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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. 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
  2. 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
  3. Portable Time of Flight Mass Spectrometer for Nuclear Forensics

    SBC: CREARE LLC            Topic: DTRA08004

    Analysis of nuclear material samples in the field has many advantages over laboratory analysis. Laboratory analyses can be slow, involve increased expense, lead to additional waste generation and disposal problems, and may introduce errors due to sample degradation or mishandling. In situ analysis mitigates all of these problems. The specific aim of this project is the development of a truly por ...

    SBIR Phase I 2008 Department of DefenseDefense Threat Reduction Agency
  4. Batteryless Sensors for Intrusion Detection and Assessment of Threats

    SBC: Anro Engineering, Inc.            Topic: N/A

    A batteryless and wireless sensor for intrusion detection and assessment of threats which requires no battery, external power or wiring is proposed. These types of sensors derive energy from passing vehicles or persons, and indicate their presence, location, speed, etc., via a self-generated short-range radio signal. These sensors require no maintenance, and can be inconspicuously placed in window ...

    SBIR Phase II 1995 Department of DefenseDefense Threat Reduction Agency
  5. Inservice Diagnostics of Motor Operated Valves

    SBC: ACENTECH INCORPORATED            Topic: N/A

    N/A

    SBIR Phase I 1995 Nuclear Regulatory Commission
  6. NEXT GENERATION ULTRA WIDEBAND (UWB) INTRUSTION DETECTION RADAR FOR THE PROTECTION OF NUCLEAR FACILITIES

    SBC: Anro Engineering, Inc.            Topic: N/A

    N/A

    SBIR Phase I 1990 Department of DefenseDefense Threat Reduction Agency
  7. GAMMA RAY SPECTROMETER/DOSIMETER

    SBC: Applied Inventions Corp.            Topic: N/A

    N/A

    SBIR Phase I 1990 Nuclear Regulatory Commission
  8. MULTI-BEAM LASER INTERFEROMETER FOR PLASMA DENSITY MEASUREMENTS IN A PLASMA EROSION OPENING SWITCH (PEOS)

    SBC: Science Research Laboratory, Inc            Topic: N/A

    N/A

    SBIR Phase I 1990 Department of DefenseDefense Threat Reduction Agency
  9. LONG RANGE RADIOACTIVE PLUME TRANSPORT SIMULATION MODEL/CODE

    SBC: Sigma Research Corp            Topic: N/A

    THE OBJECTIVE OF THE PHASE I RESEARCH IS TO DETERMINE THE TECHNICAL FEASIBILITY OF THE DEVELOPMENT OF A LONG RANGE RADIOACTIVE PLUME TRANSPORT MODEL/CODE FOR THE NRC. THIS CODE WOULD BE USED TO SIMULATE THE MOVEMENT, DISPERSION, DECAY, AND DEPOSITION OF RADIONUCLIDES RELEASED FROM SEVERE NUCLEAR REACTOR ACCIDENTS, SUCH AS THE CHERNOBYL ACCIDENT. IT IS DESIRED THAT ALL RELEVANT PHYSICAL AND CHEMICA ...

    SBIR Phase I 1990 Nuclear Regulatory Commission
  10. GENERALIZED MODELING OF CONDENSATION FOR REACTOR APPLICATION

    SBC: CREARE LLC            Topic: N/A

    N/A

    SBIR Phase I 1985 Nuclear Regulatory Commission
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