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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. Tunable High Quality Factor Radio Frequency Filters

    SBC: MAXENTRIC TECHNOLOGIES LLC            Topic: SB12A006

    Next generation DoD electronic warfare (EW) and commercial communication systems are currently faced with the challenge of delivering a receiver capable of multi-band reception. The receiver must meet various wireless standards and cover an expanse of frequencies and bandwidths. Traditionally the solution to the multi-band converge problem employed many off chip frequency fixed filters and an indi ...

    STTR Phase I 2012 Department of DefenseDefense Advanced Research Projects Agency
  2. High efficiency materials&processes for the reduction of CO2 to syngas

    SBC: Liquid Light, Inc            Topic: AF11BT07

    ABSTRACT: Liquid Light and Princeton University will develop an electrochemical process for syngas evolution that uses carbon dioxide and water as the feedstocks. Syngas evolved from the system will then be converted to JP-8 via existing Fischer-Tropsch systems. The syngas evolution process will be based on heterocyclic catalysts originally discovered at Princeton University. Research in Phase I ...

    STTR Phase I 2012 Department of DefenseAir Force
  3. Dynamic Assured Routing Technology (DART) for IP based Satellite Ad-Hoc Networks

    SBC: Foresight Wireless, LLC            Topic: AF11BT12

    ABSTRACT: Foresight Wireless, LLC (Foresight) proposes a novel autonomous bi-focal cross-layer routing solution, DART, to meet the Air Force"s objective, namely, to demonstrate novel IP routing protocols onboard satellites that would link user preferences and network conditions and improve end-to-end network performance, including heterogeneity of satellite nodes, interferences of satellite links ...

    STTR Phase I 2012 Department of DefenseAir Force
  4. High Performance InAs and InN Semiconductor Gas Sensors

    SBC: STRUCTURED MATERIALS INDUSTRIES, INC.            Topic: A12aT014

    In this STTR program, Structured Materials Industries, Inc. (SMI) and partners will develop low-cost, planar gas sensors, with high sensitivity and high selectivity. Gas sensors are critical to many existing and emerging applications in defense and homeland security. Present technology gas sensors based on metal oxide films do not have the required sensitivity or selectivity. The technical appr ...

    STTR Phase I 2012 Department of DefenseArmy
  5. HOVPE Growth of High Quality AlGaN on AlN substrates

    SBC: STRUCTURED MATERIALS INDUSTRIES, INC.            Topic: A12aT019

    In this STTR program, Structured Materials Industries, Inc. (SMI) along with the Electro Optics Center - Pennsylvania State University will apply its hybrid Hydride Metal-Organic Vapor Phase Epitaxy (HOVPE) based growth methods to produce optimum quality AlxGa1-xN on AlN substrates. The Phase I goal is to convincingly demonstrate the advantages of the HOVPE technique to produce high quality, epita ...

    STTR Phase I 2012 Department of DefenseArmy
  6. Atomic Layer Deposition of PbZrxTi1-xO3 Thin Films for PiezoMEMS Applications

    SBC: STRUCTURED MATERIALS INDUSTRIES, INC.            Topic: A12aT020

    In this STTR program, Structured Materials Industries, Inc. (SMI) will develop process technology to deposit uniform films of piezoelectric PbZrxTi1-xO3, on substrates with complex 3-dimensional topography. Piezoelectric PbZrxTi1-xO3 films are a critical technology for advanced Micro Electro Mechanical System (MEMS), to provide low power actuation in nanoscale devices. Our technical approach is ...

    STTR Phase I 2012 Department of DefenseArmy
  7. Bonded Joint Analysis Method

    SBC: Global Engineering and Materials, Inc.            Topic: N12AT004

    A combined discrete cohesive interface fracture and continuum damage mechanics initiation and propagation toolkit for Abaqus will be developed for the residual strength prediction of adhesively bonded composite structures subjected to multi-axial loading. This tool will allow us, for the first time, to be able to simulate concurrently both the continuum and discrete damage progression at the bonde ...

    STTR Phase I 2012 Department of DefenseNavy
  8. Total Fatigue Life Assessment of Complicated Structures

    SBC: Global Engineering and Materials, Inc.            Topic: N12AT006

    Global Engineering and Materials, Inc. (GEM) along with its team members Northwestern University, Lockheed Martin, and Boeing Company, propose to develop an automatic software tool for 2D/3D fatigue crack growth prognosis of complicated structures under multi-axial loading. The XFAT toolkit will be developed by integrating a unified crack initiation and propagation model with an enhanced mesh inde ...

    STTR Phase I 2012 Department of DefenseNavy
  9. Intermediate Transient Support of High Rate and Pulsed Loads

    SBC: NDI ENGINEERING COMPANY            Topic: N12AT022

    With the Navy proceeding on its goal of an all-electric ship, innovative R & D methodology is needed to model and validate high rate, intermittent energy storage and control architectures that can rapidly accept high intermittent currents to load-level prime movers during the pulsed-power duty cycle. This proposal offers a solution to mitigate the intermittent disturbances to the ship"s distributi ...

    STTR Phase I 2012 Department of DefenseNavy
  10. Design and Analysis of Multi-core Software

    SBC: Zircon Computing LLC            Topic: OSD11T03

    The main challenges outlined in the acquisition program objectives are: 1. API abstraction is inadequate for complex architectures 2. Multi-core architectures are non-portable across hardware/OS 3. Testing and validation of concurrent code are complex and hard to model We already have a product called zNet, which is on the market and solves most of the above challenges. 1. zNet uses a ...

    STTR Phase I 2012 Department of DefenseAir Force
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