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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. Real Time Computation of Precision 3D Models Using Low Size, Weight, and Power (SWAP) Architectures

    SBC: Transparent Sky, LLC            Topic: N171096

    Transparent Sky LLC (TSky) and UltraHiNet LLC propose algorithms systems for precision computation in real-time of 3D (RT3D) models using low size, weight, and power (SWaP) architectures. Results exploit the successful Phase I algorithm, Shell3D, that over 100 times faster than leading algorithms. Further work will: Build and test a prototype system for UAV use. Develop field-testable software a ...

    SBIR Phase II 2019 Department of DefenseNavy
  2. High Bandwidth Fast Steering Mirror (HIFSM)

    SBC: A-TECH CORPORATION            Topic: N172114

    Fast Steering Mirrors (FSM) capable of high bandwidth (5kHz) and Low Size, Weight and Power (SWaP) are required for HEL weapons systems aboard high performance aircraft. ATA is proposing to design, develop and test a 5-kHz bandwidth, low SWaP FSM to meet this requirement. ATA will leverage its previous laser communication work and expertise in developing a 2.5kHz FSM. We intend to develop a new ac ...

    SBIR Phase II 2019 Department of DefenseNavy
  3. Laser Target and Analysis Board Development

    SBC: TAU TECHNOLOGIES LLC            Topic: N172118

    Laser-based anti-aircraft missile countermeasure systems use precisely aimed lasers to thwart the attack of these deadly missiles. In a matter of seconds, these systems must detect and characterize the threat, acquire the target, achieve track lock on the target, and initiate engagement of the threat's seeker with an in-band laser. The survival of our Warfighters and their aircraft during this ext ...

    SBIR Phase II 2019 Department of DefenseNavy
  4. Optimized Higher Power Microwave Sources

    SBC: XL Scientific, LLC            Topic: N19AT001

    Verus Research and the University of New Mexico (UNM) are pleased to respond to the Navy Phase I STTR solicitation N19A-T001 titled Optimized Higher Power Microwave Sources. Verus Research, in collaboration with UNM, propose to develop a GW-class, S-band, high power microwave (HPM) source to integrate in vehicle and vessel stopping systems. Our integrated approach ensures the objectives for effect ...

    STTR Phase I 2019 Department of DefenseNavy
  5. Atomic Triaxial Magnetometer

    SBC: Southwest Sciences, Inc.            Topic: N19AT006

    Improved magnetic anomaly detection can counter threats from quieter submarines and mines. This Phase I STTR project will address this goal using improved atomic magnetometry methods based on pumping alignment coherence in rubidium vapor. A means of changing the polarization of the pump light will ensure that atomic coherence can be pumped in any orientation of the magnetic field. Multiple probe b ...

    STTR Phase I 2019 Department of DefenseNavy
  6. Fate and Fortune: A Story-Based Algebra Simulator of High Seas Trade

    SBC: MidSchool Math, LLC            Topic: 99190018R0005

    Purpose: This project team will fully develop and test Fate and Fortune, an online class-wide intervention where grade 8 students learn algebra within a story-based game. Research demonstrates that students who do not succeed in algebra are more likely to eventually drop out of high school. When students begin Algebra I, a lack of conceptually meaning and understanding can be further reinforced by ...

    SBIR Phase II 2018 Department of EducationInstitute of Education Sciences
  7. Advanced Solutions to Enable Next-generation Terminals

    SBC: LOADPATH, LLC            Topic: N172137

    For MIDS JTRS designers who face increasing heat loads with existing thermal designs that limit system performance, the LoadPath Advanced Solutions to Enable Next-generation Terminals (ASENT) is a conjugate thermal solution that enables simple integration of a collection of advanced thermal enhancements to overcome this challenge. Unlike traditional designs that rely on standard thermal technologi ...

    SBIR Phase I 2018 Department of DefenseNavy
  8. Development of an Autonomous Damage Assessment Module (ADAM) for use as an Electronic Battle Damage Indicator

    SBC: Voss Scientific, LLC            Topic: N181075

    Future battlefields employing directed energy technologies will require an electronic Battle Damage Indicator (eBDI) tool that can measure the radiated Radio Frequency (RF) emissions from a target before and after a High Power RF (HPRF) attack and determine if target electronics have been significantly disrupted. We propose an innovative eBDI using a system so compact, lightweight and inexpensive ...

    SBIR Phase I 2018 Department of DefenseNavy
  9. Photolithographically Defined Optical Cooling Devices for Electronic Cooling Plane Applications

    SBC: PICOTEK LLC            Topic: N181081

    The current exponential growth of energy consumption in supercomputers and data centers has become an ecological and economical problem for simple reasons of power delivery, power dissipation and heat removal. To go on with the exponential growth in the use of information we need to continue reducing the energy required to handle each bit. This reduction, however, becomes an increasingly harder pr ...

    SBIR Phase I 2018 Department of DefenseNavy
  10. Implementation and Demonstration of LUCS, a Live, Ultra-Compact Multispectral USPL Characterization System

    SBC: Voss Scientific, LLC            Topic: N171085

    Researchers developing Ultra-Short-Pulse-Lasers (USPLs) need real-time measurements of key parameters, on both single-shot and statistical basis. Based on the Phase I results, we propose to assemble and demonstrate a fully integrated, intuitive and user friendly, Live USPL Characterization System, termed LUCS, using novel methods of data capture, data reduction, and distributed processing. Phase I ...

    SBIR Phase II 2018 Department of DefenseNavy

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