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Award Data

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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. High Performance, Ultra Low Power SPA-1 ASIC for Space Plug-and-Play Avionics

    SBC: American Semiconductor, Inc.            Topic: AF093082

    ABSTRACT: The Space Plug-and-play Avionics (SPA) initiative is designed to improve the ability of the US military to respond to rapidly changing operational needs by creating, integrating, and launching a new spacecraft in less than one week. This would provide major benefits to war fighters on the ground, in the sky, and at sea. SPA-1 ASICs using I2C as the transport interface will likely be t ...

    SBIR Phase II 2011 Department of DefenseAir Force
  2. High Power, Room Temperature 2.4- 4 micron Mid-IR Semiconductor Laser Optimization

    SBC: NONLINEAR CONTROL STRATEGIES, INC.            Topic: AF10BT20

    ABSTRACT: The key objective of the proposal is to develop sophisticated, graphical user interface driven software tools built on fully microscopic physics to design, guide and provide feedback on growth, fabrication and evaluation of semiconductor structures that provide optical gain in the critical 2.4-4 micron wavelength window. Existing technologies are severely limited by low gain, high losse ...

    STTR Phase I 2011 Department of DefenseAir Force
  3. Optical Cryocooling for Space-borne Sensors

    SBC: N.P. PHOTONICS, INC.            Topic: AF10BT02

    ABSTRACT: We propose to develop a light weight, compact, vibration-less and micro-scale cooler for space-mission conditions based on optical refrigeration using an all-fiber approach. Specifically, we will use a Tm+3-doped fiber laser to pump Tm+3-doped glass fibers, which provide the cooling action on the affixed heat source. The cooling fiber is attached to the heating sample e.g., EO-IR detect ...

    STTR Phase I 2011 Department of DefenseAir Force
  4. Using a Novel Family of Electrolytes to Extend the Safety and Temperature Range of Li-ion Batteries

    SBC: ATS-MER, LLC            Topic: AF103232

    ABSTRACT: The increasingly demanding mission requirements placed on Air Force applications have necessitated the use of higher energy density and higher power density storage systems capable of safe operation over a broader temperature range. MER Corporation and the University of Arizona are proposing a novel family of electrolytes appropriate for Air Force miniaturized lithium-ion battery use. T ...

    SBIR Phase I 2011 Department of DefenseAir Force
  5. Modular Unmanned Aircraft Systems for the 2011 Commander"s Challenge

    SBC: Brock Technologies, Inc.            Topic: AF083006

    ABSTRACT: Applications for Unmanned Aircraft Systems (UAS) are growing rapidly. The target training market is one area in which the"pilot-less"capabilities provided by UAS have been continuously exploited. To better serve this market, it would be beneficial if the UAS technology development included the modularity to support multiple airframes, sensors, payloads, and concept of operations. In thi ...

    SBIR Phase II 2011 Department of DefenseAir Force
  6. Securing Applications by Limiting Exposure

    SBC: SoftKrypt, LLC            Topic: AF10BT18

    ABSTRACT: This STTR Phase I project addresses exploit attempts being mounted against applications code and modules with vulnerabilities that need to be protected. The team's strategy is to"blacken"or isolate applications and the inter, and intra communications paths between them and the lnternet using innovative algorithms developed by Embry-Riddle Aeronautical University (ERAU). We plan to ...

    STTR Phase I 2011 Department of DefenseAir Force
  7. Advanced Dielectric Insulation Techniques for High Voltage Pulsed Power Systems

    SBC: Applied Energetics, Inc.            Topic: AF093014

    ABSTRACT: Current state-of-the-art, high voltage, pulsed power systems designed to drive high power microwave (HPM) sources utilize Marx generator designs. The high voltage insulation of these devices has been traditionally based on either high dielectric strength oil or sulfur hexafluoride (SF6). The dielectric strength of the insulating medium determines the minimum size of the tank enclosure ...

    SBIR Phase II 2011 Department of DefenseAir Force
  8. Self-Reconfigurable Memristor-Based Computing Architecture: Design, Fabrication, and Characterization

    SBC: Bio Inspired Technologies, LLC            Topic: AF10BT31

    ABSTRACT: The behavior of the Chalcogenide based ion-conducting memristor lends itself for use as an element in a simple neuromorphic computing circuit. The reaction of a circuit to an external stimulus may be the result of its ability to learn from previous similar, yet unrelated exposures to environmental stimulus. A highly specialized variation of the memristor, previously developed by the Ad ...

    STTR Phase I 2011 Department of DefenseAir Force
  9. Isolator for Fiber Laser Amplifier Arrays

    SBC: ADVALUE PHOTONICS INC            Topic: AF093008

    ABSTRACT: High power fiber lasers have made significant progress in last several years. Several kW of output power has been demonstrated, which enables a wide range of new applications from laser welding, laser cutting, and laser drilling to military defense. While high power fiber lasers have been successfully deployed in industry, one piece of critical components, fiber isolator, is still not a ...

    SBIR Phase II 2011 Department of DefenseAir Force
  10. Context Aware Scalable Dynamic Network (CASDN)

    SBC: ARCHITECTURE TECHNOLOGY INC            Topic: AF103070

    ABSTRACT: Current air, ground and space networks are very dynamic with large-scale mobility needing human in-the-loop configuration to adapt to unforeseen situations. Humans and current automated systems cannot reconfigure consistently or fast enough. This leads to network performance not meeting mission needs. Airborne, space and ground networks are very dynamic, complex, and hard for the cur ...

    SBIR Phase I 2011 Department of DefenseAir Force
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