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Award Data
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.
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Accelerated Numerical Processing API Based on GPU Technology
SBC: EM PHOTONICS INC Topic: S802The recent performance increases in graphics processing units (GPUs) have made graphics cards an attractive platform for implementing computationally intense applications. With their numerous parallel computational pipelines and SIMD architecture, modern GPUs can outperform high-end microprocessors by one to three orders of magnitude, depending on the problem. Most work to date at EM Photonics a ...
SBIR Phase II 2008 National Aeronautics and Space Administration -
Cost Effective Processing Equipment for Large Composite Parts
SBC: ACCUDYNE SYSTEMS, INC. Topic: N/AReduced mass materials are critical to the success of aerospace systems. Thus, large air and space structures can benefit from lightweight composite materials. However, their adoption is impaired by the lack of a robust, cost-effective fabrication process, principally because the autoclaves used to consolidate composite laminates are so expensive for large parts. This program develops for US aeros ...
SBIR Phase II 2001 National Aeronautics and Space Administration -
Cost Effective Processing Equipment for Large Composite Parts
SBC: ACCUDYNE SYSTEMS, INC. Topic: N/AReduced mass materials are critical to the success of aerospace systems. Thus, large air and space structures can benefit from lightweight composite materials. However, their adoption is impaired by the lack of a robust, cost-effective fabrication process, principally because the autoclaves used to consolidate composite laminates are so expensive for large parts. This program develops for US aeros ...
SBIR Phase I 2001 National Aeronautics and Space Administration -
Generating Autoclave-Level Mechanical Properties with Out-of-Autoclave Thermoplastic Placement of Large Composite Aerospace Structures
SBC: ACCUDYNE SYSTEMS, INC. Topic: T702Out-of-autoclave thermoplastic tape/tow placement (TP-ATP) is nearing commercialization but suffers a moderate gap in mechanical properties compared with laminates fabricated via thermoset autoclave processing. Out-of-autoclave thermoplastic processing significantly lowers composite aerospace part costs, but the property gap must be closed. This STTR program, endorsed herein by Boeing and Cytec ...
STTR Phase I 2008 National Aeronautics and Space Administration -
Microscopic Traffic Flow Simulation Models- An Open Source Approach
SBC: NEW GLOBAL SYSTEMS FOR INTELLIGENT TRANSPORTATION MANAGEMENT CORPORATION Topic: 081FH5In the Open-source microscopic traffic simulation models project, a component based software framework is proposed to re-engineer CORISM data struture and CORISM interface. Under the architecture combing the innovative framework and the legacy CORISM, prototype of the open source traffic flow simulation models will be developed and demonstrated in the Phase I. In addition, areas identified by th ...
SBIR Phase I 2008 Department of Transportation -
Non Intrrusive, On-line, Simultaneous Multi-Species Impurity Monitor in Hydrogen
SBC: Mississippi Ethanol, LLC Topic: T901The purity of hydrogen fuel is important in engine testing at SSC. The hydrogen may become contaminated with nitrogen, argon, or oxygen. The hydrogen from the fuel tanks or feed lines is analyzed beforehand. Therefore, there is a need for a non-intrusive, on-line, near real-time monitor for H2. The analytical technique should measure various impurities (molecular and atomic) simultaneously and be ...
STTR Phase I 2008 National Aeronautics and Space Administration