Patents Assigned to Sandia
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Patent number: 7079309Abstract: An optical amplifier having a uniform gain profile uses a photonic crystal to tune the density-of-states of a gain medium so as to modify the light emission rate between atomic states. The density-of-states of the gain medium is tuned by selecting the size, shape, dielectric constant, and spacing of a plurality of microcavity defects in the photonic crystal. The optical amplifier is particularly useful for the regeneration of DWDM signals in long optical fibers.Type: GrantFiled: June 25, 2003Date of Patent: July 18, 2006Assignee: Sandia CorporationInventors: Shawn-Yu Lin, James G. Fleming, Ihab El-Kady
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Patent number: 7078237Abstract: A micropyrolyzer has applications to pyrolysis, heated chemistry, and thermal desorption from liquid or solid samples. The micropyrolyzer can be fabricated from semiconductor materials and metals using standard integrated circuit technologies. The micropyrolyzer enables very small volume samples of less than 3 microliters and high sample heating rates of greater than 20° C. per millisecond. A portable analyzer for the field analysis of liquid and solid samples can be realized when the micropyrolyzer is combined with a chemical preconcentrator, chemical separator, and chemical detector. Such a portable analyzer can be used in a variety of government and industrial applications, such as non-proliferation monitoring, chemical and biological warfare detection, industrial process control, water and air quality monitoring, and industrial hygiene.Type: GrantFiled: October 23, 2001Date of Patent: July 18, 2006Assignee: Sandia CorporationInventors: Curtis D. Mowry, Catherine H. Morgan, Ronald P. Manginell, Gregory C. Frye-Mason
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Patent number: 7077532Abstract: A solar collector comprising a glass mirror, and a composite panel, wherein the back of the mirror is affixed to a front surface of the composite panel. The composite panel comprises a front sheet affixed to a surface of a core material, preferably a core material comprising a honeycomb structure, and a back sheet affixed to an opposite surface of the core material. The invention may further comprise a sealing strip, preferably comprising EPDM, positioned between the glass mirror and the front surface of the composite panel. The invention also is of methods of making such solar collectors.Type: GrantFiled: April 5, 2000Date of Patent: July 18, 2006Assignee: Sandia CorporationInventors: Richard B. Diver, Jr., James W. Grossman, Michael Reshetnik
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Patent number: 7074336Abstract: A process and medium for decontamination of water containing anionic species including arsenic and chromium, wherein compounds comprising divalent and trivalent metal oxides and sulfides are used to form surface complexes with contaminants under pH conditions within the range of potable water. In one embodiment natural and synthetic spinels and spinel-like materials are used as the sorbent substance.Type: GrantFiled: June 20, 2001Date of Patent: July 11, 2006Assignee: Sandia CorporationInventors: David M. Teter, Patrick V. Brady, James L. Krumhansl
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Patent number: 7071595Abstract: A positioning device provides the capability of moving an object in both a linear and a rotational direction. The positioning device includes a first piezo stack with plural piezo plates that are capable of movement in orthogonal directions with respect to each other. The positioning device further includes a second piezo stack with plural piezo plates that are capable of movement in orthogonal directions with respect to each other. The positioning device also includes a first bearing that is disposed against the first piezo stack. The positioning device further includes a second bearing that is disposed against the second piezo stack. The positioning device also includes a spring element and a fifth bearing that is disposed against the spring element. The first through fifth bearings are disposed around and against the object to be positioned, to provide for positioning of the object in at least one of a linear direction and a rotational direction.Type: GrantFiled: December 15, 2004Date of Patent: July 4, 2006Assignee: Sandia National LaboratoriesInventors: Andreas Schmid, Oliver Schaff
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Publication number: 20060137985Abstract: The present invention relates to an electrokinetic (EK) pump capable of creating high pressures electroosmotically, and capable of retaining high pressures. Both pressure creation and retention are accomplished without the need for moving parts. The EK pump uses a polymerizable fluid that creates the pressure-retaining seal within the EK pump when polymerization is initiated, typically by exposure to uv radiation. Weaklink devices are advantageously constructed including such a pressure-retaining EK pump since, among other advantages, the response of the weaklink device relies on predictable and reliable chemical polymerization reactions.Type: ApplicationFiled: December 23, 2004Publication date: June 29, 2006Applicant: Sandia National LaboratoriesInventors: Timothy Shepodd, Matthew Duncan
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Patent number: 7066004Abstract: A MEM inertial sensor (e.g. accelerometer, gyroscope) having integral rotational means for providing static and dynamic bias compensation is disclosed. A bias compensated MEM inertial sensor is described comprising a MEM inertial sense element disposed on a rotatable MEM stage. A MEM actuator for drives the rotation of the stage between at least two predetermined rotational positions. Measuring and comparing the output of the MEM inertial sensor in the at least two rotational positions allows, for both static and dynamic bias compensation in inertial calculations based on the sensor's output. An inertial measurement unit (IMU) comprising a plurality of independently rotatable MEM inertial sensors and methods for making bias compensated inertial measurements are disclosed.Type: GrantFiled: September 2, 2004Date of Patent: June 27, 2006Assignee: Sandia CorporationInventors: Stewart M. Kohler, James J. Allen
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Patent number: 7064817Abstract: A method to determine the alignment of the transmitter and receiver fields of view of a light detection and ranging (LIDAR) system. This method can be employed to determine the far-field intensity distribution of the transmitter beam, as well as the variations in transmitted laser beam pointing as a function of time, temperature, or other environmental variables that may affect the co-alignment of the LIDAR system components. In order to achieve proper alignment of the transmitter and receiver optical systems when a LIDAR system is being used in the field, this method employs a laser-beam-position-sensing detector as an integral part of the receiver optics of the LIDAR system.Type: GrantFiled: February 17, 2004Date of Patent: June 20, 2006Assignee: Sandia CorporationInventors: Randal L. Schmitt, Tammy D. Henson, Leslie J. Krumel, Philip J. Hargis, Jr.
