Patents by Inventor Paul E. Sanders

Paul E. Sanders 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: 10723168
    Abstract: Embodiments of the present invention provide a stair layout template that reduces the opportunity for errors when constructing a set of stairs. Embodiments also provide a method for using the template to construct a set of stairs. The template indicates to the builder where a particular set of marks are to be made on the insides (the sides where the tread modules are attached) of both stringers. These marks include the cut marks for the bottom and top ends of the stringers and the “screw set points” that indicate where the tread modules will be attached to the stringers. The template is reversible, with the mirrored markings on both sides, so that the process for one stringer is the mirror image of the other stringer.
    Type: Grant
    Filed: January 25, 2018
    Date of Patent: July 28, 2020
    Inventors: Steven A. Mitchell, Paul E. Sanders, Jonathan D. Mitchell
  • Patent number: 8886001
    Abstract: An optical sensor formed from an optical waveguide having at least one core surrounded by a cladding and a large diameter generally D-shaped portion is disclosed. Axial or compressive strain across the D-shaped cross section may be determined by measuring the change in polarization or birefringence of the light output from the sensor. A layer responsive to a parameter may be disposed on a flat portion of the D-shaped portion of the sensor. The refractive index of the layer changes and/or the layer applies a strain on the sensor in response to the parameter. Changes in the refractive index of the layer alters the light output from the sensor, which is measured over time and correlated to the parameter.
    Type: Grant
    Filed: December 6, 2011
    Date of Patent: November 11, 2014
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Alan D. Kersey, Paul E. Sanders, Martin A. Putnam, Edward Michael Dowd
  • Patent number: 8712202
    Abstract: Methods and apparatus relate to optical fibers suitable for use in sensing applications exposed to radiation environments. The fibers include a core of pure silica or chlorine doped silica surrounded by a fluorinated silica cladding. These glasses for the core and cladding utilize dopants that resist radiation-induced attenuation. A two step process for forming the cladding can achieve necessary concentrations of the fluorine by performing a soot deposition process in a different environment from a consolidation process where the soot is sintered into a glass. Concentration of fluorine doped into the cladding layer enables obtaining a numerical aperture that confines a mono-mode of the fiber to resist bend-induced attenuation. Dimensions of the fiber further facilitate bending ability of the fiber.
    Type: Grant
    Filed: September 28, 2010
    Date of Patent: April 29, 2014
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Paul E. Sanders, Edward M. Dowd, Brian J. Pike
  • Patent number: 8689587
    Abstract: Methods to fabricate an optical preform for draw into Polarization Maintaining (PM) or Polarizing (PZ) optical fiber are provided. The methods involve assembly of pre-shaped and pieced together bulk glass elements into preforms (“assembled preforms”) for simultaneous fusing and drawing into optical fiber. These preforms form a stress-induced birefringent optical core when drawn to fiber.
    Type: Grant
    Filed: September 12, 2012
    Date of Patent: April 8, 2014
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Edward M. Dowd, Paul E. Sanders
  • Patent number: 8552360
    Abstract: Methods and apparatus for the active control of a wavelength-swept light source used to interrogate optical elements having characteristic wavelengths distributed across a wavelength range are provided.
    Type: Grant
    Filed: May 30, 2007
    Date of Patent: October 8, 2013
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Domino Taverner, Trevor MacDougall, Paul E. Sanders
  • Publication number: 20130167594
    Abstract: Methods to fabricate an optical preform for draw into Polarization Maintaining (PM) or Polarizing (PZ) optical fiber are provided. The methods involve assembly of pre-shaped and pieced together bulk glass elements into preforms (“assembled preforms”) for simultaneous fusing and drawing into optical fiber. These preforms form a stress-induced birefringent optical core when drawn to fiber.
    Type: Application
    Filed: September 12, 2012
    Publication date: July 4, 2013
    Inventors: Edward M. Dowd, Paul E. Sanders
  • Patent number: 8307603
    Abstract: Methods and tooling for constructing a stair unit are provided. The methods incorporate tooling and tables to create templates (two for each tread) that, when laid along a series of hypotenuse marks on the stringer from the table, will dictate the geometry, cutting, and fitting to the treads, without using a framing square. Brackets are used to conjoin the stringer, tread material, and tread framing so that the tread width is not limited by the lack of strength of the tread material. The methods then incorporate the bracket in a tread module to provide further convenience and sequencing options for the assembly of the stair unit. An alternate method combines aspects of the template and the bracket to hold continuous support for the tread, accomplishing a cut stringer look. The result is less time and material expense with better strength, fit and finish.
