Patents by Inventor Kenneth L. Telschow

Kenneth L. Telschow 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: 7635942
    Abstract: A sensor apparatus and method for detecting an environmental factor is shown that includes an acoustic device that has a characteristic resonant vibrational frequency and mode pattern when exposed to a source of acoustic energy and, further, when exposed to an environmental factor, produces a different resonant vibrational frequency and/or mode pattern when exposed to the same source of acoustic energy.
    Type: Grant
    Filed: May 16, 2005
    Date of Patent: December 22, 2009
    Assignee: Battelle Energy Alliance, LLC
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Patent number: 7123364
    Abstract: An imaging system includes: an object wavefront source and an optical microscope objective all positioned to direct an object wavefront onto an area of a vibrating subject surface encompassed by a field of view of the microscope objective, and to direct a modulated object wavefront reflected from the encompassed surface area through a photorefractive material; and a reference wavefront source and at least one phase modulator all positioned to direct a reference wavefront through the phase modulator and to direct a modulated reference wavefront from the phase modulator through the photorefractive material to interfere with the modulated object wavefront. The photorefractive material has a composition and a position such that interference of the modulated object wavefront and modulated reference wavefront occurs within the photorefractive material, providing a full-field, real-time image signal of the encompassed surface area.
    Type: Grant
    Filed: October 8, 2002
    Date of Patent: October 17, 2006
    Assignee: Battelle Energy Alliance, LLC
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Patent number: 7050174
    Abstract: An imaging system includes: an object wavefront source and an optical microscope objective all positioned to direct an object wavefront onto an area of a vibrating subject surface encompassed by a field of view of the microscope objective, and to direct a modulated object wavefront reflected from the encompassed surface area through a photorefractive material; and a reference wavefront source and at least one phase modulator all positioned to direct a reference wavefront through the phase modulator and to direct a modulated reference wavefront from the phase modulator through the photorefractive material to interfere with the modulated object wavefront. The photorefractive material has a composition and a position such that interference of the modulated object wavefront and modulated reference wavefront occurs within the photorefractive material, providing a full-field, real-time image signal of the encompassed surface area.
    Type: Grant
    Filed: June 6, 2005
    Date of Patent: May 23, 2006
    Assignee: Battelle Energy Alliance, LLC
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Patent number: 6847584
    Abstract: A method, system and underwater camera for acoustic imaging of objects in water or other liquids includes an acoustic source for generating an acoustic wavefront for reflecting from a target object as a reflected wavefront. The reflected acoustic wavefront deforms a screen on an acoustic side and correspondingly deforms the opposing optical side of the screen. An optical processing system is optically coupled to the optical side of the screen and converts the deformations on the optical side of the screen into an optical intensity image of the target object.
    Type: Grant
    Filed: June 30, 2003
    Date of Patent: January 25, 2005
    Assignee: Bechtel BWXT Idaho, LLC
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Publication number: 20040264296
    Abstract: A method, system and underwater camera for acoustic imaging of objects in water or other liquids includes an acoustic source for generating an acoustic wavefront for reflecting from a target object as a reflected acoustic wavefront. The reflected acoustic wavefront deforms a screen on an acoustic side and correspondingly deforms the opposing optical side of the screen. An optical processing system is optically coupled to the optical side of the screen and converts the deformations on the optical side of the screen into an optical intensity image of the target object.
    Type: Application
    Filed: June 30, 2003
    Publication date: December 30, 2004
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Patent number: 6836336
    Abstract: An inspection system calibration method includes producing two sideband signals of a first wavefront; interfering the two sideband signals in a photorefractive material, producing an output signal therefrom having a frequency and a magnitude; and producing a phase modulated operational signal having a frequency different from the output signal frequency, a magnitude, and a phase modulation amplitude. The method includes determining a ratio of the operational signal magnitude to the output signal magnitude, determining a ratio of a 1st order Bessel function of the operational signal phase modulation amplitude to a 0th order Bessel function of the operational signal phase modulation amplitude, and comparing the magnitude ratio to the Bessel function ratio.
