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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. A Bidirectional, Transformerless Converter Topology for Grid-tied Energy Storage Systems

    SBC: OPCONDYS INC            Topic: DEFOA0001736

    Grid-tied energy storage systems provide stabilization to the electric grid that is necessary to accommodate the growing percentage of electricity generated by intermittent renewable energy sources such as wind and solar. Existing conversion systems between the storage media and the utility lines are large, costly and only 95%-98% energy efficient. In this ARPA-E project, Opcondys, Inc. will build ...

    SBIR Phase I 2018 Department of EnergyARPA-E
  2. A Bidirectional, Transformerless Converter Topology for Grid-tied Energy Storage Systems

    SBC: OPCONDYS INC            Topic: DEFOA0001736

    Grid-tied energy storage systems provide stabilization to the electric grid that is necessary to accommodate the growing percentage of electricity generated by intermittent renewable energy sources such as wind and solar. Existing conversion systems between the storage media and the utility lines are large, costly and only 95%-98% energy efficient. In this ARPA-E project, Opcondys, Inc. will build ...

    SBIR Phase II 2018 Department of EnergyARPA-E
  3. A Bidirectional, Transformerless Converter Topology for Grid-tied Energy Storage Systems

    SBC: OPCONDYS INC            Topic: DEFOA0001736

    Grid-tied energy storage systems provide stabilization to the electric grid that is necessary to accommodate the growing percentage of electricity generated by intermittent renewable energy sources such as wind and solar. Existing conversion systems between the storage media and the utility lines are large, costly and only 95%-98% energy efficient. In this ARPA-E project, Opcondys, Inc. will build ...

    SBIR Phase II 2018 Department of EnergyARPA-E
  4. A Cavity-Enhanced Raman Spectroscopy Based, Real Time, Fuel Gas Composition Monitoring System for Feed Forward Control

    SBC: SPORIAN MICROSYSTEMS, INC            Topic: 17b

    To achieve higher efficiencies, lower emission, improved reliability and availability, and stable control and operation through feed-forward control systems, fossil energy power generation facilities (e.g. emerging modular power systems) needs fuel gas composition data to identify any post-production cleanup options and allow fine-tuned control of the combustion process. Ideally, such a monitoring ...

    SBIR Phase I 2018 Department of Energy
  5. Accelerating Large-Scale Beam Dynamics Simulations with GPUs

    SBC: TECH-X CORPORATION            Topic: 16a

    The Advanced Photon Source (APS) at Argonne National Laboratory (ANL) is a third-generation, high-brightness, 7 GeV storage-ring-based x-ray light sources that has been in operation since 1996. Several possible long-term upgrades to the APS are investigated at Argonne, including an ERL-based upgrade and an Ultimate Storage Ring (USR), both of which could provide more than two orders of magnitude i ...

    SBIR Phase I 2010 Department of Energy
  6. Accelerating Metagenomics Using Graphics Processing Units

    SBC: Multicoreware, Inc.            Topic: 35a

    A key application of the technological breakthrough associated with decreased cost of DNA sequencing is metagenomics. Metagenomics is the process of sequencing DNA from whole ecosystems, rather than individuals or cultures. This approach has the potential to allow the dissection of microbial ecosystems in biofuel producing agricultural land, toxic contaminated sites and hydrocarbon recovery enviro ...

    STTR Phase I 2010 Department of Energy
  7. Accelerating PETSc through Next-Generation Heterogeneous Supercomputing

    SBC: TECH-X CORPORATION            Topic: 41a

    It is often found that seemingly distinct computational codes in

    SBIR Phase I 2010 Department of Energy
  8. Accurate Spin Tracking on Modern Computer Architectures for Electron-Ion Colliders

    SBC: RADIASOFT LLC            Topic: 25e

    Electron-ion colliders (EICs) are the best microscopes for studying the structure of nuclear matter, particularly the nature and origin of spin in nuclei. To be effective, such machines require electron and ion beams with polarizations as high as 80%. Comprehensive end-to-end simulations to study the spin dynamics and optimize the beam polarization require exorbitant computational effort. Technica ...

    SBIR Phase II 2018 Department of Energy
  9. Acetic Acid Recovery Using Membranes

    SBC: MEMBRANE TECHNOLOGY AND RESEARCH, INC.            Topic: 12d

    Recovery and recycling of acetic acid from aqueous streams is an important industrial separation that is high cost and energy intensive when performed by conventional technology. This makes acetic acid recovery a tantalizing target for a more efficient, lower cost, simpler approach such as membrane technology. However, the required separation performance, combined with the need for robust chemic ...

    SBIR Phase II 2010 Department of Energy
  10. AC Impedance Sensor for Collective Protection Filter Residual Life Indicator

    SBC: GUILD ASSOCIATES INC            Topic: CBD10106

    Guild Associates, Inc. proposes to develop and evaluate an active electrochemical sensor based residual life indicator (RLI) for adsorptive carbon filters. The sensing system of the RLI will operate by analyzing the electrochemical state of the carbon within the filter and evaluate the remaining adsorptive reactive capacities of the filter. The sensor design will be challenged against an array of ...

    SBIR Phase I 2010 Department of DefenseOffice for Chemical and Biological Defense
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