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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. Combined Dielectrophoretic Microfluidic System

    SBC: Physical Optics Corporation            Topic: CBD08101

    To address the U.S. Army CBD need for a high resolution system whereby proteins present in a complex mixture can be rapidly and reproducibly separated, Physical Optics Corporation (POC) proposes to develop a new Combined Dielectrophoretic Microfluidic (CDM) System based on the integration of electrodeless dielectrophoresis and dynamic isoelectric focusing techniques, used to carry out two-dimensio ...

    SBIR Phase I 2008 Department of DefenseOffice for Chemical and Biological Defense
  2. Situational Awareness Enhancing Adaptive Lightweight HMD

    SBC: Physical Optics Corporation            Topic: SOCOM11002

    To address the SOCOM need for an integrated system for enhancing the situational awareness of combat swimmers, Physical Optics Corporation (POC) proposes to develop a new Situational-Awareness Enhancing Adaptive Lightweight Head-Mounted Display (SEAL-HMD). This proposed system is based on conformal diffractive optic waveguide retrofitted into existing full facemask (FFM) visors or designed into ne ...

    SBIR Phase I 2011 Department of DefenseSpecial Operations Command
  3. Multi-hop processing for OTHR range extension

    SBC: DECIBEL RESEARCH, INC.            Topic: NGA191011

    The development of sophisticated anti-access/area denial (A2/AD) capabilities by our adversaries requires us to develop long range capabilities to mitigate this A2/AD threat. Extending the range of Over The Horizon Radars beyond their conventional single hop operating mode will potentially provide coverage out to 10000 km and beyond. We propose combining existing state-of-the art HF radar ray prop ...

    SBIR Phase I 2019 Department of DefenseNational Geospatial-Intelligence Agency
  4. Nonintrusive Structure Blueprinting

    SBC: Physical Optics Corporation            Topic: SOCOM06006

    To address the SOCOM need for facility blueprinting of internal building structures, Physical Optics Corporation (POC) proposes to develop a new Nonintrusive Structure Blueprinting (NSB) technology. This proposed NSB system is based on active pulsation scanning of low-frequency energy to extract three-dimensional layouts of target structures and people behind multiple layers of various composites ...

    SBIR Phase I 2006 Department of DefenseSpecial Operations Command
  5. Rapid Repair of CB Hardened Systems

    SBC: POLYMERight, Inc.            Topic: N/A

    POLYMERight proposes to develop field repair kits that will prevent the compromise of collective protection systems if their integrity is lost. The adhesive chemistry utilized can quickly, easily and dependably bond the like and unlike surfaces together,including Kevlar, polyfluorinated materials, polyolefins, PVC and other materials associated with collective protection systems. It will be teste ...

    SBIR Phase I 2003 Department of DefenseOffice for Chemical and Biological Defense
  6. Service Life Extension of Machine Gun Barrels

    SBC: ALAMEDA APPLIED SCIENCES CORPORATION            Topic: SOCOM03009

    The purpose of this Phase-I is to demonstrate the feasibility of using Alameda Applied Sciences Corporation's Coaxial Energetic Deposition (CED) process to increase the life of gun barrels, specifically the Mk-46 and Mk-48 light-weight machine guns, by depositing a protective refractory metal coating to the inside of the barrel as a replacement for the chrome coatings that are presently used. The ...

    SBIR Phase I 2004 Department of DefenseSpecial Operations Command
  7. Automated Vehicle Identification at a Distance

    SBC: SURFACE OPTICS CORP.            Topic: SOCOM07003

    A program to develop an advanced 3-D hyperspectral imaging sensor capable of day or night operation in the VNIR band is proposed. The proposed Automated Vehicle Identification at a Distance (AVID) sensor system builds upon Surface Optics’ real-time hyperspectral imaging activities, including the Multi-band Identification and Discrimination Imaging Spectroradiometer (MIDIS) system and the 3-D Fu ...

    SBIR Phase I 2007 Department of DefenseSpecial Operations Command
  8. Frequency Hopper/DSSS Detection

    SBC: TECHNOLOGY SERVICE CORP            Topic: N/A

    "Modern low-probability of intercept (LPI) signals, such as spread spectrum frequency hopping and direct sequence coded waveforms (FHSS/DSSS), typified by wireless cell phone, IEEE 802.11, and Bluetooth signals, pose a serious challenge to conventionalsignal interceptors. Since Special Operations Forces (SOF) must continuously monitor such signals in a variety of tactical situations worldwide, no ...

    SBIR Phase I 2002 Department of DefenseSpecial Operations Command
  9. 3D Microfluidic Platform for in vitro Hematopoietic Stem Cell (HSC) Culture

    SBC: Physical Optics Corporation            Topic: CBD10103

    To address the Chemical/Bio Defense (CBD) need for in vitro models suitable for high-throughput screening of drug toxicities in human tissues, Physical Optics Corporation (POC) proposes to develop a new three-dimensional (3D) Microfluidic Platform for in-vitro Hematopoietic Stem Cell (HSC) Culture (3D-Mic-Stem). This proposed system is based on a 3D microfluidic design that uses HSCs for assaying ...

    SBIR Phase I 2010 Department of DefenseOffice for Chemical and Biological Defense
  10. High Repetition Rate Microwave Modulation

    SBC: MISSION RESEARCH CORP.            Topic: N/A

    Several important emerging applications require efficient, high-speed high-duty-cycle, amplitude modulation of high levels of microwave power, with low cost and small size-and-weight. The modulation frequency and average power required for these applications are far beyond the capabilities of existing technology. MRC proposes to research and develop two alternative methods of achieving square-wa ...

    SBIR Phase I 1998 Department of DefenseNational Geospatial-Intelligence Agency
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