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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. Voice-Activated Poor Visibility Emergency Response System (VAPERS)

    SBC: Orbital Technologies Corporation            Topic: N/A

    This proposed effort will develop the Voice Activated Poor Visibility Emergency Response Systems (VAPERS) by combining hardware and software concepts in a manner that will significantly increase Crash-Fire-Rescue (CFR) vehicle effectiveness without a corresponding increase in operator workload. The proposed VAPERS will provide the CFR operators and fire fighters with the ability to locate and trav ...

    SBIR Phase II 1995 Department of DefenseAir Force
  2. SIGNAL AMPLIFICATION FOR SPECIFIC NUCLEIC ACID DETECTION

    SBC: THIRD WAVE TECHNOLOGIES, INC.            Topic: N/A

    THIS PROJECT WILL ATTEMPT TO COMMERCIALIZE A NOVEL, HIGH-SPEED, AND AUTOMATABLE DNA AND RNA DIAGNOSTIC TECHNOLOGY FOR THE SPECIFIC DETECTION OF NUCLEIC ACID SEQUENCE CHANGES ASSOCIATED WITH GENETIC DISEASES. THIS TECHNOLOGY IS BASED ON THE DISCOVERY THAT THE 5' NUCLEASE OF SEVERAL THERMOSTABLE DNA POLYMERASES CAN BE ENGINEERED TO DIRECT CLEAVAGE OF DNA OR RNA AT ONE AND ONLY ONE LOCATION, ALLOWIN ...

    SBIR Phase II 1995 Department of Energy
  3. A Tool for the Simulation of Thermal and Chemical Effects on Turbine Engine Component Parts

    SBC: Computherm, LLC            Topic: AF04155

    CompuTherm proposes to develop a tool which will enable the simulation of thermal and chemical effects on turbine engine component parts made of Alloy 718 during heat treatment and service. The proposed innovative tool will include a thermodynamic database which covers all the phases for Alloy 718 and a software package which integrates both thermodynamic and kinetic models. The tool can be used t ...

    SBIR Phase II 2005 Department of DefenseAir Force
  4. In-Harbor/At-Sea Ship Defense with Terahertz Sensors

    SBC: VDW DESIGN, LLC            Topic: N04065

    The Phase II component of this project will scale from the gigahertz to the terahertz regime the new antennas, pulse generators, detectors and modulation concepts modeled and demonstrated in Phase I. Phase II efforts will focus on arrays for generating and detecting broadband radiation from 50 GHz to above 0.5 THz (where atmospheric absorption is minimized) for sensing concealed threats. Portabili ...

    SBIR Phase II 2005 Department of DefenseNavy
  5. Computer-Aided Design and Optimization of High Performance Vacuum Electronic Devices

    SBC: SIMULATION TECHNOLOGY & APPLIED RESEARCH, INC.            Topic: N04113

    High-performance vacuum electron devices, such as microwave tubes, are widely used in military electronic battle-space systems. These devices are found in radar, communications, remote sensing, and navigation systems, where they provide an efficient and reliable source of microwave power. The pivotal role of microwave tubes in many on-board systems makes them a natural choice for careful optimiza ...

    SBIR Phase II 2005 Department of DefenseNavy
  6. Self scanning on line sensor system for automatic control of cooling and boiler water treatment

    SBC: Biotronics Technologies, Inc.            Topic: N/A

    Operation of cooling tower and boiler systems requires frequent monitoring of water chemistry parameters to obtain the necessary information for adjustments to the water treatment program. Failure to perform the necessary adjustments can result in reduced service life and poor energy efficiency resulting from corrosion, scale and fouling. A hybrid absorbance/emission spectrometer is proposed as th ...

    SBIR Phase II 1995 Department of DefenseArmy
  7. Miniature In Situ Smart Fatigue Monitor (MISSFM)

    SBC: Orbital Technologies Corporation            Topic: N/A

    ORBITEC proposes a Miniature in-Situ Smart Fatigue Monitor (MISSFM) that will accurately assess and monitor fatigue damage in eal time of almost any structural component. Phase I will design and demonstrate technology to achieve a solid state device to measure and display component strain and calculate fatigue life (rainflow cycle couting and Miner's cumulative damage algorithms). A technical appr ...

    SBIR Phase II 1995 Department of DefenseArmy
  8. Advanced Military Diesel Engine Technologies Demonstrator

    SBC: ADVANCED ENGINES DEVELOPMENT CORPORATION            Topic: A05237

    Combining AED Corp. and its multi-disciplinary team's extensive and unique heavy fuel engine (HFE) hardware development experience with commercial-off-the-shelf (COTS) diesel engine components, a concept diesel engine demonstrator (CDED) will be designed. Configured to facilitate dyno test exploration of power density, heat rejection, and fuel efficiency, the lubrication, cooling, and supercharger ...

    SBIR Phase I 2005 Department of DefenseArmy
  9. Fundamentally New Therapeutic for the Treatment of Acinetobacter Baumannii Wound Infections

    SBC: CONJUGON, INC.            Topic: A05170

    An increasing number of infections caused by the pathogenic and multi-drug-resistant bacterium Acinetobacter baumannii has been reported in patients at military medical facilities in which service members were injured in the Iraq/Kuwait region during Operation Iraqi Freedom and in Afghanistan during Operation Enduring Freedom. Due to their drug resistance, these infections have been difficult to ...

    SBIR Phase I 2005 Department of DefenseArmy
  10. Development of Spectral and Atomic Models for Diagnosing Energetic Particle Characteristics in Fast Ignition Experiments

    SBC: Prism Computational Sciences, Inc.            Topic: 34b

    797870 In the fast ignition concept for inertial fusion energy, high-intensity short-pulse lasers are used to create energetic particles (protons and relativistic electrons) that propagate to the fuel within a compressed capsule. The efficient transport of these energetic particles to the fuel is a key issue in fast ignition research. A combination of well-diagnosed experiments and well-tested s ...

    STTR Phase I 2005 Department of Energy

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