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The Award database is continually updated throughout the year. As a result, data for FY20 is not expected to be complete until September, 2021.

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. Smart Hemodynamic Monitoring System for Critical Care Air Transport Team (CCATT)

    SBC: Active Signal Technologies, Inc.            Topic: OSD05H15

    Aeromedical evacuation (AE) involves prolonged transport of injured warfighters at risk for clinical deterioration under austere medical conditions. Because of their injuries they have a high potential for progression of recognized and/or occult additional injuries leading to acute instability during Critical Care Air Transport Team (CCATT) transfer. While the CCATTs have a great depth of medica ...

    SBIR Phase I 2005 Department of DefenseAir Force
  2. Multi-functional nanocomposite materials with high-temperature polymer resin matrice

    SBC: Sensintel Inc.            Topic: AF03T018

    The overall objective of the proposed Phase II STTR program is to continue optimization of properties already obtained during Phase I which established the feasibility of concept to multi-functionality for BMI polymer matrix composites along with structural capability. Throughout this 2-year effort, it is proposed to seek optimization of the composite properties. The goal is develop and demonstrat ...

    STTR Phase II 2005 Department of DefenseAir Force
  3. Processing Methodology for Reactives Enhanced Munitions

    SBC: Sensintel Inc.            Topic: AF04172

    ACR will develop strong tailored composite polymer formulations capable of energy release as needed for a range of structural applications. Materials developed under the Phase I effort (Fibrous Monolith formulations of iron oxide/aluminum, bismuth oxide/aluminum, Teflon/aluminum) will be used as a foundation with specific strength and density targets for intended applications. The initial effor ...

    SBIR Phase II 2005 Department of DefenseAir Force
  4. Heat Flux-Based Calorimeter for Active Thermal Coatings

    SBC: ATEC, Inc.            Topic: AF04147

    We propose to develop a space-ready instrument that can accurately measure the emissivities, absorptivities, and long term stabilities of several passive and active coatings or thermal structures simultaneously. This technique provides a direct measure of the heat flowing through the surface using heat flux sensors, so the performances of the thermal control materials mounted on these sensors are ...

    SBIR Phase II 2005 Department of DefenseAir Force
  5. Nowcasting/Forecasting the Battlespace Environment

    SBC: ATMOSPHERIC & ENVIRONMENTAL RESEARCH, INC.            Topic: AF05037

    This effort will characterize the real world features and spatial structure of stressing atmospheric phenomena and demonstrate the feasibility of forecasting such phenomena using data-driven infrared background models. Our approach to this problem involves locating and identifying stressing backgrounds contained in measurements and extracting key structure characteristics in a form that allows th ...

    SBIR Phase I 2005 Department of DefenseAir Force
  6. Chemical Quick Quench Probe for Engine Emissions Measurements

    SBC: Aerodyne Research, Inc.            Topic: AF05301

    A need exists to determine the true chemical composition of the exhaust gases from aircraft engines, aircraft combustors and rocket engines. Measurements of these high-speed reacting flows are important for determining the combustion efficiency of these devices and guiding efforts to engineer reduced-emissions engines. Unfortunately, the sampling system used to deliver exhaust gases to the analyze ...

    SBIR Phase I 2005 Department of DefenseAir Force
  7. Novel Infrared Imaging Fiber Optic Bundles

    SBC: AGILTRON, INC.            Topic: AF04292

    This program addresses the development of a new fiber bundle technology for infrared imaging in the spectral range of 1-12 microns. Currently there is no single fiber system that covers this broad wavelength range. Agiltron proposed technology relies on the excellent IR properties of heavy halides (MXn, where X=Cl, Br, I), the only materials with the broad-band spectral transparency required. Base ...

    SBIR Phase II 2005 Department of DefenseAir Force
  8. New Generation Hybrid Carbon/Ceramic Nanocomposites

    SBC: AGILTRON, INC.            Topic: AF05T023

    Based on in-depth experience with advanced optical ceramics, nano-particle coating, nanoceramic sintering and superplasticity deformation, in this program, AGILTRON Inc. and Florida International University, and University of California at Davis propose to develop next generation airframe and engine materials made of CNT/alumina nano-composites. The proposed approach uniquely combines low-cost and ...

    STTR Phase I 2005 Department of DefenseAir Force
  9. A New Generation of Polymer Fiber Optic Image Inverter

    SBC: AGILTRON, INC.            Topic: AF05139

    In this program, leveraging our extensive experience in micro-precision fiber optic products and nano-composite engineering, Agiltron Incorporated proposes to realize high refractive index polymer fibers and associated polymer optic inverters, potentially meeting all the required level of performance. The new class of high performance polymer fiber consists of high refractive organic/inorganic co ...

    SBIR Phase I 2005 Department of DefenseAir Force
  10. Novel Broadband Tunable Microwave Components

    SBC: AGILTRON, INC.            Topic: AF05224

    Leveraging Agiltron's recent breakthrough in manufacturing low cost fiber optic digital delay lines and variable optical attenuators as well as the drastic improvement in cost and performance of commercial optical transceivers, we propose to develop a practical fiber optic switchable microwave-bandpass filter for military radar and remote sensing applications. The proposed approach overcomes the ...

    SBIR Phase I 2005 Department of DefenseAir Force
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