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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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Next-Generation, Power-Electronics Materials for Naval Aviation Applications
SBC: KYMA TECHNOLOGIES, INC. Topic: N18AT004This program will further the development of large area freestanding GaN substrates (150mm or greater) and develop a bulk GaN substrate characterization protocol to help reduce the variability in GaN homoepitaxial growth results which have prevented low cost, high voltage, vertical GaN power devices from being realized in an economically viable way.
STTR Phase II 2020 Department of DefenseNavy -
Carbon Nanotube Based Monolithic Millimeter-wave Integrated Circuits
SBC: Carbonics, Inc. Topic: A18BT004Carbonics, Inc. is the only small business entity that is razor-focused on developing and commercializing wafers-scale carbon nanotube (CNT) based RF products for mmWave communications that can outperform incumbent semiconductor high frequency technologies (GaAs & RF-CMOS). Our STTR Phase I accomplishments exceeded all expectations, setting a new world record for CNT FET RF technology (fT > 100 GH ...
STTR Phase II 2020 Department of DefenseArmy -
Quantum Utilities for Integrated Characterization
SBC: Quantum Benchmark Inc Topic: A18BT011Quantum information processing has the potential to revolutionize the U.S. economy, with a potential market value of hundreds of billions of dollars for quantum-information based technologies in a wide variety of sectors, including pharmaceuticals, energy, transportation, and cyber security. A major obstacle to realizing this potential is overcoming the error-prone nature of quantum information, w ...
STTR Phase II 2020 Department of DefenseArmy -
BioSENSE, for identification of allosteric transcription factor biosensors
SBC: SYNVITROBIO, INC. Topic: A18BT016There is a need to develop affordable and specific biosensors to defend against current and future biological threats. Biological methods of detection have been evolved by nature to detect molecules at the micro-scale with flexible specificity and with downstream effectors. Advances in cell-free technology allow for deployment of biosensors on pH-strip-type paper, an affordable, robust, disposable ...
STTR Phase II 2020 Department of DefenseArmy -
Circuit Integration for Robust Quantum Information Technology Scalability (CIRQuITS)
SBC: VECTOR ATOMIC INC Topic: A18BT014Vector Atomic and Stanford University will develop precision, ultra-low noise laser control electronics with low cost, size, weight, and power (C-SWaP). The electronics will be designed to broadly support the various laser types of used for quantum technology, which span 369-1550 nm. The C-SWaP and system architecture will support scaling of quantum systems to higher laser counts. The design will ...
STTR Phase II 2020 Department of DefenseArmy -
Highly efficient UV LEDs for disinfection
SBC: ADROIT MATERIALS, INC. Topic: A18BT006Treatment of water with ultraviolet (UV) light, which destroys target DNA of microorganisms, is the safest, most reliable, and sustainable way of freeing water from microbial contamination. This process is desired in place of chlorination and is widely used in the US for wastewater treatment. We propose the development of a highly efficient UV LED with emission at 265 nm, with EQE>30%, and WPE>15% ...
STTR Phase II 2020 Department of DefenseArmy -
Artificial Intelligence/Machine Learning to Improve Maneuver of Robotic/Autonomous Systems
SBC: AUTONOMOUS SOLUTIONS INC Topic: A17AT019Autonomous vehicles are being used for many applications varying from small indoor robots, to large-scale mining trucks, and military vehicles operating in fast-changing environments. Global position systems (GPS) have traditionally been used for vehicle positioning. GPS works well in open environments, but suffers from significant degradation due to terrain, certain operating conditions, and even ...
STTR Phase II 2020 Department of DefenseArmy -
Optimization of Fatigue Test Signal Compression Using The Wavelet Transform
SBC: ATA ENGINEERING, INC. Topic: N18BT029ATA Engineering has developed a wavelet-based damage squeezing methodology for generating optimally compressed fatigue test signals that produce an equivalent amount of fatigue damage in a predictably reduced amount of time compared to the baseline (uncompressed) signals. Fatigue-critical signal characteristics (e.g., magnitude, phase, frequency, and sequencing relationships) are identified in the ...
STTR Phase II 2020 Department of DefenseNavy -
Ultra-high gain solar-blind APD arrays based on AlGaN
SBC: ADROIT MATERIALS, INC. Topic: ST18C003The objective of this project is to develop a compact and efficient avalanche photodiode (APD), operating between 210-260 nm, for implementation in the next generation bio-chem-detectors. The proposed detectors will be based on the AlGaN materials system and will be solar blind, highly sensitive, smaller, less expensive, and more robust than current UV detectors. Development of such APDs will enab ...
STTR Phase II 2020 Department of DefenseDefense Advanced Research Projects Agency -
Spectrum Attenuation Reporting Sensor System
SBC: 0 BASE DESIGN, LLC Topic: AF18BT005The Phase 2 development will yield a prototype Cognitive Data Sampling (CDS) system for 2 RF bands to fully demonstrate the capability of the underlying technology. This will include the development of RF antennas, RF signal conditioning for the bands, CDS analog to conversion module and a processor module. The processor module shall be comprised of a Commercial Off-The-Shelf (COTS) module that in ...
STTR Phase II 2020 Department of DefenseAir Force