Patents Assigned to Sandia
-
Patent number: 7728248Abstract: Methods are disclosed for producing a precision clockplate with rotational bearing surfaces (e.g. pivot pins). The methods comprise providing an electrically conductive blank, conventionally machining oversize features comprising bearing surfaces into the blank, optionally machining of a relief on non-bearing surfaces, providing wire accesses adjacent to bearing surfaces, threading the wire of an electrical discharge machine through the accesses and finishing the bearing surfaces by wire electrical discharge machining. The methods have been shown to produce bearing surfaces of comparable dimension and tolerances as those produced by micro-machining methods such as LIGA, at reduced cost and complexity.Type: GrantFiled: June 18, 2007Date of Patent: June 1, 2010Assignee: Sandia CorporationInventor: Ronald L. Wild
-
Patent number: 7727314Abstract: The present invention relates generally to chemical analysis (e.g. by gas chromatography), and in particular to a compact chemical preconcentrator formed on a substrate with a heatable sorptive membrane that can be used to accumulate and concentrate one or more chemical species of interest over time and then rapidly release the concentrated chemical species upon demand for chemical analysis.Type: GrantFiled: January 30, 2007Date of Patent: June 1, 2010Assignee: Sandia CorporationInventors: Ronald P. Manginell, Patrick R. Lewis, Murat Okandan
-
Patent number: 7725517Abstract: Several full-spectrum imaging techniques have been introduced in recent years that promise to provide rapid and comprehensive chemical characterization of complex samples. One of the remaining obstacles to adopting these techniques for routine use is the difficulty of reducing the vast quantities of raw spectral data to meaningful chemical information. Multivariate factor analysis techniques, such as Principal Component Analysis and Alternating Least Squares-based Multivariate Curve Resolution, have proven effective for extracting the essential chemical information from high dimensional spectral image data sets into a limited number of components that describe the spectral characteristics and spatial distributions of the chemical species comprising the sample. There are many cases, however, in which those constraints are not effective and where alternative approaches may provide new analytical insights.Type: GrantFiled: September 22, 2005Date of Patent: May 25, 2010Assignee: Sandia CorporationInventor: Michael R. Keenan
-
Patent number: 7719318Abstract: A nanoelectromechanical (NEM) switch is formed on a substrate with a source electrode containing a suspended electrically-conductive beam which is anchored to the substrate at each end. This beam, which can be formed of ruthenium, bows laterally in response to a voltage applied between a pair of gate electrodes and the source electrode to form an electrical connection between the source electrode and a drain electrode located near a midpoint of the beam. Another pair of gate electrodes and another drain electrode can be located on an opposite side of the beam to allow for switching in an opposite direction. The NEM switch can be used to form digital logic circuits including NAND gates, NOR gates, programmable logic gates, and SRAM and DRAM memory cells which can be used in place of conventional CMOS circuits, or in combination therewith.Type: GrantFiled: November 5, 2008Date of Patent: May 18, 2010Assignee: Sandia CorporationInventors: Christopher D. Nordquist, David A. Czaplewski
-
Patent number: 7713395Abstract: A dielectrophoretic columnar focusing device uses interdigitated microelectrodes to provide a spatially non-uniform electric field in a fluid that generates a dipole within particles in the fluid. The electric field causes the particles to either be attracted to or repelled from regions where the electric field gradient is large, depending on whether the particles are more or less polarizable than the fluid. The particles can thereby be forced into well defined stable paths along the interdigitated microelectrodes. The device can be used for flow cytometry, particle control, and other process applications, including cell counting or other types of particle counting, and for separations in material control.Type: GrantFiled: April 11, 2006Date of Patent: May 11, 2010Assignee: Sandia CorporationInventors: Conrad D. James, Paul C. Galambos, Mark S. Derzon
-
Patent number: 7714240Abstract: A microfabricated vacuum switch is disclosed which includes a substrate upon which an anode, cathode and trigger electrode are located. A cover is sealed over the substrate under vacuum to complete the vacuum switch. In some embodiments of the present invention, a metal cover can be used in place of the trigger electrode on the substrate. Materials used for the vacuum switch are compatible with high vacuum, relatively high temperature processing. These materials include molybdenum, niobium, copper, tungsten, aluminum and alloys thereof for the anode and cathode. Carbon in the form of graphitic carbon, a diamond-like material, or carbon nanotubes can be used in the trigger electrode. Channels can be optionally formed in the substrate to mitigate against surface breakdown.Type: GrantFiled: September 21, 2005Date of Patent: May 11, 2010Assignee: Sandia CorporationInventors: Alexander W. Roesler, Joshua M. Schare, Kyle Bunch
-