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Patent number: 7065736Abstract: A method of generating two-dimensional masks from a three-dimensional model comprises providing a three-dimensional model representing a micro-electro-mechanical structure for manufacture and a description of process mask requirements, reducing the three-dimensional model to a topological description of unique cross sections, and selecting candidate masks from the unique cross sections and the cross section topology. The method further can comprise reconciling the candidate masks based on the process mask requirements description to produce two-dimensional process masks.Type: GrantFiled: September 24, 2003Date of Patent: June 20, 2006Assignee: Sandia CorporationInventor: Richard Schiek
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Patent number: 7051656Abstract: A two-stage acceleration sensing apparatus is disclosed which has applications for use in a fuze assembly for a projected munition. The apparatus, which can be formed by bulk micromachining or LIGA, can sense acceleration components along two orthogonal directions to enable movement of a shuttle from an “as-fabricated” position to a final position and locking of the shuttle in the final position. With the shuttle moved to the final position, the apparatus can perform one or more functions including completing an explosive train or an electrical switch closure, or allowing a light beam to be transmitted through the device.Type: GrantFiled: August 14, 2003Date of Patent: May 30, 2006Assignee: Sandia CorporationInventors: David R. Koehler, Darren A. Hoke, Louis S. Weichman, George E. Vernon, Randy J. Shul, Michael H. Beggans
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Patent number: 7052608Abstract: A three-dimensional microporous polymer network material, or monolith, cast-to-shape in a microchannel. The polymer monolith, produced by a phase separation process, is capable of trapping and retaining charged protein species from a mixture of charged and uncharged species under the influence of an applied electric field. The retained charged protein species are released from the porous polymer monolith by a pressure driven flow in the substantial absence of the electric field. The pressure driven flow is independent of direction and thus neither means to reverse fluid flow nor a multi-directional flow field is required, a single flow through the porous polymer monolith can be employed, in contrast to prior art systems. The monolithic polymer material produced by the invention can function as a chromatographic medium.Type: GrantFiled: May 7, 2004Date of Patent: May 30, 2006Assignee: Sandia National LaboratoriesInventors: Timothy J. Shepodd, Elizabeth Franklin, Zane T. Prickett, Alexander Artau
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Patent number: 7051956Abstract: Disclosed is a device for increasing entrainment and mixing in an air/fuel zone of a direct fuel injection system. The device comprises an ejector nozzle in the form of an inverted funnel whose central axis is aligned along the central axis of a fuel injector jet and whose narrow end is placed just above the jet outlet. It is found that effective ejector performance is achieved when the ejector geometry is adjusted such that it comprises a funnel whose interior surface diverges about 7° to about 9° away from the funnel central axis, wherein the funnel inlet diameter is about 2 to about 3 times the diameter of the injected fuel plume as the fuel plume reaches the ejector inlet, and wherein the funnel length equal to about 1 to about 4 times the ejector inlet diameter. Moreover, the ejector is most effectively disposed at a separation distance away from the fuel jet equal to about 1 to about 2 time the ejector inlet diameter.Type: GrantFiled: March 19, 2004Date of Patent: May 30, 2006Assignee: Sandia Naitonal LaboratoriesInventor: Ansis Upatnieks
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Patent number: 7050951Abstract: A method of and software for automatically determining whether a mesh can be generated by sweeping for a representation of a geometric solid comprising: classifying surface mesh schemes for surfaces of the representation locally using surface vertex types; grouping mappable and submappable surfaces of the representation into chains; computing volume edge types for the representation; recursively traversing surfaces of the representation and grouping the surfaces into source, target, and linking surface lists; and checking traversal direction when traversing onto linking surfaces.Type: GrantFiled: August 8, 2001Date of Patent: May 23, 2006Assignee: Sandia CorporationInventors: Timothy J. Tautges, David R. White
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Patent number: 7049622Abstract: An inexpensive, optical position sensor for measuring a position or length, x, along a one-dimensional curvilinear, coordinate system. The sensor can be used, for example, to determine the position of an interface between a clear and an opaque fluid (such as crude oil and water). In one embodiment, the sensor utilizes the principle of dual-fluorescence, where a primary fiber emits primary fluorescent light and a parallel secondary fiber collects a portion of the primary fluorescent light that is not blocked by the opaque fluid. This, in turn, excites secondary fluorescence in the secondary fiber at a longer wavelength. A light detector measures the intensity of secondary fluorescence emitted from an end of the secondary fiber, which is used to calculate the unknown position or length, x. Side-emitting fibers can be used in place of, or in addition to, fluorescent fibers. The all-optical sensor is attractive for applications involving flammable liquids.Type: GrantFiled: December 21, 2004Date of Patent: May 23, 2006Assignee: Sandia CorporationInventor: Jonathan D. Weiss
