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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until April, 2020.

  1. Engineering Models for Damage to Structural Components Subjected to Internal Blast Loading

    SBC: Thornton Tomasetti, Inc.            Topic: DTRA08006

    Weidlinger Associates Inc. proposes to develop effective technology for simulating explosive detonations within civil buildings where the propagation of airblast and failure of weak internal walls are strongly coupled. We will conduct a field test program designed to complement other internal detonation testing efforts such as DTRA''s Distinct Cobra, expanding the available database. We will perfo ...

    SBIR Phase II 2009 Department of DefenseDefense Threat Reduction Agency
  2. Engineered Substrates for “Zero-Penalty” Radiation Hardening of Ultra Deep Submicron Commercial Processes

    SBC: RADIATION ASSURED DEVICES, INC.            Topic: DTRA08003

    In this proposed Phase II program we will build on the successful Phase I program where we for the first time implemented engineered epitaxial layers based on nanostructure technology that were used to harden commercial silicon devices against radiation by minimizing collected photocurrents (electron-hole pairs) via recombination centers where we demonstrated that improved radiation hardness could ...

    SBIR Phase II 2009 Department of DefenseDefense Threat Reduction Agency
  3. Characterization and Mitigation of Radiation Effects in High-Speed Compound Semiconductor Microelectronics

    SBC: CFD Research Corporation            Topic: DTRA08003

    For ultra high-speed, ultra low-power applications in DoD space and weapons systems, devices and circuits fabricated from III–V semiconductor compounds offer significant advantages over silicon-based technology. However, the uncertainty in single-event-effect (SEE) response of compound semiconductor technologies forces the use of empirically-based hardening techniques with penalties in increased ...

    SBIR Phase II 2009 Department of DefenseDefense Threat Reduction Agency
  4. Diamond Opening-Switch-Based X-Ray Simulator

    SBC: Alameda Applied Sciences Corporation            Topic: N/A

    Alameda Applied Sciences Corporation (AASC) proposes to develop an all-solid-state, compact, portable, multi-gigawatt poer modulator for electron and ion beam diodes, high power microwave and x-ray sources. This modulator is based on Inductive Energy Store (IES) using an array of Diamond Opening Switches for power compression. Because power amplification using IES requires a much smaller volume ...

    SBIR Phase II 1998 Department of DefenseNational Geospatial-Intelligence Agency
  5. Directed Mono-Energetic Gamma Source

    SBC: Radiabeam Technologies, LLC            Topic: DTRA08001

    For long-range active interrogation of Special Nuclear Materials, an intense beam of mono-energetic directed gamma rays is required. In Phase I of this project, RadiaBeam developed the design for such a source, based on Inverse Compton Scattering (ICS), and determined its feasibility. The key innovation in our source is a novel Interaction Region system design, which significantly increases the av ...

    SBIR Phase II 2009 Department of DefenseDefense Threat Reduction Agency
  6. Speed-Accuracy Measures for Distributed Interactive Simulation of Nuclear Weapons Effects

    SBC: Pacific-sierra Research Corp.            Topic: N/A

    Using distributed interactive simulation (DIS) to conduct effective training, analyses, or mission support in a tactical nuclear weapons effects (NWE) environment requires realistic computer generated forces (CGF) that are sensitive to such effects. This level of sensitivity requires CGF to apply valid and reliable speed-accuracy measures of environmental effects on human performance within the D ...

    SBIR Phase II 1998 Department of DefenseNational Geospatial-Intelligence Agency
  7. Advanced nanocomposite scintillator for gamma radiation detection

    SBC: AGILTRON, INC.            Topic: DTRA08005

    Gamma radiation detection has traditionally required single crystal materials that are difficult to produce consistently on an industrial scale. Agiltron has developed a new class of scintillator materials based on composites containing nanoparticles. These so-called nanocomposites exhibit radiation detection characteristics superior to currently available single crystal scintillators. In Phase I ...

    SBIR Phase II 2009 Department of DefenseDefense Threat Reduction Agency
  8. Bulk Composite Materials for Detection of Gamma Radiation

    SBC: Tetramer Technologies,L.L.C.            Topic: DTRA08005

    The objective of this proposal is to develop enabling technologies for the production of bulk scintillating nanocomposites that have the gamma radiation detection properties of single crystal NaI but with the manufacturability of plastic scintillators. These performance criteria may be met by developing nanoparticle polymer composites with ultra-high nanoparticle loadings levels in matrix with a h ...

    SBIR Phase II 2009 Department of DefenseDefense Threat Reduction Agency
  9. Multilayer Capacitors Utilizing Phase Change Ceramics for High Energy Storage

    SBC: TRS CERAMICS, INC.            Topic: N/A

    For this Phase I SBIR program, high volumetric efficiency, energy storage capacitors are proposed using phase change ceramics. These materials are nonlinear dielectrics that make use of electric field induced antiferroelectric to ferroelectric phase transition to store more energy per volume than is possible with linear dielectrics (10 J/cm3 compared to 2 J/cm3). Furthermore phase change materia ...

    SBIR Phase II 1998 Department of DefenseNational Geospatial-Intelligence Agency
  10. Compact, Rugged, Flexible Fiber Optic Interferometer for Sensitive Gas and P

    SBC: Alameda Applied Sciences Corporation            Topic: N/A

    Alameda Applied Sciences Corporation (AASC) proposes to develop a new type of interferometer that is compact and portable and can be used to make in-situ measurements of gases and plasmas. This interferometer uses polarization maintaining optical fibers and diode lasers to duplicate the capabilities of existing Mach-Zender interferometers that use dicrete optical elements such as mirrors, lenses ...

    SBIR Phase II 1998 Department of DefenseNational Geospatial-Intelligence Agency

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