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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. Accelerated Linear Algebra Solvers for Multi-Core GPU-Based Computing Architectures

    SBC: EM PHOTONICS INC            Topic: AF09BT18

    ABSTRACT: High-performance computing (HPC) programmers and domain experts, such as those in the Air Force's research divisions, develop solvers for a wide variety of application areas such as modeling next generation aircraft and weapons designs and advanced image processing analysis. When developing software for HPC systems, the programmer should not spend the majority of their time optimiz ...

    STTR Phase II 2012 Department of DefenseAir Force
  2. A Compact, Low Cost, Handheld Sensor for Non- Destructive Material Case Depth Verification

    SBC: ALPHASENSE, INC.            Topic: N102141

    In this SBIR program, AlphaSense, Inc. teamed with the Center for Non-destructive Evaluations at Iowa State University to develop a compact, low cost handheld sensor for non-destructive material case depth verification. In phase I, we have proven the feasibility of using an alternating current potential drop (ACPD) sensor for non-destructive measurements of case depth. Phase II will be focusing on ...

    SBIR Phase II 2012 Department of DefenseNavy
  3. Advanced Infrared Emitter Array (AIREA)

    SBC: Chip Design Systems Inc.            Topic: AF141225

    ABSTRACT: We propose to build Infrared LED (IRLED) scene projectors that are able to project larger than 1k by 1k imagery with maximum temperatures of 3000K, frame rates in excess of 400 Hz, and emission wavelength between 3 and 5 microns. Our team consists of experienced IRLED fabrication experts, RIIC designers, and packaging specialists.; BENEFIT: Infrared LED (IRLED) arrays represent a potenti ...

    SBIR Phase II 2016 Department of DefenseAir Force
  4. Advanced Seal Technology for Helicopter Drive System Application

    SBC: SENTIENT SCIENCE CORPORATION            Topic: A12076

    Gearbox seal wear and leakage is a major source of maintenance and downtime for rotorcraft. Sentient will use our advanced tribology modeling technology to evaluate coatings and surface texturing processes for carbon face seals and provide a generalized modeling approach that can replace physical testing of seals. These models will be used to evaluate several rotorcraft seal designs proposed by ou ...

    SBIR Phase I 2012 Department of DefenseArmy
  5. Advanced Spectrally Selective Materials for Obscurant Applications

    SBC: LUMILANT, INC.            Topic: A13AT016

    Plasmonic metamaterials, composed of patterned metallic and dielectrics, can be engineered to have interesting optical properties that are attractive for a range of advanced obscurant applications. These particles are typically fabricated on planar surfaces, since patterning planar surfaces to achieve the desired effects is relatively straightforward.However, for planar geometries the particles op ...

    SBIR Phase II 2016 Department of DefenseArmy
  6. A Handheld, Low Cost, and High Throughput Sensor for Fatty Acid Methyl Ester Detection and Quantifications in Military Fuels

    SBC: ALPHASENSE, INC.            Topic: A12058

    Although biodiesels have been increasingly used in automobiles, trains, commercial aircrafts and heating systems, they are not currently used in the military aircrafts and land vehicles because they typically do not meet the JP-8 performance criteria as specified by MIL-PRF-83133E. Unintentional contaminations by the biodiesels into the jet fuels can introduce adverse effects, including engine ope ...

    SBIR Phase I 2012 Department of DefenseArmy
  7. A Novel, High Precision, X-ray 3D Scanner for Non-Line-of-Sight Point Cloud Generation

    SBC: ALPHASENSE, INC.            Topic: AF161013

    ABSTRACT: Casting parts with intricate internal surfaces are routinely used in many gun systems. It is important to inspect those casting parts to ensure the inner structures comply with the original design during the first article testing and production lot certification. Currently, inspections of inner surfaces are often done with borescopes, which is time consuming, labor intensive, and costly. ...

    SBIR Phase I 2016 Department of DefenseAir Force
  8. A Platform-Independent Framerwork for Efficient Massively Parallel Execution

    SBC: EM PHOTONICS INC            Topic: OSD11T02

    Next-generation high-performance computers (HPCs) are built as massively parallel systems where the parallelism exists at many levels. These systems are a collection of nodes all working together. Each node generally contains more than one processor and each processor contains multiple cores. Managing and efficiently utilizing the different parallelism in such a system is a complex task. Furth ...

    STTR Phase I 2012 Department of DefenseAir Force
  9. Automation of Material Placement for Aircraft Radomes

    SBC: ACCUDYNE SYSTEMS, INC.            Topic: AF112118

    ABSTRACT: Accudyne proposes a SBIR program to develop an automated material placement process for aircraft radomes and demonstrate it by forming quartz cynate ester fabric over an existing radome tool. The process employs computer simulations to model the forming process and compute a 2D fabric pattern as well as a four degrees of motion machine to form the fabric over the curved radome tool. T ...

    SBIR Phase I 2012 Department of DefenseAir Force
  10. Conformal Load Bearing Antenna Structure

    SBC: American Semiconductor, Inc.            Topic: AF121003

    ABSTRACT: American Semiconductor will develop and demonstrate structural integration of a conformal load bearing antenna structure (CLAS). Future aircraft will incorporate distributed electronics, sensors, and flight control transducers directly into the composite airframe. For near-term Air Force applications, adding RF electronics into the CLAS will improve the performance of a wide variety o ...

    SBIR Phase I 2012 Department of DefenseAir Force
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