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Patent number: 7045170Abstract: A method for depositing an anti-stiction coating on a MEMS device comprises reacting the vapor of an amino-functionalized silane precursor with a silicon surface of the MEMS device in a vacuum chamber. The method can further comprise cleaning the silicon surface of the MEMS device to form a clean hydroxylated silicon surface prior to reacting the precursor vapor with the silicon surface. The amino-functionalized silane precursor comprises at least one silicon atom, at least one reactive amino (or imine) pendant, and at least one hydrophobic pendant. The amino-functionalized silane precursor is highly reactive with the silicon surface, thereby eliminating the need for a post-process anneal step and enabling the reaction to occur at low pressure. Such vapor-phase deposition of the amino-functionalized silane coating provides a uniform surface morphology and strong adhesion to the silicon surface.Type: GrantFiled: April 3, 2002Date of Patent: May 16, 2006Assignee: Sandia CorporationInventors: Matthew G. Hankins, Thomas M. Mayer, David R. Wheeler
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Patent number: 7046411Abstract: A microelectromechanical (MEM) apparatus is disclosed which includes one or more tensile-stressed actuators that are coupled through flexures to a stage on a substrate. The tensile-stressed actuators, which can be formed from tensile-stressed tungsten or silicon nitride, initially raise the stage above the substrate without any applied electrical voltage, and can then be used to control the height or tilt angle of the stage. An electrostatic actuator can also be used in combination with each tensile-stressed actuator. The MEM apparatus has applications for forming piston micromirrors or tiltable micromirrors and independently addressable arrays of such devices.Type: GrantFiled: April 29, 2005Date of Patent: May 16, 2006Assignee: Sandia CorporationInventor: James G. Fleming
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Patent number: 7046539Abstract: A first-in-first-out (FIFO) microelectromechanical memory apparatus (also termed a mechanical memory) is disclosed. The mechanical memory utilizes a plurality of memory cells, with each memory cell having a beam which can be bowed in either of two directions of curvature to indicate two different logic states for that memory cell. The memory cells can be arranged around a wheel which operates as a clocking actuator to serially shift data from one memory cell to the next. The mechanical memory can be formed using conventional surface micromachining, and can be formed as either a nonvolatile memory or as a volatile memory.Type: GrantFiled: November 2, 2004Date of Patent: May 16, 2006Assignee: Sandia CorporationInventors: Jeffrey C. Gilkey, Michelle A. Duesterhaus, Frank J. Peter, Rosemarie A. Renn, Michael S. Baker
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Patent number: 7041616Abstract: A method for carbonizing a zeolite comprises depositing a carbon coating on the zeolite pores by flowing an inert carrier gas stream containing isoprene through a regenerated zeolite at elevated temperature. The carbonized zeolite is useful for the separation of light hydrocarbon mixtures due to size exclusion and the differential adsorption properties of the carbonized zeolite.Type: GrantFiled: April 14, 2003Date of Patent: May 9, 2006Assignee: Sandia CorporationInventors: Tina M. Nenoff, Steven G. Thoma, Mutlu Kartin
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Patent number: 7036612Abstract: A damping apparatus and method for a drillstring comprising a bit comprising providing to the drillstring a damping mechanism comprising magnetorheological fluid and generating an electromagnetic field affecting the magnetorheological fluid in response to changing ambient conditions encountered by the bit.Type: GrantFiled: June 18, 2003Date of Patent: May 2, 2006Assignee: Sandia CorporationInventors: David W. Raymond, Mostafa Ahmed Elsayed
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Patent number: 7038150Abstract: A microelectromechanical (MEM) acceleration switch is disclosed which includes a proof mass flexibly connected to a substrate, with the proof mass being moveable in a direction substantially perpendicular to the substrate in response to a sensed acceleration. An electrode on the proof mass contacts one or more electrodes located below the proof mass to provide a switch closure in response to the sensed acceleration. Electrical latching of the switch in the closed position is possible with an optional latching electrode. The MEM acceleration switch, which has applications for use as an environmental sensing device, can be fabricated using micromachining.Type: GrantFiled: July 6, 2004Date of Patent: May 2, 2006Assignee: Sandia CorporationInventors: Marc A. Polosky, Laurance L. Lukens