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The Award database is continually updated throughout the year. As a result, data for FY20 is not expected to be complete until September, 2021.

Download all SBIR.gov award data either with award abstracts (290MB) or without award abstracts (65MB). A data dictionary and additional information is located on the Data Resource Page. Files are refreshed monthly.

  1. Tailoring Training for Disparately Skilled Participants in Large Scale Training Exercises

    SBC: ADVANCED INFONEERING, INC.            Topic: N09T007

    The SKATE concept was designed to quantify skill levels of trainees, teams, or units, generate skill-appropriate training scenarios, and provide a continuous skill-level assessment of disparately skilled trainees, teams, and units in a joint training exercise while maintaining the overall integrity and realism of the mission itself. SKATE evaluates the skill level of an individual, teams, or unit ...

    STTR Phase II 2010 Department of DefenseNavy
  2. Multi-Spectral Combat ID Beacon

    SBC: Diffraction, Ltd            Topic: SOCOM10008

    Diffraction LTD will develop a multi-spectral battery powered combat ID beacon. Key emitter technologies will include vacuum encapsulated photonic crystals in the MWIR and LWIR spectral bands. In Phase 1, a complete optical, electrical, and mechanical design of the beacon will be produced. A model taking into account emitter characteristics, atmospheric transmission, ambient lighting, and vario ...

    SBIR Phase I 2010 Department of DefenseSpecial Operations Command
  3. Development of Magnetostrictive Energy Harvesting of Mechanical Vibration Energy

    SBC: Etrema Products, Inc.            Topic: N10AT020

    Energy harvesting devices utilizing magnetostrictive materials are a logical choice for harvesting the high impedance (high force, low displacement) vibrations found aboard Navy ships. Force-based devices, enabled by magnetostrictive materials, can harvest energy over an extremely large bandwidth, approximately ±35 and ±70 Hz currently, making them more desirable in situations aboard Navy ships ...

    STTR Phase I 2010 Department of DefenseNavy
  4. Air Flow Noise Reduction Techniques

    SBC: International Mezzo Technologies, Inc.            Topic: N07163

    The objective of this program is to develop techniques to reduce engine cooling system noise levels of the Expeditionary Fighting Vehicle (EFV). Mezzo’s approach is to redesign the engine cooling heat exchangers (LTC, HTC, fuel cooler, and condenser) using Mezzo’s heat exchanger technology to reduce the overall heat exchanger pressure drop and thus the demands on the cooling fans. Reduced pres ...

    SBIR Phase II 2010 Department of DefenseNavy
  5. Scalable, Energy Harvesting, Wireless Sensor Network for Structural Health Monitoring of Ships

    SBC: MicroStrain, Inc.            Topic: N101095

    Structural health monitoring (SHM) of large structures such as Navy ships requires an in depth knowledge of operational loads and how these loads may change over time. A network of low cost, wireless strain sensors can provide this information. During Phase I, we will demonstrate a highly synchronized, scalable network of energy harvesting wireless strain sensors. By converting ambient cyclic stra ...

    SBIR Phase I 2010 Department of DefenseNavy
  6. Micro Combat ID (MID)

    SBC: QuantaSpec Inc.            Topic: SOCOM10008

    QuantaSpec, Inc., proposes to produce a highly efficient, compact, personnel-worn combat ID beacon visible to a large variety of overhead imaging pods. Multiple incidents of fratricide have highlighted the need for improved combat ID and Identify Friend or Foe (IFF) technology. Recent advances in emitter technology have enabled a new class of signaling device to become practical. QuantaSpec, Inc., ...

    SBIR Phase I 2010 Department of DefenseSpecial Operations Command
  7. High-rate Manufacturing of Electronic Systems-on-Film

    SBC: VERSATILIS LLC            Topic: N10AT031

    This STTR seeks to develop a high-throughput, low-cost enabling technology for the manufacturing of electronic systems-on-film. It posits a novel concept of introducing percolation networks into semiconducting “inks” to increase by at least an order of magnitude the very low carrier mobilities (

    STTR Phase I 2010 Department of DefenseNavy
  8. Development of Tools and Methods for Characterizing the Impact of Control Surface Free-Play on Flutter

    SBC: Vsi Aerospace, Inc.            Topic: N10AT003

    The aerodynamic performance of aircraft is significantly impacted by the aero-elastic dynamics of its control surfaces. In particular, the dynamics of flutter - an unstable self-excitation of structure due to undesirable coupling of structural flexibility and aerodynamics - has critical impact on the stability and performance of aircraft. The control surface flutter characteristics are affected by ...

    STTR Phase I 2010 Department of DefenseNavy
  9. COMPOSITE PIPING SYSTEMS

    SBC: Specialty Plastics Inc.            Topic: N/A

    A COMBINED EXPERIMENTAL AND ANALYTICAL STUDY IS PLANNED TO DEVELOP ADVANCED COMPOSITE PIPING SYSTEMS. DUAL WALL PIPE WILL BE DEVELOPED AND TESTED FOR IMPROVED IMPACT RESISTANCE AND TOUGHNESS. EPOXY AND POLYESTER RESINS WILL BE USED IN COMPOSITE PIPE SECTIONS AND BONDED WITH EPOXY ADHESIVES AS WELL AS WITH HEAT-SHRINKABLE ULTRA HIGH MOLECULAR WEIGHT POLYETHYLENE AND ADVANCED ELASTMERIC COUPLINGS AN ...

    SBIR Phase II 1988 Department of DefenseNavy
  10. CONSTRUCTION OF A DETECTABLE DEFECT DRIFT DIFFUSION (D4) MODEL FOR PREDICTION OF HELICOPTER GEARBOX LIFE EXPECTANCY

    SBC: Technology International Incorporated of Virginia            Topic: N/A

    TECHNOLOGY INTERNATIONAL INCORPORATED (TII) IS PROPOSING THE CONSTRUCTION OF A DETECTABLE DEFECT DRIFT DIFFUSION (D4) MODEL FOR PREDICTION OF HELICOPTER GEARBOX LIFE EXPECTANCY. THE MODELING STRATEGY IS BASED ON PREDICTING FATIGUE OF TYPICAL MECHANICAL EQUIPMENT WITH ROLLING CONTACT, SUCH AS ROLLING ELEMENT BEARING AND GEAR OF THE HELICOPTER GEARBOX. THE RATE OF GROWTH OF SPECIFIC SIZES AND TYPES ...

    SBIR Phase I 1988 Department of DefenseNavy
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