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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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An automated, high throughput, resin-free device for large scale protein purification
SBC: CFD RESEARCH CORPORATION Topic: CBD12102Protein manufacturing is of paramount importance to chemical and biological defense applications. High-throughput protein purification is a critical need for rapidly scaling the target protein product. Existing purification methods primarly rely on synthetic-resin based chromatography, which is time-consuming, labor-intensive, expensive, and consequently, ill-suited for developing rapid countermea ...
SBIR Phase I 2013 Department of DefenseOffice for Chemical and Biological Defense -
A Novel, Aerodynamics-augmented Continuous Ionization System for Electrostatic Collection of Bioaerosols
SBC: CFD RESEARCH CORPORATION Topic: CBD12107Safe and efficient air ionization and filtration technology compatible to biodefense applications is of paramount importance. Current ionization methods are energy-intensive, costly, prone to ozone generation, or inefficient, and consequently ill-suited for building protection applications. To overcome these issues, we propose to develop and demonstrate a novel bioaerosol ionization and collection ...
SBIR Phase I 2013 Department of DefenseOffice for Chemical and Biological Defense -
A Novel Microfludic Device for Drug Toxicity Studies
SBC: CFD RESEARCH CORPORATION Topic: CBD10103Current drug discovery and development programs are severely limited by the expensive animal trials and oversimplified in vitro models. Results obtained from the in vitro models are not predictive of in vivo toxicity owing to significant difference in testing from the in vivo physiological conditions. In this context, we propose to develop and demonstrate a novel microfluidic device for quantitati ...
SBIR Phase I 2010 Department of DefenseOffice for Chemical and Biological Defense -
ARCH Technology for a Simple, Resilient, and Cost-Effective Auto- Injector
SBC: AKTIVAX, INC. Topic: CBD13106A prefilled auto-injector device for storing a beneficial agent in a dry and stable format alongside a diluent, and automatically delivering the beneficial agent to a patient after reconstitution. The device comprises an automatic needle insertion mechanism and automatic needle retraction mechanism and is safe and disabled after use. The primary drug container of the auto-injector is made from ...
SBIR Phase I 2013 Department of DefenseOffice for Chemical and Biological Defense -
.50 Caliber Light Weight Precision Ammunition
SBC: PCP TACTICAL, LLC Topic: SOCOM13006PCP Ammunition Company will research the design and development of Lightweight .50 caliber precision ammunition under this SBIR Phase I contract. PCP will concentrate our efforts on several separate criteria in order to improve upon the current .50 caliber round by utilizing PCP"s current lightweight polymer .50 caliber case. First, we will compare the performance of the current round agains ...
SBIR Phase I 2013 Department of DefenseSpecial Operations Command -
Clean, Green, ChemBio Defense/Fire Retardant Process Using Nanotechnology
SBC: Aqua Resources Corporation Topic: SOCOM10007The dynamics of nano-size interactions of metal hydroxide nanoplatelets is a new field of material science. Initial research conducted by Aqua Resources and the Department of Defense, offers the promise of an innovative means of effectively defending against Chemical/Biological (CB) warfare agents in a cost effective manner without the attendant residues and long-term damage associated with tradit ...
SBIR Phase I 2010 Department of DefenseSpecial Operations Command -
Family of Sub-Sonic Ammunition
SBC: PCP TACTICAL, LLC Topic: SOCOM13005PCP Ammunition Company will deliver a family of Lightweight Advanced Polymer Sub-Sonic Ammunition. We will do this by adapting our current family of calibers by decreasing the internal volume and shape of the case to match the optimal performance requirements of the cartridges. This will result in a sub-sonic ammunition that is lightweight, clean burning (due to the internal volume and dimension ...
SBIR Phase I 2013 Department of DefenseSpecial Operations Command -
In vitro Models Suitable for High-throughput Screening of Drug Toxicities in Human Tissues
SBC: Nico Technologies Corp. Topic: CBD10103The drug R&D cycle is long and very expensive. In many ways, this status quo can no longer be sustained. One of the reasons for such great cost is that the vast majority of drug candidates are screened out at the stages of animal and human trials. More efficient methods of testing of drugs at the stage of ex-vivo studies, which are substantially less expensive than animal and human testing cyc ...
SBIR Phase I 2010 Department of DefenseOffice for Chemical and Biological Defense -
Laser-Aided Automated Removal of Anti-Reflective Coatings From Germanium Substrates
SBC: ADA TECHNOLOGIES, INC. Topic: DLA183015High-purity germanium (Ge) is manufactured into infrared (IR) lenses for most DoD night sight IR optics, thermal imaging systems, and IR tracking systems in combat vehicles. A recent report by Umicore (ADA’s partner for this proposed project) identifies several current and future needs for Ge, showing growing needs in the middle of severe shortfall. These applications are essential for tracking ...
SBIR Phase I 2019 Department of DefenseDefense Logistics Agency -
Lightweight, Small Volume, CO2 Removal Technology for Underwater Breathing Apparatus (UBA) and Undersea Platforms: An Advanced Nanotechnology Resolut
SBC: Marshall Laboratories, Inc. Topic: SOCOM10002We will employ the very latest methods in nanotechnology to realize vastly improved CO2 scrubbing efficiency in closed cycle underwater breathing apparatuse(UBA). Our system will occupy minimal volume, will be simple in design and will employ benign nano-particles as the CO2 active scrubbing material. Due to the design, CO2 uptake will be maximized and breathing flow resistance will kept at a mi ...
SBIR Phase I 2010 Department of DefenseSpecial Operations Command