical parameter. The system uses a pair of phase locked loops to adjust the phase and the frequency of the energizing signal.Type: GrantFiled: December 20, 2006Date of Patent: June 23, 2009Assignee: CardioMEMS, Inc.Inventors: James Joy, Jason Kroh, Michael Ellis, Mark Allen, Wilton Pyle
-
Patent number: 7245117Abstract: The present invention determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The system energizes the sensor with a low duty cycle, gated burst of RF energy having a predetermined frequency or set of frequencies and a predetermined amplitude. The energizing signal is coupled to the sensor via magnetic coupling and induces a current in the sensor which oscillates at the resonant frequency of the sensor. The system receives the ring down response of the sensor via magnetic coupling and determines the resonant frequency of the sensor, which is used to calculate the measured physical parameter. The system uses a pair of phase locked loops to adjust the phase and the frequency of the energizing signal.Type: GrantFiled: April 13, 2005Date of Patent: July 17, 2007Assignee: CardioMEMS, Inc.Inventors: James Joy, Jason Kroh, Michael Ellis, Mark Allen, Wilton Pyle
-
Publication number: 20070143479Abstract: Systems and methods for centralized custodial control are desribed. One described custodial control system includes a primary controller having a first network adapter, the primary controller configured to receive a custodial control parameter and generate and transmit a custodial control command, and a plurality of remote nodes each having a network adapter configured to receive the custodial control command and to implement a custodial control process based at least in part on the custodial control command. Various methods for administering a custodial control system are also described.Type: ApplicationFiled: December 16, 2005Publication date: June 21, 2007Inventors: Michael Putnam, Joseph Paonessa, James Joy, Philip Bleistine, Wilton Pyle
-
Publication number: 20070096715Abstract: The present invention determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The system energizes the sensor with a low duty cycle, gated burst of RF energy having a predetermined frequency or set of frequencies and a predetermined amplitude. The energizing signal is coupled to the sensor via magnetic coupling and induces a current in the sensor which oscillates at the resonant frequency of the sensor. The system receives the ring down response of the sensor via magnetic coupling and determines the resonant frequency of the sensor, which is used to calculate the measured physical parameter. The system uses a pair of phase locked loops to adjust the phase and the frequency of the energizing signal.Type: ApplicationFiled: December 20, 2006Publication date: May 3, 2007Applicant: CARDIOMEMS, INC.Inventors: James Joy, Jason Kroh, Michael Ellis, Mark Allen, Wilton Pyle
-
Publication number: 20050010125Abstract: In one embodiment, a portable data acquisition unit includes a pressure sensor that is configured to measure pressure signals at a high-frequency rate, the signals pertaining to patient breathing, a microcontroller that receives pressure signals measured by the pressure sensor and determines clocks times associated with the pressure signals, and an interface that is configured to output sleep session data from the data acquisition unit to another device.Type: ApplicationFiled: November 25, 2003Publication date: January 13, 2005Inventors: James Joy, Wilton Pyle