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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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Flexible Broad-band Optical Device
SBC: OCEANIT LABORATORIES INC Topic: AF17AT010Oceanit proposes to develop a flexible broad-band optical device capable of measuring optical properties.
STTR Phase I 2017 Department of DefenseAir Force -
Robust Classification through Deep Learning and Dynamic Multi-Entity Bayesian Reasoning
SBC: Exoanalytic Solutions, Inc. Topic: MDA15T001Missile defense faces the challenges of rapidly maturing and evolving complex threats, possessing capabilities which require the use of all available resources to successfully detect, track and identify the lethal objects. Future performance will rely on multiple sensors such as ground and sea based radars and electro-optical and infrared sensors for target recognition. It is crucial to develop a ...
STTR Phase I 2016 Department of DefenseMissile Defense Agency -
Highly-mobile Autonomous Rapidly Relocatable Integrated Electro-optical Resources (HARRIER)
SBC: Exoanalytic Solutions, Inc. Topic: AF16AT05ExoAnalytic Solutions, teamed with Texas A&M University and Georgia Institute of Technology, will develop Highly-mobile Autonomous Rapidly Relocatable Integrated Electro-optical Resources (HARRIER) with the goal being to design and demonstrate tracking of resident space objects (RSOs) in near-geosynchronous orbit (GEO) using a rapidly-constructed low-cost ground based electro-optic (EO) sensor wit ...
STTR Phase II 2017 Department of DefenseAir Force -
Deep Learning with Whole-Scene Contextual Reasoning for Target Characterization
SBC: Exoanalytic Solutions, Inc. Topic: MDA15T001ExoAnalytic Solutions is developing DEEPR (Deep Learning with Whole-Scene Contextual Reasoning for Object Characterization), an advanced multi-sensor multi-object classifier for integrated object characterization. The overall objective of DEEPR is to develop a suite of advanced, novel techniques that combine innovative advances in deep, hierarchical machine learning together with recurrent Deep L ...
STTR Phase II 2017 Department of DefenseMissile Defense Agency -
Highly-mobile Autonomous Rapidly Relocatable Integrated Electro-optical Resources (HARRIER)
SBC: Exoanalytic Solutions, Inc. Topic: AF16AT05ExoAnalytic Solutions, teamed with Texas A&M University, will develop Highly-mobile Autonomous Rapidly Relocatable Integrated Electro-optical Resources (HARRIER) with the goal being to design and demonstrate tracking of resident space objects (RSOs) in n...
STTR Phase I 2016 Department of DefenseAir Force -
High Gain, High Power PCSS with Integrated Monolithic Optical Trigger
SBC: NESS ENGINEERING, INC. Topic: A14AT004The objective of this Phase II proposal is to continue the development of a Photoconductive Semiconductor Switch (PCSS) with an integrated optical trigger that can switch at least 30 kV, 1 kA, 20 ns pulses with jitter 108 shots. Ness Engineering, Inc. (NEI) and Texas Tech University (TTU) propose to utilize wide bandgap materials to demonstrate lock-on switching and allow much less optical trigger ...
STTR Phase II 2016 Department of DefenseArmy -
Integrated Adaptive Control with Thermal and Power Management System for Gas Turbine Enginers
SBC: INTELLIGENT FIBER OPTIC SYSTEMS CORP Topic: AF16AT16Future gas turbine propulsion designs, in addition to incorporating variable geometrical engine features, will require controlling and integrating large power generation/extraction, as well as, managing thermal limits of the components. The engine contro...
STTR Phase I 2016 Department of DefenseAir Force -
Intelligent and Multiplexable Ultra-High-Temperature Fiber-Optic Pressure Sensors for Robust Distributed Engine Control
SBC: INTELLIGENT FIBER OPTIC SYSTEMS CORP Topic: AF16AT18Next-generation intelligent engines will operate at higher temperatures for increased efficiency and will migrate from centralized to distributed control. There is critical need for sensors for operation at ultra-high temperatures (3000F). Conven...
STTR Phase I 2016 Department of DefenseAir Force -
Integrated Fiber-Optic Sensor Reliability Modeling and Analysis Tools for Thermal and Power Management Systems for Gas Turbine Engines
SBC: INTELLIGENT FIBER OPTIC SYSTEMS CORP Topic: AF16AT16Addressing a key technology gap in deployment of fiber-optic sensor networks, IFOS and multidisciplinary collaborators are developing an integrated fiber-optic component reliability modeling software toolkit. The RelOptics toolkits analytical engine is based upon predictive failure models developed for the first time in aerospace industry via rigorous environmental testing of optical fiber splices ...
STTR Phase II 2017 Department of DefenseAir Force -
Intelligent and Multiplexable Ultra-High Temperature Fiber Optic Pressure Sensors for Robust Distributed Engine Control
SBC: INTELLIGENT FIBER OPTIC SYSTEMS CORP Topic: AF16AT18Engines will be getting smaller and hotter for efficiency reasons, requiring novel sensors with extended and enhanced performance. Emerging fiber-optic sensing approaches could provide a unique solution to the widening technology gap between next-gen engine requirements and conventional sensors limited capabilities. The overall objective of this program is to develop techniques to integrate new pr ...
STTR Phase II 2017 Department of DefenseAir Force