Patents by Inventor Craig R. Schardt

Craig R. Schardt 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: 7256057
    Abstract: Methods for producing phosphor based light sources are disclosed. One method includes measuring an excitation light output of an LED, forming a plurality of phosphor film articles, measuring an optical characteristic of each of the plurality of phosphor film articles, selecting one of the plurality of phosphor film articles based on the LED excitation light output and measured optical characteristic of the one of the plurality of phosphor film articles to obtain a desired emission light output from the phosphor film article when the phosphor film article is positioned to receive the excitation light, and positioning the phosphor film article to receive the excitation light.
    Type: Grant
    Filed: September 11, 2004
    Date of Patent: August 14, 2007
    Assignee: 3M Innovative Properties Company
    Inventors: Craig R. Schardt, John A. Wheatley, Michael A. Meis
  • Patent number: 7253128
    Abstract: Ceramics comprising (i) at least one of Nb2O5 or Ta2O5 and (ii) at least two of (a) Al2O3, (b) Y2O3, or (c) at least one of ZrO2 or HfO2. Embodiments of ceramics according to the present invention can be made, formed as, or converted into optical waveguides, glass beads, articles (e.g., plates), fibers, particles (e.g., abrasive particles), and thin coatings.
    Type: Grant
    Filed: September 25, 2006
    Date of Patent: August 7, 2007
    Assignee: 3M Innovative Properties Company
    Inventors: Anatoly Z. Rosenflanz, Craig R. Schardt
  • Patent number: 7232650
    Abstract: A method for making an inorganic structure including: (a) applying a photoreactive composition to a substrate, wherein the composition includes: a reactive species, a photoinitiator system, and a plurality of substantially inorganic colloidal particles, wherein the particles have an average particle size of less than about 300 nm; (b) photopatterning the composition to define a structure; and (c) subjecting the structure to elevated temperature for a time sufficient to pyrolyze the reactive species and to at least partially fuse the particles.
    Type: Grant
    Filed: October 2, 2002
    Date of Patent: June 19, 2007
    Assignee: 3M Innovative Properties Company
    Inventors: Catherine A. Leatherdale, Craig R. Schardt, D. Scott Thompson, Wendy L. Thompson
  • Patent number: 7204630
    Abstract: An illumination system including a light source, light guides coupled to the light source, each including an input surface and an output surface, emissive material positioned to receive light from at least one light guide, and a first interference reflector positioned between the emissive material and the output surfaces of the light guides is disclosed. The light source emits light having a first optical characteristic. The emissive material emits light having a second optical characteristic when illuminated with light having the first optical characteristic. The first interference reflector substantially transmits light having the first optical characteristic and substantially reflects light having the second optical characteristic.
    Type: Grant
    Filed: June 30, 2004
    Date of Patent: April 17, 2007
    Assignee: 3M Innovative Properties Company
    Inventors: Craig R. Schardt, John C. Schultz, Andrew J. Ouderkirk, John A. Wheatley, Michael F. Weber, Kenneth A. Epstein, James E. Watson
  • Patent number: 7182498
    Abstract: An illumination system including a light source, light guides coupled to the light source, each including an input surface and an output surface, emissive material positioned to receive light from at least one light guide, and an interference reflector positioned such that the emissive material is between the output surfaces of the light guides and the interference reflector is disclosed. The light source emits light having a first optical characteristic. The emissive material emits light having a second optical characteristic when illuminated with light having the first optical characteristic. The interference reflector substantially transmits light having the second optical characteristic and substantially reflects light having the first optical characteristic.
    Type: Grant
    Filed: June 30, 2004
    Date of Patent: February 27, 2007
    Assignee: 3M Innovative Properties Company
    Inventors: John C. Schultz, Andrew J. Ouderkirk, Craig R. Schardt, John A. Wheatley, Michael F. Weber, Kenneth A. Epstein, James E. Watson
  • Patent number: 7141523
    Abstract: Ceramics comprising (i) at least one of Nb2O5 or Ta2O5 and (ii) at least two of (a) Al2O3, (b) REO, or (c) at least one of ZrO2 or HfO2. Embodiments of ceramics according to the present invention can be made, formed as, or converted into optical waveguides, glass beads, articles (e.g., plates), fibers, particles (e.g., abrasive particles), and thin coatings.
    Type: Grant
    Filed: September 18, 2003
    Date of Patent: November 28, 2006
    Assignee: 3M Innovative Properties Company
    Inventors: Anatoly Z. Rosenflanz, Craig R. Schardt
  • Patent number: 7141522
    Abstract: Ceramics comprising (i) at least one of Nb2O5 or Ta2O5 and (ii) at least two of (a) Al2O3, (b) Y2O3, or (c) at least one of ZrO2 or HfO2. Embodiments of ceramics according to the present invention can be made, formed as, or converted into optical waveguides, glass beads, articles (e.g., plates), fibers, particles (e.g., abrasive particles), and thin coatings.
