Patents by Inventor Michael J. Collins

Michael J. Collins 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: 10580724
    Abstract: Systems and methods for screening applicants are disclosed herein. A method of screening applicants is performed by a screening server. The server begins by receiving a selection of screening services and an applicant profile that identifies an applicant. The screening continues by generating screening results specified by the selection of screening services based on the applicant profile. A property manager is then notified that the screening results are available for the applicant based upon the applicant profile. The screening results are then provided to the property manager based upon the applicant profile. Based on these screening results, the screener or property manager can make a decision about the applicant and communicate a decision action to the applicant.
    Type: Grant
    Filed: July 18, 2017
    Date of Patent: March 3, 2020
    Assignee: TRANSUNION RENTAL SCREENING SOLUTIONS, INC.
    Inventors: Michael A. Britti, Robert D. Thornley, Joel R Springer, Michael J. Mauseth, Michael J. Collins
  • Publication number: 20190291070
    Abstract: A combination for carrying out microwave assisted reactions is disclosed, such as acid digestion and solvent extraction. The combination includes a microwave transparent pressure-resistant reaction vessel and a flexible film fluoropolymer liner inside the reaction vessel. The flexible film liner has a size and shape that substantially conforms to the inner walls of the reaction vessel. A pressure-relief closure is positioned on the reaction vessel and the flexible film liner, and an infrared temperature detector that operates in wavelengths (frequencies) to which both the reaction vessel and the flexible liner are transparent, so that an exact fit and conductive heating to the outside of the reaction vessel are not required.
    Type: Application
    Filed: March 23, 2018
    Publication date: September 26, 2019
    Applicant: CEM Corporation
    Inventors: Wyatt P. Hargett, JR., Michael J. Collins, SR.
  • Publication number: 20190278107
    Abstract: Contact lenses incorporate high plus or add power profiles that at least one of slow, retard or preventing myopia progression and minimize halo effect. The lens includes a center zone with a negative power for myopic vision correction; and at least one treatment zone surrounding the center zone, the at least one treatment zone having a power profile that increases from an outer margin of the center zone to a positive power within the at least one treatment zone of greater than +5.00 D.
    Type: Application
    Filed: May 24, 2019
    Publication date: September 12, 2019
    Inventors: Noel A. Brennan, Khaled Chehab, Xu Cheng, Michael J. Collins, Manwai Charis Lau, Eric R. Ritchey, Xin Wei
  • Publication number: 20190278106
    Abstract: Contact lenses incorporate high plus or add power profiles that at least one of slow, retard or preventing myopia progression and minimize halo effect. The lens includes a center zone with a negative power for myopic vision correction; and at least one treatment zone surrounding the center zone, the at least one treatment zone having a power profile that increases from an outer margin of the center zone to a positive power within the at least one treatment zone of greater than +5.00D.
    Type: Application
    Filed: May 24, 2019
    Publication date: September 12, 2019
    Inventors: Noel A. Brennan, Khaled Chehab, Xu Cheng, Michael J. Collins, Manwai Charis Lau, Eric R. Ritchey, Xin Wei
  • Publication number: 20190257726
    Abstract: An energized dispersive extraction method for sample preparation for analysis is disclosed. The method includes the steps of placing an extraction solvent, sorbent particles, and a sample matrix containing an analyte in a heat conductive sample cup; positioning the sample cup in a pressure-resistant reaction chamber; dispersing the solvent and the sample matrix in the sample cup in the reaction chamber; heating the sample matrix and the solvent in the sample cup in the reaction chamber to a temperature that generates an above-atmospheric pressure; draining the solvent extract from the sample cup at atmospheric pressure; and collecting the solvent extract for analysis.
