Patents by Inventor Holly Comanzo

Holly Comanzo 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: 20220291414
    Abstract: The use of scintillator compositions having a cubic garnet structure for gamma detection in downhole oil and gas explorations is provided. Specifically, two primary compositions of interest are disclosed, Ca2LnHf2Al3O12 and NaLn2Hf2Al3O12, where Ln is Y, Gd, Tb, or La. Under gamma ray excitation, the electron-hole pairs produced in the garnet lattice structure are trapped by an activator ion to yield an efficient emission in the visible portion of the electromagnetic spectrum. The cubic garnet structure enables the use of these materials as ceramic scintillators with considerable advantages over related single crystals in various ways as disclosed herein, including reduction in cost and improvement in overall performance and durability.
    Type: Application
    Filed: March 12, 2021
    Publication date: September 15, 2022
    Applicant: Baker Hughes Oilfield Operations LLC
    Inventors: Alok M. Srivastava, Helene Claire Climent, Holly A. Comanzo
  • Patent number: 7990040
    Abstract: A fluorescent lamp including a phosphor layer including (Y1-x-yGdx)AlO3:EU3+y, wherein 0.4?x?0.7 and 0?y?0.1, and at least one of each of a green and blue emitting phosphor. The resulting lamp will exhibit a white light having a color rendering index of preferably 90 or higher with a correlated color temperature of from 2500 to 10000 Kelvin. The use of (Y1-x-yGdx)AlO3:Eu3+y in phosphor blends of lamps results in high CRI light sources with increased stability and acceptable lumen maintenance over, the course of the lamp life.
    Type: Grant
    Filed: June 11, 2008
    Date of Patent: August 2, 2011
    Assignee: General Electric Company
    Inventors: Alok Srivastava, Holly Comanzo, Venkatesan Manivannan
  • Patent number: 7635203
    Abstract: A lighting apparatus (10) comprises a light engine (12) producing ultra violet radiation. An enclosure (14) surrounds a radiation generating area of the light engine (12) to encompass the radiation. At least one wall (28) of the enclosure (14) is substantially reflective of the ultraviolet radiation. The enclosure (14) includes a replaceable top portion (30) which includes a phosphor portion (32). The phosphor portion (32) is spaced from the radiation generating area of the light engine (12) by a height of the enclosure (14).
    Type: Grant
    Filed: May 5, 2004
    Date of Patent: December 22, 2009
    Assignee: Lumination LLC
    Inventors: Stanton E. Weaver, Jr., Thomas E. Stecher, Anant A. Setlur, Alok M. Srivastava, Holly A. Comanzo, Charles A. Becker, Thomas F. Soules, Chen-Lun Hsing Chen, Rebecca A. Bompiedi
  • Publication number: 20090309482
    Abstract: A fluorescent lamp including a phosphor layer including (Y1-x-yGdx)AlO3:EU3+y, wherein 0.4?x?0.7 and 0?y?0.1, and at least one of each of a green and blue emitting phosphor. The resulting lamp will exhibit a white light having a color rendering index of preferably 90 or higher with a correlated color temperature of from 2500 to 10000 Kelvin. The use of (Y1-x-yGdx)AlO3:Eu3+y in phosphor blends of lamps results in high CRI light sources with increased stability and acceptable lumen maintenance over, the course of the lamp life.
    Type: Application
    Filed: June 11, 2008
    Publication date: December 17, 2009
    Applicant: GENERAL ELECTRIC COMPANY
    Inventors: Alok Srivastava, Holly Comanzo, Venkatesan Manivannan
  • Publication number: 20080171229
    Abstract: The current invention provides a persistent phosphor blend, along with techniques for making and using the blend. The persistent phosphor blend consists of at least one persistent phosphor combined with at least one other phosphor, where the excitation spectra of the one or more other phosphors overlap the emission spectra of the one or more persistent phosphors. The choice of the phosphors used allows the decay time and emission colors to be tuned for the specific application. In another embodiment, the invention provides a method for making persistent phosphor blends with tunable colors. In yet another embodiment, applications for such a persistent phosphor blend are provided.
