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Award Data
The Award database is continually updated throughout the year. As a result, data for FY23 is not expected to be complete until September, 2024.
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.
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Surface plasmon enhanced thin-film photovoltaic systems
SBC: ITN ENERGY SYSTEMS, INC. Topic: AF09BT39This Small Business Technology Transfer Research phase I program will develop a new class of surface plasmon enhanced photovoltaic devices that exhibit increased current collection. Photon management, the manipulation of the incident optical field to increase the probability that a photon is absorbed in the active region of the cell, is critical to the development of next generation thin film sol ...
STTR Phase I 2010 Department of DefenseAir Force -
VLSI Compatible Silicon-on-Insulator Plasmonic Components
SBC: ITN ENERGY SYSTEMS, INC. Topic: AF08BT18This Small Business Technology Transfer Phase I project will develop ultradense, low-power plasmonic integration components and devices for on-chip manipulation and processing of optical signals. Both passive and active components will be studied. Detailed performance predictions will be obtained through finite element modeling (FEM) of the harmonic Maxwell’s equations. The FEM provides detai ...
STTR Phase I 2010 Department of DefenseAir Force -
Plasmonic Cavity Spectroscopic Polarimeter
SBC: ITN ENERGY SYSTEMS, INC. Topic: AF08T027This Small Business Technology Transfer program will develop a spectroscopic polarimeter-on-a-chip using novel plasmonic resonant cavities sensitive to linear polarization over a narrow wavelength range. Spectral selection will be possible through geometric scaling, with this work concentrating on the visible to near infrared wavelength band. Dielectric gratings with subwavelength period will act ...
STTR Phase II 2010 Department of DefenseAir Force -
Massively Parallel Micromachining with Ultrafast Lasers
SBC: Kapteyn-Murnane Laboratories, Inc. Topic: AF08T029We are proposing to develop a highly parallel, rapid prototyping system for the manufacture of microfluidic devices. In this phase II proposal we will build a complete system for making such devices for continued research on fieldable microfluidic systems for use in the military, and in hospitals. The project will also allow manufacturing in widely different materials, and structures, without an ...
STTR Phase II 2010 Department of DefenseAir Force -
Efficient High-Power Tunable Terahertz Sources using Optical Techniques
SBC: Microtech Instruments, Inc. Topic: AF08T009The main objective of the proposed Phase II project is to leverage the technology of THz generation in resonantly-pumped quasi-phase-matched (QPM) GaAs structures, jointly developed by Stanford University and Microtech Instruments, Inc., and create a compact and power-efficient commercial THz source with a mW-level average power. This source will be continuously or step-tunable in the 0.5-3 THz ra ...
STTR Phase II 2010 Department of DefenseAir Force -
Fast Updatable Large-area Holographic Display
SBC: NEW SPAN OPTO-TECHNOLOGY, INC. Topic: AF08T001Two-dimensional (2D) visualization techniques have limit capacity to achieve understanding of full dimensionality of the battlefield. Rewritable 3D holographic storage is promising for updatable 3D display applications. In Phase I, New Span Opto-Technology has demonstrated novel concepts of both holographic recording technique and recording material system without the use of high voltage. We have ...
STTR Phase II 2010 Department of DefenseAir Force -
Nano-Optical Elements for Multi-Mode Detectors
SBC: Prime Photonics, LC Topic: AF09BT37Prime Research and the University of North Carolina at Charlotte propose to devevelop space-variant nano-optical elements to integrate passive spectral and polarization filters directly into infrared focal plane arrays. This novel technology will enable multi-mode detection by allowing pixels to be uniquely tuned for wavelength and polarization across a focal plane array using a simple fabricatio ...
STTR Phase I 2010 Department of DefenseAir Force -
Modeling Spin Test Using Location Specific Material Properties
SBC: SCIENTIFIC FORMING TECHNOLOGIES CORPORATION Topic: AF08T013Jet engine disk components are increasingly subjected to higher operating temperatures. To meet the demands of increasing thrust and higher operating temperatures, a newer generation of nickel based superalloys such as LSHR, Alloy 10, Rene104 and RR1000 are being processed with dual microstructure distributions. Fine grain, high strength, fatigue resistant bore properties are contrasted with co ...
STTR Phase II 2010 Department of DefenseAir Force -
Plasmonics for Energy Generation
SBC: Techno-Sciences, LLC Topic: AF09BT39Conversion of sunlight to chemical fuels by artificial photosynthesis has been a long-sought goal. The major goal of the proposed effort is to develop a novel fuel-generating (e.g., hydrogen) photolytic device, which consists of a semiconductor nanowire decorated with metal nanoparticles. The project targets a low-cost technology by fabricating and utilizing the nanowire-nanoparticle conjugate de ...
STTR Phase I 2010 Department of DefenseAir Force -
Simulation Tool for Modeling Weakly Ionized Plasma
SBC: TECH-X CORPORATION Topic: AF09BT10We propose to develop a commercial weakly ionized plasma modeling capability based off of Tech-X’s high energy density plasma fluid code TxFluids. The new additions will be able to be used to model hypersonic vehicle physics including shock waves, plasma chemistry and innovative techniques for blackout mitigation and hypersonic vehicle control through the application of electric and/or magnetic ...
STTR Phase I 2010 Department of DefenseAir Force