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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. Small Integrated HFI Sensor for the AVR-2B

    SBC: SOLID STATE SCIENTIFIC CORPORATION            Topic: SOCOM11001

    "SSSC is pleased to propose the development and delivery of a Hostile Fire Indication Sensor (HFIS) based on the Phase I design concept. The resulting system will limit the number of circuit card assemblies to two: one for the short wave infrared (SWIR)

    SBIR Phase II 2012 Department of DefenseSpecial Operations Command
  2. Silicon Receiver for Millimeter Wave Distributed Aperture Imager with Optical Upconversion

    SBC: Phase Sensitive Innovations, Inc.            Topic: SB113003

    In this Phase II SBIR effort we will dramatically reduce the size, weight, and power requirements of a passive millimeter wave imaging system based on optical upconversion. To this end, we will integrate custom silicon-germanium low noise amplifiers that have been designed to efficiently couple with our high performance lithium niobate upconversion modules. In Phase I we analyzed the design requ ...

    SBIR Phase II 2012 Department of DefenseDefense Advanced Research Projects Agency
  3. Assessment of Asymmetric Social Indicators using Non-Verbal Vocal Cues

    SBC: Mentio, Inc.            Topic: SB121002

    The objective of this proposal is to develop, implement and evaluate a set of accurate and robust algorithms specifically designed to capture and measure multilateral social interactions automatically through audio-based methods based on asymmetric data design. We propose to accomplish this by: 1) Developing a novel method that uses multiple microphones interfaced with a smartphone and placed on a ...

    SBIR Phase I 2012 Department of DefenseDefense Advanced Research Projects Agency
  4. Silicon Receiver for Millimeter Wave Distributed Aperture Imager with Optical Upconversion

    SBC: Phase Sensitive Innovations, Inc.            Topic: SB113003

    In this SBIR effort we will design (Phase I) and demonstrate (Phase II) an integrated silicon electronic-photonic upconversion receiver that when used with our photonic backend will allow for a highly sensitive, real-time, and economical millimeter wave (mmW) imaging system. The development of this chip leverages recent progress in CMOS and SiGe HBT high speed analog circuit design and integrates ...

    SBIR Phase I 2012 Department of DefenseDefense Advanced Research Projects Agency

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