Patents by Inventor William G. Morris

William G. Morris 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: 9946902
    Abstract: This invention provides a system and apparatus that is able to authenticate and prevent illegal manufacturing and unauthorized operation of disposable bioprocess components. This invention utilizes a ferro-electric random access memory chip (FRAM) chip to store error-correctable information on a RFID tag attached to the disposable bioprocess components, where the error-correctable information is written in sequence into the memory chip, so that the redundant information can remain in the chip when the RFID tag and disposable bioprocess component is gamma-sterilized. Also, this invention includes a method for authenticating the disposable bioprocess component that reduces liability in that a counterfeit poor quality disposable component is not used on the hardware so the user will not file an unjustified complaint.
    Type: Grant
    Filed: June 17, 2016
    Date of Patent: April 17, 2018
    Assignee: GE Healthcare Bio-Sciences Corp.
    Inventors: Manuel Nyffeler, Radislav A. Potyrailo, Vincent F. Pizzi, William G. Morris, Gerard J. Gach, Vijay Singh
  • Publication number: 20160379019
    Abstract: This invention provides a system and apparatus that is able to authenticate and prevent illegal manufacturing and unauthorized operation of disposable bioprocess components. This invention utilizes a ferro-electric random access memory chip (FRAM) chip to store error-correctable information on a RFID tag attached to the disposable bioprocess components, where the error-correctable information is written in sequence into the memory chip, so that the redundant information can remain in the chip when the RFID tag and disposable bioprocess component is gamma-sterilized. Also, this invention includes a method for authenticating the disposable bioprocess component that reduces liability in that a counterfeit poor quality disposable component is not used on the hardware so the user will not file an unjustified complaint.
    Type: Application
    Filed: June 17, 2016
    Publication date: December 29, 2016
    Inventors: MANUEL NYFFELER, RADISLAV A. POTYRAILO, VINCENT F. PIZZI, WILLIAM G. MORRIS, GERARD J. GACH, VIJAY SINGH
  • Patent number: 9373008
    Abstract: This invention provides a system and apparatus that is able to authenticate and prevent illegal manufacturing and unauthorized operation of disposable bioprocess components. This invention utilizes a ferro-electric random access memory chip (FRAM) chip to store error-correctable information on a RFID tag attached to the disposable bioprocess components, where the error-correctable information is written in sequence into the memory chip, so that the redundant information can remain in the chip when the RFID tag and disposable bioprocess component is gamma-sterilized. Also, this invention includes a method for authenticating the disposable bioprocess component that reduces liability in that a counterfeit poor quality disposable component is not used on the hardware so the user will not file an unjustified complaint.
    Type: Grant
    Filed: November 25, 2013
    Date of Patent: June 21, 2016
    Assignee: GE Healthcare Bioscience BioProcess Corp.
    Inventors: Manuel Nyffeler, Radislav A. Potyrailo, Vincent F. Pizzi, William G. Morris, Gerard J. Gach, Vijay Singh
  • Patent number: 8963684
    Abstract: This invention provides a system and apparatus that is able to authenticate and prevent illegal manufacturing and unauthorized operation of disposable bioprocess components. This invention utilizes a ferro-electric random access memory (FRAM) chip to store error-correctable information on a RFID tag attached to the disposable bioprocess components, where the error-correctable information is written into the memory chip, so that the information can remain in the chip when the RFID tag and disposable bioprocess component is gamma-sterilized. Also, this invention includes a method for authenticating the disposable bioprocess component that reduces liability in that a counterfeit poor quality disposable component is not used on the hardware so the user will not file an unjustified complaint.
    Type: Grant
    Filed: August 20, 2008
    Date of Patent: February 24, 2015
    Assignee: GE Healthcare Bio-Sciences Corp
    Inventors: Manuel Nyffeler, Radislav A. Potyrailo, Vincent F. Pizzi, William G. Morris, Gerard J. Gach, Vijay Singh
  • Publication number: 20140076973
    Abstract: This invention provides a system and apparatus that is able to authenticate and prevent illegal manufacturing and unauthorized operation of disposable bioprocess components. This invention utilizes a ferro-electric random access memory chip (FRAM) chip to store error-correctable information on a RFID tag attached to the disposable bioprocess components, where the error-correctable information is written in sequence into the memory chip, so that the redundant information can remain in the chip when the RFID tag and disposable bioprocess component is gamma-sterilized. Also, this invention includes a method for authenticating the disposable bioprocess component that reduces liability in that a counterfeit poor quality disposable component is not used on the hardware so the user will not file an unjustified complaint.