    Type: Application
    Filed: January 17, 2007
    Publication date: July 17, 2008
    Inventors: Holly Comanzo, William Beers, Alok Srivastava
  • Publication number: 20070258229
    Abstract: A lighting apparatus (10) comprises a light engine (12) producing ultra violet radiation. An enclosure (14) surrounds a radiation generating area of the light engine (12) to encompass the radiation. At least one wall (28) of the enclosure (14) is substantially reflective of the ultraviolet radiation. The enclosure (14) includes a replaceable top portion (30) which includes a phosphor portion (32). The phosphor portion (32) is spaced from the radiation generating area of the light engine (12) by a height of the enclosure (14).
    Type: Application
    Filed: May 5, 2004
    Publication date: November 8, 2007
    Inventors: Stanton Weaver, Thomas Stecher, Anant Setlur, Alok Srivastava, Holly Comanzo, Charles Becker, Thomas Soules, Chen-Lun Hsing, Rebecca Bompiedi
  • Publication number: 20070131874
    Abstract: A scintillator composition is described, including a matrix material and an activator. The matrix material includes at least one alkali metal or thallium; at least one alkaline earth metal or lead; and at least one halide compound. The activator is usually cerium, praseodymium, or mixtures thereof. Radiation detectors which include the scintillator composition are also described. Methods for detecting high-energy radiation also form part of this disclosure.
    Type: Application
    Filed: December 12, 2005
    Publication date: June 14, 2007
    Inventors: Alok Srivastava, Holly Comanzo, Steven Duclos, Lucas Clarke, William Beers, Qun Deng
  • Publication number: 20070131866
    Abstract: Scintillator materials based on certain types of activated alkali metal rare earth halide materials are described. In one embodiment, the material contains CsLaBr4 with Ce(III) ions substituted for a portion of the La component. The scintillator or other detector materials can be in monocrystalline or polycrystalline form. Radiation detectors that use the scintillators are also described, as are related methods for detecting high-energy radiation.
    Type: Application
    Filed: December 14, 2005
    Publication date: June 14, 2007
    Inventors: Alok Srivastava, William Beers, Holly Comanzo
  • Publication number: 20070114561
    Abstract: Phosphor compositions having the formula (Sr,Ca,Ba)1?xEuxAl2?yMzO4?3/2yFz, where M is Mg and/or Zn; 0.001<x<0.15, 0?y?0.3, and 0<z?0.2; and light emitting devices including a light source and the above phosphor. Also disclosed are blends of (Sr,Ca,Ba)1?xEuxAl2?yMzO4?3/2yFz and one or more additional phosphors and light emitting devices incorporating the same.
    Type: Application
    Filed: November 22, 2005
    Publication date: May 24, 2007
    Inventors: Holly Comanzo, Alok Srivastava, Anant Setlur
  • Publication number: 20070090764
    Abstract: An electron emissive material comprises an alkaline earth metal halide composition and operable to emit electrons on excitation.
    Type: Application
    Filed: October 20, 2005
    Publication date: April 26, 2007
    Inventors: Gopi Ramachandran, Alok Srivastava, Timothy Sommerer, Suchismita Sanyal, Prasanth Nammalwar, Holly Comanzo, William Beers, Madras Shankar
  • Publication number: 20070045650
    Abstract: Phosphor compositions having the formula EueMmAaGgQqNnXx, where M is at least one of Be, Mg, Ca, Sr, Ba, Cd, Sn, Pb or Zn; A is at least one of B, Al, Ga, In, Bi, Sc, Y, La or a rare earth element other than Eu; G is at least one of Si or Ge; Q is at least one of O, S, and Se; X is at least one of F, Cl, Br and I; 0<e<2, 0<m<2, 0?a<1, 0<g<1, 0<q<4, 0?n<2, 0?x<2, and 2e+2m+3a+4g=2q+3n+x; and light emitting devices including a light source and the above phosphor. Also disclosed are blends of EueMmAaGgQqNnXx and one or more additional phosphors and light emitting devices incorporating the same.