    Type: Grant
    Filed: October 8, 2002
    Date of Patent: December 28, 2004
    Assignee: Bechtel BWXT Idaho, LLC
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Publication number: 20040066516
    Abstract: An inspection system calibration method includes producing two sideband signals of a first wavefront; interfering the two sideband signals in a photorefractive material, producing an output signal therefrom having a frequency and a magnitude; and producing a phase modulated operational signal having a frequency different from the output signal frequency, a magnitude, and a phase modulation amplitude. The method includes determining a ratio of the operational signal magnitude to the output signal magnitude, determining a ratio of a 1st order Bessel function of the operational signal phase modulation amplitude to a 0th order Bessel function of the operational signal phase modulation amplitude, and comparing the magnitude ratio to the Bessel function ratio.
    Type: Application
    Filed: October 8, 2002
    Publication date: April 8, 2004
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Publication number: 20030128366
    Abstract: An imaging system includes: an object wavefront source and an optical microscope objective all positioned to direct an object wavefront onto an area of a vibrating subject surface encompassed by a field of view of the microscope objective, and to direct a modulated object wavefront reflected from the encompassed surface area through a photorefractive material; and a reference wavefront source and at least one phase modulator all positioned to direct a reference wavefront through the phase modulator and to direct a modulated reference wavefront from the phase modulator through the photorefractive material to interfere with the modulated object wavefront. The photorefractive material has a composition and a position such that interference of the modulated object wavefront and modulated reference wavefront occurs within the photorefractive material, providing a full-field, real-time image signal of the encompassed surface area.
    Type: Application
    Filed: October 8, 2002
    Publication date: July 10, 2003
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Patent number: 6486962
    Abstract: Apparatus for producing an indication of a material property of a sheet-like material according to the present invention may comprise an excitation source for vibrating the sheet-like material to produce at least one traveling wave therein. A light source configured to produce an object wavefront and a reference wavefront directs the object wavefront toward the sheet-like material to produce a modulated object wavefront. A modulator operatively associated with the reference wavefront modulates the reference wavefront in synchronization with the traveling wave on the sheet-like material to produce a modulated reference wavefront. A sensing medium positioned to receive the modulated object wavefront and the modulated reference wavefront produces an image of the traveling wave in the sheet-like material, the image of the anti-symmetric traveling wave being related to a displacement amplitude of the anti-symmetric traveling wave over a two-dimensional area of the vibrating sheet-like material.
    Type: Grant
    Filed: September 9, 1999
    Date of Patent: November 26, 2002
    Assignee: Bechtel Bwxt Idaho, LLC
    Inventors: Kenneth L. Telschow, Vance A. Deason
  • Patent number: 6401540
    Abstract: Apparatus for producing an acoustic image of an object according to the present invention may comprise an excitation source for vibrating the object to produce at least one acoustic wave therein. The acoustic wave results in the formation of at least one surface displacement on the surface of the object. A light source produces an optical object wavefront and an optical reference wavefront and directs the optical object wavefront toward the surface of the object to produce a modulated optical object wavefront. A modulator operatively associated with the optical reference wavefront modulates the optical reference wavefront in synchronization with the acoustic wave to produce a modulated optical reference wavefront. A sensing medium positioned to receive the modulated optical object wavefront and the modulated optical reference wavefront combines the modulated optical object and reference wavefronts to produce an image related to the surface displacement on the surface of the object.
    Type: Grant
    Filed: February 29, 2000
    Date of Patent: June 11, 2002
    Assignee: Bechtel BWXT Idaho, LLC
    Inventors: Vance A. Deason, Kenneth L. Telschow
  • Patent number: 6175411
    Abstract: An apparatus is provided for imaging traveling waves in a medium. The apparatus includes a vibration excitation source configured to impart traveling waves within a medium. An emitter is configured to produce two or more wavefronts, at least one wavefront modulated by a vibrating medium. A modulator is configured to modulate another wavefront in synchronization with the vibrating medium. A sensing media is configured to receive in combination the modulated one wavefront and the another wavefront and having a detection resolution within a limited bandwidth. The another wavefront is modulated at a frequency such that a difference frequency between the one wavefront and the another wavefront is within a response range of the sensing media. Such modulation produces an image of the vibrating medium having an output intensity that is substantially linear with small physical variations within the vibrating medium for all vibration frequencies above the sensing media's response bandwidth.
