Patents by Inventor Gregory H. Owen

Gregory H. Owen 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: 20150127288
    Abstract: The invention relates to systems and methods for calibrating and using resistance temperature detectors. In one embodiment, the system includes a calibration circuit comprising a resistance temperature detector in a bridge circuit with at least one potentiometer, and a programmable gain amplifier coupled to the bridge circuit. Embodiments of the invention further comprise methods for calibrating the bridge circuit and the programmable gain amplifier for use with the resistance temperature detector and methods for determining the self heating voltage of the bridge circuit.
    Type: Application
    Filed: August 4, 2014
    Publication date: May 7, 2015
    Applicant: CANON U.S. LIFE SCIENCES, INC.
    Inventors: Johnathan S. Coursey, Kenton C. Hasson, Gregory H. Owen
  • Publication number: 20150069045
    Abstract: Methods and systems for thermal control of a device are disclosed having (i) a heated zone including two or more resistive sensors and (ii) a common electrode connected to each of the two or more resistive sensors. The two or more resistive sensors may be driven with heater control signals having alternating polarities. One or more portions of a thermal boundary of the heated zone may be heated by one or more thermal guard heaters.
    Type: Application
    Filed: November 13, 2014
    Publication date: March 12, 2015
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Johnathan S. COURSEY, Kenton C. Hasson, Gregory H. Owen, Hongye Liang
  • Patent number: 8794831
    Abstract: The invention relates to systems and methods for calibrating and using resistance temperature detectors. In one embodiment, the system includes a calibration circuit comprising a resistance temperature detector in a bridge circuit with at least one potentiometer, and a programmable gain amplifier coupled to the bridge circuit. Embodiments of the invention further comprise methods for calibrating the bridge circuit and the programmable gain amplifier for use with the resistance temperature detector and methods for determining the self heating voltage of the bridge circuit.
    Type: Grant
    Filed: October 17, 2012
    Date of Patent: August 5, 2014
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Johnathan S. Coursey, Kenton C. Hasson, Gregory H. Owen
  • Patent number: 8337082
    Abstract: The invention relates to systems and methods for calibrating and using resistance temperature detectors. In one embodiment, the system includes a calibration circuit comprising a resistance temperature detector in a bridge circuit with at least one potentiometer, and a programmable gain amplifier coupled to the bridge circuit. Embodiments of the invention further comprise methods for calibrating the bridge circuit and the programmable gain amplifier for use with the resistance temperature detector and methods for determining the self heating voltage of the bridge circuit.
    Type: Grant
    Filed: May 8, 2009
    Date of Patent: December 25, 2012
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Johnathan S. Coursey, Kenton C. Hasson, Gregory H. Owen
  • Patent number: 8306773
    Abstract: The invention relates to methods and devices for control of an integrated thin-film device with a plurality of microfluidic channels. In one embodiment, a microfluidic device is provided that includes a microfluidic chip having a plurality of microfluidic channels and a plurality of multiplexed heater electrodes, wherein the heater electrodes are part of a multiplex circuit including a common lead connecting the heater electrodes to a power supply, each of the heater electrodes being associated with one of the microfluidic channels. The microfluidic device also includes a control system configured to regulate power applied to each heater electrode by varying a duty cycle, the control system being further configured to determine the temperature of each heater electrode by determining the resistance of each heater electrode.
    Type: Grant
    Filed: August 31, 2010
    Date of Patent: November 6, 2012
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Kenton C. Hasson, Johnathan S. Coursey, Gregory H. Owen
  • Publication number: 20120058460
    Abstract: The present invention, in one aspect, provides methods and systems for controlling slugs using temperature dependent fluorescent dyes. In some embodiments, the present invention uses one or more techniques to enhance the visibility of slugs, enhance a system's ability to differentiate between slugs, and enhance a system's ability to identify the positions of slugs.
    Type: Application
    Filed: August 31, 2011
    Publication date: March 8, 2012
    Applicant: CANON U.S. LIFE SCIENCES, INC.
