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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. A Novel, Nanostructured, Metal-organic Frameworks-Based Product Loss Prevention Technology in the Oil and Natural Gas Sector

    SBC: FRAMERGY INC            Topic: 17NCER2C

    To reach the end user, oil and gas production at the wellhead must be transmitted through the country and distributed to a wide range of customers. This logistical system requires natural gas gathering lines, processing facilities, product storage tanks and lots of other equipment. What results is air pollution caused by industry losses during these operations and the use of continuous or intermit ...

    SBIR Phase I 2018 Environmental Protection Agency
  2. Formulation and testing of an entirely wood-based exterior insulation board for the high-performance building market

    SBC: GO Lab Inc.            Topic: 17NCER6B

    The goal of this project is the formulation a rigid, insulating, low-density wood composite, with physical and thermal properties comparable to fossil fuel derived foams. _x000D_ _x000D_ To achieve energy conservation standards mandated by certification agencies such as Passive House and LEED, high performance buildings require multiple shells of insulation – an inner shell that contains electri ...

    SBIR Phase I 2018 Environmental Protection Agency
  3. Tightly Coupled Oscillator and GPS Receiver

    SBC: Jackson Labs Technologies, Inc.            Topic: A17051

    Legacy GPS receivers do not make use of the disciplined atomic oscillator flywheel output in GPS Disciplined Oscillator systems. The attached proposal shows how the disciplined oscillator signal can be used to improve GPS carrier and code tracking, mitigate multipath, jamming and spoofing, and to detect GPS receiver and satellite system anomalies. Using the disciplined oscillator as the frequency ...

    SBIR Phase I 2018 Department of DefenseArmy
  4. Additive Manufacturing for RF Materials and Antennas

    SBC: Delux Advanced Manufacturing, LLC            Topic: A18020

    To reduce size, weight, power and cost (SWaP-c), military platforms have been evolving towards more integrated platforms that utilize all available space. For radiating systems, this will require exploring innovative design methods, materials and manufacturing approaches to realize cost-effective, customizable and conformal antennas. An attractive solution to this challenge is offered by additive ...

    SBIR Phase I 2018 Department of DefenseArmy
  5. Low-cost Imager for Heavily Degraded Visual Environments

    SBC: PHASE SENSITIVE INNOVATIONS INC            Topic: A18040

    This project aims to develop a low-cost millimeter-wave (mmW) imaging system for ground vehicles, to operate in combination with a long-wave infrared (LWIR) camera. Such a system will mitigate the challenges of driving in degraded visual environments (DVE) including night time, fog, dust, or smoke by providing real-time image of the vehicle surrounding independent from the presence of naturally oc ...

    SBIR Phase I 2018 Department of DefenseArmy
  6. Tightly Coupled Oscillator and GPS Receiver

    SBC: Jackson Labs Technologies, Inc.            Topic: A17051

    GPS Disciplined Oscillator (GPSDO) systems traditionally combine the 1PPS output from a GPS receiver and highly stable clock like a Chip Scale Atomic Clock (CSAC) to steer the local clock frequency to match the frequency and phase of the GPS-generated 1PPS. However, the GPS receiver does not take advantage of the stable Chip Scale Atomic Clock for improved GPS receiver resilience, improved positio ...

    SBIR Phase II 2018 Department of DefenseArmy
  7. Non-Pyro Electric Small Arms Fire Simulator

    SBC: Digital Solid State Propulsion, Inc            Topic: A18091

    Digital Solid State Propulsion Inc. is proposing the development of a reusable electric blank system that leverages over 10 years of success in formulating, engineering, and manufacturing Electric Solid Propellants for the space, defense, and entertainment industries. DSSP already has a pyrotechnic solution to battlefield effects simulating small arms fire based on eSquib technology, however, for ...

    SBIR Phase I 2018 Department of DefenseArmy
  8. Autonomous Broad Spectrum Environmental Sentinels

    SBC: NEVADA NANOTECH SYSTEMS, INC.            Topic: A13AT017

    We propose a platform for aerial environmental monitoring based on the integration of two advanced technologies for the first time: a lightweight, flying robotic platform capable of hovering and swarming, and a compact, low-power chemical sensor platform called the Molecular Property Spectrometer (MPS): a robust, low-cost, silicon-chip-based micro-electro-mechanical system (MEMS) that has been use ...

    STTR Phase I 2014 Department of DefenseArmy
  9. A New Standard for Power-Aware Programming

    SBC: EM PHOTONICS INC            Topic: A13029

    The Army needs low-power, lightweight processing for devices carried by the soldier and also for those left as unattended sensors in the field. These applications need to perform complex tasks over long periods of time, but a reliance on heavy batteries s

    SBIR Phase II 2014 Department of DefenseArmy
  10. Wavelength Specific Dielectric Obscurants using Electromagnetically Engineered Nanoparticles

    SBC: LUMILANT, INC.            Topic: A13AT016

    As infrared (IR) electo-optical sensors improve in both availability and quality a strong need exists to have comparable improvements in the performance of military obscurants within the IR band. Conventional approaches for creating effective IR obscurants have relied primarily on shaped metal particles with high aspect ratios (e.g. rods, flakes).

    STTR Phase II 2014 Department of DefenseArmy
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