Patents Represented by Attorney James H. Chafin
  • Patent number: 4841550
    Abstract: A communication device in the form of data terminal equipment permits two data communication equipments, each having its own master clock and operating at substantially the same nominal clock rate, to communicate with each other in a multi-segment circuit configuration of a general communication network even when phase or frequency errors exist between the two clocks. Data transmitted between communication equipments of two segments of the communication network is buffered. A variable buffer fill circuit is provided to fill the buffer to a selectable extent prior to initiation of data output clocking. Selection switches are provided to select the degree of buffer preload. A dynamic buffer fill circuit may be incorporated for automatically selecting the buffer fill level as a function of the difference in clock frequencies of the two equipments. Controllable alarm circuitry is provided for selectively generating an underflow or an overflow alarm to one or both of the communicating equipments.
    Type: Grant
    Filed: November 9, 1987
    Date of Patent: June 20, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Michael George, Lyndon G. Pierson, Mark E. Wilkins
  • Patent number: 4841570
    Abstract: Method and apparatus are provided for one-way transformation of data according to multiplication and/or exponentiation modulo a prime number. An implementation of the invention permits the one way residue transformation, useful in encryption and similar applications, to be implemented by n-bit computers substantially with no increase in difficulty or complexity over a natural transformation thereby, using a modulus which is a power of two.
    Type: Grant
    Filed: May 11, 1987
    Date of Patent: June 20, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: James A. Cooper
  • Patent number: 4838644
    Abstract: A method for recognizing the presence of a particular target in a field of view which is target position, rotation, and intensity invariant includes the preparing of a target-specific invariant filter from a combination of all eigen-modes of a pattern of the particular target. Coherent radiation from the field of view is then imaged into an optical correlator in which the invariant filter is located. The invariant filter is rotated in the frequency plane of the optical correlator in order to produce a constant-amplitude rotational response in a correlation output plane when the particular target is present in the field of view. Any constant response is thus detected in the outputThe U.S. Government has rights in this invention pursuant to Contract No. DE-AC04-76DP00789 between the U.S. Department of Energy and AT&T Technologies, Inc.
    Type: Grant
    Filed: September 15, 1987
    Date of Patent: June 13, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Ellen Ochoa, George F. Schils, Donald W. Sweeney
  • Patent number: 4838989
    Abstract: The surfaces of solid ionic substrates are etched by a radiation-driven chemical reaction. The process involves exposing an ionic substrate coated with a layer of a reactant material on its surface to radiation, e.g. a laser, to induce localized melting of the substrate which results in the occurrance of a fusion reaction between the substrate and coating material. The resultant reaction product and excess reactant salt are then removed from the surface of the substrate with a solvent which is relatively inert towards the substrate. The laser-driven chemical etching process is especially suitable for etching ionic salt substrates, e.g., a solid inorganic salt such as LiNbO.sub.3, such as used in electro-optical/acousto-optic devices. It is also suitable for applications wherein the etching process is required to produce an etched ionic substrate having a smooth surface morphology or when a very rapid etching rate is desired.
    Type: Grant
    Filed: August 25, 1987
    Date of Patent: June 13, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Carol I. H. Ashby, Paul J. Brannon, James B. Gerardo
  • Patent number: 4839339
    Abstract: Method and apparatus for preparing highly pure homogeneous precursor powder mixtures for metal oxide superconductive ceramics. The mixes are prepared by instantaneous precipitation from stoichiometric solutions of metal salts such as nitrates at controlled pH's within the 9 to 12 range, by addition of solutions of non-complexing pyrolyzable cations, such as alkyammonium and carbonate ions.
    Type: Grant
    Filed: February 25, 1988
    Date of Patent: June 13, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Bruce C. Bunker, Diana L. Lamppa, James A. Voigt
  • Patent number: 4837442
    Abstract: A neutron range spectrometer and method for determining the neutron energy spectrum of a neutron emitting source are disclosed. Neutrons from the source are collimnated along a collimation axis and a position sensitive neutron counter is disposed in the path of the collimated neutron beam. The counter determines positions along the collimation axis of interactions between the neutrons in the neutron beam and a neutron-absorbing material in the counter. From the interaction positions, a computer analyzes the data and determines the neutron energy spectrum of the neutron beam. The counter is preferably shielded and a suitable neutron-absorbing material is He-3. The computer solves the following equation in the analysis: ##EQU1## where: N(x).DELTA.x=the number of neutron interactions measured between a position x and x+.DELTA.x,A.sub.i (E.sub.i).DELTA.E.sub.i =the number of incident neutrons with energy between E.sub.i and E.sub.i +.DELTA.E.sub.i, andC=C(E.sub.i)=N .sigma.(E.sub.
