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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. VOC sensor for Real-Time Physiological Status Monitoring

    SBC: TRITON SYSTEMS, INC.            Topic: DHP16C002

    Supplemental oxygen is needed by aircrews and divers. However, oxygen use is limited by the onset of pulmonary oxygen toxicity (PO2T) which can significantly damage pulmonary tissues leading to decreased performance among other adverse effects. A real time sensor that is sensitive and selective with fast response is needed to monitor warfighter breath for trace VOC (volatile organic compound) spe ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  2. VOC Breath Analysis with Ultra-Sensitive Microwave Spectroscopy

    SBC: NOKOMIS INC            Topic: DHP16C002

    Nokomis proposes to develop a real-time microwave spectroscopy device to identify Volatile Organic Compounds (VOCs) associated with Pulmonary Oxygen Toxicity. Exhaled breath contains VOCs that act as signatures of bodily health, and are able to be utilized for health diagnostics. The proposed work will demonstrate sensitivity to the presence of chemicals at less than 50 ppb concentration levels, a ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  3. Ultra-Wide Band RF Quantitative Diagnostics of Burn Injuries

    SBC: NOKOMIS INC            Topic: DHP16C005

    This proposal is dedicated to development of portable device for -on site- diagnostic of burn injury. The design will utilize a technology Ultra-Wide Band RF waves of ultra-low intensity (harmless by Federal Standards). The emitted RF waves will reflect from boundaries between tissues normal and damaged by injury to quantitatively characterize severity of burn and would require minimal skills fro ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  4. Wearable Medical Electro-textile System for the Warfighter

    SBC: TRITON SYSTEMS, INC.            Topic: DHA17A001

    Triton Systems, Inc., teamed with an academic partner, propose to: a) investigate the intensity and shape of the electromagnetic field (EMF) radiated by the human body, and b) develop a simulation of the resulting field to further explore the use of the human EMF to predict warfighter physiological status.

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  5. Interactive Mixed Media Education augmented Reality Simulation Engine (IMMERSE)

    SBC: CHI SYSTEMS INC            Topic: DHA17A003

    CHI Systems, in partnership with the Virginia Serious Games Institute, proposes to design, develop, and assess the Interactive Mixed Media augmented Reality Simulation Engine (IMMERSE) technology, a compelling and instructionally rich training experience using augmented and mixed-reality for TC3 trainees, and then evaluate the impact of the IMMERSE approach on trainee understanding and training ef ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  6. Medic-ART: Medics Augmented Reality Trainer

    SBC: APTIMA INC            Topic: DHA17A003

    Navy corpsmen have helped achieve a remarkable survival rate for the warfighters, civilians, and enemy combatants whom they serve. But this success masks significant challenges. Training corpsmen is costly; it addresses primarily the acquisition of skills (rather than maintenance); it fails to convey the perceptual and cognitive skills to handle complex combat wounds; the design of training techno ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  7. Wireless Non-Invasive Advanced Control of Microprocessor Prostheses and Orthoses

    SBC: LIBERATING TECHNOLOGIES INC            Topic: DHA17A005

    There are several current and imminent orthotic and prosthetic (OandP) fitting scenarios that would greatly benefit from the ability to wirelessly collect and transmit physiological information from the user. Both upper- and lower- limb OandP fittings that: 1) use osseointegration, 2) have cable management issues, and 3) could benefit from physiological information from locations proximal to the ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  8. Non-contact Tissue Viability Assessment (NTVA)

    SBC: VIVONICS INC            Topic: DHA17A006

    Selecting the level of debridement sufficient to minimize inflammation and determining the optimal treatment in a timely fashion is critical given the risks of infection and sepsis. Grafting success is dependent on the removal of all necrotic tissue and requires the presence of highly-vascularized granulation tissue. The goal of early debridement for grafting is to remove all the devitalized tis ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
  9. Novel Mixed-mode TCAD-Commercial PDK Integrated Flow for Radiation Hardening By Design

    SBC: CFD RESEARCH CORPORATION            Topic: DTRA16A003

    Cost-effective application of advanced commercial electronics technologies in DoD space systems requires early development of radiation-hardened-by-design (RHBD) techniques, and use of simulations is critical to the efficiency of this process. CFDRC has developed an integrated, mixed-mode simulation approach allowing their NanoTCAD device physics simulator to interface with commercial circuit simu ...

    STTR Phase I 2017 Department of DefenseDefense Threat Reduction Agency
  10. Rodent Audio Signal Processor (RASP)

    SBC: Mide Technology Corporation            Topic: DHP16C003

    Rodents serve as models for the human brain and behavior, and their calls give researchers a window into their mood. Unfortunately, rodent calls are ultrasonic, so a researcher must record a test and then play the audio back at a slower speed to manually categorize and count calls. Software does exist to accomplish this task, but it does not have the ease of use or accuracy that researchers want. ...

    STTR Phase I 2017 Department of DefenseDefense Health Agency
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