    Type: Application
    Filed: March 20, 2019
    Publication date: August 22, 2019
    Applicant: CEM Corporation
    Inventors: Michael J. Collins, SR., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Publication number: 20190227342
    Abstract: The present disclosure relates to ophthalmic devices such as ophthalmic lenses. An ophthalmic device may comprise an ophthalmic lens for at least one of slowing, retarding or preventing myopia progression. The ophthalmic lens may comprise a center zone with a negative power for myopic vision correction; and at least one treatment zone surrounding the center zone, the at least one treatment zone having a power profile comprising an ADD power, the at least one treatment zone having a surface shape comprising a portion of a generally toroidal shape, wherein the at least one treatment zone is arranged as to form a continuous surface with the center zone.
    Type: Application
    Filed: January 22, 2018
    Publication date: July 25, 2019
    Inventors: Noel A. Brennan, Xu Cheng, Jaclyn V. Hernandez, Michael J. Collins, Brett A. Davis, Fan Yi, Derek Dean Nankivil
  • Patent number: 10359646
    Abstract: Contact lenses incorporate high plus or add power profiles that at least one of slow, retard or preventing myopia progression and minimize halo effect. The lens includes a center zone with a negative power for myopic vision correction; and at least one treatment zone surrounding the center zone, the at least one treatment zone having a power profile that increases from an outer margin of the center zone to a positive power within the at least one treatment zone of greater than +5.00 D.
    Type: Grant
    Filed: March 17, 2017
    Date of Patent: July 23, 2019
    Assignee: Johnson & Johnson Vision Care, Inc.
    Inventors: Noel A. Brennan, Khaled Chehab, Xu Cheng, Michael J. Collins, Manwai Charis Lau, Eric R. Ritchey, Xin Wei
  • Patent number: 10330573
    Abstract: An extraction method for preparing samples for analytical analysis is disclosed. The method includes the steps of placing a sample matrix containing one or more analytes in a heat conductive sample cup, positioning the heat conductive sample cup in a pressure-resistant reaction chamber, dispensing solvent into the heat conductive sample cup, dispersing the solvent and the sample matrix in the sample cup in the reaction chamber, heating the sample matrix and the extraction solvent in the heat conductive sample cup in the reaction chamber to a temperature at which the dispensed solvent generates an above-atmospheric pressure, and releasing the extraction solvent extract from the sample cup at atmospheric pressure.
    Type: Grant
    Filed: July 10, 2017
    Date of Patent: June 25, 2019
    Assignee: CEM Corporation
    Inventors: Michael J. Collins, Sr., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Patent number: 10295447
    Abstract: An energized dispersive extraction method for sample preparation for analysis is disclosed. The method includes the steps of placing an extraction solvent, sorbent particles, and a sample matrix containing an analyte in a heat conductive sample cup; positioning the sample cup in a pressure-resistant reaction chamber; dispersing the solvent and the sample matrix in the sample cup in the reaction chamber; heating the sample matrix and the solvent in the sample cup in the reaction chamber to a temperature that generates an above-atmospheric pressure; draining the solvent extract from the sample cup at atmospheric pressure; and collecting the solvent extract for analysis.
    Type: Grant
    Filed: July 10, 2017
    Date of Patent: May 21, 2019
    Assignee: CEM Corporation
    Inventors: Michael J. Collins, Sr., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Patent number: 10241014
    Abstract: An instrument for extraction based molecular sample preparation and related processes is disclosed. The instrument includes a thermally conductive pressure resistant heating chamber and a thermally conductive sample cup positioned in the thermally conductive pressure resistant healing chamber for heating liquids and solids together in the thermally conductive sample cup. A liquid delivery inlet fixture in the thermally conductive pressure resistant heating chamber delivers liquids (solvent) from a supply to the thermally conductive sample cup in the thermally conductive pressure resistant heating chamber, and a chiller in liquid communication with the thermally conductive sample cup in the thermally conductive pressure resistant heating chamber receives heated liquids from the thermally conductive pressure resistant heating chamber when the chamber is opened to atmospheric pressure.
