Patents Assigned to Sandia
  • Patent number: 6965709
    Abstract: A fluorescent optical position sensor and method of operation. A small excitation source side-pumps a localized region of fluorescence at an unknown position along a fluorescent waveguide. As the fluorescent light travels down the waveguide, the intensity of fluorescent light decreases due to absorption. By measuring with one (or two) photodetectors the attenuated intensity of fluorescent light emitted from one (or both) ends of the waveguide, the position of the excitation source relative to the waveguide can be determined by comparing the measured light intensity to a calibrated response curve or mathematical model. Alternatively, excitation light can be pumped into an end of the waveguide, which generates an exponentially-decaying continuous source of fluorescent light along the length of the waveguide. The position of a photodetector oriented to view the side of the waveguide can be uniquely determined by measuring the intensity of the fluorescent light emitted radially at that location.
    Type: Grant
    Filed: May 14, 2003
    Date of Patent: November 15, 2005
    Assignee: Sandia Corporation
    Inventor: Jonathan D. Weiss
  • Patent number: 6962747
    Abstract: The present invention is a self-assembling material comprised of stacks of lipid bilayers formed in a columnar structure, where the assembly process is mediated and regulated by chemical recognition events. The material, through the chemical recognition interactions, has a self-regulating system that corrects the radial size of the assembly creating a uniform diameter throughout most of the structure. The materials form and are stable in aqueous solution. These materials are useful as structural elements for the architecture of materials and components in nanotechnology, efficient light harvesting systems for optical sensing, chemical processing centers, and drug delivery vehicles.
    Type: Grant
    Filed: October 23, 2001
    Date of Patent: November 8, 2005
    Assignee: Sandia Corporation
    Inventors: Darryl Y. Sasaki, Tina A. Waggoner, Julie A. Last
  • Patent number: 6960849
    Abstract: A microelectromechanical (MEM) tiltable-platform apparatus is disclosed which utilizes a light-reflective platform (i.e. a micromirror) which is supported above a substrate by flexures which can be bent upwards to tilt the platform in any direction over an angle of generally ±10 degrees using a gear-driven rack attached to each flexure. Each rack is driven by a rotary microengine (i.e. a micromotor); and an optional thermal actuator can be used in combination with each microengine for initially an initial uplifting of the platform away from the substrate. The MEM apparatus has applications for optical switching (e.g. between a pair of optical fibers) or for optical beam scanning.
    Type: Grant
    Filed: March 31, 2003
    Date of Patent: November 1, 2005
    Assignee: Sandia Corporation
    Inventors: Kelly A. Klody, Robert D. Habbit, Jr.
  • Patent number: 6960017
    Abstract: An energy metering method and apparatus for liquid flow systems comprising first and second segments of one or more conduits through which a liquid flows, comprising: attaching a first temperature sensor for connection to an outside of the first conduit segment; attaching a second temperature sensor for connection to an outside of the second conduit segment; via a programmable control unit, receiving data from the sensors and calculating energy data therefrom; and communicating energy data from the meter; whereby the method and apparatus operate without need to temporarily disconnect or alter the first or second conduit segments. The invention operates with both variable and fixed flow systems, and is especially useful for both active and passive solar energy systems.
    Type: Grant
    Filed: January 15, 2003
    Date of Patent: November 1, 2005
    Assignee: Sandia Corporation
    Inventors: David F. Menicucci, Billy D. Black
  • Patent number: 6960285
    Abstract: An electrokinetic pump capable of producing high pressure is combined with a nozzle having a submicron orifice to provide a high pressure spray device. Because of its small size, the device can be contained within medical devices such as an endoscope for delivering biological materials such as DNA, chemo therapeutic agents, or vaccines to tissues and cells.
    Type: Grant
    Filed: September 30, 2002
    Date of Patent: November 1, 2005
    Assignee: Sandia Naitonal Laboratories
    Inventors: Joseph S. Schoeniger, Phillip H. Paul, Luke Schoeniger
  • Patent number: 6958693
    Abstract: A sensor device and method of employment is provided. More specifically, a sensor device adapted to detect, identify and/or measure a chemical and/or physical characteristic upon placement of the device into an environment, especially a liquid medium for which monitoring is sought is provided.