    Type: Application
    Filed: August 31, 2005
    Publication date: March 1, 2007
    Inventors: Dan Hancu, Mukunda Adyam, Emil Radkov, Prasanth Kumar, Anant Setlur, Alok Srivastava, Holly Comanzo, Gopi Chandran, Madras Shankar
  • Publication number: 20070001118
    Abstract: A scintillator composition includes a matrix material, where the matrix material includes an alkaline earth metal and a lanthanide halide. The scintillator composition further includes an activator ion, where the activator ion is a trivalent ion. In one embodiment, the scintillator composition includes a matrix material represented by A2LnX7, where A includes an alkaline earth metal, Ln includes a lanthanide ion, and X includes a halide ion. In another embodiment, the scintillator composition includes a matrix material represented by ALnX5, where A includes an alkaline earth metal, Ln includes a lanthanide ion, and X includes a halide ion. In these embodiments, the scintillator composition includes an activator ion, where the activator ion includes cerium, or bismuth, or praseodymium, or combinations thereof.
    Type: Application
    Filed: June 29, 2005
    Publication date: January 4, 2007
    Inventors: Alok Srivastava, Steven Duclos, Lucas Clarke, Holly Comanzo, Qun Deng
  • Publication number: 20060284196
    Abstract: Phosphor compositions having the formula LlMmAaGgPpQqNnZz:Ce3+, where L is at least one of Li, Na, K, Rb, and/or Cs; M is at least one of Be, Mg, Ca, Sr, Ba, Mn, Sn, Pb, and/or Zn; A is at least one of Bi, Sb, In, Sc, Y, and/or any of the rare earth elements; G is Si and/or Ge; Q is at least one of O, S, and/or Se; Z is at least one of F, Cl, Br, and/or I; and wherein 0?l?1, 2.5?m?5, 1.5?a?2.5, 2?g?2.5, 0?p?1, 0?n?1, 0?z?1, and l+2m+3a+4g+5p=2q+3n+z; and light emitting devices including a light source and the above phosphor. Also disclosed are blends of LlMmAaGgPpQqNnZz:Ce3+ and one or more additional phosphors and light emitting devices incorporating the same.
    Type: Application
    Filed: November 23, 2005
    Publication date: December 21, 2006
    Inventors: Anant Setlur, Alok Srivastava, Holly Comanzo, Yan Gao, Emil Radkov
  • Publication number: 20060237654
    Abstract: Scintillator materials based on certain types of halide-lanthanide matrix materials are described. In one embodiment, the matrix material contains a mixture of lanthanide halides, i.e., a solid solution of at least two of the halides, such as lanthanum chloride and lanthanum bromide. In another embodiment, the matrix material is based on lanthanum iodide alone, which must be substantially free of lanthanum oxyiodide. The scintillator materials, which can be in monocrystalline or polycrystalline form, also include an activator for the matrix material, e.g., cerium. To further improve the stopping power and the scintillating efficiency of these halide scintillators, the addition of bismuth is disclosed. Radiation detectors that use the scintillators are also described, as are related methods for detecting high-energy radiation.
    Type: Application
    Filed: December 20, 2005
    Publication date: October 26, 2006
    Inventors: Alok Srivastava, Steven Duclos, Lucas Clarke, Holly Comanzo, Qun Deng
  • Publication number: 20060231851
    Abstract: Disclosed are phosphor compositions having the formula (RE1-yCey)Mg2-xLixSi3-xPxO12, where RE is at least one of Sc, Lu, Gd, Y, and Tb, 0.0001<x<0.1 and 0.001<y<0.1. When combined with at least one additional phosphor and subjected to radiation from a blue or UV LED, these phosphors can provide white light sources with good color quality having high CRI over a large color temperature range. Also disclosed are blends of the above phosphors and additional phosphors.