    Type: Application
    Filed: November 25, 2013
    Publication date: March 20, 2014
    Applicant: GE HEALTHCARE BIO-SCIENCES CORP.
    Inventors: MANUEL NYFFELER, RADISLAV A. POTYRAILO, VINCENT F. PIZZI, WILLIAM G. MORRIS, GERARD J. GACH, VIJAY SINGH
  • Patent number: 8653940
    Abstract: This invention provides a system and apparatus that is able to authenticate and prevent illegal manufacturing and unauthorized operation of disposable bioprocess components. This invention utilizes a ferro-electric random access memory chip (FRAM) chip to store error-correctable information on a RFID tag attached to the disposable bioprocess components, where the error-correctable information is written in sequence into the memory chip, so that the redundant information can remain in the chip when the RFID tag and disposable bioprocess component is gamma-sterilized. Also, this invention includes a method for authenticating the disposable bioprocess component that reduces liability in that a counterfeit poor quality disposable component is not used on the hardware so the user will not file an unjustified complaint.
    Type: Grant
    Filed: August 20, 2008
    Date of Patent: February 18, 2014
    Assignee: GE Healthcare Bio-Sciences Corp.
    Inventors: Manuel Nyffeler, Radislav A. Potyrailo, Vincent F. Pizzi, William G. Morris, Gerard J. Gach, Vijay Singh
  • Patent number: 8105552
    Abstract: Total analysis systems and methods for simultaneously monitoring a suite of biological and/or chemical species in water and/or other process systems are disclosed. The system provides a sample-volume controlled sensor array comprising a fluid delivery device and a plurality of optical sensor elements for determining the presence and total concentrations of multiple analytes in the process system simultaneously. Image identification algorithms are provided for identifying the analytes based on image intensity, color pattern, positional arrangement, and the like. The methods incorporate multivariate optimization algorithms to analyze multiple sensor responses. This produces analytical results that are typically difficult to obtain without full system or variable compensation. The improved array response may then be utilized to measure, monitor, and control the concentration of analytes in the chemical or biological sample or water system.
    Type: Grant
    Filed: March 24, 2010
    Date of Patent: January 31, 2012
    Assignee: General Electric Company
    Inventors: Caibin Xiao, Radislav A. Potyrailo, William G. Morris, Scott M. Boyette, LiJie Yu, Theodore J. Cecconie, Andrew M. Leach, Prashant V. Shrikhande
  • Publication number: 20110006900
    Abstract: This invention provides a system and apparatus that is able to authenticate and prevent illegal manufacturing and unauthorized operation of disposable bioprocess components. This invention utilizes a ferro-electric random access memory chip (FRAM) chip to store error-correctable information on a RFID tag attached to the disposable bioprocess components, where the error-correctable information is written in sequence into the memory chip, so that the redundant information can remain in the chip when the RFID tag and disposable bioprocess component is gamma-sterilized. Also, this invention includes a method for authenticating the disposable bioprocess component that reduces liability in that a counterfeit poor quality disposable component is not used on the hardware so the user will not file an unjustified complaint.
    Type: Application
    Filed: August 20, 2008
    Publication date: January 13, 2011
    Applicant: GE HEALTHCARE BIOSCIENCE BIOPROCESS CORP.
    Inventors: Manuel Nyffeler, Radislav A. Potyrailo, Vincent F. Pizzi, William G. Morris, Gerard J. Gach, Vijay Singh
  • Publication number: 20110006878
    Abstract: This invention provides a system and apparatus that is able to authenticate and prevent illegal manufacturing and unauthorized operation of disposable bioprocess components. This invention utilizes a ferro-electric random access memory (FRAM) chip to store error-correctable information on a RFID tag attached to the disposable bioprocess components, where the error-correctable information is written into the memory chip, so that the information can remain in the chip when the RFID tag and disposable bioprocess component is gamma-sterilized. Also, this invention includes a method for authenticating the disposable bioprocess component that reduces liability in that a counterfeit poor quality disposable component is not used on the hardware so the user will not file an unjustified complaint.
