Patents by Inventor Paul R. Quantock

Paul R. Quantock 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: 20040022495
    Abstract: A directional integrated optical power monitor is disclosed. The power monitor includes an unbroken portion of a conventional optical fiber through which optical energy can propagate. The portion of optical fiber included in the power monitor has material removed from the cladding, generally by side polishing, to expose a side surface through which at least some of the optical energy leaks or can be extracted. A bulk material, such as a polymer or glass overlay, is positioned over the polished side surface of the fiber, and the bulk material has an index of refraction higher than the effective mode index of refraction of the fiber optic. A photodetector is positioned at the place of maximum optical signal strength to capture the extracted optical energy. The directional integrated optical power monitor can also be used in an assembly to provide a device that is hermetically sealed.
    Type: Application
    Filed: March 17, 2003
    Publication date: February 5, 2004
    Inventors: Andrew P. Shapiro, Kwok Pong Chan, Paul R. Quantock, David G. Gascoyne, Peter Case, Charles J. Mack, Janet L. Krahn, Thomas J. Oathout
  • Patent number: 6511571
    Abstract: A method in which a separate preformed optical material is suitably sized for easy handling, manipulation, and fabrication into a waveguide having a core (formed from the optical material) having transverse cross-sectional dimensions on the order of only tens of microns. The method may include a plurality of mechanical steps, e.g., lapping, polishing, and/or dicing, and bonding steps, e.g., attaching with adhesives. In one embodiment, the method includes the steps of providing an optical material, thinning and polishing the optical material to form a core comprising a plurality of longitudinally extending surfaces, providing a plurality of support substrates, and attaching the plurality of support substrates to the longitudinally extending surfaces of the core. The plurality of support substrates may be attached to the plurality of longitudinally extending surfaces of the optical material with an adhesive.
    Type: Grant
    Filed: May 9, 2001
    Date of Patent: January 28, 2003
    Assignee: Molecular OptoElectronics Corporation
    Inventors: Kevin J. McCallion, Brian L. Lawrence, Gregory A. Wagoner, Paul R. Quantock, John L. Schulze
  • Publication number: 20010041040
    Abstract: A method in which a separate preformed optical material is suitably sized for easy handling, manipulation, and fabrication into a waveguide having a core (formed from the optical material) having transverse cross-sectional dimensions on the order of only tens of microns. The method may include a plurality of mechanical steps, e.g., lapping, polishing, and/or dicing, and bonding steps, e.g., attaching with adhesives. In one embodiment, the method includes the steps of providing an optical material, thinning and polishing the optical material to form a core comprising a plurality of longitudinally extending surfaces, providing a plurality of support substrates, and attaching the plurality of support substrates to the longitudinally extending surfaces of the core. The plurality of support substrates may be attached to the plurality of longitudinally extending surfaces of the optical material with an adhesive.
    Type: Application
    Filed: May 9, 2001
    Publication date: November 15, 2001
    Applicant: Molecular OptoElectronics Corporation
    Inventors: Kevin J. McCallion, Brian L. Lawrence, Gregory A. Wagoner, Paul R. Quantock, John L. Schulze
  • Patent number: 6270604
    Abstract: A method in which a separate preformed optical material is suitably sized for easy handling, manipulation, and fabrication into a waveguide having a core (formed from the optical material) having transverse cross-sectional dimensions on the order of only tens of microns. The method may include a plurality of mechanical steps, e.g., lapping, polishing, and/or dicing, and bonding steps, e.g., attaching with adhesives. In one embodiment, the method includes the steps of providing an optical material, thinning and polishing the optical material to form a core comprising a plurality of longitudinally extending surfaces, providing a plurality of support substrates, and attaching the plurality of support substrates to the longitudinally extending surfaces of the core. The plurality of support substrates may be attached to the plurality of longitudinally extending surfaces of the optical material with an adhesive.
    Type: Grant
    Filed: July 23, 1998
    Date of Patent: August 7, 2001
    Assignee: Molecular OptoElectronics Corporation
    Inventors: Kevin J. McCallion, Brian L. Lawrence, Gregory A. Wagoner, Paul R. Quantock, John L. Schulze