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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. E4S: Extreme-Scale Scientific Software Stack for Commercial Clouds

    SBC: PARATOOLS, INC            Topic: C5302b

    C53-02b-271168The software used in High Performance Computing (HPC) and ArtificialIntelligence/MachineLearning (AI/ML) workloads is increasingly complex to maintain, install, and optimize. More problematic is the poor performance portability of applications between platforms, forcing site-specific re-engineering of codes. Existing solutions to deployment of AI/ML work?ows on commercial cloud envir ...

    SBIR Phase II 2023 Department of Energy
  2. Engineered Enzymes for Polyurethane Recycling

    SBC: Birch Biosciences, LLC            Topic: C5331a

    C53-31a-271169Significant technical innovations are needed to improve the economics of plastic recycling. Plastic recycling rates in the United States have been stagnant for more than a decade: less than 10% of plastics are currently recycled, and only 5.5% of polyurethane plastics are recycled. Plastics have become a major contributor to global warming, as emissions from global plastics productio ...

    SBIR Phase II 2023 Department of Energy
  3. Production of Metal Foil and Flat Wire by Single Step Shear-Based Deformation Processing

    SBC: M4 SCIENCES LLC            Topic: C5620c

    Thin-gauge foil and flat wire formats of lithium, aluminum and copper are critical to EV markets – especially for power storage performance and light-weighting of motors. Availability of Al and Cu flat wire for winding high-performance electric motors is constrained by manufacturing complexity and cost. A recent web-quote from a major automotive manufacturer “Wire manufacturing technology upst ...

    STTR Phase I 2023 Department of Energy
  4. 08b: Drone-deployable transmission sensor unit for widespread phasor, power quality, and environmental measurement to increase grid throughput, reliability, and efficiency

    SBC: PITCH AERONAUTICS INC.            Topic: C5608b

    Dynamic Line Ratings (DLRs) can dramatically increase transmission line current capacity, allowing increased renewable energy penetration, decreased line congestion, and prevention of line construction. However, DLR implementation highly depends on unmeasured local line wind, solar irradiation, and line conditions. Today these conditions are only modeled or measured at isolated locations along a s ...

    SBIR Phase I 2023 Department of Energy
  5. Off-Grid Micro Hydropower Units for Agricultural Decarbonization

    SBC: CONTINUOUS SOLUTIONS LLC            Topic: C5610a

    The agricultural sector must adopt available technological advances to decrease its significant contributions to greenhouse gas emissions and climate change. Its high levels of energy and water consumption are two of the main sources of inefficiencies. At the same time, many rural communities lack access to reliable electricity, specifically under-utilizing clean energy sources. An opportunity exi ...

    SBIR Phase I 2023 Department of Energy
  6. The BladeRunner Solution for Aquaculture Sustainability

    SBC: BladeRunner Energy, Inc.            Topic: C5614d

    C56-14d-273410Aquaculture has been identified as essential for feeding the world as the population increases towards nine billion by 2050. While aquaculture often comes with environmental challenges, future growth must be done sustainably and equitably. Marine renewable energy (MRE) to power aquaculture is one of the key strategies to meet this growth responsibly. Marine hydrokinetic energy offers ...

    SBIR Phase I 2023 Department of Energy
  7. Powder Injection Molding Processes for Manufacture of Fast Reactor Nuclear Fuels

    SBC: J FOSTER & ASSOCIATES LLC            Topic: C5640v

    Current methods of manufacturing sodium fast reactor (SFR) fuels are constrained to small window of manufacturability. Powder forming processes could provide unique material advantages over traditional casting and extrusion techniques; however, fuel materials in powder form are highly reactive with oxygen and represent a pyrophoric hazard. U and Pu alloys and ceramics are easily dispersible in pow ...

    SBIR Phase I 2023 Department of Energy
  8. Advanced Battery Controls for Grid and Customer Value

    SBC: Extensible Energy, Inc.            Topic: C5609b

    Aggressive decarbonization and electrification scenarios require a 3000-fold increase in grid-tied storage assets. Grid-tied batteries can only contribute to this challenge if control methods and technology improve dramatically. While grid-scale and residential battery markets are growing rapidly, deployment in small commercial buildings lags significantly. Current projects in this market segment ...

    SBIR Phase I 2023 Department of Energy
  9. Fabricated Tension-Leg Floating Offshore Wind Turbine Platforms

    SBC: WILLAMETTE TECHNICAL FABRICATORS, LLC            Topic: C5617a

    Floating offshore wind is not only considerably more expensive to install than other forms of clean energy, but the rate of manufacturing is considerably slower, and the supply chain, specifically for the floating bases, remains undeveloped in the US. For wind turbines, increasing size increases efficiency and cost competitiveness, so there is a constant drive to install larger turbines, which lea ...

    SBIR Phase I 2023 Department of Energy
  10. Powder Injection Overmolding of High Burnup Light Water Reactor Fuels

    SBC: J FOSTER & ASSOCIATES LLC            Topic: C5640v

    Globally, the majority of nuclear reactors in operation are light water reactor (LWR) designs and are expected to remain a steadfast low-energy carbon sources for the foreseeable. LWR technology would greatly benefit from fuel materials that can withstand increased burnup, however. By creating a fuel with higher burnup capability, fuels can remain in the reactor longer, leading to less refueling o ...

    SBIR Phase I 2023 Department of Energy
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