Award Data

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The Award database is continually updated throughout the year. As a result, data for FY19 is not expected to be complete until September, 2020.

  1. Complex Distributed Telephony Denial of Service (TDoS) Defense

    SBC: SECURELOGIX CORPORATION            Topic: HSB0151003

    TDoS is a form of DoS that affects government, enterprise, and small business voice systems. It is the most significant threat to voice systems and by far the most likely form of voice-based DoS. TDoS attackers use SIP, free IP-PBXs, call generators, and spoofed calling numbers to cheaply and anonymously flood their victims with calls. The attackers have the advantage, because attacks are easy to ...

    SBIR Phase I 2015 Department of Homeland Security
  2. Proposal for Innovative Next Generation Cargo Seal

    SBC: SEALOCK SECURITY SYSTEMS, INC.            Topic: HSB0151002

    Cargo containers are an attractive target for criminals and other enemies of the state. Yet the most widely adopted method of securing cargo containers--the bolt seal--provides at best limited protection from tampering and illicit entry. Such seals can be defeated quickly and the evidence hidden easily, in a variety of ways. These seals also rely on slow visual inspection to confirm their presence ...

    SBIR Phase I 2015 Department of Homeland Security
  3. Multi-Dimensional Digital Print Collection for DNA Collection from Same Sample

    SBC: Lynntech Inc.            Topic: HSB0151001

    In recent years, research has shown that is possible to obtain DNA evidence from latent fingerprints; however forensic investigators need optimized techniques to ensure that both pieces of evidence are effectively preserved. Many fingerprint visualization and transfer techniques utilize enhancement additives or ultraviolet light which can compromise DNA profiling kits resulting in partial or no p ...

    SBIR Phase I 2015 Department of Homeland Security
  4. Rapid Low-Cost Biological Warefare Decontamination

    SBC: Lynntech Inc.            Topic: HSB0142001

    Lynntech, Inc. proposes the use of a novel oxidant as a powdered concentrate, that when dissolved in water, yields a potent sporicidal solution capable of reducing spores by greater than 6-logs on a variety of surfaces. The sporicidal formulation will be tested on concrete, wood, galvanized metal, glass, plastic and painted wallboard to determine if the formulation will reduce spores but not harm ...

    SBIR Phase II 2015 Department of Homeland Security
  5. Complex Distributed Telephony Denial of Service (TDoS) Defense- FY15 I-CORPS

    SBC: SECURELOGIX CORPORATION            Topic: HSB0151003

    This award is for participation in the I-CORPS Program through DHS SBIR CRPP funds. Basic requirements include: Attend the initial seminar at the prescribed location (three to four days) Attend the closing lessons learned seminar seven weeks later at the identical location as the opening seminar Carry out one hundred face to face interviews with potential customers.

    SBIR Phase I 2015 Department of Homeland Security
  6. Detection of Texture Anomalies on the Ground (DTAG)

    SBC: Lynntech Inc.            Topic: HSB0141001

    Footprints trails left on unimproved roads during illegal border crossings are often useful starting places for Border Patrol Agents to begin their pursuits. Currently searching for footprints involves CBP agents driving over long stretches of road and visually searching for signs of human activities. In this technology and product development effort, Lynntech proposes to develop a COTS mobile-dev ...

    SBIR Phase II 2015 Department of Homeland Security
  7. Large-Area, High-Uniformity Photodiodes for Infrared Trap Detectors

    SBC: Amethyst Research Incorporated            Topic: 9020168R

    methyst Research Inc. will design, fabricate and test a high uniformity, large area, low noise infrared trap-detector detector for the 1- 4.5 μm wavelength range. This state of the art detector will have a large area (e.g., 1-1.8 cm diameter active area) with a spatial variability of internal quantum efficiency of less than 0.1 % between 1 μm and 4.5 μm. In addition, the internal quantum effici ...

    SBIR Phase I 2015 Department of CommerceNational Institute of Standards and Technology
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