    Type: Grant
    Filed: May 14, 2010
    Date of Patent: November 13, 2012
    Assignee: Ascend Stair Company
    Inventors: Steve A. Mitchell, Paul E. Sanders, Richard M. Vose, William K. Henthorn, Jonathan D. Mitchell
  • Patent number: 8286450
    Abstract: Methods to fabricate an optical preform for draw into Polarization Maintaining (PM) or Polarizing (PZ) optical fiber are provided. The methods involve assembly of pre-shaped and pieced together bulk glass elements into preforms (“assembled preforms”) for simultaneous fusing and drawing into optical fiber. These preforms form a stress-induced birefringent optical core when drawn to fiber.
    Type: Grant
    Filed: February 28, 2006
    Date of Patent: October 16, 2012
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Edward M. Dowd, Paul E. Sanders
  • Patent number: 8244088
    Abstract: A large diameter optical waveguide, grating, and laser includes a waveguide having at least one core surrounded by a cladding, the core propagating light in substantially a few transverse spatial modes; and having an outer waveguide dimension of said waveguide being greater than about 0.3 mm. At least one Bragg grating may be impressed in the waveguide. The waveguide may be axially compressed which causes the length of the waveguide to decrease without buckling. The waveguide may be used for any application where a waveguide needs to be compression tuned. Also, the waveguide exhibits lower mode coupling from the core to the cladding and allows for higher optical power to be used when writing gratings without damaging the waveguide. The waveguide may resemble a short “block” or a longer “cane” type, depending on the application and dimensions used.
    Type: Grant
    Filed: December 9, 2011
    Date of Patent: August 14, 2012
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Martin A. Putnam, Robert N. Brucato, Paul E. Sanders, Timothy J. Bailey, James M. Sullivan, Alan D. Kersey
  • Publication number: 20120082175
    Abstract: A large diameter optical waveguide, grating, and laser includes a waveguide having at least one core surrounded by a cladding, the core propagating light in substantially a few transverse spatial modes; and having an outer waveguide dimension of said waveguide being greater than about 0.3 mm. At least one Bragg grating may be impressed in the waveguide. The waveguide may be axially compressed which causes the length of the waveguide to decrease without buckling. The waveguide may be used for any application where a waveguide needs to be compression tuned. Also, the waveguide exhibits lower mode coupling from the core to the cladding and allows for higher optical power to be used when writing gratings without damaging the waveguide. The waveguide may resemble a short “block” or a longer “cane” type, depending on the application and dimensions used.
    Type: Application
    Filed: December 9, 2011
    Publication date: April 5, 2012
    Inventors: Martin A. Putnam, Robert N. Brucato, Paul E. Sanders, Timothy J. Bailey, James M. Sullivan, Alan D. Kersey
  • Publication number: 20120076452
    Abstract: An optical sensor formed from an optical waveguide having at least one core surrounded by a cladding and a large diameter generally D-shaped portion is disclosed. Axial or compressive strain across the D-shaped cross section may be determined by measuring the change in polarization or birefringence of the light output from the sensor. A layer responsive to a parameter may be disposed on a flat portion of the D-shaped portion of the sensor. The refractive index of the layer changes and/or the layer applies a strain on the sensor in response to the parameter. Changes in the refractive index of the layer alters the light output from the sensor, which is measured over time and correlated to the parameter.
    Type: Application
    Filed: December 6, 2011
    Publication date: March 29, 2012
    Inventors: Alan D. Kersey, Paul E. Sanders, Martin A. Putnam, Edward Michael Dowd
  • Patent number: 8111963
    Abstract: A large diameter optical waveguide, grating, and laser includes a waveguide having at least one core surrounded by a cladding, the core propagating light in substantially a few transverse spatial modes; and having an outer waveguide dimension of said waveguide being greater than about 0.3 mm. At least one Bragg grating may be impressed in the waveguide. The waveguide may be axially compressed which causes the length of the waveguide to decrease without buckling. The waveguide may be used for any application where a waveguide needs to be compression tuned. Also, the waveguide exhibits lower mode coupling from the core to the cladding and allows for higher optical power to be used when writing gratings without damaging the waveguide. The waveguide may resemble a short “block” or a longer “cane” type, depending on the application and dimensions used.
    Type: Grant
    Filed: August 27, 2008
    Date of Patent: February 7, 2012
    Assignee: Weatherford/LAMB, Inc.
    Inventors: Martin A. Putnam, Robert N. Brucato, Paul E. Sanders, Timothy J. Bailey, James M. Sullivan, Alan D. Kersey
  • Patent number: 8073293
    Abstract: An optical sensor formed from an optical waveguide having at least one core surrounded by a cladding and a large diameter generally D-shaped portion is disclosed. Axial or compressive strain across the D-shaped cross section may be determined by measuring the change in polarization or birefringence of the light output from the sensor. A layer responsive to a parameter may be disposed on a flat portion of the D-shaped portion of the sensor. The refractive index of the layer changes and/or the layer applies a strain on the sensor in response to the parameter. Changes in the refractive index of the layer alters the light output from the sensor, which is measured over time and correlated to the parameter.
