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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. Tools for Memory Hierarchy Optimization on Pre-Exascale HPC Architectures

    SBC: EP ANALYTICS, INC..            Topic: DTRA172003

    DTRA uses High Fidelity Computer Codes (HFCC) to investigate weapon effects and techniques for countering Weapons of Mass Destruction (WMD). End-to-end HFCC simulations in support of the DTRA Agent Defeat Warfighter Capability will require calculations including multiple phenomena that occur in vastly different time scales (µ-sec to hours). As DTRA becomes increasingly reliant on computational mo ...

    SBIR Phase II 2019 Department of DefenseDefense Threat Reduction Agency
  2. In-line, Non-invasive, Non-destructive Cell Monitoring in Dynamically Growing Cultures

    SBC: CHROMOLOGIC LLC            Topic: DHA18006

    In order to meet DHA’s need for in-line, non-invasive and non-destructive cell monitoring in dynamically growing cultures, In Phase I, ChromoLogic (CL) developed a prototype system for cell monitoring by optical coherence tomography (CM-OCT). Following th

    SBIR Phase II 2019 Department of DefenseDefense Health Agency
  3. MicroLens Hyperspectral Imager for Standoff Chemical Detection

    SBC: SURFACE OPTICS CORP.            Topic: CBD171002

    A program to develop a compact, MLA-based, LWIR, full-motion-video hyperspectral imager for chemical detection is proposed. The proposed Hyperspectral Chemical Imaging Sensor (HyCIS) builds upon Surface Optics’ real-time hyperspectral imaging activities, including our 3D full-motion-video spectral imaging (FMV-SI) technology and our MIDIS hyperspectral image processor. Simultaneously sampling 16 ...

    SBIR Phase II 2019 Department of DefenseOffice for Chemical and Biological Defense
  4. MicroLens Hyperspectral Imager for Standoff Chemical Detection

    SBC: SA PHOTONICS, LLC            Topic: CBD171002

    SA Photonics is please to submit the proposal for the HawkEye compact LWIR hyperspectral imaging system. HawkEye leverages SA Photonics previous visible, SWIR, and LWIR programs to result in a compact, hand held, battery operated hyperspectral imager in a low cost design approach. Furthermore, HawkEye will leverages SA Photonics expertise in warfighter body worn equipment and ground troop personal ...

    SBIR Phase II 2019 Department of DefenseOffice for Chemical and Biological Defense
  5. Rapid Field Trace Detection of Perfluoroalkyl Substance in Water

    SBC: 2W ITech LLC            Topic: 18NCER1B

    Due to increasing concerns over long-term effects of PFOS and PFAS on human body, health based values were set by regulatory authoritative bodies for drinking water standard. Currenty lab-based PFOA and PFOS water tests cost $200-$300 per sample with a turnaround time of 2-3 weeks. In this program, 2W iTech LLC proposes to develop a low-cost fieldable sensing technology for detecting trace amounts ...

    SBIR Phase I 2019 Environmental Protection Agency
  6. Aqueous Electrostatic Concentrator to Remove Per- and Poly-fluoroalkyl Substances from Water

    SBC: BioLargo, Inc.            Topic: 18NCER1C

    This proposal addresses the need for a pre-treatment technology to remove per- and poly- fluoroalkyl substances (PFAS) from industrial wastewaters. Phase I involves the design, build and testing of a novel technology to remove PFAS from water, termed the Aqueous Electrostatic Concentrator (AEC). This technology will be tested as an electrical bench-scale device that concentrates PFAS through selec ...

    SBIR Phase I 2019 Environmental Protection Agency
  7. Ultralow Power Sensor Package for Ground Level Air Pollution Levels from Wildland Fires

    SBC: KWJ ENGINEERING INC            Topic: 18NCER2A

    Wild fires produce significant air pollution, posing health risks to first responders, residents in nearby areas, and downwind communities. Wildfires are increasing in size and intensity, and the fire season is growing longer. Technologies for measuring air pollutants, including particulates, carbon monoxide, nitrogen dioxide, and carbon dioxide, over the wide range of levels expected in areas dow ...

    SBIR Phase I 2019 Environmental Protection Agency
  8. Black Carbon and UV Particulate Matter, Multi-gas, Multi-pollutant Sensor Platform

    SBC: MICROAETH CORPORATION            Topic: 18NCER2A

    As forest fires are increasing in prevalence and intensity there is a need for miniaturized, lower cost, and easily portable air sensors that provide information to first responders, public health managers and communities so informed, timely decisions can be made. PM2.5 is an accepted standard for particulate matter (PM) measurements, but PM2.5 mass measurements cannot identify sources without ana ...

    SBIR Phase I 2019 Environmental Protection Agency
  9. Remote Air Quality Reporting (RAQR) Device

    SBC: INTELLISENSE SYSTEMS INC            Topic: 18NCER2A

    The Environmental Protection Agency (EPA) is seeking a ground-level air-quality monitoring device to measure wildland fire pollutants including carbon monoxide, carbon dioxide, nitrogen dioxide, and particulates, in a small, easy-to-use unit capable of data storage and data viewing. As more frequent wildfires are expected to occur near populated areas, air-quality monitoring will be more persisten ...

    SBIR Phase I 2019 Environmental Protection Agency
  10. The NODE biosensor: real-time contaminant detection in stormwater

    SBC: Microbiome Engineering, LLC.            Topic: 18NCER4A

    Stormwater management is a growing challenge across the country. Water quality standards are becoming increasingly strict as new regulations are developed at the state level. Meanwhile, changing land use and greater urbanization make meeting these standards even more difficult. Currently, stormwater samples are collected in the field and analyzed in the lab, a process which is time-consuming, cost ...

    SBIR Phase I 2019 Environmental Protection Agency
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