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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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Impedance-based Sensing Optimization & Algorithms for Visualization of Ship Hull Structural Health Monitoring Data
SBC: Metis Design Corporation Topic: N10AT042The implementation of structural health monitoring (SHM) systems into naval applications has been hindered due to component quantity, including sensors, power/communication cables, and acquisition/computation units, as well as data quality. Particularly for large-area applications such ship hulls, complexity of implied system infrastructure can be impractical, and data can be worthless with attenu ...
STTR Phase I 2010 Department of DefenseNavy -
Analysis and Modeling of Foreign Object Damage (FOD) in Ceramic Matrix Composites (CMCs)
SBC: N&R ENGNERING MGT SUPPORT SVCS Topic: N10AT010The Phase I deliverable will be a physic-based model which represents a CMC gas turbine component concomitantly at the material level and the structural level. This model will be probabilistically analyzed to account for the uncertainties in material properties and the uncertainties in the size and impact velocities of possible foreign objects (FOD). A ceramic material must display sufficient capa ...
STTR Phase I 2010 Department of DefenseNavy -
Low-Cost Ball/Air/Magnetic Hybrid Bearing System for Extended-Life Micro Gas Turbine Engines
SBC: Nastec, Inc. Topic: N10AT037A unique type of air lubricated thrust bearing called a Wave Bearing is proposed to assist a rolling element bearing to carry the thrust load and to improve the bearing’s life when used in a micro gas turbine engine. The Wave Bearing technology will provide improved reliability, safety and life compared to rolling element bearings used alone, as well as to allow simplification of engine design a ...
STTR Phase I 2010 Department of DefenseNavy -
Low-cost, high rate, roll-to-roll manufacturing of organic solar cell powered high frequency flexible communication system
SBC: Omega Optics, Inc. Topic: N10AT031Having realized the bottlenecks in electronic systems-on-film manufacturing, Omega Optics and the University of Texas at Austin propose to develop a low-cost, high rate, roll-to-roll manufacturing process for hybrid electronic systems on flexible substrates. Roll-to-roll fabrication of hybrid systems enables the utilization of the combined advantages of organic, inorganic and other material system ...
STTR Phase I 2010 Department of DefenseNavy -
Reduction of Mutual Coupling between E and B Field Antennas in SQIF Arrays
SBC: Physical Sciences Inc. Topic: N10AT015Physical Sciences Inc. (PSI), in partnership with the Electrical Engineering Department of the Worcester Polytechnic Institute (WPI), proposes to compute and reduce mutual coupling between E-field antennas (in Transmit mode) and SQUIDs magnetic loops (in Receive mode) for improved signal reception in SQIF arrays. For the computation of the mutual coupling in the near field PSI and WPI will use an ...
STTR Phase I 2010 Department of DefenseNavy -
Probabilistic Prediction of Location-Specific Microstructure in Turbine Disks
SBC: SCIENTIFIC FORMING TECHNOLOGIES CORPORATION Topic: N10AT028While there are established methods available in determining the fatigue life of critical rotating components, there is still room for improvement for better understanding and prediction of life limiting factors. Improved risk assessment of jet engine disk components would require probabilistic modeling capability of the evolution of microstructural features, residual stresses and material anomali ...
STTR Phase I 2010 Department of DefenseNavy -
Structurally Integrated Wideband Low Profile Metamaterial Antenna (1000-161)
SBC: SI2 TECHNOLOGIES, INC. Topic: N10AT021SI2 Technologies, Inc. (SI2) proposes an innovative solution to the Navy’s need for wideband antennas to support naval ships and Marine Corps’ vehicle communications, electronic warfare (EW), and radar functions. SI2 will develop efficient, broadband, metamaterial antennas for operation in the VHF-UHF frequency range. These antennas will initially be designed for integration with the composite ...
STTR Phase I 2010 Department of DefenseNavy -
Toolkit for Training Disparately Skilled Participants
SBC: VCRSOFT LLC Topic: N09T007In any large-scale training exercise, it is difficult to provide all trainees with training objectives commensurate with their skills levels, experience or expertise. The TARGETS and EBAT training and performance measurement methodologies were developed by Dr. Eduardo Salas at UCF. In this project, we are utilizing TARGETS and EBAT to develop a software toolkit that is integrated with the CDMTS si ...
STTR Phase II 2010 Department of DefenseNavy -
Development of Magnetostrictive Energy Harvesting of Mechanical Vibration Energy
SBC: Infoscitex Corporation Topic: N10AT020The Navy seeks devices that can provide power to maintain charge in batteries for shipboard sensors. The transduction materials proposed for most energy harvesting devices under development are either too brittle to endure significant loading or are too compliant to extract significant energy from the small amplitude vibrations present on ships. Terfenol-D (in a composite form) and Galfenol each p ...
STTR Phase I 2010 Department of DefenseNavy -
Innovative Approaches to Resource Virtualization over Ad-Hoc Wireless Networks
SBC: Infoscitex Corporation Topic: N10AT006Resource virtualization concepts are in heavy commercial use for optimizing the performance of distributed applications. Resource virtualization allows resources to be allocated and adapted on-the-fly, and enables a wide range of distributed computing, networking, and sensing applications. However, resource virtualization has traditionally been developed for fixed, stable networks, and cannot adeq ...
STTR Phase I 2010 Department of DefenseNavy