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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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Wireless Networked Sensors for Remote Monitoring in Propulsion Systems
SBC: NANOSONIC INC. Topic: T1301This NASA Phase I SBIR program would fabricate wireless networked nanomembrane (NM) based surface pressure sensors for remote monitoring in propulsion systems, using SOI (Silicon on Insulator) NM techniques in combination with our pioneering HybridSil ceramic nanocomposite materials. Such low-modulus, conformal nanomembrane sensor skins with integrated interconnect elements and electronic devices ...
STTR Phase I 2016 National Aeronautics and Space Administration -
Innovative Hybridsil Poly(Siloxane Imide) Composite Repair Materials and Methods
SBC: NANOSONIC INC. Topic: T1202Through the proposed STTR program, NanoSonic and Virginia Tech will create an innovative low viscosity, high Tg copolymer injection repair material and methodology that enables fiber reinforced composite repair within a short time frame in areas with limited user access. The proposed injection repair material will consist of fluidic HybridSil poly(siloxane imide) resins that are molecularly engine ...
STTR Phase I 2016 National Aeronautics and Space Administration -
Integrated Sensors for the Evaluation of Structural Integrity of Inflatable Habitats
SBC: NANOSONIC INC. Topic: T1203Future long-duration, crewed space habitat systems will be inflatable structures. This type of structure is advantageous in that it is not limited to the diameter of the launch vehicle and can therefore provide a greater volume of living and work space. Unlike conventional metal structures, however, softbody inflatables require support members to maintain their desired shapes. Despite their robust ...
STTR Phase I 2016 National Aeronautics and Space Administration -
Highly Efficient Closed-Loop CO2 Removal System for Deep-Space ECLSS
SBC: TDA RESEARCH, INC. Topic: T604TDA Research Inc.(TDA) in collaboration with University of Puerto Rico ? Mayaguez (UPRM is proposing to develop a highly efficient CO2 removal system based on UPRM proprietary strontium exchanged silico-alumino-phosphate (Sr-SAPO-34) for closed loop space craft cabin air re-vitalization during deep space missions.
STTR Phase I 2016 National Aeronautics and Space Administration -
Closed-Loop Control of the Thermal Stir Welding Process to Enable Rapid Process / Part Qualification
SBC: Keystone Synergistic Enterprises, LLC Topic: T901Thermal Stir Welding (TSW) provides advancement over the more conventional Friction Stir Welding (C-FSW) process because it separates the primary processes variables thereby allowing independent control of metal stirring and forging from the stir zone temperature. However, the feedback for precise control of the stir zone temperature, and hence the process parameters to sustain that temperature wi ...
STTR Phase II 2013 National Aeronautics and Space Administration -
New Flexible FR Polyurethane Foams for Energy Absorption Applications
SBC: Gordon Nelson and Associates Topic: T703Project involves development of new flexible FR polyurethane (PU)insulation foams through a non-toxic environmentally friendly composite approach. Foams have bound-in polymeric phosphonate FRs, with added synergists and smoke suppressants. Such foams will not leach FR. Foams have fine cell structure and excellent flexible foam properties. Cone performance of the identified foam family (368 peak ...
STTR Phase II 2013 National Aeronautics and Space Administration -
A Self-Regulating Freezable Heat Exchanger for Spacecraft
SBC: TDA RESEARCH, INC. Topic: T601A spacecraft thermal control system must keep the vehicle, avionics and atmosphere (if crewed) within a defined temperature range. Since water is non-toxic and good for heat transport, it is typically used as the coolant that circulates within the crew cabin boundary. This loop then interfaces with another low freeze point fluid, such as ammonia, for transport of heat to a radiator where the tempe ...
STTR Phase II 2013 National Aeronautics and Space Administration -
Advanced Deposition Capability for Oxidation&Corrosion Protection Coatings
SBC: Directed Vapor Technologies International, Inc. Topic: T1201NASA's long range goals of reducing the fuel consumption by 30% and increasing fuel efficiency by 35% can be partially accomplished through increasing engine operation temperatures. As a result, the disk section is desired to operate in increasingly higher temperatures, which will subject it to additional degradation mechanisms of oxidation and hot corrosion. One approach to enhance the tem ...
STTR Phase I 2013 National Aeronautics and Space Administration -
Local Navigation in GNSS and Magnetometer-Denied Environments
SBC: PRIORIA ROBOTICS HOLDINGS, INC. Topic: T501The proposed solution exploits recent advances in computer vision to conceive of a single-camera + gyro + accelerometer vision-based navigation solution such that the processing will be lightweight (requiring only a single optical flow sample per frame). Known landmarks (natural or artificial) will have absolute positions known to planetary exploration worker robots. The worker robot can identif ...
STTR Phase I 2013 National Aeronautics and Space Administration -
MEMS Based Solutions for an Integrated and Miniaturized Multi-Spectrum Energy Harvesting and Conservation System
SBC: Radiance Technologies, Inc. Topic: T301The objective of this proposal is to develop three unique energy harvesting technologies utilizing our existing research strengths that will be of interest and utility to NASA applications and environmental conditions. By developing multiple technologies, NASA will be able to harvest energy from multiple waste energy sources, namely environmental vibrations, thermal energy, and solar flux. These d ...
STTR Phase I 2013 National Aeronautics and Space Administration