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Award Data
The Award database is continually updated throughout the year. As a result, data for FY22 is not expected to be complete until September, 2023.
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.
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Multiple Hit Performance of Small Arms Protective Armor
SBC: TRANSPARENT ARMOR SOLUTIONS INC. Topic: A14AT017Our nation’s warfighters require advanced armor to give them the best protection while allowing mobility to perform their missions. This proposal will develop two powerful tools to aid future body armor advancements. First, this research program will develop a statistical analysis software that will predict likelihood of impacts based on defined attack scenarios (i.e. rifle, distance and firing ...
STTR Phase II 2018 Department of DefenseArmy -
Method for Locally Measuring Strength of a Polymer-Inorganic Interface During Cure and Aging
SBC: METNA CO Topic: A17AT016The NMR relaxometry instrument developed in Phase I project will be refined and thoroughly calibrated for nondestructive evaluation of the structure and properties of polymer-inorganic interfaces. The system design, operation conditions and data acquisition/analysis algorithms will be improved for precise and reliable evaluation of the structure and properties of the interfaces formed between dive ...
STTR Phase II 2018 Department of DefenseArmy -
Evidence-Based, User-Centered Design Process for Improvement of the Utility of the Surface Electronic Warfare Display Suit
SBC: PACIFIC SCIENCE & ENGINEERING GROUP, INC. Topic: N11AT031In Naval, surface electronic warfare (EW), visual displays form critical bridges between warfighters and the complex operational radio-frequency (RF) spectrum they must monitor and interpret. Surface electronic warfare operators and supervisors must monitor and interact with multiple, stove-piped display systems in order to perform their work. Further, the visual displays they employ are not desig ...
STTR Phase II 2018 Department of DefenseNavy -
Innovative Multi-scale/Multi-physics based Tool for Predicting Fatigue Crack Initiation and Propagation in Aircraft Structural Components using Phase
SBC: Coreform LLC Topic: N16AT003The purpose of this Phase II project is to develop computational modeling methods that are able to describe the propagation and interaction of fatigue cracks using the phase-field methodology within the numerical framework of isogeometric analysis (IGA). The resulting computational platform, while focused on fracture and fatigue, will be general, in that any phase-field method can be easily incorp ...
STTR Phase II 2018 Department of DefenseNavy -
Programmable Multi-Frequency Transmitter for Missile Communciations
SBC: Space Micro Inc. Topic: MDA16T005Improving capabilities of telemetry systems for next generation e.g. (MOKV) missile defense launch vehicles, kill vehicles, and test/target vehicles subsystems can transform operational testing of such systems and has the potential to increase capabilities of systems that rely on radio communications. As these systems, and their test scenarios become get more complex they will require unprecedente ...
STTR Phase II 2018 Department of DefenseMissile Defense Agency -
Improved High-Frequency Bottom Loss Characterization
SBC: HEAT, LIGHT, AND SOUND RESEARCH, INC. Topic: N17AT026We propose development of an improved bottom database suitable for use in the frequency range of 1-10 kHz. Measured transmission loss (TL) and reverberation level (RL) will be jointly processed in building the database. The influence of the rough sea surface, rough seafloor, as well as subbottom heterogeneity will be accounted for during database generation. The rough sea surface will be character ...
STTR Phase II 2018 Department of DefenseNavy -
High Dynamic Range Heterodyne Terahertz Imager
SBC: LONGWAVE PHOTONICS LLC Topic: A17AT007The Tunable Active HEterodyne Terahertz Imager (TAHETI) system will use Terahertz Quantum-Cascade Lasers (QCL) combined with a Schottky diode detector for ultra-high dynamic range heterodyne imaging. Distributed feedback (DFB) QCLs with milliwatt power levels are engineered to emit at slightly offset frequencies, and are used as local oscillator and illumination for imaging. The QCLs will be down ...
STTR Phase II 2018 Department of DefenseArmy -
Cyber Ready-and-Aware Mindset for Protection and Resilience against Threats (Cyber RAMPART)
SBC: SOAR TECHNOLOGY INC Topic: N17AT023We propose to develop Cyber RAMPART as an extensible and customizable training delivery tool with near-term transition potential. It will offer shipboard operations personnel the opportunity to develop foundational cyber awareness knowledge and skill that prepares them to participate in their ship’s cyber defense mission and to hit the ground running in future fleet-level exercises that include ...
STTR Phase II 2018 Department of DefenseNavy -
Cognitive Bias in Online Communication Activities (C-BOCA)
SBC: SOAR TECHNOLOGY INC Topic: N13AT024This effort will analyze publicly available online communication data, uniquely applying empirical results from the cognitive bias literature, to quantify the impact of cognitive biases on exposure to, use of, and propagation of online information. SoarTech, with its partners, will develop and evaluate methods to identify and measure cognitive biases in online information environments. The team wi ...
STTR Phase II 2018 Department of DefenseDefense Advanced Research Projects Agency -
Hypersonic Experimental Aerothermoelastic Test (HEAT)
SBC: Global Aerospace Corporation Topic: AF16AT24The U.S. Air Force is interested in developing hypersonic vehicles including reusable transport aircraft, cruise missiles, and unmanned systems. Hypersonic flight regimes result in multifaceted and very difficult design challenges that can be encapsulated into an aerothermoelastic problem, which is a complex interaction of structural, thermal, and aerodynamic mechanisms. When a flexible structural ...
STTR Phase II 2018 Department of DefenseAir Force