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The Award database is continually updated throughout the year. As a result, data for FY21 is not expected to be complete until September, 2022.

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.

  1. A Novel, Microscale, Distributable Sensor Technology for Ionizing Radiation

    SBC: CFD Research Corporation            Topic: DTRA14B004

    Terrorist use of radioactive nuclear materials via nuclear and/or radiological dispersion devices (dirty bombs) is a serious threat. Therefore, it is crucial to detect proliferation of nuclear material. Critical challenges include: (a) high sensitivity detection of signature emissions from radioactive isotopes, and (b) cost-effectiveness for deployment of sensor networks across large storage facil ...

    STTR Phase II 2019 Department of DefenseDefense Threat Reduction Agency
  2. Analog Co-Processors for Complex System Simulation and Design

    SBC: Ocius Technologies LLC            Topic: ST15C002

    The solution of systems of both linear and non-linear partial differential equations (PDE) is important to many scientific problems, such as magnetohydrodynamic and non-linear acoustics. Application areas include computational electromagnetics, fusion en...

    STTR Phase II 2017 Department of DefenseDefense Advanced Research Projects Agency
  3. Portable System with Li Foil MWPC Neutron Detectors

    SBC: Radiation Detection Technologies, Inc.            Topic: DTRA14B005

    At the completion of the research and development effort a Li-foil multi-wire proportional counter (MWPC) neutron detector with more than 625-cm2 of active area will be included in a portable radiation detection system. The system is expected to outperform the standards set by the ANSI N42.53 standards, and gamma-ray rejection ratio (GRR) of 1.0x10-8 or better. A gamma-ray spectrometer for isotope ...

    STTR Phase II 2017 Department of DefenseDefense Threat Reduction Agency
  4. Technology Transitioning of Phase II Scalable Adaptive Fiber-Array Elements (SAFARE)

    SBC: MV Innovative Technologies LLC (DBA: Opt            Topic: AF12BT13

    The ongoing SAFARE STTR Phase II effort is focused on improving essential components for the high-energy coherently combined, fiber-based phased-array laser weapon system prototypes developed under the DARPA Excalibur program and significantly reduce system size, weight and required electrical power (SWaP). Fiber-array based laser weapons technology promises high power efficiency and reduced SWaP, ...

    STTR Phase II 2017 Department of DefenseDefense Advanced Research Projects Agency
  5. Revolutionary Airlift Innovation

    SBC: Logistic Gliders Inc.            Topic: ST14B004

    We propose to mature LG-X glider technology by manufacturing full-scaled prototypes and characterizing them in land-based flight-testing by using commercial aircraft to drop the gliders. Validated components such as the landing parachute, folding wing mechanism, and autopilot control system will undergo integrated flight-testing. Logistic Gliders will provide a considerable cost share to support ...

    STTR Phase II 2016 Department of DefenseDefense Advanced Research Projects Agency
  6. Expendable Local Area Sensors in a Tactically Interconnected Cluster (ELASTIC)

    SBC: TOYON RESEARCH CORPORATION            Topic: ST051009

    Obtaining situational awareness in tactical operations often involves high risk to personnel and/or equipment. The ELASTIC concept is to overcome this problem through the use of very low-cost, yet sophisticated, rapidly-deployable imaging sensors. Features of our proposed concept include use of highly portable equipment and support of a range of operational scenarios. Both of these features are ma ...

    STTR Phase II 2006 Department of DefenseDefense Advanced Research Projects Agency
  7. High Speed Room Temperature IR Camera Based on Plasmon Physics

    SBC: Tanner Research, Inc.            Topic: ST051005

    It is desirable to make focal plane arrays (or imaging arrays) with reduced pitch; doing so enables smaller, cheaper and lighter camera systems that provide the same image resolution. Currently, the lower limit on pitch is set by electron/hole diffusion and light diffraction that results in crosstalk between neighboring pixels. Since electron hole pairs generated outside the depletion layer can ...

    STTR Phase II 2006 Department of DefenseDefense Advanced Research Projects Agency
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