    Type: Grant
    Filed: September 18, 2003
    Date of Patent: November 28, 2006
    Assignee: 3M Innovative Properties Company
    Inventors: Anatoly Z. Rosenflanz, Craig R. Schardt
  • Patent number: 6879609
    Abstract: A thulium doped silicate glass composition which contains SiO2, Al2O3, and La2O3 emits visible and UV light when excited by infrared light. The glass composition may also contain GeO2 and Er2O3. When excited by infrared light of about 1060 nm, the glass emits visible light at fluorescent transitions of the Tm3+ ions with major broad features at 365, 455, 472, 651, and 791 nm.
    Type: Grant
    Filed: June 27, 2003
    Date of Patent: April 12, 2005
    Assignee: 3M Innovative Properties Company
    Inventors: Craig R. Schardt, Mark T. Anderson, James R. Onstott, Lowell C. Frank
  • Publication number: 20040213539
    Abstract: The invention provides optical waveguides comprising a glass doped with a rare earth dopant on a surface of the substrate, wherein the glass comprises (a) Al2O3, at least one of REO or Y2O3, and at least one of ZrO2 or HfO2, wherein at least 80 percent by weight of the glass collectively comprises the Al2O3, at least one of REO or Y2O3, and at least one of ZrO2 or HfO2, based on the total weight of the glass; (b) Al2O3, at least one of REO or Y2O3, and at least one of ZrO2 or HfO2, wherein at least 70 percent by weight of the glass collectively comprises the Al2O3, at least one of REO or Y2O3, and at least one of ZrO2 or HfO2, and wherein the glass contains not more than 20 percent by weight SiO2 and not more than 20 percent by weight B2O3, based on the total weight of the glass; or (c) at least 40 percent by weight Al2O3, based on the total weight of the glass, and a first metal oxide other than Al2O3, wherein the Al2O3 and the first metal oxide, collectively comprise at least 80 percent by weight of the gla
    Type: Application
    Filed: April 28, 2003
    Publication date: October 28, 2004
    Inventors: Mark T. Anderson, Kenton D. Budd, Anatoly Z. Rosenflanz, Craig R. Schardt
  • Patent number: 6757474
    Abstract: A co-doped silicate optical waveguide having a core including silica, and oxides of aluminum, germanium, erbium and thulium. The composition concentrations are: Er from 15 ppm to 3000 ppm; Al from 0.5 mol % to 12 mol %; Tm from 15 ppm to 10000 ppm; and Ge from 1 mol % to 20 mol %. In a specific embodiment, the concentration of Er is from 150 ppm to 1500 ppm; Al is from 2 mol % to 8 mol %; and Tm is from 15 ppm to 3000 ppm. A boron-less cladding surrounds the core.
    Type: Grant
    Filed: November 19, 2002
    Date of Patent: June 29, 2004
    Assignee: 3M Innovative Properties Company
    Inventors: Mark T. Anderson, Craig R. Schardt, James R. Onstott, Kenton D. Budd
  • Patent number: 6742939
    Abstract: A fusion splice including a first optical fiber having a first MFD and a first MFD expansion rate. The splice further includes a second fiber having a second MFD and a second MFD expansion rate, wherein the second MFD is lower than the first MFD. The second fiber comprises a core, a cladding radially surrounding the core, and a zone of high-concentration of fluorine between the core and the cladding. The rate of MFD expansion of the first fiber is less than the rate of MFD expansion of the second fiber during the fusion splicing operation.
    Type: Grant
    Filed: May 30, 2002
    Date of Patent: June 1, 2004
    Assignee: 3M Innovative Properties Company
    Inventors: Craig R. Sykora, James R. Onstott, Mark T. Anderson, Craig R. Schardt, Lawrence J. Donalds, Alessandra O. Chiareli
  • Patent number: 6724972
    Abstract: An optical waveguide including a core having silica, Al, a non-fluorescent rare-earth ion, Ge, Er, and Tm. The non-fluorescent rare-earth ion may be La. Exemplary compositions concentrations are Er is from 15 ppm to 3000 ppm, Al is from 0.5 mol % to 12 mol %, La is less than or equal to 2 mol %, Tm is from 15 ppm to 10,000 ppm; and the Ge is less than or equal to 15 mol %. The core may further include F. An exemplary concentration of F is less than or equal to 6 anion mol %.
    Type: Grant
    Filed: December 31, 2001
    Date of Patent: April 20, 2004
    Assignee: 3M Innovative Properties Company
    Inventors: Mark T. Anderson, Craig R. Schardt, James R. Onstott, Kenton D. Budd
  • Publication number: 20040068023
    Abstract: A multi-photon reactive composition including: (a) at least one reactive species; and (b) multi-photon photoinitiator system; and (c) a plurality of substantially inorganic particles, wherein the particles have an average particle size of less than about 10 microns in diameter.
