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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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Ion-Implanted 2-D MESFET Technology for Wireless Communications
SBC: Advanced Device Technologies, Topic: N/AThis Phase I project has two primary objectives. The first objective is to evaluate the feasibility of a fully ion implanted fabrication process based on the heterodimensional 2-D MESFET. The new device, the 2-D JFET, will have p+ ion implanted sidegates which laterally modulate a thin, highly doped n-type conducting channel. The 2-D JFET should have excellent high speed, low power characteristics ...
SBIR Phase I 1997 Department of DefenseMissile Defense Agency -
Nitride, Carbide and Non-Oxide In Situ Coatings Using RECVD,A New CVD Method
SBC: CCVD, Inc dba MicroCoating Technologies (MCT) Topic: N/ACurrently, thermal spray (flame and plasma spray) is the only single step method of applying most metal and non-oxide ceramic coatings to large objects. These coatings are usually of a low quality, and thin films cannot be applied. An in situ deposition technique that inexpensively and easily applies nitrides, carbides and other non-oxide thin or thick films in an environmentally friendly manner i ...
SBIR Phase I 1997 Department of DefenseMissile Defense Agency -
Production Friendly GaN Coatings Using RECVD, a New CVD Method
SBC: CCVD, Inc dba MicroCoating Technologies (MCT) Topic: N/ACurrently vacuum based methods of PVD and CVD are the only processes for forming GaN thin films and coatings. These methods are usually expensive and are not applied in a production friendly manner. An atmospheric deposition technique that inexpensively and easily applies GaN thin or thick films in an environmentally friendly manner is a priority for any number of DOD and commercial applications. ...
SBIR Phase I 1997 Department of DefenseMissile Defense Agency -
Powder Synthesis and Bulk Crystal Growth of Gallium Nitride
SBC: CERMET, INC. Topic: N/AThe primary goal of Phase I work is to demonstrate the feasibility of synthesizing gallium nitride (GaN) powder. Secondarily, this powder will be used to grow high-purity single crystals of GaN from a liquid GaN phase. This would be accomplished using a proprietary variation of the skull melting technique. Since GaN demonstrates peritectic-type decomposition at atmospheric pressure, the entire sku ...
SBIR Phase I 1997 Department of DefenseMissile Defense Agency -
Comprehensible Descriptions for Fast Processing of Image Data
SBC: DATAMAT SYSTEMS RESEARCH, INC. Topic: N/AThe proposed effort will apply advanced methods of hybrid learning to problems of detection and identification of sensory events (e.g., boost phase evens). Our approach aims at building a vision system capable of hybrid learning, in which symbolic (rule-based) and subsymbolic (neural network) strategies are integrated to achieve high efficiency and accuracy both in learning human comprehensible se ...
SBIR Phase II 1997 Department of DefenseMissile Defense Agency -
Ionic Self Assembled Monolayer (ISAM) Processes for Electronic Materials and Devices
SBC: Luna Innovations Incorporated Topic: N/ANovel ionic self-assembled monolayer (ISAM) processes for the fabrication of advanced electronic materials and devices will be developed through this program. Revolutionary ISAM methods to create nanostructured multi-layer inorganic/organic thin-films offer major advantages over conventional manufacturing processes, since the process is simple, low-cost and environmentally friendly in that no vola ...
SBIR Phase I 1997 Department of DefenseMissile Defense Agency -
Protective Coatings for Optical System Components Fabricated Using Ionic Self Assembled Monolayer (ISAM) Processes
SBC: Luna Innovations Incorporated Topic: N/AF&S and Virginia Tech will cooperatively develop high performance protective ionic self-assembled monolayer (ISAM) organic/inorganic coatings for space-based optical and structural components, and work with Litton to upscale practical coating manufacturing. Revolutionary ISAM methods of creating multi-layer protective nanopartwcle films offer major advantages over con-ventional coating processes, ...
SBIR Phase I 1997 Department of DefenseMissile Defense Agency -
Sensors-Adaptive Beam Expander
SBC: LSA Topic: N/AWe propose to design and fabricate an adaptive beam expander that can be switched between two magnifications. Specifically, the beam expander provides diffraction-limited performance for laser radar beams with diameters of 1 mm and 3 mm. The adaptive beam expander is lightweight, and it has no moving parts. Because the beam expander is an afocal system, it operates on both outgoing and incoming be ...
SBIR Phase I 1997 Department of DefenseMissile Defense Agency -
Application of a Novel Micromachining Process to Millimeter Wave Circuit Fabrication
SBC: MICROFAB (WASVA MILLIMETER WAVE) Topic: N/AMicroFab Research (MFR, Inc.) proposes to apply the techniques of micromachining to aid in the fabrication of millimeter wave components, thereby reducing manufacturing expenses. Many microwave applications such as radar and communication systems would be improved by shifting to higher frequencies, provided new lower cost manufacturing techniques can be found. A manufacturing technique is presente ...
SBIR Phase I 1997 Department of DefenseMissile Defense Agency -
Development of a Compact Electron Beam Accelerator
SBC: MICROWAVE TECHNOLGIES, INC. Topic: N/AMicrowave Technologies Incorporated is proposing the development of a very compact radio-frequency (rf) electron beam accelerator which appears to be well-suited for BMDO's directed energy applications. This novel concept employs a single short rf cavity operating in circular polarization to accelerate a low-energy ma ~netized pencil beam to energies that range from 2 to 10 MeV. The proposed accel ...
SBIR Phase II 1997 Department of DefenseMissile Defense Agency