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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until April, 2020.

  1. Theoretical and experimental development of an atmospheric sensing suite for deep-turbulence research

    SBC: Radio-Hydro-Physics LLC            Topic: AF11BT41

    ABSTRACT: This Phase I SBIR will produce a concept, and algorithms, for a Sensor Suite which can be used as a research tool to characterize strong atmospheric turbulence. Previous and on-going theories, statistics, and empirical data will be evaluated to arrive at an optimal Sensor design concept. That Sensor may exploit the superior resolution and performance inherent in the Radio-Hydro-Physi ...

    STTR Phase I 2012 Department of DefenseAir Force
  2. Optimized Process for Ultrasonic Consolidation of Metallic Composites

    SBC: TOUCHSTONE RESEARCH LABORATORY LTD (INC)            Topic: A12aT004

    The overall objective of the proposed effort is to develop an improved ultrasonic consolidation process for metal matrix composites (MMCs). This will be done through the development and validation of multiscale models of the bonding process and the laminated structures produced. These models will facilitate the optimization of the in-coming material, the structural performance of the processed m ...

    STTR Phase I 2012 Department of DefenseArmy
  3. Auxetic Fabric Technology Development for Military Protective Clothing

    SBC: TOUCHSTONE RESEARCH LABORATORY LTD (INC)            Topic: N12AT012

    The United States Navy has identified the need to investigate the use of auxetic fabric for military personnel protective clothing including jackets, shirts, pants, helmets, boots, gloves, and even body armor. Auxetic fabric technology has a unique feature in that it exhibits a negative Poisson"s ratio effect when subjected to an axial load. Auxetic fabric consists of an elastomeric core yarn, whi ...

    STTR Phase I 2012 Department of DefenseNavy
  4. 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
  5. 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
  6. Ultrafast Hybrid Active Materials and Devices for Compact RF Photonics

    SBC: EM PHOTONICS INC            Topic: AF09BT25

    ABSTRACT: Optical control of RF-signal transmission presents an attractive avenue for processing and transmitting RF information using various optical components, as opposed to electronic control, where metallic wires/cables are required. On a macroscopic scale, optical fibers offer low transmission losses, and hence are suitable for the distribution of control signals over long distances for lar ...

    STTR Phase II 2012 Department of DefenseAir Force
  7. Silicon Receiver for Millimeter Wave Distributed Aperture Imager with Optical Upconversion

    SBC: Phase Sensitive Innovations, Inc.            Topic: SB113003

    In this SBIR effort we will design (Phase I) and demonstrate (Phase II) an integrated silicon electronic-photonic upconversion receiver that when used with our photonic backend will allow for a highly sensitive, real-time, and economical millimeter wave (mmW) imaging system. The development of this chip leverages recent progress in CMOS and SiGe HBT high speed analog circuit design and integrates ...

    SBIR Phase I 2012 Department of DefenseDefense Advanced Research Projects Agency
  8. Metal Matrix Composite DACS Components

    SBC: TOUCHSTONE RESEARCH LABORATORY LTD (INC)            Topic: MDA11014

    Touchstone proposes an innovative solution to the composite overwrapped helium tank that will lower the cost and reduce the weight. The current configuration consists of storage tank for the fuel, the oxidizer, and a gas that is used to pressurize the fuel and oxidizer. The gas tank design incorporates a polymer composite that is wound over a titanium liner. The polymer composite provides the s ...

    SBIR Phase I 2012 Department of DefenseMissile Defense Agency
  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. Advanced Solid Rocket Motor Technology for Tactical Missiles

    SBC: Knobley Technical Associates LLC            Topic: AF112102

    ABSTRACT: Knobley Technical Associates Phase I Advanced Solid Rocket Motor Technology for Tactical Missiles program is planned to identify and evaluate technology advancing weight and risk reducing processes, component designs and increased energy reduced signature propellant systems for the rate augmented highly loaded dual pulse tactical propulsion system. The proposed program is planned to bui ...

    SBIR Phase I 2012 Department of DefenseAir Force

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