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The Award database is continually updated throughout the year. As a result, data for FY24 is not expected to be complete until March, 2025.

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. An Object oriented parallel programming system with adaptive runtime

    SBC: CHARMWORKS, INC.            Topic: 02c

    High Performance Computing technology has advanced significantly, and advanced parallel computers are being built, with DOE leadership. Yet, the American engineering and manufacturing industry has not started leveraging parallel computing at a significant level, partly because of the challenging nature of modern simulation software. US competitiveness in manufacturing may suffer due to its ineffe ...

    SBIR Phase I 2014 Department of Energy
  2. Diamond membrane-based X-ray optics: Fresnel zone plates, beam stops, and grids

    SBC: Advanced Diamond TechNologies, Inc.            Topic: 04a

    The continuous push towards higher photon energies and higher imaging resolution has brought current state- of-theart X-ray focusing zone plates to a limit of 20 nm resolution at & lt;10 keV photon energies. Zone plates for focusing with same or better resolution at energies up to 25 keV are necessary for imaging and elemental analyses of multi-element samples, such as nano-composites, biological ...

    SBIR Phase I 2014 Department of Energy
  3. Real-time, continuous and quantitative detection of bioavailable radionuclides and heavy metals in contaminated water at DOE sites

    SBC: ANDALYZE, INC.            Topic: 20b

    Quantitative, real-time detection of hazardous metal ions on-site is an important goal and remains a significant challenge while monitoring sources such as potable, ground, surface and industrial waters. Quantitative analysis of trace elements is predominantly done by sending the samples to a laboratory for testing by sophisticated analytical techniques, such as Inductively Coupled Plasma Spectrom ...

    SBIR Phase I 2014 Department of Energy
  4. Design and fabrication of a 30T superconducting soleNoid using hyperbaric processed Bi2212 round wire

    SBC: MUONS INC            Topic: 33b

    High field magnets are needed for frontier accelerator facilities and have many applications beyond high-energy physics. Of particular interest are 30-40T class (LTS/HTS hybrid) solenoids required for the final beam cooling stages of a muon collider facility. The successful design of such magnets using Bi2212 conductor depends critically on the conductor processing, stress management in the coil, ...

    SBIR Phase I 2014 Department of Energy
  5. Programmable, Reconfigurable Silicon Photodiode Array Module

    SBC: VOXTEL, INC.            Topic: 34c

    Many planned nextgeneration experiments in high energy physics, astroparticle physics, and nuclear physics need a plethora of photon detectors with singlephoton sensitivity, large dynamic range, and accessibility throughout experiment lifetime. These requirements constrain the sensor: low sensitivity against temperature and bias fluctuations; very compact; very robust; cheap; insensitive to magn ...

    SBIR Phase I 2014 Department of Energy
  6. Radiation-hard Miniature Parallel Optical Links for Next Generation High-Energy Physics Experiments

    SBC: VEGA WAVE SYSTEMS INC            Topic: 35d

    Future particle physics experiments at the high-energy frontier, such as LHC, HL-LHC, ILC, CLIC or Multi-TeV Muon Collider, will all require silicon detectors capable of reconstructing charged particle trajectories with high accuracy in the presence of significant high occupancy. These experiments will impose stringent demands on the data links to transfer the data from the silicon detector to t ...

    SBIR Phase I 2014 Department of Energy
  7. Singlet-oxygen Plasma Afterglow Reaction Chamber for Disinfection and Sterilization

    SBC: CU AEROSPACE L.L.C.            Topic: 18a

    The capability of discharge-produced reactive oxygen species, in particular O2(a1), to effectively inactivate biological species has been empirically well-established. Disinfection and sterilization processes for instruments, surfaces, and wounds are essential in disease prevention to ensure destruction of microorganisms that can contaminate materials. Such microorganisms include spore-forming and ...

    SBIR Phase I 2014 Department of Energy
  8. Developing Affordable Creep-resistant Aluminum Alloys for Car Brake Rotors

    SBC: NANOAL LLC            Topic: 07b

    Currently, cast-iron is nearly exclusively used for car brake rotors. Replacing cast-iron by a high- temperature, creep-resistant aluminum alloy could translate into about 80 lbs (36 kg) in weight reduction for a typical car, thus improving its gasoline mileage and reducing its greenhouse gas emissions. Current commercial, castable, age-hardening aluminum alloys cannot withstand temperatures above ...

    SBIR Phase I 2014 Department of Energy
  9. Lithium Ion Battery Electrode Binders with Enhanced Ion Transport and Thermal Properties

    SBC: Navitas Systems, Llc            Topic: 07a

    Polymer binders play a key role in the cycle life and abuse tolerance of lithium ion batteries. Binder formulations are highly constrained by electrochemical stability and compatibility with established electrode manufacturing infrastructure and hygiene. This SBIR project develops a new aqueous binder system based on a polymer that supports high lithium ion transport rate and is highly compatible ...

    SBIR Phase I 2014 Department of Energy
  10. PFC Laser-Based Surface Microtexturing For Liquid Metal Wetting, Improved Heat Transfer, Safety and Control

    SBC: STARFIRE INDUSTRIES LLC            Topic: 15a

    Surface microtexturing can be used for enhanced heat transfer capabilities at liquid-solid or gas-solid interfaces to improve convection, decrease boundary layer size, change liquid flow properties, and affect the general fluid adhesion (wetting) on the material surface. Recent research has shown that sub- nanosecond laser pulses on metallic surfaces (e.g. stainless, zirconium, etc.)can produce mi ...

    SBIR Phase I 2014 Department of Energy
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