    Type: Application
    Filed: April 19, 2005
    Publication date: October 19, 2006
    Inventors: Anant Setlur, Alok Srivastava, Holly Comanzo
  • Publication number: 20060226368
    Abstract: Scintillator compositions are described. They include a matrix material containing at least one lanthanide halide and at least one alkali metal. The compositions also include an activator for the matrix, which can be based on cerium, praseodymium, or a mixture of cerium and praseodymium. Radiation detectors which include the scintillators are disclosed. A method for detecting high-energy radiation with a radiation detector is also described.
    Type: Application
    Filed: March 30, 2005
    Publication date: October 12, 2006
    Inventors: Alok Srivastava, Steven Duclos, Holly Comanzo, Lucas Clarke, Qun Deng
  • Patent number: 7119488
    Abstract: A fluorescent lamp including a phosphor layer comprising a phosphor blend including four or more optimized phosphors emitting within a specific spectral range to optimize luminosity for a given color rendering index (CRI) and color coordinated temperature (CCT). The blend will include at least four phosphors selected from the following: a blue phosphor having an emission peak at 440–490 nm, a blue-green phosphor having an emission peak at 475–525 nm, a green phosphor having an emission peak at 515–550 nm, an orange phosphor having an emission peak from 550–600 nm, a deep red phosphor having an emission peak at 615–665 nm, and a red phosphor having an emission peak at 600–670 nm.
    Type: Grant
    Filed: March 30, 2005
    Date of Patent: October 10, 2006
    Assignees: General Electric Company, GELcore, LLC
    Inventors: Thomas Soules, William Beers, Michael Greci, Anant Setlur, Holly Comanzo, Venkatesan Manivannan, Alok Srivastava
  • Publication number: 20060197023
    Abstract: A scintillator composition is disclosed, containing a solid solution of at least two cerium halides. A radiation detector for detecting high-energy radiation is also described herein. The detector includes the scintillator composition mentioned above, along with a photodetector optically coupled to the scintillator. A method for detecting high-energy radiation with a scintillation detector is also described, wherein the scintillation crystal is based on a mixture of cerium halides.
    Type: Application
    Filed: March 4, 2005
    Publication date: September 7, 2006
    Inventors: Alok Srivastava, Steven Duclos, Holly Comanzo, Qun Deng, Lucas Clarke
  • Publication number: 20060169986
    Abstract: Phosphor compositions including those having the formulas A2-xEuxW1-yMoyO6, where A is selected from Y, Gd, Lu, La, and combinations thereof; and where 0.5?x?1.0, 0.01?y?1.0; MmOnX, wherein M is selected from the group of Sc, Y, a lanthanide, an alkali earth metal and mixtures thereof; X is a halogen; 1?m?3; and 1?n?4, and wherein the lanthanide doping level can range from 0.1 to 40% spectral weight; and Eu3+ activated phosphate or borate phosphors. Also disclosed are light emitting devices including a light source and at least one of the above phosphor compositions.
    Type: Application
    Filed: February 2, 2005
    Publication date: August 3, 2006
    Inventors: Emil Radkov, Anant Setlur, Alok Srivastava, Holly Comanzo, Ljudmil Grigorov, Thomas McNulty, Daniel Doxsee, William Beers
  • Publication number: 20060151747
    Abstract: A quantum-splitting fluoride-based phosphor comprises gadolinium, at least a first alkali metal, and a rare-earth metal activator. The phosphor is made in a solid-state method without using HF gas.
    Type: Application
    Filed: January 10, 2005
    Publication date: July 13, 2006
    Inventors: Venkatesan Manivannan, Alok Srivastava, Holly Comanzo