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The Award database is continually updated throughout the year. As a result, data for FY24 is not expected to be complete until March, 2025.

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.

  1. Foveated Video Object Recognition

    SBC: MAYACHITRA, INC.            Topic: N14AT008

    Low resolution quality of operational data, size of objects of interest, view occlusions, and crowded scenes degrade the performance of state-of-art region saliency and object recognition approaches when applied to overhead sensor data. We have developed a technology to automatically detect and recognize multitude of objects of potential interest providing an object recognition decision with a hig ...

    SBIR Phase II 2018 Department of DefenseNavy
  2. Light Weight Coastal Topographic/ Bathymetric Charting System for Naval Unmanned Airborne Vehicles

    SBC: Arete Associates            Topic: N101089

    Arete Associates has developed a compact lightweight lidar system for precision bathymetry and topography suitable for operation from a small tactical unmanned aerial vehicle. The subject of this Phase 2 SBIR is to adapt this existing system to perform submarine detection, classification, and localization. System adaptations include hardware upgrades to optimize ASW performance, implementation of ...

    SBIR Phase II 2014 Department of DefenseNavy
  3. Lithium Battery Early Warning Fault Indication System

    SBC: CAMX Power LLC            Topic: N161047

    CAMX Power is proposing to develop a real-time early warning fault indication system for Navy Li-ion batteries to significantly enhance the safety of these batteries and hence allow them to be deployed in a wide range of applications. Our Phase I effort showed that the CAMX Power Early Warning Fault Detection Technology for Li-ion batteries is well suited to redundant implementation for added secu ...

    SBIR Phase II 2018 Department of DefenseNavy
  4. Adaptive Optics for Nonlinear Atmospheric Propagation of Laser Pulses

    SBC: ADVANCED SYSTEMS & TECHNOLOGIES INC            Topic: N17AT024

    Filamentation of ultra-short laser pulse propagation in non-linear media offers significant potentials allowing to address numerous problems in military and commercial sectors. However, practical implementation of this requires an ability to control the USLP at its propagation through inhomogeneous media, like turbulent atmosphere. On the basis of our approach for combating turbulence effects on p ...

    STTR Phase II 2018 Department of DefenseNavy
  5. Improved High-Frequency Bottom Loss Characterization

    SBC: HEAT, LIGHT, AND SOUND RESEARCH, INC.            Topic: N17AT026

    We propose development of an improved bottom database suitable for use in the frequency range of 1-10 kHz. Measured transmission loss (TL) and reverberation level (RL) will be jointly processed in building the database. The influence of the rough sea surface, rough seafloor, as well as subbottom heterogeneity will be accounted for during database generation. The rough sea surface will be character ...

    STTR Phase II 2018 Department of DefenseNavy
  6. SiC-Based High Voltage Capacitor Charging Innovations

    SBC: DIVERSIFIED TECHNOLOGIES, INC.            Topic: N162119

    The primary goal of our Phase II effort will be to develop, deliver, and install one fully functional, 1.2 MW prototype capacitor charging converter to ONR, capable of continuously charging eighteen 325 kJ capacitor loads at up to ten charges per minute. In addition, aspects related to the manufacturing, costing and environmental qualification of future production converters must be understood and ...

    SBIR Phase II 2018 Department of DefenseNavy
  7. Simulated Teachable Agents for Training Environments (STATE)

    SBC: CHARLES RIVER ANALYTICS, INC.            Topic: N171084

    Training simulations that currently support Small Unit Decision-Making (SUDM) training are laborious to configure and expensive to manage with live personnel, which results in training that is limited in scope. Current simulations require numerous “pucksters” to control simulated entities, driving up the manpower costs of conducting simulation-based training. To fulfill the roles of pucksters ...

    SBIR Phase II 2018 Department of DefenseNavy
  8. MAGIC (R) Filter Anti-Jamming Capability for RT-1944/U Radio

    SBC: ADAPTIVE DYNAMICS, INC.            Topic: N131029

    In the Phase I Base period, Anti-Jam (A/J) enhancements exceeding 40 dB were demonstrated with operational RT-1944/U radios. During the Phase I Option period, the system will be tested against a wider range of data rates and interference conditions, and an advanced Low Rate Initial Production (LRIP) prototype currently being completed for UHF SATCOM applications will be modified to provide an init ...

    SBIR Phase II 2014 Department of DefenseNavy
  9. Training Requirements: An Empirical and Computational Analysis for MAGIC CARPET (TRECA-MC)

    SBC: APTIMA INC            Topic: N08012

    This proposal describes a series of inter-related subprojects aimed at developing an empirical understanding of the MAGIC CARPET system, including its training requirements, effectiveness, and safety. An important overall objective is to estimate cost, throughput, and readiness considerations compared to conventional landing technology. To accomplish this, the work, including work in future studie ...

    SBIR Phase II 2014 Department of DefenseNavy
  10. NDE for Residual Stress Relaxation

    SBC: JENTEK SENSORS, INC.            Topic: N07168

    This program will accelerate transitioning of high-throughput versions of JENTEKs MWM Array eddy-current sensors and GridStation impedance instruments to the U.S. Navy. The proposed systems will have between 350 and 600 fully parallel impedance channels. With greater data acquisition speed from each channel and with substantial increase in the number of fully parallel channels, larger surface area ...

    SBIR Phase II 2014 Department of DefenseNavy
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