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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. IP Hopper (for Moving Target Defense)

    SBC: CYBERNET SYSTEMS CORPORATION            Topic: HSB0121002

    The IP Hopper is a moving target defense system that will use available network data and hopping algorithms to allow for constant IP address changing of both source and destination IP addresses. The use of "hopping" IP addresses will severely diminish an attacker's ability to attack any one target within a network. Utilizing IPv6 the IP Hopper will allow up to 340 undecillion (3.4 x 10 to the 38 ...

    SBIR Phase I 2012 Department of Homeland Security
  2. COTS MMW Radar for Tracking Persons within a Security Perimeter

    SBC: PSQUAREDT LLC            Topic: HSB0121005

    The implications of the proposed investigations are that radar systems already implemented for the automotive industry can be exploited, adapted and optimized for this application. These radar systems are inexpensive, of small size, employ advanced processing techniques which allow the tracking of threat targets, transmit low average power (10 milliwatts) and are proven to be people safe. We will ...

    SBIR Phase I 2012 Department of Homeland Security
  3. Improved Transit Rider Experience

    SBC: MERCURY DATA SYSTEMS, INC.            Topic: 121FT1

    We propose to develop an advanced navigation solution for public transportation passengers that will guide them from their origin to single or multiple destination points and across multiple modes of transportation. Passengers will simply need to enter their destination (and optionally a starting point) and the system will select optimal and alternative routes. The navigation software will run on ...

    SBIR Phase I 2012 Department of Transportation
  4. Non-Destructive Test Method for Rapid Determination of the Chemical Composition of Concrete in Field

    SBC: METNA CO            Topic: 122FH2

    While thorough assessment of concrete chemistry is vital to evaluating the health of (transportation) infrastructure systems, the costly and time-consuming nature of available chemical analysis methods limit their applications. A nondestructive test method will be developed for thorough evaluation of concrete chemistry and deterioration conditions at different depths. An analytical chemistry metho ...

    SBIR Phase I 2012 Department of Transportation
  5. Ruggedization of Commercial-Grade Handheld Electronics for First Responders

    SBC: CYBERNET SYSTEMS CORPORATION            Topic: HSB0122004

    Ruggedized electronics can be costly; utilizing commercial-grade hand-held computing/communication device and combining with well-designed case can provide ruggedization (impact, temperature, moisture) and extend capabilities such as integrated inclusion of smartcard/CAC readers, biometrics, and advanced barcode scanners. This program will determine the requirements for ruggedizing a device and us ...

    SBIR Phase I 2012 Department of Homeland Security
  6. Nonintrusive fiber interferometer for ablative TPS recession measurement

    SBC: Electrodynamic Applications Inc            Topic: AF10BT04

    ABSTRACT: The next generation of hypersonic and reentry vehicles being designed for the Department of Defense (DoD) applications will require advanced Thermal Protection System (TPS). While new TPS shields are under development, a key difficulty is the ability to predict and diagnose TPS performance. ElectroDynamic Applications (EDA) has been developing an optical diagnosticfor use during testi ...

    STTR Phase I 2012 Department of DefenseAir Force
  7. Hybrid Chemical-Electric Propulsion (HCEP)

    SBC: Electrodynamic Applications Inc            Topic: AF11BT10

    ABSTRACT: The proposed Phase I efforts seek to develop a dual-mode Hybrid ChemicalElectric Propulsion thruster concept design based on the extensive microwave torch/arcjet experience of PSU and Hall and ion experience of EDA. The primary focus of the Phase I effort will be demonstrate the operation of an ionic liquid microwave thruster in the high-T/P regime and the basic operation of a Hall and ...

    STTR Phase I 2012 Department of DefenseAir Force
  8. Metamaterial-based MEM ultra-low-loss non-dispersive phased-array antenna

    SBC: A. BROWN DESIGN            Topic: AF11BT28

    ABSTRACT: Under this collaborative effort between A Brown Design, Michigan State University, and Raytheon, a novel phase shifter design is proposed. The phase shifter design builds upon existing RF MEMS capacitive technology by co-integrating MEMS switches with metamaterial unit cells. The metamterial unit cell design is versatile and allows significant degree of freedom in integration and design ...

    STTR Phase I 2012 Department of DefenseAir Force
  9. Satellite Drag Model for Near Real Time Operation

    SBC: MICHIGAN AEROSPACE CORP            Topic: AF11BT29

    ABSTRACT: Michigan Aerospace Corporation, in cooperation with the University of Michigan"s Department of Atmospheric, Oceanic, and Space Sciences, will refine existing upper atmospheric models and apply them to the problem of predicting satellite drag. The primary goal of this Phase 1 project is to run a fully validated version of University of Michigan"s Global Ionosphere Thermosphere Model (GI ...

    STTR Phase I 2012 Department of DefenseAir Force
  10. Fused silica ion trap chip with efficient optical collection system for timekeeping, sensing, and emulation

    SBC: TRANSLUME INC            Topic: AF10BT17

    ABSTRACT: We will design, fabricate and test a quantum processing unit (QPU) based on a symmetric ion trap chip. The trap will provide trapping depth similar to that obtain with macrosize Paul traps. In addition to the ion trap, this chip will incorporate integrated optical systems which will deliver the light fields required by the elementary quantum processing unit (or quantum sensing unit). ...

    STTR Phase II 2012 Department of DefenseAir Force
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