    Inventors: Johnathan S. Coursey, Kenton C. Hasson, Sami Kanderian, Gregory H. Owen, Hongye Liang, Scott Corey, Brian Bean
  • Publication number: 20120052560
    Abstract: The present invention relates generally to systems and methods for the rapid serial processing of multiple nucleic acid assays. More particularly, the present invention provides for the real time processing of nucleic acid during polymerase chain reaction (PCR) and thermal melt applications. According to an aspect of the invention, a system for the rapid serial processing of multiple nucleic acid assays is provided. In one embodiment, the system includes, but is not limited to: a microfluidic cartridge having microfluidic (flow-through) channels, a fluorescence imaging system, a temperature measurement and control system; a pressure measurement and control system for applying variable pneumatic pressures to the microfluidic cartridge; a storage device for holding multiple reagents (e.g.
    Type: Application
    Filed: August 31, 2011
    Publication date: March 1, 2012
    Applicant: CANON U.S. LIFE SCIENCES, INC.
    Inventors: Ivor T. Knight, Kenton C. Hasson, Johnathan S. Coursey, Hongye Liang, Sami Kanderian, Gregory H. Owen, Weidong Cao, Ying-Xin Wang, Scott Corey, Ben Lane, Conrad Laskowski, Alex Flamm, Brian Murphy, Eric Schneider, Takayoshi Hanagata, Hiroshi Inoue, Shulin Zeng, Brian Bean, Franklin Regan
  • Patent number: 8058054
    Abstract: In one aspect, the present invention provides a systems and methods for the real-time amplification and analysis of a sample of DNA.
    Type: Grant
    Filed: June 29, 2007
    Date of Patent: November 15, 2011
    Assignee: Canon U.S. Life Sciences, Inc.
    Inventors: Gregory H. Owen, Gregory A. Dale, Kenton C. Hasson, Shulin Zeng, Dwayne W. Warfield, Sarah Warfield, legal representative
  • Publication number: 20110077897
    Abstract: The invention relates to methods and devices for control of an integrated thin-film device with a plurality of microfluidic channels. In one embodiment, a microfluidic device is provided that includes a microfluidic chip having a plurality of microfluidic channels and a plurality of multiplexed heater electrodes, wherein the heater electrodes are part of a multiplex circuit including a common lead connecting the heater electrodes to a power supply, each of the heater electrodes being associated with one of the microfluidic channels. The microfluidic device also includes a control system configured to regulate power applied to each heater electrode by varying a duty cycle, the control system being further configured to determine the temperature of each heater electrode by determining the resistance of each heater electrode.
    Type: Application
    Filed: August 31, 2010
    Publication date: March 31, 2011
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Kenton C. HASSON, Johnathan S. Coursey, Gregory H. Owen
  • Publication number: 20110048547
    Abstract: The invention relates to methods and devices for control of an integrated thin-film device with a plurality of microfluidic channels. In one embodiment, a microfluidic device is provided that includes a microfluidic chip having a plurality of microfluidic channels and a plurality of multiplexed resistive thermal detectors (RTDs). Each of the RTDs is associated with one of the microfluidic channels. The RTDs are connected to a power supply through individual electrodes and pairs of common electrodes. Adjacent RTDs may be driven with alternating polarities, and the current in the common electrodes may be minimized using a virtual ground circuit. The compact microfluidic device is capable of fast heating and highly precise thermal control. The compact microfluidic device is also capable using the RTDs to sense temperature without their heating capability.
    Type: Application
    Filed: June 29, 2010
    Publication date: March 3, 2011
    Applicant: CANON U.S. LIFE SCIENCES, INC.
