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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. Stochastic Consideration of Cased Munitions for Casing Breakup and Airblast

    SBC: Karagozian & Case            Topic: DTRA102003

    The objective for the proposed effort is to develop a robust, effective, and deterministic/stochastic means to characterize blast effects from cased explosives pertaining to computing responses of structural components. This also includes creation of appropriate engineering aids/software/algorithms for transforming these blast effects into structural loads suitable for incorporation into high-fid ...

    SBIR Phase II 2012 Department of DefenseDefense Threat Reduction Agency
  2. Solutions for Single-Event Effects in Ultra Deep Submicron Semiconductor Technologies Using Simulation and Layout Techniques

    SBC: ROBUST CHIP INC.            Topic: DTRA102008

    This project offers two powerful and efficient solutions to solve the mounting problems in design of radiation hard electronics: a range of ultra hard, high performance, sequential and combinatorial logic blocks based on the new, and enormously effective, LEAP RHBD layout methodology, and an accurate and efficient analysis, design, and simulation solution for single events. The Layout design ...

    SBIR Phase II 2012 Department of DefenseDefense Threat Reduction Agency
  3. Cheetah-Traks: Subterranean Navigation Via Inertial Sensors and Multipath Resistant RF Ranging

    SBC: TrellisWare Technologies, Inc.            Topic: HSB0101006

    The integrated Cheetah Traks and Virtual Inertial Navigation System (V-INS) units will create a denied GPS navigation system capable of tracking unit locations and maintain that accuracy across a range of dynamics and environmental conditions. The target system is targeted to contain less than four components (IMU, computer, communication unit and display) and adds minimal weight to the user.

    SBIR Phase II 2012 Department of DefenseDefense Threat Reduction Agency
  4. Predicting Ultra High-Performance Concrete (UHPC) Residual Strength after Multiple Penetrations and Blasts

    SBC: Karagozian & Case            Topic: DTRA092013

    The primary objective for the proposed effort is to develop innovative fast-running models (FRMs) that are based on data generated by High-Fidelity Physics-Based (HFPB) models; these FRMs are to predict the damage, responses, and subsequent residual strength of walls and slabs composed of UHPC or HPC materials of the kind that would be used in hardened bunkers. Of particular interest is to create ...

    SBIR Phase II 2011 Department of DefenseDefense Threat Reduction Agency

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