    Type: Grant
    Filed: May 20, 2003
    Date of Patent: October 25, 2005
    Assignees: Procter & Gamble Company, Sandia Corporation
    Inventors: Timothy Michael Rothgeb, Kristina Marie Rohal Gansle, Jonathan Livingston Joyce, James Madison Jordan, Tedd Addison Rohwer, Randal Ray Lockhart, Christopher Lawrence Smith, Toan Trinh, Mark Gary Cipollone
  • Patent number: 6957566
    Abstract: A system for determining the velocity of detonation of a mild detonation fuse mounted on the surface of a device includes placing the device in a predetermined position with respect to an apparatus that carries a couple of sensors that sense the passage of a detonation wave at first and second spaced locations along the fuse. The sensors operate a timer and the time and distance between the locations is used to determine the velocity of detonation. The sensors are preferably electrical contacts that are held spaced from but close to the fuse such that expansion of the fuse caused by detonation causes the fuse to touch the contact, causing an electrical signal to actuate the timer.
    Type: Grant
    Filed: November 17, 2003
    Date of Patent: October 25, 2005
    Assignee: Sandia Corporation
    Inventors: Frank M. Horine, Forrest B. James, Jr.
  • Patent number: 6955110
    Abstract: An apparatus and method for cutting soft materials such as meat. Two or more spirally mounted helical blades are situated between two supports, and the supports are mounted to a shank. The shank is rotated to impart rotary action to the spiral shear blades, and the entire device may be used to perform various cutting operations. The distal or bottom one of the supports may also be a cutting blade, and a number of versions of bottom cutting blades are useable in the practice of the invention.
    Type: Grant
    Filed: March 27, 2002
    Date of Patent: October 18, 2005
    Assignee: Sandia Corporation
    Inventors: Barry L. Spletzer, Diane S. Callow, James F. Jones, Michael A. Kuehl, Dick L. Shaw, Barbara J. Scalia
  • Patent number: 6957415
    Abstract: A method for dynamically self-assembling and executing software is provided, containing machines that self-assemble execution sequences and data structures. In addition to ordered functions calls (found commonly in other software methods), mutual selective bonding between bonding sites of machines actuates one or more of the bonding machines. Two or more machines can be virtually isolated by a construct, called an encapsulant, containing a population of machines and potentially other encapsulants that can only bond with each other. A hierarchical software structure can be created using nested encapsulants. Multi-threading is implemented by populations of machines in different encapsulants that are interacting concurrently. Machines and encapsulants can move in and out of other encapsulants, thereby changing the functionality. Bonding between machines' sites can be deterministic or stochastic with bonding triggering a sequence of actions that can be implemented by each machine.
    Type: Grant
    Filed: June 4, 2003
    Date of Patent: October 18, 2005
    Assignee: Sandia Corporation
    Inventors: Ann M. Bouchard, Gordon C. Osbourn
  • Patent number: 6952962
    Abstract: A cast-in-place and lithographically shaped mobile, monolithic polymer element for fluid flow control in microfluidic devices and method of manufacture. Microfluid flow control devices, or microvalves that provide for control of fluid or ionic current flow can be made incorporating a cast-in-place, mobile monolithic polymer element, disposed within a microchannel, and driven by fluid pressure (either liquid or gas) against a retaining or sealing surface. The polymer elements are made by the application of lithographic methods to monomer mixtures formulated in such a way that the polymer will not bond to microchannel walls. The polymer elements can seal against pressures greater than 5000 psi, and have a response time on the order of milliseconds. By the use of energetic radiation it is possible to depolymerize selected regions of the polymer element to form shapes that cannot be produced by conventional lithographic patterning and would be impossible to machine.