    Inventors: Kenton C. Hasson, Johnathan S. Coursey, Gregory H. Owen, Hiroshi Inoue
  • Publication number: 20100285571
    Abstract: The invention relates to systems and methods for calibrating and using resistance temperature detectors. In one embodiment, the system includes a calibration circuit comprising a resistance temperature detector in a bridge circuit with at least one potentiometer, and a programmable gain amplifier coupled to the bridge circuit. Embodiments of the invention further comprise methods for calibrating the bridge circuit and the programmable gain amplifier for use with the resistance temperature detector and methods for determining the self heating voltage of the bridge circuit.
    Type: Application
    Filed: May 8, 2009
    Publication date: November 11, 2010
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Johnathan S. Coursey, Kenton C. Hasson, Gregory H. Owen
  • Publication number: 20090248349
    Abstract: The invention relates to methods and devices for control of an integrated thin-film device with a plurality of microfluidic channels. In one embodiment, a microfluidic device is provided that includes a microfluidic chip having a plurality of microfluidic channels and a plurality of multiplexed heater electrodes, wherein the heater electrodes are part of a multiplex circuit including a common lead connecting the heater electrodes to a power supply, each of the heater electrodes being associated with one of the microfluidic channels. The microfluidic device also includes a control system configured to regulate power applied to each heater electrode by varying a duty cycle, the control system being further configured to determine the temperature each heater electrode by determining the resistance of each heater electrode.
    Type: Application
    Filed: June 30, 2008
    Publication date: October 1, 2009
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Kenton C. Hasson, Johnathan S. Coursey, Gregory H. Owen, Gregory A. Dale
  • Publication number: 20090060795
    Abstract: The invention relates to methods and devices for control of an integrated thin-film device with a plurality of microfluidic channels. In one aspect, the present invention provides a method for controlling the temperature of a heater electrode associated with a microfluidic channel of a microfluidic device, wherein power applied to the heater electrode is regulated by varying the duty cycle of a pulse width modulation (PWM). In another aspect, the present invention a controller configured to compute the temperature of the heater electrode during the power-on portion of the duty cycle and the during the power-off portion of the duty cycle and to adjust the duty cycle as necessary to achieve a desired temperature in the heater electrode.
    Type: Application
    Filed: June 30, 2008
    Publication date: March 5, 2009
    Applicant: CANON U.S. LIFE SCIENCES, INC.
    Inventors: Gregory H. Owen, Gregory A. Dale, Kenton C. Hasson
  • Publication number: 20090053726
    Abstract: In one aspect, the present invention provides a systems and methods for the real-time amplification and analysis of a sample of DNA.
    Type: Application
    Filed: October 28, 2008
    Publication date: February 26, 2009
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Gregory H. Owen, Gregory A. Dale, Kenton C. Hasson, Shulin Zeng, Dwayne W. Warfield, Sarah Warfield
  • Publication number: 20080176230
    Abstract: In one aspect, the present invention provides a systems and methods for the real-time amplification and analysis of a sample of DNA.
    Type: Application
    Filed: June 29, 2007
    Publication date: July 24, 2008
    Applicant: CANON U.S. LIFE SCIENCES, INC.
    Inventors: Gregory H. Owen, Gregory A. Dale, Kenton C. Hasson, Shulin Zeng, Dwayne W. Warfield, Sarah Warfield
  • Patent number: 6509656
    Abstract: A system and method are provided to power two magnetrons devices. The system may include a power supply device to power a first magnetron device and a second magnetron device. A control device may control an amount of current reaching at least the first magnetron device.
    Type: Grant
    Filed: May 10, 2001
    Date of Patent: January 21, 2003
    Assignee: Fusion UV Systems
    Inventors: Ernest G. Penzenstadler, Jonathan D. Barry, Gregory H. Owen
  • Publication number: 20020084695
    Abstract: A system and method are provided to power two magnetrons devices. The system may include a power supply device to power a first magnetron device and a second magnetron device. A control device may control an amount of current reaching at least the first magnetron device.
    Type: Application
    Filed: May 10, 2001
    Publication date: July 4, 2002
    Inventors: Ernest G. Penzenstadler, Jonathan D. Barry, Gregory H. Owen