    Type: Application
    Filed: October 2, 2002
    Publication date: April 8, 2004
    Applicant: 3M Innovative Properties Company
    Inventors: Catherine A. Leatherdale, Craig R. Schardt, D. Scott Thompson, Wendy L. Thompson
  • Publication number: 20040067450
    Abstract: A method for making an inorganic structure including:
    Type: Application
    Filed: October 2, 2002
    Publication date: April 8, 2004
    Applicant: 3M Innovative Properties Company
    Inventors: Catherine A. Leatherdale, Craig R. Schardt, D. Scott Thompson, Wendy L. Thompson
  • Publication number: 20040037538
    Abstract: A thulium doped silicate glass composition which contains SiO2, Al2O3, and La2O3 emits visible and UV light when excited by infrared light. The glass composition may also contain GeO2 and Er2O3. When excited by infrared light of about 1060 nm, the glass emits visible light at fluorescent transitions of the Tm3+ ions with major broad features at 365, 455, 472, 651, and 791 nm.
    Type: Application
    Filed: June 27, 2003
    Publication date: February 26, 2004
    Inventors: Craig R. Schardt, Mark T. Anderson, James R. Onstott, Lowell C. Frank
  • Patent number: 6690868
    Abstract: An optical article including a core; at least one cladding layer; and a narrow fluorine reservoir between the core and the cladding layer. The fluorine reservoir has a higher concentration of fluorine than either the cladding layer or the core. One particular embodiment includes a core including a halide-doped silicate glass that comprises approximately the following in cation-plus-halide mole percent 0.25-5 mol % Al2O3, 0.05-1.5 mol % La2O3, 0.0005-0.75 mol % Er2O3, 0.5-6 mol % F, 0-1 mol % Cl.
    Type: Grant
    Filed: August 21, 2001
    Date of Patent: February 10, 2004
    Assignee: 3M Innovative Properties Company
    Inventors: Mark T. Anderson, Craig R. Schardt, James R. Onstott, Lawrence J. Donalds, Alessandra O. Chiareli
  • Publication number: 20030156818
    Abstract: An optical waveguide including a core having silica, Al, a non-fluorescent rare-earth ion, Ge, Er, and Tm. The non-fluorescent rare-earth ion may be La. Exemplary compositions concentrations are Er is from 15 ppm to 3000 ppm, Al is from 0.5 mol % to 12 mol %, La is less than or equal to 2 mol %, Tm is from 15 ppm to 10,000 ppm; and the Ge is less than or equal to 15 mol %. The core may further include F. An exemplary concentration of F is less than or equal to 6 anion mol %.
    Type: Application
    Filed: December 31, 2001
    Publication date: August 21, 2003
    Inventors: Mark T. Anderson, Craig R. Schardt, James R. Onstott, Kenton D. Budd
  • Publication number: 20030156318
    Abstract: A method of making an erbium-doped optical fiber for use in optical amplifiers according to the present invention includes the step of providing a substrate tube. High purity silica-based cladding layers are deposited on the inside of the tube. A core glass that includes silica, Al, a non-fluorescent rare-earth ion, Ge, Er, and Tm is then deposited in the tube. The non-fluorescent rare-earth ion may be La and the core may further include F. The tube is then collapsed to form a preform. Finally, the preform is drawn to yield optical fiber.
    Type: Application
    Filed: December 31, 2001
    Publication date: August 21, 2003
    Inventors: Mark T. Anderson, Craig R. Schardt, James R. Onstott, Kent D. Budd
  • Publication number: 20030147620
    Abstract: A germanium-free co-doped silicate optical waveguide in accordance with the present invention includes a core material comprising silica, and oxides of aluminum, lanthanum, erbium and thulium, wherein the concentration of Er is from 15 ppm to 3000 ppm; Al is from 0.5 mol % to 15 mol %; La is less than 2 mol %; and Tm is from 150 ppm to 10000 ppm. In an exemplary specific embodiment the concentration of Al is from 4 mol % to 10 mol %; and the concentration of Tm is from 150 ppm to 3000 ppm. The core may further include F. In an exemplary embodiment, the concentration of F is less than or equal to 6 mol %. The waveguide may be an optical fiber, a shaped fiber or other light-guiding waveguides. An amplifier according to the present invention includes the optical fiber described above.
    Type: Application
    Filed: November 19, 2002
    Publication date: August 7, 2003
    Applicant: 3M Innovative Properties Company
    Inventors: Mark T. Anderson, Craig R. Schardt, James R. Onstott, Kenton D. Budd
  • Publication number: 20030145629
    Abstract: A method for manufacturing an optical fiber, the method including the steps of providing a substrate tube; depositing a boron-free cladding layer; depositing a core comprising a glass including silica, and oxides of Al, Ge, Er, and Tm; collapsing the substrate tube to form a preform; and drawing the preform to yield optical fiber.
    Type: Application
    Filed: November 19, 2002
    Publication date: August 7, 2003
    Applicant: 3M Innovative Properties Company
    Inventors: Mark T. Anderson, Craig R. Schardt, James R. Onstott, Kenton D. Budd