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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. Improved Coatings for Helmet Mounted Display Visors using Filtered Cathodic Arc Plasma Deposition

    SBC: Alameda Applied Sciences Corporation            Topic: N/A

    Alameda Applied Sciences Corporation (AASC) proposes to develop and commercialize stable, more durable and less expensive optical multi-layer coatings that can turn a visor into a display screen for helmet mounted display devices, with minimal impact onthe pilot's overall visual acuity. The innovation proposed is to use filtered cathodic arc plasmas to deposit high density optical coatings that a ...

    SBIR Phase I 2001 Department of DefenseAir Force
  2. Vacuum Arc Nano Thrusters for Nanosatellite Spacecraft Constellations

    SBC: Alameda Applied Sciences Corporation            Topic: N/A

    Alameda Applied Sciences Corporation proposes to develop a new type of nano-thruster electric engine for highly parallel, distributed constellations of nano-satellites and other space propulsion applications. A key feature of the proposed Phase-I is theuse of an Inductive Energy Store (IES) driver to power the vacuum arc nano-thruster, which has a mass of 90% PPU efficiency from 1-10 W. The provin ...

    SBIR Phase I 2001 Department of DefenseAir Force
  3. High power, high voltage, ultra-fast, UV triggered diamond switch

    SBC: Alameda Applied Sciences Corporation            Topic: N/A

    Alameda Applied Sciences Corporation (AASC) proposes to develop a new type of high voltage, high power diamond switch potentially capable of switching GW power levels at ~100 kV. The basic element of this switch is a thin disk of natural or CVD diamondthat supports up to 25 kV, is triggered into conduction by UV radiation, achieves rise/fall times

    SBIR Phase I 2001 Department of DefenseAir Force
  4. Munition Effectiveness Modeling and Technology Integration Research

    SBC: ACTA, LLC            Topic: N/A

    A 24-month Phase II project is proposed to develop and implement models that capture the fidelity of high fidelity physics-based (HFPB) models in a fast-running format. It is anticipated that such models will be incorporated in certain modules of theModular Effectiveness/Vulnerability Assessment (MEVA) code developed for and currently used by the Air Force for assessing munitions effectiveness an ...

    SBIR Phase I 2001 Department of DefenseAir Force
  5. Munition Effectiveness Modeling and Technology Integration Research

    SBC: ACTA, LLC            Topic: N/A

    A 24-month Phase II project is proposed to develop and implement models that capture the fidelity of high fidelity physics-based (HFPB) models in a fast-running format. It is anticipated that such models will be incorporated in certain modules of theModular Effectiveness/Vulnerability Assessment (MEVA) code developed for and currently used by the Air Force for assessing munitions effectiveness an ...

    SBIR Phase II 2001 Department of DefenseAir Force
  6. X-BAND, AIR-TO-AIR RADAR SIDELOBE CLUTTER MITIGATION THROUGH ADAPTIVE PROCESSING X-BAND, AIR-TO-AIR RADAR SIDELOBE CLUTTER MITIGATION THROUGH ADAPTIVE PROCESSING

    SBC: Adaptive Sensors Inc.            Topic: N/A

    AN ADAPTIVE ARRAY SIGNAL PROCESSOR CAPABLE OF ADAPTIVELY NULLING MULTIPE SIDELOBE JAMMERS AND SIDELOBE DISTRIBUTED AND DISCRETE GROUND CLUTTER RETURNES COMPETING WITH THE TARGET RETURN, IN AI-LOW OBSERVABLE TARGET DETECTING MEDIUM-PRF RADARS IS THE SUBJECT OF A DESIGN STUDY. THE ASI-DEVELOPED AIRBORNE RADAR ADAPTIVE ARRAY SIMULATION TEST BED (IMPLEMENTED IN A PC-286 COMPUTER) IS PROPOSED TO BE USE ...

    SBIR Phase II 1992 Department of DefenseAir Force
  7. SPACE-TIME ADAPTIVE PROCESSING IN BISTATIC AIRBORNE RADARS

    SBC: Adaptive Sensors Inc.            Topic: N/A

    MONOSTATIC RADAR SYSTEMS USING SPACE-TIME ADAPTIVE PROCESING (STAP) HAVE BEEN SIMULATED IN DETAIL AND SHOWN TO PROVIDE LARGE IMPROVEMENTS IN MOVING TARGET DETECTION. AND TRACKING CAPABILITY. THE PROPOSED STUDY WILL APPLY STAP TECHNOLOGY TO BISTATIC RADARS WITH AIRBORNE RECEIVERS AND AIRBORNE OR STATIONARY TRANSMITTERS. CANCELLATION OF CLUTTER IN A BISTATIC RADAR IS COMPLICATED BY THE RAPIDLY VARYI ...

    SBIR Phase I 1992 Department of DefenseAir Force
  8. Extraction of Rocket Propellant Physical Properties Via Computed Tomography

    SBC: Aracor            Topic: N/A

    The objective of this SBIR project is to develop enhanced capabilities to evaluate solid rocket motors (SRMs) using x-ray computed tomography (CT) inspection. In Phase I, approaches were defined for developing technology to improve CT inspectioncapabilities. In Phase II, the technology will be developed and incorporated in practical tools to be delivered to OO-ALC at Hill AFB, where Air Force mi ...

    SBIR Phase II 2001 Department of DefenseAir Force
  9. Extraction of Rocket Propellant Physical Properties Via Computed Tomography

    SBC: Aracor            Topic: N/A

    The objective of this SBIR project is to develop enhanced capabilities to evaluate solid rocket motors (SRMs) using x-ray computed tomography (CT) inspection. In Phase I, approaches were defined for developing technology to improve CT inspectioncapabilities. In Phase II, the technology will be developed and incorporated in practical tools to be delivered to OO-ALC at Hill AFB, where Air Force mi ...

    SBIR Phase I 2001 Department of DefenseAir Force
  10. RF Spectrum Utilization Monitoring System

    SBC: Advent Systems, Inc.            Topic: N/A

    This project will research and develop a system for radio frequency (RF) spectrum monitoring capable of detecting and locating RF emitters and interference sources operating in a military test range environment. The system will track authorized spectrumusage and report unauthorized utilization in near real time, using automated signal interception, interference analysis, and alerting methods. Th ...

    SBIR Phase I 2001 Department of DefenseAir Force

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