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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. Hierarchical, Layout-Aware, Radiation Effects Tools Vertically Integrated into an EDA Design Flow for Rad-Hard by Design

    SBC: Reliable MicroSystems, LLC            Topic: DTRA16A003

    The goal of this workis to establish a radiation-aware capability in a commercial EDA design flow that will enable first-pass success in radiation resiliency for DoD ASIC designs in much the same way that existing EDA design suites ensure first pass functionality and performance success of complex ASICs destined for commercial applications.Such an integrated capability does not presently exist.The ...

    STTR Phase II 2018 Department of DefenseDefense Threat Reduction Agency
  2. Instant k-Space Tomography for Spatial-Spectral Monitoring

    SBC: Phase Sensitive Innovations, Inc.            Topic: AF17AT013

    The Army is frequently forced to operate in hostile climates. Heavy fog, rain, snow, and dust storms can inhibit the performance of tracking technologies such as mid-wave infrared cameras. In such conditions, Army early warning systems are blinded and put personnel and assets at risk.There is a specific need for a degraded visual environment (DVE) penetrative target tracking solution.Radio frequen ...

    STTR Phase II 2018 Department of DefenseAir Force
  3. Wafer-Level Electronic-Photonic Co-Packaging

    SBC: Phase Sensitive Innovations, Inc.            Topic: AF16AT01

    In phase II work, we will collaborate with Prof. Stefan Preble in RIT and continue to develop large scale hybrid integration and packaging techniques for key active photonic components such as lithium niobate on insulator (LNOI) modulators and modified uni-traveling (MUTC) photodiodes. We will demonstrate a low V, broadband, small footprint LNOI modulator with hybrid Si/LN or SiN/LN waveguide usin ...

    STTR Phase II 2018 Department of DefenseAir Force
  4. High Capability Portable Foreign Object Debris (FOD) Removal System for Naval Aircraft

    SBC: ROBOTIC TECHNOLOGIES OF TENNESSEE            Topic: N162104

    The United States Marine Corps (USMC) spends tens of millions annually on foreign object debris (FOD) damages related to the AV-8B Program and the DOD up to $100 million in total on FOD related problems. RTT proposes to create mechanized, semi-automated and autonomous solutions to clear and maintain FOD free workspace areas in the three targeted FOD problem areas. This Phase 2 effort focuses on cr ...

    SBIR Phase II 2018 Department of DefenseNavy
  5. 6000297

    SBC: Chip Design Systems            Topic: AF18AT017

    We propose to develop an innovative concept of the high speed dynamic IRSP that combines components and devices from proven suppliers with novel system-level research topics from CDS and University of Delaware. Having previously built and delivered working LED IRSPs to users gives CDS a unique advantage. In line with system theme of the solicitation, our phase 1 research topics are focused on syst ...

    STTR Phase I 2018 Department of DefenseAir Force
  6. ACE Multi-Role Vehicle

    SBC: GLOYER-TAYLOR LABORATORIES LLC            Topic: SB173006

    Over the past decade, GTL has developed a suite of transformational technologies that provide superior performance for reduced cost.Each of these technologies have been matured to TRL 6 and establish the technical foundation for the Advanced Cryogenic Expendable (ACE) Multi-Role Vehicle (ACE-MRV). The ACE-MRV is a high-performance expendable rocket stage that can either be launched (from the groun ...

    SBIR Phase I 2018 Department of DefenseDefense Advanced Research Projects Agency
  7. Photonic Integrated Circuit Reliability

    SBC: Phase Sensitive Innovations, Inc.            Topic: N182108

    Photonic integration, and specifically silicon photonics, has emerged as one of the leading solutions for maintaining or improving the performance of optical systems while addressing the requirements related to size, weight, and power (SWaP). Photonic integrated circuits (PICs), which integrate multiple photonic elements onto a single chip, are specifically suited to providing the complexity and f ...

    SBIR Phase I 2018 Department of DefenseNavy
  8. Alternative Mixing Technologies for High-Energy, Solid Materials for Large Gas Generator Propellant

    SBC: E&G Associates, Inc.            Topic: N172141

    Traditional manufacturing methods for producing warheads, propellants, and pyrotechnic systems are timely and costly. Current production methods include cast-cure, melt-cast, powder molding, and machining. A rigorous design study that matches the appropriate hardware and engineering solutions to the propellant manufacturing process is proposed to increase the likelihood of a successful modernizati ...

    SBIR Phase I 2018 Department of DefenseNavy
  9. Image Enhancement and Machine Learning for Improving Man-Portable Targeting Systems

    SBC: EM PHOTONICS INC            Topic: N172102

    Modern DoD applications are benefiting from the proliferation of EO/IR sensor technology. As imagers become cheaper and smaller, they are being more widely deployed for a variety of scenarios. This trend is exemplified by the Navys Future Targeting System (FTS), which will provide laser designation, laser spot imaging, and some target location functions in a single 5.5-pound unit, replacing discre ...

    SBIR Phase I 2018 Department of DefenseNavy
  10. Multicore Fiber Optic Package Optical Subassembly for Wideband Digital and Analog Photonic Links

    SBC: Phase Sensitive Innovations, Inc.            Topic: N182101

    In this SBIR effort we will develop a balanced detection analog photonic link consisting of a DFB laser, a dual-output high-speed, low-Vp mach-zehnder modulator (MZM) and a high-power, high-linearity balanced photodetector (BPD) using a dual-core, single mode, multicore fiber (MCF) that is supplied by our subcontractor, OFS. We will design, fabricate and characterize (phase I) the MZM and the BPD, ...

    SBIR Phase I 2018 Department of DefenseNavy

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