    Type: Grant
    Filed: March 10, 1988
    Date of Patent: June 6, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Stephen H. Manglos
  • Patent number: 4832881
    Abstract: A low density, open-celled microcellular carbon foam is disclosed which is prepared by dissolving a carbonizable polymer or copolymer in a solvent, pouring the solution into a mold, cooling the solution, removing the solvent, and then carbonizing the polymer or copolymer in a high temperature oven to produce the foam. If desired, an additive can be introduced in order to produce a doped carbon foam, and the foams can be made isotropic by selection of a suitable solvent. The low density, microcellular foams produced by this process are particularly useful in the fabrication of inertial confinement fusion targets, but can also be used as catalysts, absorbents, and electrodes.
    Type: Grant
    Filed: June 20, 1988
    Date of Patent: May 23, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Charles Arnold, Jr., James H. Aubert, Roger L. Clough, Peter B. Rand, Alan P. Sylwester
  • Patent number: 4832870
    Abstract: An electrically conductive composite material is disclosed which comprises a conductive open-celled, low density, microcellular carbon foam filled with a non-conductive polymer or resin. The composite material is prepared in a two-step process consisting of first preparing the microcellular carbon foam from a carbonizable polymer or copolymer using a phase separation process, then filling the carbon foam with the desired non-conductive polymer or resin. The electrically conductive composites of the present invention has a uniform and consistant pattern of filler distribution, and as a result is superior over prior art materials when used in battery components, electrodes, and the like.
    Type: Grant
    Filed: June 20, 1988
    Date of Patent: May 23, 1989
    Assignee: The United States Department of Energy
    Inventors: Roger L. Clough, Alan P. Sylwester
  • Patent number: 4833404
    Abstract: A test probe for a surface mounted leadless chip carrier is disclosed. The probed includes specially designed connector pins which allow size reductions in the probe. A thermoplastic housing provides spring action to ensure good mechanical and electrical contact between the pins and the contact strips of a leadless chip carrier. Other features include flexible wires molded into the housing and two different types of pins alternately placed in the housing. These features allow fabrication of a smaller and simpler test probe.
    Type: Grant
    Filed: October 2, 1987
    Date of Patent: May 23, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Kerry L. Meyer, John Topolewski
  • Patent number: 4829020
    Abstract: During the growth of compound semiconductors by epitaxial processes, substrates are typically mounted to a support. In modular beam epitaxy, mounting is done using indium as a solder. This method has two drawbacks: the indium reacts with the substrate, and it is difficult to uniformly wet the back of a large diameter substrate. Both of these problems have been successfully overcome by sputter coating the back of the substrate with a thin layer of tungsten carbide or tungsten carbide and gold. In addition to being compatible with the growth of high quality semiconductor epilayers this coating is also inert in all standard substrate cleaning etchants used for compound semiconductors, and provides uniform distribution of energy in radiant heating.
    Type: Grant
    Filed: October 23, 1987
    Date of Patent: May 9, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: Timothy J. Drummond, David S. Ginley, Thomas E. Zipperian
  • Patent number: 4821584
    Abstract: A piezoelectric load cell which can be utilized for detecting collisions and obstruction of a robot arm end effector includes a force sensing element of metallized polyvinylidene fluoride (PVDF) film. The piezoelectric film sensing element and a resilient support pad are clamped in compression between upper and lower plates. The lower plate has a central recess in its upper face for supporting the support pad and sensing element, while the upper plate has a corresponding central projection formed on its lower face for bearing on the sensing element and support pad. The upper and lower plates are dowelled together for concentric alignment and screwed together. The upper and lower plates are also adapted for mounting between the robot arm wrist and end effector.
    Type: Grant
    Filed: March 15, 1988
    Date of Patent: April 18, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: John R. Lembke
  • Patent number: 4822207
    Abstract: An anti-terrorist vehicle crash barrier includes side support structures, crushable energy absorbing aluminum honeycomb modules, and an elongated impact-resistant beam extending between, and at its opposite ends through vertical guideways defined by, the side support structures. An actuating mechanism supports the beam at its opposite ends for movement between a lowered barrier-withdrawn position in which a traffic-supporting side of the beam is aligned with a traffic-bearing surface permitting vehicular traffic between the side support structures and over the beam, and a raised barrier-imposed position in which the beam is aligned with horizontal guideways defined in the side support structures above the traffic-bearing surface, providing an obstruction to vehicular traffic between the side support structures. The beam is movable rearwardly in the horizontal guideways with its opposite ends disposed transversely therethrough upon being impacted at its forward side by an incoming vehicle.
