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Award Data

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The Award database is continually updated throughout the year. As a result, data for FY23 is not expected to be complete until September, 2024.

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.

The SBIR.gov award data files now contain the required fields to calculate award timeliness for individual awards or for an agency or branch. Additional information on calculating award timeliness is available on the Data Resource Page.

  1. Solid State Raman Image Amplifier

    SBC: LITE CYCLES, INC.            Topic: N/A

    This Small Business Innovative Research Phase I project will focus on the development of a compact, rugged, low-maintenance, cost-effective, all Solid-State Raman Image Amplifier (SSRIA) capable of amplifying low-level LIDAR images and producing gated images with potential gate times of less than a nanosecond. The innovative technology to be implemented is based on a solid-state stimulated Raman s ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  2. Sensors-Adaptive Beam Expander

    SBC: LSA            Topic: N/A

    We propose to design and fabricate an adaptive beam expander that can be switched between two magnifications. Specifically, the beam expander provides diffraction-limited performance for laser radar beams with diameters of 1 mm and 3 mm. The adaptive beam expander is lightweight, and it has no moving parts. Because the beam expander is an afocal system, it operates on both outgoing and incoming be ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  3. Fabrication of a Low-Cost, Lightweight Cu-AlN Composite for Thermal Management

    SBC: ATS-MER, LLC            Topic: N/A

    High thermal conductivity materials with low CTE, and high strength and stiffness are required for high thermal flux applications. In addition, if these materials are relatively inexpensive, lightweight and non-toxic, and have low vapor pressure to survive in space-operating environments, they will be attractive candidates for thermal management in aerospace structures. Such materials are urgently ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  4. A Novel High Thermal Conductivity, Low CTE, Low Weight MMC Substrate for Microelectronics Packaging

    SBC: ATS-MER, LLC            Topic: N/A

    This Small Business Innovation Research Phase I program proposes the development of a high thermal conductivity (470-550 W/mK), low coefficient of thermal expansion (5-8 ppm/K), and low weight (2.9-4.3 g/cc) Cu based metal matrix composite material to produce high performance substrates for microelectronics packaging. The proposed MMC system uses copper as the continuous metal matrix and cubic bor ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  5. Diamond/W Microcathode/Microcathode Array with Very High Field Emission Current Density

    SBC: ATS-MER, LLC            Topic: N/A

    Diamond has recently emerged as a promising material for electron field emission due to its unsurpassed properties of low voltage and room temperature operation, operation robustness, simple design, and reproducibility. However, the present diamond cathodes, which are microcrystalline diamond thin films deposited on macro-substrate (mm to cm size ) suffer a few drawbacks. Only 1-10% or less of the ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  6. Plasma Synthesis of Aluminum Nitride Nanopowders

    SBC: MATERIALS MODIFICATIONS INC            Topic: N/A

    Aluminum nitride is as an ideal thermal management material since it has a very high thermal conductivity and its electrical resistivity is comparable to that of ceramic insulators. Aluminum nitride has thermal conductivity five times greater than alumina and has mechanical strength twice that of alumina and beryllium oxide. The current methods of synthesizing and consolidating aluminum nitride re ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  7. Novel Rapid Thermal Processing (RTP) system for High Temperature Power Devices Applications

    SBC: Maverick Corporation            Topic: N/A

    Revolutionary high power electronics based on new materials such as SiC and GaN hold promise in numerous applications in power electronics, control and distribution circuits, hybrid drive-train automobiles, ''more electric" aircraft (avionics) and next generation battleships. These high-temperature materials require novel high-temperature (> 1500_C) processing schemes for improving the efficiency ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  8. Application of a Novel Micromachining Process to Millimeter Wave Circuit Fabrication

    SBC: MICROFAB (WASVA MILLIMETER WAVE)            Topic: N/A

    MicroFab Research (MFR, Inc.) proposes to apply the techniques of micromachining to aid in the fabrication of millimeter wave components, thereby reducing manufacturing expenses. Many microwave applications such as radar and communication systems would be improved by shifting to higher frequencies, provided new lower cost manufacturing techniques can be found. A manufacturing technique is presente ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  9. Development of a Compact Electron Beam Accelerator

    SBC: MICROWAVE TECHNOLGIES, INC.            Topic: N/A

    N/A

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
  10. Advanced Metal Powder Manufacture for MLCC Applications

    SBC: NANOCHEM RESEARCH, INC.            Topic: N/A

    Sensors, capacitors, and conducting features such as resistors and capacitors on circuit boards are produced from metal and ceramic powders 1-12 These powders are manufactured by liquid phase precipitation routes which often start with reduction of metal salts or by solid-state routes where solid reactants are mixed, heated and then milled. The solid-state processing is generally repeated several ...

    SBIR Phase I 1997 Department of DefenseMissile Defense Agency
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