    Type: Application
    Filed: August 20, 2008
    Publication date: January 13, 2011
    Applicant: GE HEALTHCARE BIOSCIENCE BIOPROCESS CORP.
    Inventors: Manuel Nyffeler, Radislav A. Potyrailo, Vincent F. Pizzi, William G. Morris, Gerard J. Gach, Vijay Singh
  • Publication number: 20100178208
    Abstract: Total analysis systems and methods for simultaneously monitoring a suite of biological and/or chemical species in water and/or other process systems are disclosed. The system provides a sample-volume controlled sensor array comprising a fluid delivery device and a plurality of optical sensor elements for determining the presence and total concentrations of multiple analytes in the process system simultaneously. Image identification algorithms are provided for identifying the analytes based on image intensity, color pattern, positional arrangement, and the like. The methods incorporate multivariate optimization algorithms to analyze multiple sensor responses. This produces analytical results that are typically difficult to obtain without full system or variable compensation. The improved array response may then be utilized to measure, monitor, and control the concentration of analytes in the chemical or biological sample or water system.
    Type: Application
    Filed: March 24, 2010
    Publication date: July 15, 2010
    Applicant: GENERAL ELECTRIC COMPANY
    Inventors: Caibin Xiao, Radislav A. Potyrailo, William G. Morris, Scott M. Boyette, LiJie Yu, Theodore J. Cecconie, Andrew M. Leach, Prashant V. Shrikhande
  • Patent number: 7723120
    Abstract: Total analysis systems and methods for simultaneously monitoring a suite of biological and/or chemical species in water and/or other process systems are disclosed. The system provides a sample-volume controlled sensor array comprising a fluid delivery device and a plurality of optical sensor elements for determining the presence and total concentrations of multiple analytes in the process system simultaneously. Image identification algorithms are provided for identifying the analytes based on image intensity, color pattern, positional arrangement, and the like. The methods incorporate multivariate optimization algorithms to analyze multiple sensor responses. This produces analytical results that are typically difficult to obtain without full system or variable compensation. The improved array response may then be utilized to measure, monitor, and control the concentration of analytes in the chemical or biological sample or water system.
    Type: Grant
    Filed: October 26, 2005
    Date of Patent: May 25, 2010
    Assignee: General Electric Company
    Inventors: Caibin Xiao, Radislav A. Potyrailo, William G. Morris, Scott M. Boyette, LiJie Yu, Theodore J. Cecconie, Andrew M. Leach, Prashant V. Shrikhande
  • Patent number: 7456968
    Abstract: A system and method employing optical disk drives for quantitative analysis of chemical and biochemical parameters, in which sensor materials disposed on an optical disk are responsive to physical, chemical, biochemical, and other parameters in the environment. The light interacts with the sensor materials when the light propagates through the sensor material, reflects off the optical media's reflective layer, and propagates back through the sensor region. The interacted light is captured by a photodetector, which outputs a response analog signal, for example, an analog voltage signal, which is indicative of a condition of the environment to which the sensor materials have been exposed. The system includes software algorithms which cause the laser source and optical detector to move to a specified location or logical block address of the disk, measure the optical signal during disk rotation, display a map of the sensor material response, and reduce the noise level in the measured signal.
    Type: Grant
    Filed: September 29, 2004
    Date of Patent: November 25, 2008
    Assignee: General Electric Company
    Inventors: Radislav A. Potyrailo, William G. Morris, Andrew M. Leach
  • Patent number: 5392633
    Abstract: An apparatus and method of speedily measuring the strength of individual abrasive grains such as diamonds in which the grains are crushed between two hard rollers and the compressive force exerted on the grain by the rollers at the moment of fracture is measured.
    Type: Grant
    Filed: February 12, 1993
    Date of Patent: February 28, 1995
    Assignee: General Electric Company
    Inventor: William G. Morris