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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. Additive Manufacturing Process Monitoring and Control Technologies

    SBC: ARCTOS Technology Solutions, LLC            Topic: DLA181002

    This project aims to make Laser Powder Bed Fusion (LPBF) additive manufacturing a practical tool for supply chain management for the Defense Logistics Agency.The key step is developing process standardization to make LBPF quality vendor independent. This project will seek to demonstrate the use of a promising high speed melt pool monitoring device as a practical means to establish such process sta ...

    SBIR Phase I 2018 Department of DefenseDefense Logistics Agency
  2. Additive Manufacturing Process Monitoring and Control Technologies

    SBC: Made In Space, Inc.            Topic: DLA181002

    Made In Space, Inc. (MIS) and Siemens PLM Software propose an integrated Automated Processing. Monitoring, Control and Remediation System (Aul) to provide a process monitoring and control capability. Made In Space, Inc. leads the effort based on integrating Made In Space, Inc., proven inspection sensors systems with a Digital Thread for Additive Manufacturing (DTAM) system, co-developed by Siemens ...

    SBIR Phase I 2018 Department of DefenseDefense Logistics Agency
  3. Additive Manufacturing Sensor Fusion Technologies for Process Monitoring and Control.

    SBC: SENVOL LLC            Topic: DLA18A001

    The Department of Defense (DoD) has a demand for out-of-production parts to maintain mission readiness of various weapons platforms. Additive manufacturing (AM) is an exciting and promising manufacturing technique that can make out-of-production parts and holds the potential to solve supply chain issues, such as high costs (i.e. for low-volume parts) and sole sourcing risks. The ability of AM to s ...

    STTR Phase I 2018 Department of DefenseDefense Logistics Agency
  4. Additive Manufacturing Sensor Fusion Technologies for Process Monitoring and Control.

    SBC: ARCTOS Technology Solutions, LLC            Topic: DLA18A001

    Universal Technology Corporation (UTC) has teamed with the University of Dayton Research Institute (UDRI), Stratonics, and Macy Consulting to demonstrate not only the transitionability into commercial systems, but also to develop the data analytics and monitoring and control requirements to extract the full value fromseveral sensors, including the Stratonics ThermaViz, acoustic and profilometry se ...

    STTR Phase I 2018 Department of DefenseDefense Logistics Agency
  5. Advanced Female Trauma Training System

    SBC: VCOM3D INC            Topic: DHP16002

    For this Phase I SBIR proposal, Vcom3D proposes to design an Advanced Female Trauma Training System that features the accurate representation of anatomical and physiological differences of the women in our nations armed forces, and of the types of injuries that they are most likely to sustain in combat. The training system will include a ruggedized medical manikin and a wireless tablet controller ...

    SBIR Phase I 2016 Department of DefenseDefense Health Agency
  6. Advanced Filtration System for Serum Potassium

    SBC: TDA RESEARCH, INC.            Topic: DHP16010

    Hyperkalemia continues to be a concern when treating combat casualties. Current hemodialysis systems use a dialysate in a membrane contactor to replicate the function of the kidney by removing the toxins, excess fluid and the minerals. The dialysis machines used in hemodialysis centers are bulky. There are home dialysis machines that are smaller but not person portable and weighing about 70lbs.Sim ...

    SBIR Phase I 2016 Department of DefenseDefense Health Agency
  7. Advanced Simulated Patient Intelligent Response Engine (ASPIRE)

    SBC: VCOM3D INC            Topic: DHA191002

    The goal of medical simulation-based training such as high-fidelity manikin simulators, part task trainers, and screen-based virtual patients, is to approximate real-life treatment experiences without risk to live patients. While the use of sensors has ma

    SBIR Phase I 2019 Department of DefenseDefense Health Agency
  8. Algorithms for Look-down Infrared Target Exploitation

    SBC: SIGNATURE RESEARCH, INC.            Topic: 1

    Signature Research, Inc. (SGR) and Michigan Technological University (MTU) propose a Phase I STTR effort to develop a learning algorithm which exploits the spatio-spectral characteristics inherent within IR imagery and motion imagery.Our archive of modelled and labeled data sets will allow our team to thoroughly capture the variable elements that will drive machine learning performance.The overall ...

    STTR Phase I 2018 Department of DefenseNational Geospatial-Intelligence Agency
  9. Anatomic 3D Synthetic Tissue Printer for Medical Training

    SBC: SERAPH ROBOTICS, INC.            Topic: DHP12003

    Military medical personnel are not prepared to provide trauma care to severely injured soldiers in wartime due to inadequate and unrealistic battlefield training opportunities during peacetime. Training has historically been done on human cadavers and live animals, but cadavers are in limited supply, and animal rights groups and physicians are increasing pressure to end the practice of using live ...

    SBIR Phase I 2013 Department of DefenseDefense Health Agency
  10. A New Process for Rare Earth Metals Recovery

    SBC: TDA RESEARCH, INC.            Topic: DLA161003

    The recovery, separation and purification of rare earth elements are very difficult because they all have very similar properties.Solvent extraction is the most commonly used industrial separation method, but it is expensive due to the need for a large number of separation stages that are required.TDA Research Inc. (TDA) proposes to develop a new supported liquid membrane contactor that uses the e ...

    SBIR Phase I 2016 Department of DefenseDefense Logistics Agency
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