    Type: Grant
    Filed: May 8, 2002
    Date of Patent: October 11, 2005
    Assignee: Sandia National Laboratories
    Inventors: Ernest F. Hasselbrink, Jr., Jason E. Rehm, Timothy J. Shepodd, Brian J. Kirby
  • Patent number: 6951243
    Abstract: The invention consists of an evaporative cooling device comprising one or more microchannels whose cross section is axially reduced to control the maximum capillary pressure differential between liquid and vapor phases. In one embodiment, the evaporation channels have a rectangular cross section that is reduced in width along a flow path. In another embodiment, channels of fixed width are patterned with an array of microfabricated post-like features such that the feature size and spacing are gradually reduced along the flow path. Other embodiments incorporate bilayer channels consisting of an upper cover plate having a pattern of slots or holes of axially decreasing size and a lower fluid flow layer having channel widths substantially greater than the characteristic microscale dimensions of the patterned cover plate. The small dimensions of the cover plate holes afford large capillary pressure differentials while the larger dimensions of the lower region reduce viscous flow resistance.
    Type: Grant
    Filed: October 9, 2003
    Date of Patent: October 4, 2005
    Assignee: Sandia National Laboratories
    Inventors: Robert Nilson, Stewart Griffiths
  • Patent number: 6931042
    Abstract: Selectively oxidized vertical cavity lasers emitting near 1300 nm using InGaAsN quantum wells are reported for the first time which operate continuous wave below, at and above room temperature. The lasers employ two n-type Al0.94Ga0.06As/GaAs distributed Bragg reflectors each with a selectively oxidized current aperture adjacent to the active region, and the top output mirror contains a tunnel junction to inject holes into the active region. Continuous wave single mode lasing is observed up to 55° C.
    Type: Grant
    Filed: May 31, 2001
    Date of Patent: August 16, 2005
    Assignee: Sandia Corporation
    Inventors: Kent D. Choquette, John F. Klem
  • Patent number: 6929733
    Abstract: A sacrificial plastic mold having an electroplatable backing is provided. One embodiment consists of the infusion of a softened or molten thermoplastic through a porous metal substrate (sheet, screen, mesh or foam) and into the features of a micro-scale molding tool contacting the porous metal substrate. Upon demolding, the porous metal substrate will be embedded within the thermoplastic and will project a plastic structure with features determined by the mold tool. This plastic structure, in turn, provides a sacrificial plastic mold mechanically bonded to the porous metal substrate which provides a conducting support suitable for electroplating either contiguous or non-contiguous metal replicates. After electroplating and lapping, the sacrificial plastic can be dissolved to leave the desired metal structure bonded to the porous metal substrate. Optionally, the electroplated structures may be debonded from the porous substrate by selective dissolution of the porous substrate or a coating thereon.
    Type: Grant
    Filed: April 24, 2002
    Date of Patent: August 16, 2005
    Assignee: Sandia Corporation
    Inventors: Linda A. Domeier, Jill M. Hruby, Alfredo M. Morales
  • Patent number: 6930051
    Abstract: New methods for fabrication of silicon microstructures have been developed. In these methods, an etching delay layer is deposited and patterned so as to provide differential control on the depth of features being etched into a substrate material. Structures having features with different depth can be formed thereby in a single etching step.
    Type: Grant
    Filed: June 6, 2002
    Date of Patent: August 16, 2005
    Assignee: Sandia Corporation
    Inventors: Ronald P. Manginell, W. Kent Schubert, Randy J. Shul
  • Patent number: 6931045
    Abstract: A new class of distributed Bragg reflectors has been developed. These distributed Bragg reflectors comprise interlayers positioned between sets of high-index and low-index quarter-wave plates. The presence of these interlayers is to reduce photon absorption resulting from spatially indirect photon-assisted electronic transitions between the high-index and low-index quarter wave plates. The distributed Bragg reflectors have applications for use in vertical-cavity surface-emitting lasers for use at 1.55 ?m and at other wavelengths of interest.
    Type: Grant
    Filed: June 26, 2003
    Date of Patent: August 16, 2005
    Assignee: Sandia Corporation
    Inventor: John F. Klem
  • Patent number: 6929675
    Abstract: A method for providing an anhydrous route for the synthesis of amine capped coinage-metal (copper, silver, and gold) nanoparticles (NPs) using the coinage-metal mesityl (mesityl=C6H2(CH3)3-2,4,6) derivatives. In this method, a solution of (Cu(C6H2(CH3)3)5, (Ag(C6H2(CH3)3)4, or (Au(C6H2(CH3)3)5 is dissolved in a coordinating solvent, such as a primary, secondary, or tertiary amine; primary, secondary, or tertiary phosphine, or alkyl thiol, to produce a mesityl precursor solution. This solution is subsequently injected into an organic solvent that is heated to a temperature greater than approximately 100° C. After washing with an organic solvent, such as an alcohol (including methanol, ethanol, propanol, and higher molecular-weight alcohols), oxide free coinage NP are prepared that could be extracted with a solvent, such as an aromatic solvent (including, for example, toluene, benzene, and pyridine) or an alkane (including, for example, pentane, hexane, and heptane).
