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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. Fuel Efficiency Improvements for Amphibious Vehicles

    SBC: PACIFIC ENGINEERING INC.            Topic: N162079

    This Phase II project goal is to develop solutions that improve the fuel efficiency of Amphibious Vehicles. Amphibious vehicles operate on the leading edge of an assault and in environments where ongoing access to fuel is limited. More efficient fuel usage will also enable longer mission durations and increased operating ranges. The goal is to reduce fuel usage over the Amphibious Vehicle mission ...

    SBIR Phase II 2018 Department of DefenseNavy
  2. Corrosion Resistant Missile Cell Hatch Cover

    SBC: PACIFIC ENGINEERING INC.            Topic: N141041

    PEI will development and design a light weight, resistant to corrosion and ice adhesion, water tight and low maintenance VLS Composite Missile Hatch. PEI design will include polymers and nanofibers and materials, will utilize low costs composite manufacturing, design, performance evaluation, and analysis techniques will enable us to develop a cell hatch that will meet all performance requirements. ...

    STTR Phase II 2017 Department of DefenseNavy
  3. Removable and Maintainable Future Hull Arrays

    SBC: PACIFIC ENGINEERING INC.            Topic: N171072

    PEI is proposing to design and develop a composite frame structure which will serve as the foundation and means for easy assembly and removal of either array sections, modules or individual vertical block staves (VBS). PEI will develop structural technologies for building and installing these large conformal arrays to the exterior hull. PEI technology will be expanded to allow conformal sonar arra ...

    SBIR Phase I 2017 Department of DefenseNavy
  4. High Stability Atmospheric Carbon Dioxide and Methane Analyzer

    SBC: LI-COR, Inc.            Topic: 832D

    LI-COR proposes to continue development of a next-generation CO2/CH4/H2O analyzer that will offer an unprecedented combination of high precision and stability, making it the first highperformance gas analyzer suitable for long-term unattended operation. The instrument will be smaller, lighter, and far less expensive than competing technologies. LI-COR’s approach exploits a proprietary, revolutio ...

    SBIR Phase II 2017 Department of CommerceNational Oceanic and Atmospheric Administration
  5. Adaptable Universal Composite Canister for Virginia Payload Modules

    SBC: PACIFIC ENGINEERING INC.            Topic: N141041

    PEI will develop a design concept for an Adaptable Universal Composite Canister System (AUCCS) for the VPM. This system will cost- effectively accommodate the variety of Unmanned Systems (UxS) payloads being planned for submarine deployment and provide the required common hosts services and provide shock mitigation. We also believe that the AUCCS will not only lower the costs of launching the vari ...

    SBIR Phase II 2017 Department of DefenseNavy
  6. Fuel Efficiency Improvements for Amphibious Vehicles

    SBC: PACIFIC ENGINEERING INC.            Topic: N162079

    The output of this Phase I will be several lighter weight ACV 1.1 potential candidates, these include components within the land and marine propulsion systems (drive shafts and propeller), hull shapes (bow vane and stern/trim flaps) as well as doors, hatches, inlet grill, exhaust ducts and grills. These components will take advantage of the ideal properties that composite has to offer: lightweight ...

    SBIR Phase I 2017 Department of DefenseNavy
  7. Adaptable Standardized Modular Infrastructure for Optimal Space Utilization

    SBC: PACIFIC ENGINEERING INC.            Topic: N141041

    PEI is proposing to develop and produce a modular, low maintenance and cost-effective shower stalls for the Navy. The effort will design and fabricate shower stalls that require least number of standardized components, are adaptable to different shapes and sizes with optimum space utilization, possess high watertight integrity, quick and easy to install with little or no wastage of materials, are ...

    SBIR Phase I 2014 Department of DefenseNavy
  8. Lightweight RSG Launcher Components and AURE Composite Cansiters

    SBC: PACIFIC ENGINEERING INC.            Topic: N102144

    NAVSEA Undersea Defensive Warfare Systems Program office is developing a Surface Ship Torpedo Defense program that utilizes Anti-Torpedo-Torpedo (ATT) hard kill capability for high value unit (HVU) platforms (Carriers and Combat Logistics Force (CLF) ships). The CAT, a hard kill countermeasure, consists of All Up Round Equipment (AURE), which includes a composite canister and an Anti-Torpedo Torpe ...

    SBIR Phase II 2012 Department of DefenseNavy
  9. Lightweight RSG Launcher Components and AURE Composite Cansiters

    SBC: PACIFIC ENGINEERING INC.            Topic: N102144

    NAVSEA Undersea Defensive Warfare Systems Program office is developing a Surface Ship Torpedo Defense program that utilizes Anti-Torpedo-Torpedo (ATT) hard kill capability for high value unit (HVU) platforms (Carriers and Combat Logistics Force (CLF) ships). The CAT, a hard kill countermeasure, consists of All Up Round Equipment (AURE), which includes a composite canister and an Anti-Torpedo Torpe ...

    SBIR Phase II 2012 Department of DefenseNavy
  10. Smart Multimodal Image Registration and Fusion (SMIRF)

    SBC: 21ST CENTURY SYSTEMS, INC.            Topic: N093188

    To improve safety, modern submarine surface imaging systems have multiple camera modes, such as optical, infrared, and more. Current systems display modalities independently, compelling the submariner to switch between sensors manually to glean the relevant information. Following a successful Phase I effort demonstrating technical feasibility of our concept, 21st Century Systems, Inc. is poised to ...

    SBIR Phase II 2011 Department of DefenseNavy

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