    Type: Grant
    Filed: June 17, 1988
    Date of Patent: April 18, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: David J. Swahlan
  • Patent number: 4820925
    Abstract: A housing assembly for use with a room air monitor for simultaneous collection and counting of suspended particles includes a casing containing a combination detector-preamplifier system at one end, a filter system at the other end, and an air flow system consisting of an air inlet formed in the casing between the detector-preamplifier system and the filter system and an air passageway extending from the air inlet through the casing and out the end opposite the detector-preamplifier combination. The filter system collects suspended particles transported directly through the housing by means of the air flow system, and these particles are detected and examined for radioactivity by the detector-preThe U.S. Government has rights in this invention pursuant to Contract No. DE-AC04-76DP03533 between the Department of Energy and Rockwell International Corporation.
    Type: Grant
    Filed: March 23, 1987
    Date of Patent: April 11, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventors: David K. Balmer, William H. Tyree
  • Patent number: 4820226
    Abstract: A gettering device for hydrogen isotopes and gaseous hydrocarbons based on the interaction of a plasma and graphite used as cathodic material. The plasma is maintained at a current density within the range of about 1 to about 1000 mA/cm.sup.2. The graphite may be heated to a temperature greater than 1000.degree. C. The new device offers high capacity, low noise, and gas species selectivity.
    Type: Grant
    Filed: October 14, 1987
    Date of Patent: April 11, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Wen L. Hsu
  • Patent number: 4817494
    Abstract: An electromagnetic launcher includes a plurality of electrical stages which are energized sequentially in synchrony with the passage of a projectile. Each stage of the launcher includes two or more coils which are arranged coaxially on either closed-loop or straight lines to form gaps between their ends. The projectile has an electrically conductive gap-portion that passes through all the gaps of all the stages in a direction transverse to the axes of the coils. The coils receive an electric current, store magnetic energy, and convert a significant portion of the stored magnetic energy into kinetic energy of the projectile by magnetic reconnection as the gap portion of the projectile moves through the gap. The magnetic polarity of the opposing coils is in the same direction, e.g. N-S-N-S.
    Type: Grant
    Filed: April 6, 1987
    Date of Patent: April 4, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Maynard Cowan
  • Patent number: 4814768
    Abstract: A borehole logging tool generates a fast rise-time, short duration, high peak-power radar pulse having broad energy distribution between 30 MHz and 300 MHz through a directional transmitting and receiving antennas having barium titanate in the electromagnetically active region to reduce the wavelength to within an order of magnitude of the diameter of the antenna. Radar returns from geological discontinuities are sampled for transmission uphole.
    Type: Grant
    Filed: September 28, 1987
    Date of Patent: March 21, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: Hsi-Tien Chang
  • Patent number: 4812520
    Abstract: Polymerization of acetylenic monomers is achieved by using a catalyst which is the reaction product of a tungsten compound and a reducing agent effective to reduce W(VI) to W(III) and/or IV), e.g., WCl.sub.6.(organo-Li, organo-Mg or polysilane). The resultant silylated polymers are of heretofore unachievable high molecular weight and can be used as precursors to a wide variety of new acetylenic polymers by application of substitution reactions.
    Type: Grant
    Filed: November 9, 1987
    Date of Patent: March 14, 1989
    Assignee: The Unites States of America as represented by the United States Department of Energy
    Inventor: John M. Zeigler
  • Patent number: 4812210
    Abstract: An arrangement for measuring the concentration of surfactants in a electrolyte containing metal ions includes applying a DC bias voltage and a modulated voltage to a counter electrode. The phase angle between the modulated voltage and the current response to the modulated voltage at a working electrode is correlated to the surfactant concentration.
    Type: Grant
    Filed: October 16, 1987
    Date of Patent: March 14, 1989
    Assignee: The United States Department of Energy
    Inventors: William D. Bonivert, Joseph C. Farmer, John T. Hachman
  • Patent number: 4812715
    Abstract: An opening switch for very high power electrical pulses uses a slow magnetic field to confine a plasma across a gap between two electrodes. The plasma conducts the electric pulse across the gap while the switch is closed. A magnetic field generated by the pulse repels the slow magnetic field from the negative electrode to push the plasma from the electrode, opening the switch. A plurality of radial vanes may be used to enhance the slow magnetic field.
    Type: Grant
    Filed: June 29, 1987
    Date of Patent: March 14, 1989
    Assignee: The United States Department of Energy
    Inventor: Clifford W. Mendel
  • Patent number: 4808368
    Abstract: A high voltage supply is provided for a neutron tube used in well logging. The "biased pulse" supply of the invention combines DC and "full pulse" techniques and produces a target voltage comprising a substantial negative DC bias component on which is superimposed a pulse whose negative peak provides the desired negative voltage level for the neutron tube. The target voltage is preferably generated using voltage doubling techniques and employing a voltage source which generates bipolar pulse pairs having an amplitude corresponding to the DC bias level.
    Type: Grant
    Filed: September 15, 1982
    Date of Patent: February 28, 1989
    Assignee: The United States of America as represented by the United States Department of Energy
    Inventor: D. Russell Humphreys