    Type: Grant
    Filed: January 13, 2004
    Date of Patent: December 6, 2011
    Assignee: Weatherford, LAMB, Inc.
    Inventors: Alan D. Kersey, Paul E. Sanders, Martin A. Putnam, Edward Michael Dowd
  • Publication number: 20110091175
    Abstract: Methods and apparatus relate to optical fibers suitable for use in sensing applications exposed to radiation environments. The fibers include a core of pure silica or chlorine doped silica surrounded by a fluorinated silica cladding. These glasses for the core and cladding utilize dopants that resist radiation-induced attenuation. A two step process for forming the cladding can achieve necessary concentrations of the fluorine by performing a soot deposition process in a different environment from a consolidation process where the soot is sintered into a glass. Concentration of fluorine doped into the cladding layer enables obtaining a numerical aperture that confines a mono-mode of the fiber to resist bend-induced attenuation. Dimensions of the fiber further facilitate bending ability of the fiber.
    Type: Application
    Filed: September 28, 2010
    Publication date: April 21, 2011
    Inventors: PAUL E. SANDERS, Eward M. Dowd, Brian J. Pike
  • Patent number: 7907807
    Abstract: Methods and apparatus provide for birefringent waveguides suitable for optical systems exhibiting polarization dependence such as interferometer sensors including Sagnac interferometric fiber optic gyroscopes (IFOG). The waveguides, for some embodiments, may offer single polarization performance over lengths of about a kilometer or more due to polarization dependent attenuation. According to some embodiments, the waveguides incorporate a pure silica core for resistance to radiation-induced attenuation (RIA).
    Type: Grant
    Filed: October 14, 2008
    Date of Patent: March 15, 2011
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Paul E. Sanders, Edward M. Dowd, Andrew S. Kuczma, Trevor W. MacDougall, Brian J. Pike
  • Patent number: 7805039
    Abstract: Methods and apparatus relate to optical fibers suitable for use in sensing applications exposed to radiation environments. The fibers include a core of pure silica or chlorine doped silica surrounded by a fluorinated silica cladding. These glasses for the core and cladding utilize dopants that resist radiation-induced attenuation. A two step process for forming the cladding can achieve necessary concentrations of the fluorine by performing a soot deposition process in a different environment from a consolidation process where the soot is sintered into a glass. Concentration of fluorine doped into the cladding layer enables obtaining a numerical aperture that confines a mono-mode of the fiber to resist bend-induced attenuation. Dimensions of the fiber further facilitate bending ability of the fiber.
    Type: Grant
    Filed: May 4, 2007
    Date of Patent: September 28, 2010
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Paul E. Sanders, Edward M. Dowd, Brian J. Pike
  • Patent number: 7697144
    Abstract: A method and apparatus for reducing the thermal induced errors in an IFOG system. The apparatus including a highly thermally conductive material configured to encapsulate a waveguide of an interferometric fiber optic gyroscope (IFOG). The highly thermally conductive material more evenly distributes thermal changes encountered by a sensing coil of the IFOG thereby substantially reducing errors in the IFOG system.
    Type: Grant
    Filed: September 25, 2007
    Date of Patent: April 13, 2010
    Assignee: Weatherford/Lamb, Inc.
    Inventors: Paul E. Sanders, Andrew S. Kuczma
  • Publication number: 20090310925
    Abstract: Methods and apparatus provide for birefringent waveguides suitable for optical systems exhibiting polarization dependence such as interferometer sensors including Sagnac interferometric fiber optic gyroscopes (IFOG). The waveguides, for some embodiments, may offer single polarization performance over lengths of about a kilometer or more due to polarization dependent attenuation. According to some embodiments, the waveguides incorporate a pure silica core for resistance to radiation-induced attenuation (RIA).
    Type: Application
    Filed: October 14, 2008
    Publication date: December 17, 2009
    Inventors: PAUL E. SANDERS, Edward M. Dowd, Andrew S. Kuczma, Trevor W. MacDougall, Brian J. Pike
  • Publication number: 20090079989
    Abstract: A method and apparatus for reducing the thermal induced errors in an IFOG system. The apparatus including a highly thermally conductive material configured to encapsulate a waveguide of an interferometric fiber optic gyroscope (IFOG). The highly thermally conductive material more evenly distributes thermal changes encountered by a sensing coil of the IFOG thereby substantially reducing errors in the IFOG system.
    Type: Application
    Filed: September 25, 2007
    Publication date: March 26, 2009
    Inventors: PAUL E. SANDERS, ANDREW S. KUCZMA
  • Patent number: D646955
    Type: Grant
    Filed: June 17, 2010
    Date of Patent: October 18, 2011
    Assignee: Ascend Stair Company
    Inventors: Paul E. Sanders, Steven A. Mitchell, Richard M. Vose