Patents by Inventor Edward Donlon

Edward Donlon 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: 11162910
    Abstract: The present invention provides novel methods and devices that employ microfluidic technology to generate molecular melt curves. In particular, the devices and methods in accordance with the invention are useful in providing for the analysis of PCR amplification products.
    Type: Grant
    Filed: June 27, 2016
    Date of Patent: November 2, 2021
    Assignees: CALIPER LIFE SCIENCES, INC., Canon U.S.A., Inc.
    Inventors: Steven A. Sundberg, Michael R. Knapp, Ivor T. Knight, Deborah J. Boles, Aaron Rulison, Wesley B. Dong, Andrew Fabans, Edward Donlon, Robert Moti, Michael Slater
  • Patent number: 10871460
    Abstract: The present invention provides novel methods and devices that employ microfluidic technology to generate molecular melt curves. In particular, the devices and methods in accordance with the invention are useful in providing for the analysis of PCR amplification products.
    Type: Grant
    Filed: May 25, 2018
    Date of Patent: December 22, 2020
    Assignee: Canon U.S.A., Inc.
    Inventors: Ivor T. Knight, Deborah John Boles, Aaron Rulison, Wesley B. Dong, Andrew Fabans, Allen Boronkay, Edward Donlon, Robert Moti, Michael Slater, Steven A. Sundberg, Michael R. Knapp
  • Publication number: 20180321170
    Abstract: The present invention provides novel methods and devices that employ microfluidic technology to generate molecular melt curves. In particular, the devices and methods in accordance with the invention are useful in providing for the analysis of PCR amplification products.
    Type: Application
    Filed: May 25, 2018
    Publication date: November 8, 2018
    Applicants: Canon U.S. Life Sciences, Inc., CALIPER LIFE SCIENCES, INC.
    Inventors: Ivor T. Knight, Deborah John Boles, Aaron Rulison, Wesley B. Dong, Andrew Fabans, Allen Boronkay, Edward Donlon, Robert Moti, Michael Slater, Steven A. Sundberg, Michael R. Knapp
  • Patent number: 9983155
    Abstract: The present invention provides novel methods and devices that employ microfluidic technology to generate molecular melt curves. In particular, the devices and methods in accordance with the invention are useful in providing for the analysis of PCR amplification products.
    Type: Grant
    Filed: March 15, 2013
    Date of Patent: May 29, 2018
    Assignees: Canon U.S. Life Sciences, Inc., CALIPER LIFE SCIENCES, INC.
    Inventors: Ivor T. Knight, Deborah John Boles, Aaron Rulison, Wesley B. Dong, Andrew Fabans, Allen Boronkay, Edward Donlon, Robert Moti, Michael Slater, Steven A. Sundberg, Michael R. Knapp
  • Publication number: 20140093879
    Abstract: The present invention provides novel methods and devices that employ microfluidic technology to generate molecular melt curves. In particular, the devices and methods in accordance with the invention are useful in providing for the analysis of PCR amplification products.
    Type: Application
    Filed: March 15, 2013
    Publication date: April 3, 2014
    Applicant: Canon U.S. Life Sciences, Inc.
    Inventors: Ivor T. Knight, Deborah John Boles, Aaron Rulison, Wesley B. Dong, Andrew Fabans, Allen Boronkay, Edward Donlon, Robert Moti, Michael Slater
  • Publication number: 20070026421
    Abstract: The present invention provides novel methods and devices that employ microfluidic technology to generate molecular melt curves. In particular, the devices and methods in accordance with the invention are useful in providing for the analysis of PCR amplification products.
    Type: Application
    Filed: February 9, 2006
    Publication date: February 1, 2007
    Applicants: Caliper Life Sciences, Inc., Canon U.S. Life Sciences, Inc.
    Inventors: Steven Sundberg, Michael Knapp, Ivor Knight, Deborah Boles, Aaron Rulison, Wesley Dong, Edward Donlon, Robert Moti, Andrew Fabans, Allen Boronkay, Michael Slater
  • Publication number: 20050244972
    Abstract: Apparatus and methods are disclosed for processing samples on the surface of supports that are contained in support housings. Biopolymer features are attached to the surfaces of the supports. An apparatus comprises an input element, a holding device for holding a plurality of support housings, one or more fluid dispensing stations, and an output element. Each of the support housings contains a support having attached thereto a plurality of biopolymer features. The holding device is movably mounted with respect to other components of the apparatus. The holding device is adapted to receive a support housing from the input element. The output element is adapted to receive a support housing from the holding device. The apparatus is adapted to index each support housing for a predetermined operation. In use, each of the support housings is moved to one or more processing stations by means of the movable holding device. The location and identity of each of the support housings is indexed.