    Type: Grant
    Filed: April 24, 2003
    Date of Patent: August 16, 2005
    Assignee: Sandia Corporation
    Inventors: Scott D. Bunge, Timothy J. Boyle
  • Patent number: 6926313
    Abstract: A high pressure connector capable of operating at pressures of 40,000 psi or higher is provided. This connector can be employed to position a first fluid-bearing conduit that has a proximal end and a distal end to a second fluid-bearing conduit thereby providing fluid communication between the first and second fluid-bearing conduits.
    Type: Grant
    Filed: April 2, 2003
    Date of Patent: August 9, 2005
    Assignee: Sandia National Laboratories
    Inventor: Ronald F. Renzi
  • Patent number: 6926997
    Abstract: Thin electrodes produced by thermal spray techniques are presented, wherein the thermal spray feedstock comprises an active material and a protective barrier coating. In a particularly advantageous feature, the active material feedstock is a metal sulfide, metal selenide, or metal telluride which ordinarily decomposes at thermal spray temperatures or which transforms to a material unsuitable for use as an electrode at thermal spray temperatures. The electrodes find particular utility in thermal batteries.
    Type: Grant
    Filed: November 2, 1999
    Date of Patent: August 9, 2005
    Assignees: Sandia Corporation, U.S. Nanocorp
    Inventors: Ronald A. Guidotti, Hui Ye, Tongsan D. Xiao, David E. Reisner, Daniel H. Doughty
  • Publication number: 20050164125
    Abstract: The use of photoacid generators including an alkoxyphenylphenyliodonium salt and/or bis(t-butylphenyl)iodonium salt in a photoimageable composition helps improve resolution. Suitable photoimageable compositions includes: (a) a multifunctional polymeric epoxy resin that is dissolved in an organic solvent wherein the epoxy resin comprises oligomers of bisphenol A that is quantitatively protected by glycidyl ether and wherein the oligomers have an average functionality that ranges from about 3 to 12; and a photoacid generator comprising an alkoxyphenylphenyliodonium salt and/or bis(t-butylphenyl)iodonium salt. Preferred alkoxyphenylphenyliodonium salts include 4-octyloxyphenyl phenyliodonium hexafluoroantimonate and 4-methoxyphenyl phenyliodonium hexafluoroantimonate. The photoimageable composition is particularly suited for producing high aspect ration microstructure.
    Type: Application
    Filed: January 6, 2005
    Publication date: July 28, 2005
    Applicant: SANDIA NATIONAL LABORATORIES
    Inventors: Paul Dentinger, Karen Krafcik, Kelby Simison
  • Patent number: RE38797
    Abstract: An apparatus and method for preconcentrating particles and vapors. The preconcentrator apparatus permits detection of highly diluted amounts of particles in a main gas stream, such as a stream of ambient air. A main gas stream having airborne particles entrained therein is passed through a pervious screen. The particles accumulate upon the screen, as the screen acts as a sort of selective particle filter. The flow of the main gas stream is then interrupted by diaphragm shutter valves, whereupon a cross-flow of carrier gas stream is blown parallel past the faces of the screen to dislodge the accumulated particles and carry them to a particle or vapor detector, such as an ion mobility spectrometer. The screen may be heated, such as by passing an electrical current there through, to promote desorption of particles therefrom during the flow of the carrier gas. Various types of screens are disclosed.
    Type: Grant
    Filed: July 3, 2002
    Date of Patent: September 20, 2005
    Assignee: Sandia National Laboratories
    Inventors: Kevin L. Linker, Frank J. Conrad, Chad A. Custer, Charles L. Rhykerd, Jr.