    Type: Grant
    Filed: July 10, 2017
    Date of Patent: March 26, 2019
    Assignee: CEM Corporation
    Inventors: Michael J. Collins, Sr., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Publication number: 20190011339
    Abstract: An energized dispersive extraction method for sample preparation for analysis is disclosed. The method includes the steps of placing an extraction solvent, sorbent particles, and a sample matrix containing an analyte in a heat conductive sample cup; positioning the sample cup in a pressure-resistant reaction chamber; dispersing the solvent and the sample matrix in the sample cup in the reaction chamber; heating the sample matrix and the solvent in the sample cup in the reaction chamber to a temperature that generates an above-atmospheric pressure; draining the solvent extract from the sample cup at atmospheric pressure; and collecting the solvent extract for analysis.
    Type: Application
    Filed: July 10, 2017
    Publication date: January 10, 2019
    Applicant: CEM Corporation
    Inventors: Michael J. Collins, SR., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Publication number: 20190011337
    Abstract: An extraction method for preparing samples for analytical analysis is disclosed. The method includes the steps of placing a sample matrix containing one or more analytes in a heat conductive sample cup, positioning the heat conductive sample cup in a pressure-resistant reaction chamber, dispensing solvent into the heat conductive sample cup, dispersing the solvent and the sample matrix in the sample cup in the reaction chamber, heating the sample matrix and the extraction solvent in the heat conductive sample cup in the reaction chamber to a temperature at which the dispensed solvent generates an above-atmospheric pressure, and releasing the extraction solvent extract from the sample cup at atmospheric pressure.
    Type: Application
    Filed: July 10, 2017
    Publication date: January 10, 2019
    Applicant: CEM Corporation
    Inventors: Michael J. Collins, Sr., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Publication number: 20190011341
    Abstract: An extraction method for preparing samples for analytical analysis is disclosed. The method includes the steps of placing a sample matrix containing one or more analytes in a heat conductive sample cup, positioning the heat conductive sample cup in a pressure-resistant reaction chamber, dispensing solvent into the heat conductive sample cup, dispersing the solvent and the sample matrix in the sample cup in the reaction chamber, heating the sample matrix and the extraction solvent in the heat conductive sample cup in the reaction chamber to a temperature at which the dispensed solvent generates an above-atmospheric pressure, and releasing the extraction solvent extract from the sample cup at atmospheric pressure.
    Type: Application
    Filed: August 22, 2018
    Publication date: January 10, 2019
    Applicant: CEM Corporation
    Inventors: Michael J. Collins, SR., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Publication number: 20190011338
    Abstract: An instrument for extraction based molecular sample preparation and related processes is disclosed. The instrument includes a thermally conductive pressure resistant heating chamber and a thermally conductive sample cup positioned in the thermally conductive pressure resistant heating chamber for heating liquids and solids together in the thermally conductive sample cup. A liquid delivery inlet fixture in the thermally conductive pressure resistant heating chamber delivers liquids (solvent) from a supply to the thermally conductive sample cup in the thermally conductive pressure resistant heating chamber, and a chiller in liquid communication with the thermally conductive sample cup in the thermally conductive pressure resistant heating chamber receives heated liquids from the thermally conductive pressure resistant heating chamber when the chamber is opened to atmospheric pressure.
    Type: Application
    Filed: July 10, 2017
    Publication date: January 10, 2019
    Applicant: CEM Corporation
    Inventors: Michael J. Collins, SR., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Publication number: 20190011340
    Abstract: An instrument for extraction based molecular sample preparation and related processes is disclosed. The instrument includes a thermally conductive pressure resistant heating chamber and a thermally conductive sample cup positioned in the thermally conductive pressure resistant heating chamber for heating liquids and solids together in the thermally conductive sample cup. A liquid delivery inlet fixture in the thermally conductive pressure resistant heating chamber delivers liquids (solvent) from a supply to the thermally conductive sample cup in the thermally conductive pressure resistant heating chamber, and a chiller in liquid communication with the thermally conductive sample cup in the thermally conductive pressure resistant heating chamber receives heated liquids from the thermally conductive pressure resistant heating chamber when the chamber is opened to atmospheric pressure.