Patent number: 7708943Abstract: A microfabricated fuel heating value monitoring device comprises a microfabricated gas chromatography column in combination with a catalytic microcalorimeter. The microcalorimeter can comprise a reference thermal conductivity sensor to provide diagnostics and surety. Using microfabrication techniques, the device can be manufactured in production quantities at a low per-unit cost. The microfabricated fuel heating value monitoring device enables continuous calorimetric determination of the heating value of natural gas with a 1 minute analysis time and 1.5 minute cycle time using air as a carrier gas. This device has applications in remote natural gas mining stations, pipeline switching and metering stations, turbine generators, and other industrial user sites. For gas pipelines, the device can improve gas quality during transfer and blending, and provide accurate financial accounting.Type: GrantFiled: February 16, 2006Date of Patent: May 4, 2010Assignee: Sandia CorporationInventors: Alex L. Robinson, Ronald P. Manginell, Matthew W. Moorman
-
Patent number: 7710232Abstract: A microelectromechanical tunable inductor is formed from a pair of substantially-identically-sized coils arranged side by side and coiled up about a central axis which is parallel to a supporting substrate. An in-plane stress gradient is responsible for coiling up the coils which. The inductance provided by the tunable inductor can be electrostatically changed either continuously or in discrete steps using electrodes on the substrate and on each coil. The tunable inductor can be formed with processes which are compatible with conventional IC fabrication so that, in some cases, the tunable inductor can be formed on a semiconductor substrate alongside or on top of an IC.Type: GrantFiled: May 9, 2007Date of Patent: May 4, 2010Assignee: Sandia CorporationInventors: Harold L. Stalford, Vincent M. Hietala, James G. Fleming, Carol Fleming, legal representative
-
Patent number: 7710086Abstract: A high voltage power supply for use in a system such as a microfluidics system, uses a DC-DC converter in parallel with a voltage-controlled resistor. A feedback circuit provides a control signal for the DC-DC converter and voltage-controlled resistor so as to regulate the output voltage of the high voltage power supply, as well as, to sink or source current from the high voltage supply.Type: GrantFiled: May 28, 2008Date of Patent: May 4, 2010Assignee: Sandia CorporationInventors: James F. Stamps, Daniel D. Yee
-
Patent number: 7704489Abstract: A nanotagged chemical structure comprising a chemical structure with an associated photocatalyst and a tagging nanoparticle (a nanotag) grown in proximity to the photocatalyst, and a method for making the nanotagged chemical structure. The nanoparticle is grown in proximity to the photocatalyst by using a photocatalytic reduction reaction.Type: GrantFiled: October 3, 2006Date of Patent: April 27, 2010Assignee: Sandia CorporationInventors: John A. Shelnutt, Craig J. Medforth, Yujiang Song
-
Patent number: 7697134Abstract: A correlation spectrometer can detect a large number of gaseous compounds, or chemical species, with a species-specific mask wheel. In this mode, the spectrometer is optimized for the direct measurement of individual target compounds. Additionally, the spectrometer can measure the transmission spectrum from a given sample of gas. In this mode, infrared light is passed through a gas sample and the infrared transmission signature of the gasses present is recorded and measured using Hadamard encoding techniques. The spectrometer can detect the transmission or emission spectra in any system where multiple species are present in a generally known volume.Type: GrantFiled: November 6, 2006Date of Patent: April 13, 2010Assignee: Sandia CorporationInventors: Michael B. Sinclair, Kent B. Pfeifer, Jeb H. Flemming, Gary D. Jones, Chris P. Tigges
-
Patent number: 7685923Abstract: A fragment capture device for use in explosive containment. The device comprises an assembly of at least two rows of bars positioned to eliminate line-of-sight trajectories between the generation point of fragments and a surrounding containment vessel or asset. The device comprises an array of at least two rows of bars, wherein each row is staggered with respect to the adjacent row, and wherein a lateral dimension of each bar and a relative position of each bar in combination provides blockage of a straight-line passage of a solid fragment through the adjacent rows of bars, wherein a generation point of the solid fragment is located within a cavity at least partially enclosed by the array of bars.Type: GrantFiled: August 27, 2008Date of Patent: March 30, 2010Assignee: Sandia CorporationInventors: Lloyd R. Payne, David L. Cole
-
Patent number: 7685864Abstract: An airtight preconcentrator housing and/or a sensor housing for chemical testing, the housing(s) comprising internal dimensions such that a pre-manufactured preconcentrator and/or sensor can be disposed therein. The housings can also comprise electrical contacts disposed therein which align with and thus provide electrical connection to the preconcentrator and/or sensor. The preconcentrator and/or sensor can be easily and quickly replaced.Type: GrantFiled: January 30, 2007Date of Patent: March 30, 2010Assignee: Sandia CorporationInventor: Douglas Ray Adkins
-
Patent number: 7683310Abstract: A laser warning receiver is disclosed which has up to hundreds of individual optical channels each optically oriented to receive laser light from a different angle of arrival. Each optical channel has an optical wedge to define the angle of arrival, and a lens to focus the laser light onto a multi-wavelength photodetector for that channel. Each multi-wavelength photodetector has a number of semiconductor layers which are located in a multi-dielectric stack that concentrates the laser light into one of the semiconductor layers according to wavelength. An electrical signal from the multi-wavelength photodetector can be processed to determine both the angle of arrival and the wavelength of the laser light.Type: GrantFiled: April 24, 2008Date of Patent: March 23, 2010Assignee: Sandia CorporationInventors: Michael B. Sinclair, William C. Sweatt
