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The Award database is continually updated throughout the year. As a result, data for the given year is not complete until April of the following year. Annual Reports data is a snapshot of agency reported information for that year and hence might look different from the live data in the Awards Information charts.

  1. Lead Acid Battery Monitoring, Diagnostics, and Prognostics

    SBC: Oceanit Laboratories, Inc.            Topic: A17023

    In this Phase II, Oceanit proposes to further the impedance approach and battery analyzer device developed in Phase I to demonstrate an optimized technique for monitoring, diagnosis and prognosis of lead acid batteries. Oceanit shall design an integrated lead-acid battery health monitoring tool prototype for testing in an operationally relevant environment. Impedance model will be further refined ...

    SBIR Phase II 2019 Department of DefenseArmy
  2. SBIR Phase II: High multiplex visual mapping of heterogeneity in FFPE biospecimen

    SBC: BIOSYNTAGMA, LLC            Topic: BM

    This SBIR Phase II project aims to facilitate understanding of cellular diversity in tumors, a phenomenon that contributes to acquired drug resistance. Quantifying and understanding this diversity may help predict a patient?s response to certain drugs which would allow the selection of ideal drug combinations for an individual patient?s tumor, thus enabling personalized medicine. This Phase II pro ...

    SBIR Phase II 2018 National Science Foundation
  3. SBIR Phase II: Novel Radar Using 3D Printed Luneburg Lens for Autonomous Transportation

    SBC: LUNEWAVE INC.            Topic: EW

    The broader impact/commercial potential of this project will be that this research will address the resolution and detection range requirements of autonomous driving in complex environments such as urban scenarios. The next major revolution of transportation is undoubtedly autonomous driving, which will increase safety, mobility and productivity. Fully autonomous transportation may eliminate human ...

    SBIR Phase II 2018 National Science Foundation
  4. High-Efficiency Radiation-Hard Solar Array Interface to Spacecraft Power System

    SBC: Alphacore, Inc.            Topic: AF162007

    The Phase II SAI prototype will be developed using COTS GaN switches and CMOS drivers. During Phase II Alphacore will design and fabricate a rad-hard CMOS driver ASIC to provide electrical and on-chip algorithmic control of the GaN switches. The SAI and its components will be tested and measured under varying environmental conditions, including across temperature and radiation extremes. The GaN de ...

    SBIR Phase II 2018 Department of DefenseAir Force
  5. Low Voltage Radiation Hardened Optoelectronics for Optical Interconnects

    SBC: QuantTera            Topic: DTRA152001

    The Defense Threat Reduction Agency (DTRA) recognizes the need for low-power high-bandwidth radiation-hard optical interconnects to process more data more quickly and to replace electronic data.Our companys core development in optical communications with semiconductor materials is a unique fit for DTRAs low-power consumption high-bandwidth radiation-hard intra-chip communication components for sat ...

    SBIR Phase II 2018 Department of DefenseDefense Threat Reduction Agency
  6. Thermally Efficient Emitter Technology for Advanced Scene/Simulation Capability in Hardware in the Loop Testing

    SBC: ROBERT A. RICHWINE, LLC            Topic: MDA15014

    We introduce a concept and a design for a high-speed, high-temperature infrared scene projector for midwave (MWIR) and longwave infrared (LWIR) application. Results from study of carbon nanotube (CNT) material characteristics, along with field emission and electro-thermal modeling show that higheffective MWIR temperatures can be sustained and projected by a CNT pixel with little or no spillover to ...

    SBIR Phase II 2018 Department of DefenseMissile Defense Agency
  7. Pocket-sized Surface Flotation Device for Cold Water Aviation Survival

    SBC: SAFE INC            Topic: N162096

    The Navy requires a life raft that is small enough to fit within a front pocket on the body-worn survival ensemble. Having a pocket-sized raft at hand helps facilitate successful egress, inflation, and boarding. The required 12 cubic inches of stowed volume is a significant challenge, considering that a typical one-person raft compacts to about 700 cubic inches under vacuum. Safe, Inc. (Safe) has ...

    SBIR Phase II 2018 Department of DefenseNavy
  8. Trace Multi-Analyte Chemical Detection System for Underwater Unexploded Ordnance (UXO) Applications

    SBC: SPECTRUM PHOTONICS, INC.            Topic: N162120

    The team proposes to use an analogous approach to the method previously developed and demonstrated under the Phase II/II.5 AFP-based trace TNT sensor. The technology developed under this Phase II will use an optically-interrogated (SERS) transducer in conjunction with a preconcentrating front-end sampling approach for the detection of RDX, PETN and HMX.

    SBIR Phase II 2018 Department of DefenseNavy
  9. Novel Separator Materials for Achieving High Energy/Power Density, Safe, Long-Lasting Lithium-ion Batteries for Navy Aircraft Applications.

    SBC: Oceanit Laboratories, Inc.            Topic: N16AT008

    Oceanit proposes to develop and demonstrate novel, tailored, designer separator materials with optimized properties to maximize lithium-ion cell/battery performance, life, safety and reliability.

    STTR Phase II 2018 Department of DefenseNavy
  10. STTR Phase II: Occupancy Estimation and Energy Savings with True Presence Sensors

    SBC: Adnoviv LLC            Topic: EW

    The broader impact/commercial potential of this project will extend to a number of applications, including smart buildings, home automation, and security. The development of this new technology for efficient indoor sensing, and development of new algorithms for occupancy sensing and counting techniques, will have immediate implications in the building automation and home construction industries, w ...

    STTR Phase II 2018 National Science Foundation

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