You are here
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.
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.
-
Novel Ionic liquids for Reversible Electroplating
SBC: BUSEK CO., INC. Topic: AF16AT20Busek Co. Inc. and The University of Notre Dame propose to develop room-temperature ionic liquids (ILs) that are robust, non-volatile, transparent, radiation hard, and atmospherically tolerant for use in electrolytes for reversible electroplating applica...
STTR Phase I 2016 Department of DefenseAir Force -
Rydberg-atom RF Sensors for Direction Finding and Geolocation
SBC: COLDQUANTA, INC. Topic: AF17AT028ColdQuanta is partnering with Dr. Zoya Popovic at the University of Colorado, Boulder, to develop a three-dimensional quantum-enhanced radio-frequency (RF) signal sensor and direction finder. Our approach combine Rydberg-atom-based RF electrometry and discrete lens arrays (DLAs) of planar antennas. The DLA will serve as a Fourier optic for an incident wave, and a Rydberg-atom RF electrometer will ...
STTR Phase I 2018 Department of DefenseAir Force -
Rydberg-atom RF Sensors for Direction Finding and Geolocation (RADARS)
SBC: COLDQUANTA, INC. Topic: AF17AT028ColdQuanta, in partnership with Dr. Zoya Popovic at the University of Colorado at Boulder, proposes to develop a three-dimensional quantum-enhanced radio-frequency (RF) signal sensor and direction finder. Our approach combines Rydberg-atom-based RF electrometry and discrete lens arrays (DLAs) of planar antennas. The DLA will serve as a Fourier optic for an incident wave, and a Rydberg-atom RF elec ...
STTR Phase II 2018 Department of DefenseAir Force -
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