    Type: Grant
    Filed: July 8, 1998
    Date of Patent: January 16, 2001
    Assignee: Bechtel BWXT Idaho, LLC
    Inventors: Kenneth L. Telschow, Vance A. Deason
  • Patent number: 6134006
    Abstract: A method and apparatus are disclosed for characterizing a vibrating image of an object of interest. The method includes providing a sensing media having a detection resolution within a limited bandwidth and providing an object of interest having a vibrating medium. Two or more wavefronts are provided, with at least one of the wavefronts being modulated by interacting the one wavefront with the vibrating medium of the object of interest. The another wavefront is modulated such that the difference frequency between the one wavefront and the another wavefront is within a response range of the sensing media. The modulated one wavefront and another wavefront are combined in association with the sensing media to interfere and produce simultaneous vibration measurements that are distributed over the object so as to provide an image of the vibrating medium. The image has an output intensity that is substantially linear with small physical variations within the vibrating medium.
    Type: Grant
    Filed: February 25, 1998
    Date of Patent: October 17, 2000
    Assignee: Becthel BWXT Idaho, LLC
    Inventors: Kenneth L. Telschow, Vance A. Deason, Thomas C. Hale
  • Patent number: 5827971
    Abstract: A vibration detection assembly is described which includes an emitter of light which has object and reference beams, the object beam reflected off of a vibrating object of interest; and a photorefractive substance having a given response time and which passes the reflected object beam and the reference beam, the reference beam and the object beam interfering within the photorefractive substance to create a space charge field which develops within the response time of the photorefractive substance.
    Type: Grant
    Filed: January 22, 1997
    Date of Patent: October 27, 1998
    Assignee: Lockheed Martin Idaho Technologies Company
    Inventors: Thomas C. Hale, Kenneth L. Telschow
  • Patent number: 5535006
    Abstract: A method of evaluating integrity of adherence of a conductor bond to a substrate includes: a) impinging a plurality of light sources onto a substrate; b) detecting optical reflective signatures emanating from the substrate from the impinged light; c) determining location of a selected conductor bond on the substrate from the detected reflective signatures; d) determining a target site on the selected conductor bond from the detected reflective signatures; e) optically imparting an elastic wave at the target site through the selected conductor bond and into the substrate; f) optically detecting an elastic wave signature emanating from the substrate resulting from the optically imparting step; and g) determining integrity of adherence of the selected conductor bond to the substrate from the detected elastic wave signature emanating from the substrate. A system is disclosed which is capable of conducting the method.
    Type: Grant
    Filed: May 26, 1994
    Date of Patent: July 9, 1996
    Assignee: Lockheed Idaho Technologies Company
    Inventors: Kenneth L. Telschow, Bernard K. Siu
  • Patent number: 5103676
    Abstract: A method of monitoring a material during processing comprising the steps of (a) shining a detection light on the surface of a material; (b) generating ultrasonic waves at the surface of the material to cause a change in frequency of the detection light; (c) detecting a change in the frequency of the detection light at the surface of the material; (d) detecting said ultrasonic waves at the surface point of detection of the material; (e) measuring a change in the time elapsed from generating the ultrasonic waves at the surface of the material and return to the surface point of detection of the material, to determine the transit time; and (f) comparing the transit time to predetermined values to determine properties such as, density and the elastic quality of the material.
    Type: Grant
    Filed: January 17, 1991
    Date of Patent: April 14, 1992
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Gabriel V. Garcia, John B. Walter, Kenneth L. Telschow
  • Patent number: 5048969
    Abstract: A method for measuring the energy of individual laser pulses or a series of laser pulses by reading the output of a piezoelectric (PZ) transducer which has received a known fraction of the total laser pulse beam. An apparatus is disclosed that reduces the incident energy on the PZ transducer by means of a beam splitter placed in the beam of the laser pulses.
    Type: Grant
    Filed: November 20, 1989
    Date of Patent: September 17, 1991
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Vance A. Deason, John A. Johnson, Kenneth L. Telschow
  • Patent number: 4995260
    Abstract: A method and apparatus for nondestructive material characterization, such as identification of material flaws or defects, material thickness or uniformity and material properties such as acoustic velocity. The apparatus comprises a pulsed laser used to excite a piezoelectric (PZ) transducer, which sends acoustic waves through an acoustic coupling medium to the test material. The acoustic wave is absorbed and thereafter reflected by the test material, whereupon it impinges on the PZ transducer. The PZ transducer converts the acoustic wave to electrical impulses, which are conveyed to a monitor.
    Type: Grant
    Filed: July 14, 1989
    Date of Patent: February 26, 1991
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Vance A. Deason, John A. Johnson, Kenneth L. Telschow