Patents by Inventor Slobodan Rajic

Slobodan Rajic 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: 7244959
    Abstract: An apparatus and method for detecting electromagnetic radiation employs a deflectable micromechanical apparatus incorporating multiple quantum wells structures. When photons strike the quantum-well structure, physical stresses are created within the sensor, similar to a “bimetallic effect.” The stresses cause the sensor to bend. The extent of deflection of the sensor can be measured through any of a variety of conventional means to provide a measurement of the photons striking the sensor. A large number of such sensors can be arranged in a two-dimensional array to provide imaging capability.
    Type: Grant
    Filed: February 21, 2006
    Date of Patent: July 17, 2007
    Assignee: UT-Battelle, LLC
    Inventors: Panagiotis G. Datskos, Slobodan Rajic, Irene Datskou
  • Patent number: 6805839
    Abstract: A “folded leg” thermal detector microcantilever constructed of a substrate with at least one leg interposed between a fixed end and a deflective end, each leg having at least three essentially parallel leg segments interconnected on alternate opposing ends and aligned in a serpentine pattern with only the first leg segment attached to the fixed end and only the last leg segment attached to the deflective end. Alternate leg segment are coated on the pentalever with coating applied to the top of the first, third, and fifth leg segments of each leg and to the bottom of the second and fourth leg segments of each leg.
    Type: Grant
    Filed: March 16, 2001
    Date of Patent: October 19, 2004
    Inventors: Joseph P. Cunningham, Slobodan Rajic, Panagiotis G. Datskos, Boyd M. Evans, III
  • Patent number: 6525307
    Abstract: The invention is an integrated optical sensing element for detecting and measuring changes in position or deflection. A deflectable member, such as a microcantilever, is configured to receive a light beam. A waveguide, such as an optical waveguide or an optical fiber, is positioned to redirect light towards the deflectable member. The waveguide can be incorporated into the deflectable member or disposed adjacent to the deflectable member. Means for measuring the extent of position change or deflection of the deflectable member by receiving the light beam from the deflectable member, such as a photodetector or interferometer, receives the reflected light beam from the deflectable member. Changes in the light beam are correlated to the changes in position or deflection of the deflectable member. A plurality of deflectable members can be arranged in a matrix or an array to provide one or two-dimensional imaging or sensing capabilities.
    Type: Grant
    Filed: September 16, 1999
    Date of Patent: February 25, 2003
    Assignee: UT-Battelle, LLC
    Inventors: Boyd M. Evans, III, Panagiotis G. Datskos, Slobodan Rajic
  • Patent number: 6444972
    Abstract: A micromechanical sensor and method for detecting electromagnetic radiation involve producing photoelectrons from a metal surface in contact with a semiconductor. The photoelectrons are extracted into the semiconductor, which causes photo-induced bending. The resulting bending is measured, and a signal corresponding to the measured bending is generated and processed. A plurality of individual micromechanical sensors can be arranged in a two-dimensional matrix for imaging applications.
    Type: Grant
    Filed: September 15, 1999
    Date of Patent: September 3, 2002
    Assignee: UT-Battelle, LLC
    Inventors: Panagiotis G. Datskos, Slobodan Rajic, Irene C. Datskou, Charles M. Egert
  • Patent number: 6385363
    Abstract: An optical switch is formed by introducing light lengthwise to a microcantilever waveguide directed toward a second waveguide. The microcantilever is caused to bend by light emitted from a laser diode orthogonal to the microcantilever and at an energy above the band gap, which induces stress as a result of the generation of free carriers. The bending of the waveguide directs the carrier frequency light to a second receptor waveguide or to a non-responsive surface. The switch may be combined in an array to perform multiple switching functions rapidly and at low energy losses.
    Type: Grant
    Filed: March 26, 1999
    Date of Patent: May 7, 2002
    Assignee: U.T. Battelle LLC
    Inventors: Slobodan Rajic, Panagiotis George Datskos, Charles M. Egert
  • Publication number: 20010020680
    Abstract: A “folded leg” thermal detector microcantilever constructed of a substrate with at least one leg interposed between a fixed end and a deflective end, each leg having at least three essentially parallel leg segments interconnected on alternate opposing ends and aligned in a serpentine pattern with only the first leg segment attached to the fixed end and only the last leg segment attached to the deflective end. Alternate leg segment are coated on the pentalever with coating applied to the top of the first, third, and fifth leg segments of each leg and to the bottom of the second and fourth leg segments of each leg.
    Type: Application
    Filed: March 16, 2001
    Publication date: September 13, 2001
    Inventors: Joseph P. Cunningham, Slobodan Rajic, Panagiotis G. Datskos, Boyd M. Evans
  • Patent number: 5994700
    Abstract: An FTIR spectrometer (10) and method using a solid-state drive system with thermally responsive members (27) that are subject to expansion upon heating and to contraction upon cooling. Such members (27) are assembled in the device (10) so as to move an angled, reflective surface (22) a small distance. The sample light beam (13) is received at a detector (24) along with a reference light beam (13) and there it is combined into a resulting signal. This allows the "interference" between the two beams to occur for spectral analysis by a processor (29).
    Type: Grant
    Filed: September 4, 1997
    Date of Patent: November 30, 1999
    Assignee: Lockheed Martin Energy Research Corporation
    Inventors: Slobodan Rajic, Roland D. Seals, Charles M. Egert
  • Patent number: 5923421
    Abstract: A chemical detector comprises: an array of sensing elements, each having a characteristic physical parameter and a coating exhibiting a preferential adsorption of a chemical to be sensed; a chamber for exposing the coatings to an unknown sample of a chemical to be analyzed, the coatings adsorbing the chemical if present in the sample; a source of a monochromatic spectrum for radiating the array with different monochromatic wavelengths; and, a controller for recording signals representative of the physical parameter of the sensing elements responsive to the radiation.
    Type: Grant
    Filed: July 24, 1997
    Date of Patent: July 13, 1999
    Assignee: Lockheed Martin Energy Research Corporation
    Inventors: Slobodan Rajic, Panagiotis G. Datskos
  • Patent number: 5754290
    Abstract: A monolithic spectrometer is disclosed for use in spectroscopy. The spectrometer is a single body of translucent material with positioned surfaces for the transmission, reflection and spectral analysis of light rays.
    Type: Grant
    Filed: November 15, 1996
    Date of Patent: May 19, 1998
    Assignee: Lockheed Martin Energy Systems, Inc.
    Inventors: Slobodan Rajic, Charles M. Egert, William K. Kahl, William B. Snyder, Jr., Boyd M. Evans, III, Troy A. Marlar, Joseph P. Cunningham
  • Patent number: 5568582
    Abstract: A fiber optic connector and method for connecting composite materials within which optical fibers are imbedded. The fiber optic connector includes a capillary tube for receiving optical fibers at opposing ends. The method involves inserting a first optical fiber into the capillary tube and imbedding the unit in the end of a softened composite material. The capillary tube is injected with a coupling medium which subsequently solidifies. The composite material is machined to a desired configuration. An external optical fiber is then inserted into the capillary tube after fluidizing the coupling medium, whereby the optical fibers are coupled.
    Type: Grant
    Filed: October 13, 1994
    Date of Patent: October 22, 1996
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventors: Slobodan Rajic, Jeffrey D. Muhs