Patents by Inventor Phillip Bruce, III

Phillip Bruce, III 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: 8088573
    Abstract: Apparatus and methods for carrying out biochemical processes directly on a substrate are provided. A substrate assembly includes a cartridge that removably supports a substrate in a fixed position, and a reaction containment member that is removably located on top of the substrate. The reaction containment member includes one or more cavities that form chambers directly above one or more target locations on the surface of the substrate. The chambers can be used to conduct biochemical processes directly over the substrate, as well as to perform thermal cycling of material contained inside the chamber using a heating element disposed directly on the substrate. The substrate assembly is preferably used in combination with a processing machine that dispenses materials into the chambers and that conducts biochemical reactions of materials contained within the chambers, without requiring the substrate assembly to be moved from one location to another location during the processes.
    Type: Grant
    Filed: April 25, 2008
    Date of Patent: January 3, 2012
    Assignee: Sequenom, Inc.
    Inventors: Paul Heaney, Chao Lin, David Opalsky, Phillip Bruce, III, Charles Griswold, Sheila A. Walker, Ralf Worl, Andrzej Maczuszenko
  • Publication number: 20080286161
    Abstract: Apparatus and methods for carrying out biochemical processes directly on a substrate are provided. A substrate assembly includes a cartridge that removably supports a substrate in a fixed position, and a reaction containment member that is removably located on top of the substrate. The reaction containment member includes one or more cavities that form chambers directly above one or more target locations on the surface of the substrate. The chambers can be used to conduct biochemical processes directly over the substrate, as well as to perform thermal cycling of material contained inside the chamber using a heating element disposed directly on the substrate. The substrate assembly is preferably used in combination with a processing machine that dispenses materials into the chambers and that conducts biochemical reactions of materials contained within the chambers, without requiring the substrate assembly to be moved from one location to another location during the processes.
    Type: Application
    Filed: April 25, 2008
    Publication date: November 20, 2008
    Applicant: SEQUENOM, INC.
    Inventors: Paul Heaney, Chao Lin, David Opalsky, Phillip Bruce, III, Charles Griswold, Sheila A. Walker, Ralf Worl, Andrzej Maczuszenko
  • Patent number: 7364897
    Abstract: Apparatus and methods for carrying out biochemical processes directly on a substrate are provided. A substrate assembly includes a cartridge that removably supports a substrate in a fixed position, and a reaction containment member that is removably located on top of the substrate. The reaction containment member includes one or more cavities that form chambers directly above one or more target locations on the surface of the substrate. The chambers can be used to conduct biochemical processes directly over the substrate, as well as to perform thermal cycling of material contained inside the chamber using a heating element disposed directly on the substrate. The substrate assembly is preferably used in combination with a processing machine that dispenses materials into the chambers and that conducts biochemical reactions of materials contained within the chambers, without requiring the substrate assembly to be moved from one location to another location during the processes.
    Type: Grant
    Filed: April 11, 2003
    Date of Patent: April 29, 2008
    Assignee: Sequenom, Inc.
    Inventors: Paul Heaney, Chao Lin, David Opalsky, Phillip Bruce, III, Charles Griswold, Sheila A. Walker, Ralf Wörl, Andrzej Maczuszenko