-
Patent number: 7678256Abstract: Disclosed herein are microfluidic devices for assaying at least one analyte specie in a sample comprising at least one analyte concentration area in a microchannel having insulating structures on or in at least one wall of the microchannel which provide a nonuniform electric field in the presence of an electric field provided by off-chip electrodes; and a pair of passivated sensing electrodes for impedance detection in a detection area. Also disclosed are assay methods and methods of making.Type: GrantFiled: November 3, 2006Date of Patent: March 16, 2010Assignee: Sandia CorporationInventors: Rafael V. Davalos, Blake A. Simmons, Robert W. Crocker, Eric B. Cummings
-
Patent number: 7679297Abstract: A petawatt pulsed-power accelerator can be driven by various types of electrical-pulse generators, including conventional Marx generators and linear-transformer drivers. The pulsed-power accelerator can be configured to drive an electrical load from one- or two-sides. Various types of loads can be driven; for example, the accelerator can be used to drive a high-current z-pinch load. When driven by slow-pulse generators (e.g., conventional Marx generators), the accelerator comprises an oil section comprising at least one pulse-generator level having a plurality of pulse generators; a water section comprising a pulse-forming circuit for each pulse generator and a level of monolithic triplate radial-transmission-line impedance transformers, that have variable impedance profiles, for each pulse-generator level; and a vacuum section comprising triplate magnetically insulated transmission lines that feed an electrical load.Type: GrantFiled: August 4, 2006Date of Patent: March 16, 2010Assignee: Sandia CorporationInventors: William A. Stygar, Michael E. Cuneo, Daniel I. Headley, Harry C. Ives, Berry Cottrell Ives, legal representative, Ramon J. Leeper, Michael G. Mazarakis, Craig L. Olson, John L. Porter, Tim C. Wagoner
-
Patent number: 7671858Abstract: Computer software for and a method of generating a conformal all quadrilateral or hexahedral mesh comprising selecting an object with unmeshed boundaries and performing the following while unmeshed voids are larger than twice a desired element size and unrecognizable as either a midpoint subdividable or pave-and-sweepable polyhedra: selecting a front to advance; based on sizes of fronts and angles with adjacent fronts, determining which adjacent fronts should be advanced with the selected front; advancing the fronts; detecting proximities with other nearby fronts; resolving any found proximities; forming quadrilaterals or unconstrained columns of hexahedra where two layers cross; and establishing hexahedral elements where three layers cross.Type: GrantFiled: September 5, 2006Date of Patent: March 2, 2010Assignee: Sandia CorporationInventors: Matthew L. Staten, Steven J. Owen, Teddy D. Blacker, Robert Kerr
-
Patent number: 7670933Abstract: A method for growing high quality, nonpolar Group III nitrides using lateral growth from Group III nitride nanowires. The method of nanowire-templated lateral epitaxial growth (NTLEG) employs crystallographically aligned, substantially vertical Group III nitride nanowire arrays grown by metal-catalyzed metal-organic chemical vapor deposition (MOCVD) as templates for the lateral growth and coalescence of virtually crack-free Group III nitride films. This method requires no patterning or separate nitride growth step.Type: GrantFiled: October 3, 2007Date of Patent: March 2, 2010Assignee: Sandia CorporationInventors: George T. Wang, Qiming Li, J. Randall Creighton
-
Patent number: 7667833Abstract: A Theoretical Overlay Photographic (TOP) alignment method uses the overlay of a theoretical projected image of a perfectly aligned concentrator on a photographic image of the concentrator to align the mirror facets of a parabolic trough solar concentrator. The alignment method is practical and straightforward, and inherently aligns the mirror facets to the receiver. When integrated with clinometer measurements for which gravity and mechanical drag effects have been accounted for and which are made in a manner and location consistent with the alignment method, all of the mirrors on a common drive can be aligned and optimized for any concentrator orientation.Type: GrantFiled: June 12, 2007Date of Patent: February 23, 2010Assignee: Sandia CorporationInventor: Richard B. Diver
-
Patent number: 7666289Abstract: Disclosed herein are methods and devices for assaying and concentrating analytes in a fluid sample using dielectrophoresis. As disclosed, the methods and devices utilize substrates having a plurality of pores through which analytes can be selectively prevented from passing, or inhibited, on application of an appropriate electric field waveform. The pores of the substrate produce nonuniform electric field having local extrema located near the pores. These nonuniform fields drive dielectrophoresis, which produces the inhibition. Arrangements of electrodes and porous substrates support continuous, bulk, multi-dimensional, and staged selective concentration.Type: GrantFiled: September 2, 2008Date of Patent: February 23, 2010Assignee: Sandia CorporationInventors: Blake A. Simmons, Eric B. Cummings, Gregory J. Fiechtner, Yolanda Fintschenko, Gregory J. McGraw, Allen Salmi