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The Award database is continually updated throughout the year. As a result, data for FY24 is not expected to be complete until March, 2025.

Download all SBIR.gov award data either with award abstracts (290MB) or without award abstracts (65MB). A data dictionary and additional information is located on the Data Resource Page. Files are refreshed monthly.

The SBIR.gov award data files now contain the required fields to calculate award timeliness for individual awards or for an agency or branch. Additional information on calculating award timeliness is available on the Data Resource Page.

  1. Radiation Effects Modeling for High Yield, Reliable Integrated Circuits

    SBC: AET, Inc.            Topic: N/A

    The Defense Special Weapons Agency (DSWA) has identified a need to improve the radiation hardness of advanced integrated circuit technologies. To be practical, this must be achieved in a cost effective way. This proposal by AET, Inc. directly addresses these concerns. Specifi-cally, this proposal provides a means to achieve significant advance in radiation hardness of large scale integrated cir ...

    SBIR Phase I 1997 Department of DefenseDefense Threat Reduction Agency
  2. Advanced nanocomposite scintillator for gamma radiation detection

    SBC: AGILTRON, INC.            Topic: DTRA08005

    Until now gamma radiation detection has required large single crystals of sensitive materials that are difficult to produce consistently on an industrial scale. In collaboration with a research group at the University of Texas at Arlington, Agiltron proposes to develop a new class of nanocomposite scintillator materials. The radiation detection characteristics of the synthetic nanoparticles in the ...

    SBIR Phase I 2008 Department of DefenseDefense Threat Reduction Agency
  3. Improvements in Scintillation Technology for Detection of Nuclear Radiation

    SBC: RADIATION MONITORING DEVICES, INC.            Topic: DTRA07004

    High-resolution scintillation crystals and crystal arrays are important components of current and future handheld and arrayed detectors (used for DOD/DTRA applications), and scintillation spectrometers (routinely used in high energy physics research, medical imaging, diffraction, homeland security, nuclear waste clean-up, nuclear treaty verification and safeguards, and geological exploration). Un ...

    SBIR Phase II 2008 Department of DefenseDefense Threat Reduction Agency
  4. Nuclear Weapons Effects Phenomenology

    SBC: Applied Physics Technologies            Topic: N/A

    The nuclear weapons community has traditionally focused on the next generation or level of weapon capability complimented by gathering and analysis of actual test data. Now, with the cessation of actual weapons testing, there is an increased need to use the actual test data in modeling techniques to better understand the phenomenology and potential effects of nuclear weapons. The first phase of ...

    SBIR Phase I 1997 Department of DefenseDefense Threat Reduction Agency
  5. Laser Turbulence Measurements in the LB/TS

    SBC: Applied Research Associates, Inc.            Topic: N/A

    Turbulence of gas flows by its very nature is one of the most difficult things to model and measure. We propose to develop a new way of measuring the turbulence and to compare these measurements to predictions using the k-epsilon model. Typical measurements, in the past, use smoke, Schlierin or shadow graph techniques to visually infer turbulence characteristics. These features are either motio ...

    SBIR Phase I 1997 Department of DefenseDefense Threat Reduction Agency
  6. Radiation Hardened Silicon-on-Insulator Substrates for Advanced Electronics

    SBC: IBIS TECHNOLOGY CORP.            Topic: N/A

    SIMOX (Separation by Implanted Oxygen) technology achieves total dielectric isolation of active device regions from the substrate and reduces the collection path for ionized charges via the built-in buried oxide which restricts charge movement. Advances in SIMOX technology include radiation hardened memories and gate arrays for space applications, ULSI DRAMs for low voltage operation, thin film SO ...

    SBIR Phase II 1996 Department of DefenseDefense Threat Reduction Agency
  7. Thin Buried Oxide Densification for Radiation Hardened 80nm BOX SIMOX Substrates

    SBC: IBIS TECHNOLOGY CORP.            Topic: N/A

    SIMOX (Separation by IMplanted Oxygen) technology achieves total dielelectric isolation of active device regions from the substrate and reduces the collection path for ionized charges via the built-in buried oxide which restricts charge movement. Advances in SIMOX technology include radiation hardened memories and gate arrays for space applications, ULSI DRAMS for low voltage operation, thin film ...

    SBIR Phase I 1997 Department of DefenseDefense Threat Reduction Agency
  8. A FUEL/AIR DRIVE FLUX COMPRESSOR POWER UNIT FOR ELECTROTHERMAL GUNS

    SBC: KTECH CORP.            Topic: N/A

    The Ktech Team proposes a feasibility study of a fuel/air driven flux compression power unit (FCPU) for electric guns. Through variations of inductance gradients and through changes in scale, the proposed technology will be applicable to both electrothermal/chemical and electromagnetic guns. In the Phase 1 effort, we develop simulation models to predict the performance of the flux compression po ...

    SBIR Phase I 1996 Department of DefenseDefense Threat Reduction Agency
  9. Reflex Triode

    SBC: KTECH CORP.            Topic: N/A

    "Reflex triode bremsstrahlung sources potentially provide warm X-ray sources (20 keV to 500 keV), capable of generating high doses (~10 cal/g gold) over exposure areas of ~20 cm2. This needed capability allows experimental verification of warm X-ray inducedthermomechanical response, SGEMP, and box IEMP models for achieving component and system certification to hostile environments.In a reflex trio ...

    SBIR Phase I 2002 Department of DefenseDefense Threat Reduction Agency
  10. Reflex Triode

    SBC: KTECH CORP.            Topic: N/A

    "Reflex triode bremsstrahlung sources potentially provide warm X-ray sources (20 keV to 500 keV), capable of generating high doses (~10 cal/g gold) over exposure areas of ~20 cm2. This needed capability allows experimental verification of warm X-ray inducedthermomechanical response, SGEMP, and box IEMP models for achieving component and system certification to hostile environments.In a reflex trio ...

    SBIR Phase II 2002 Department of DefenseDefense Threat Reduction Agency
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