    Type: Application
    Filed: May 25, 2018
    Publication date: January 10, 2019
    Applicant: CEM Corporation
    Inventors: Michael J. Collins, SR., Joseph J. Lambert, Matthew N. Beard, Paul C. Elliott
  • Publication number: 20180285578
    Abstract: Embodiments of the present invention provide a method to temporally isolate data accessed by a computing device so that the data accessed by the computing device is limited to a single set of data. The method includes removing any data that is accessed by the computing device when operating in different modes so that the data is inaccessible by the computing device when operating in the mode. The method also includes switching to the mode after the data associated with the modes different from the mode have been removed. The method also includes operating in the mode based on a plurality of rules associated with the security policy in temporal isolation from any other mode associated with the computing device. The computing device is limited to operating in the mode and is prevented from accessing any data that is distinct from the single set of data of the mode.
    Type: Application
    Filed: June 4, 2018
    Publication date: October 4, 2018
    Inventors: Eric Ridvan Üner, Michael J. Collins, Kent H. Hunter, John E. Rosenstengel, James E. Sabin, Kevin S. Woods
  • Publication number: 20180275425
    Abstract: Lenses are designed using the corneal topography or wavefront measurements of the eye derived by subtracting the optical power of the eye after orthokeratology treatment from the optical power before orthokeratology treatment.
    Type: Application
    Filed: May 30, 2018
    Publication date: September 27, 2018
    Inventors: Michael J. Collins, Brett A. Davis, Khaled A. Chehab, Xu Cheng, Daoud Robert Iskander
  • Patent number: 10012849
    Abstract: Lenses are designed using the corneal topography or wavefront measurements of the eye derived by subtracting the optical power of the eye after orthokeratology treatment from the optical power before orthokeratology treatment.
    Type: Grant
    Filed: June 18, 2014
    Date of Patent: July 3, 2018
    Assignee: Johnson & Johnson Vision Care, Inc.
    Inventors: Michael J. Collins, Brett A. Davis, Khaled A. Chehab, Xu Cheng, Daoud Robert Iskander
  • Patent number: 9990505
    Abstract: Embodiments of the present invention provide a method to temporally isolate data accessed by a computing device so that the data accessed by the computing device is limited to a single set of data. The method includes removing any data that is accessed by the computing device when operating in different modes so that the data is inaccessible by the computing device when operating in the mode. The method also includes switching to the mode after the data associated with the modes different from the mode have been removed. The method also includes operating in the mode based on a plurality of rules associated with the security policy in temporal isolation from any other mode associated with the computing device. The computing device is limited to operating in the mode and is prevented from accessing any data that is distinct from the single set of data of the mode.
    Type: Grant
    Filed: August 12, 2015
    Date of Patent: June 5, 2018
    Assignee: Redwall Technologies, LLC
    Inventors: Eric Ridvan Üner, Michael J. Collins, Kent H. Hunter, John E. Rosenstengel, James E. Sabin, Kevin S. Woods
  • Patent number: 9921282
    Abstract: A method of measuring NMR response in an NMR instrument includes heating a sample at a heater temperature that is higher than the temperature of the interior of the NMR instrument, positioning the heated sample in the NMR instrument, and measuring the NMR response of the heat sample. Typically, the sample is dry and includes fat. Furthermore, a method of determining an amount of a component of a sample includes positioning a sample in an NMR instrument, applying a sequence of radio-frequency pulses to the sample, measuring the amplitudes of the signals produced by the application of the sequence of radio-frequency pulses, and determining the amount of a component in the sample using the measured amplitudes of the signals. The disclosed methods typically provide accurate analysis of samples in a shorter time period than traditional NMR techniques and solvent-based analysis techniques.
    Type: Grant
    Filed: April 9, 2013
    Date of Patent: March 20, 2018
    Assignee: CEM Corporation
    Inventors: Michael J. Collins, Sr., Jonathan M. Collins, Colin L. Simpson