    Type: Application
    Filed: April 13, 2005
    Publication date: November 3, 2005
    Inventors: Richard Hilson, Edward Donlon, Donald Schremp, Laurence Shea, Carol Schembri, Joseph Fredrick
  • Publication number: 20050129364
    Abstract: An athermal package for fiber photonic devices includes a ferrule to attach the optical fiber to the package. The ferrule has an opening to receive the optical fiber. The ferule is collapsed to attach the optical fiber to the athermal package. Alternatively, the athermal package uses adhesive bonds disposed in pockets of the package. The pockets have a narrow end and a wide end, with the narrow ends facing each other. The adhesive bonds are disposed in the pockets in contact the narrow ends of the pockets but not with the wide ends. The narrow ends physically confine the adhesive bonds so that if the bonds expand or contract due to environmental conditions (or the curing process), the adhesive either expands or contracts near the wide ends of the pockets. This allows the strain on the optical fiber segment between the bonds to remain substantially constant.
    Type: Application
    Filed: January 10, 2005
    Publication date: June 16, 2005
    Inventors: Alan Johnson, Frank Braun, Edward Donlon
  • Publication number: 20030122094
    Abstract: A system is provided for scanning an object, the system comprising: a drive shaft having a proximal portion and a longitudinal axis; a motor including a motor shaft having a rotational axis, the motor serving to rotate the motor shaft about the rotational axis; a flexible joint coupling the drive shaft to the motor shaft by the proximal portion of the drive shaft, the flexible joint having a range of motion which allows the longitudinal axis of the drive shaft to move relative to the rotational axis of the motor shaft; and an object attached to the drive shaft which is movable along the longitudinal axis of the drive shaft in response to the drive shaft being rotated by the motor. This system may be used in a drum scanner system and may be used to read storage layer radiation screens.
    Type: Application
    Filed: December 9, 2002
    Publication date: July 3, 2003
    Inventors: Edward Donlon, Joseph Rimsa, Louis Hlousek
  • Patent number: 5289630
    Abstract: For attaining adhesion between copper circuitry innerlayers and pre-preg layers in a multilayer printed circuit, a conversion coating of copper oxide is provided on the metallic copper surfaces in a manner which develops an altered topography of the underlying metallic copper surfaces. Thereafter, a controlled dissolution and removal of a substantial amount of the copper oxide is effected, in a manner which does not adversely affect the already-developed topography of the underlying metallic copper, and such that the innerlayer, at the time of assembly with the pre-preg layers, has copper surfaces consisting of the topographically altered metallic copper and a relatively small amount of copper oxide thereon. Excellent bonding strengths are achieved with decreased incidence of pink ring formation as compared to conventional processes utilizing copper oxide for adhesion promotion.
    Type: Grant
    Filed: October 29, 1991
    Date of Patent: March 1, 1994
    Assignee: MacDermid, Incorporated
    Inventors: Donald R. Ferrier, Donald P. Cullen, Edward Donlon, Gary B. Larson, William J. Decesare, John L. Cordani
  • Patent number: 5261154
    Abstract: For attaining adhesion between copper circuitry innerlayers and pre-preg layers in a multilayer printed circuit, a conversion coating of copper oxide is provided on the metallic copper surfaces in a manner which develops an altered topography of the underlying metallic copper surfaces. Thereafter, a controlled dissolution and removal of a substantial amount of the copper oxide is effected, in a manner which does not adversely affect the already-developed topography of the underlying metallic copper, and such that the innerlayer, at the time of assembly with the pre-preg layers, has copper surfaces consisting of the topographically altered metallic copper and a relatively small amount of copper oxide thereon. Excellent bonding strengths are achieved with decreased incidence of pink ring formation as compared to conventional processes utilizing copper oxide for adhesion promotion.
    Type: Grant
    Filed: April 21, 1992
    Date of Patent: November 16, 1993
    Assignee: MacDermid, Incorporated
    Inventors: Donald R. Ferrier, Donald P. Cullen, Edward Donlon, Gary B. Larson, William J. Decesare, John L. Cordani, Richard L. Kremer