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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. Compact Multi-Spectral Real Time Imager

    SBC: SOLID STATE SCIENTIFIC CORPORATION            Topic: SB082046

    Solid State Scientific Corporation (SSSC) is pleased to propose a Phase I SBIR program to develop a unique multi-spectral imaging sensor prototype The proposed spectral sensor will be lightweight, portable, low-power and rugged with simultaneous imaging of all the spatially registered spectral bands. The optical system which is less than 1 cubic centimeter in volume will provide a sensor field of ...

    SBIR Phase I 2008 Department of DefenseDefense Advanced Research Projects Agency
  2. Portable Medical Recorder

    SBC: LI CREATIVE TECHNOLOGIES INC            Topic: SB082015

    The purpose of this proposal is to present a novel and promising solution for a portable medical recorder. The system consists of the following modules: a microphone array, adaptive beam forming, noise reduction, audio compression, loudspeaker, and audio/data interfaces. The proposed implement includes three major chips. This company has developed two very similar products for military and CE appl ...

    SBIR Phase I 2008 Department of DefenseDefense Advanced Research Projects Agency
  3. Universal Sample Preparation using Microstructured Arrays with Plasma Lysis

    SBC: MICROSTRUCTURE TECHNOLOGIES, INC.            Topic: SB082012

    DARPA is seeking an universal sample preparation methods for extraction of nucleic acid capable of being used in many different assay systems for subsequent detection. The method needs to produce nucleic acids from spores, viruses, bacteria (or vegetative cells) that are ready for a wide variety of diagnostic equipment. MicroStructure Technologies (MicroST) in conjunction with Oregon Health and Sc ...

    SBIR Phase I 2008 Department of DefenseDefense Advanced Research Projects Agency
  4. Gas-Kinetic Simulation of Separated Flows

    SBC: D&P L.L.C.            Topic: SB072006

    This SBIR project proposes to develop a gas-kinetic CFD solver for separated turbulent flow simulation. After successfully developing prototype two-dimensional gas-kinetic BGK-NS/Burnett solvers and demonstrating the benefits of using higher-order hydrodynamic equations for separated turbulent flow simulation in Phase I, the technical objective of Phase II work will be to fully develop and validat ...

    SBIR Phase II 2008 Department of DefenseDefense Advanced Research Projects Agency
  5. The Characterization and Mitigation of Single Event Effects in Ultra-Deep Submicron (< 90nm) Microelectronics

    SBC: Orora Design Technologies, Inc.            Topic: DTRA07005

    Orora Design Technologies proposes to develop electronic design automation (EDA) tools employing minimally invasive circuit design-based methods to mitigate single event effects (SEEs) for next generation Ultra-DSM CMOS (

    SBIR Phase II 2008 Department of DefenseDefense Threat Reduction Agency
  6. 3D Diode-Cross-Coupled Tapered Lasers for Kilowatt-Class, Chip-Scale, Laser Diode Phased Arrays

    SBC: nLight Photonics            Topic: SB062013

    Based on promising results obtained under our Phase 1 SBIR contract, nLIGHT wishes to proceed with a Phase 2 program. In the proposed program, nLIGHT will continue the development of high power, single-lateral-mode tapered diode lasers. nLIGHT has identified fundamental limitations to the operation of tapered diode lasers and proposes novel design and fabrication process improvements which direc ...

    SBIR Phase II 2008 Department of DefenseDefense Advanced Research Projects Agency
  7. Optical Modulator Bias Control for Analog Fiber Optic Link Applications

    SBC: EOSPACE INC.            Topic: SB062014

    Typically, the electro-optical Mach-Zehnder interferometric intensity modulator is the key optical component that determines the ultimate performance of an externally-modulated high-performance analog RF fiber-optic link. Intrinsically, the device has a symmetric structure and has a transmission peak at zero bias. In order to operate at the maximum linearity quadrature point, the optical symmetr ...

    SBIR Phase II 2008 Department of DefenseDefense Advanced Research Projects Agency
  8. Bulk Composite Materials for Detection of Gamma Radiation

    SBC: TETRAMER TECHNOLOGIES LLC            Topic: DTRA08005

    The objective of this proposal is to develop enabling technology for the production of bulk scintillating nanocomposites that have gamma radiation detection properties of single crystal NaI but with the manufacturability of plastic scintillators. These performance criteria may be met by developing nanoparticle polymer composites with ultra-high nanoparticle loadings. These ‘ultra-composites’ w ...

    SBIR Phase I 2008 Department of DefenseDefense Threat Reduction Agency
  9. 3D Visualization for Serpentine Robotic Systems

    SBC: LITE CYCLES, INC.            Topic: SB062023

    During the program baseline, LCI will develop an eyesafe, large array RT3D camera system that generates both 3D and 2D grayscale imagery in real-time that can be mounted on the iRobot PackBot. The 3D and 2D grayscale imagery can be fused in software to display both range and albedo information for each pixel in the 3D image, a display that will provide better scene understanding. During the option ...

    SBIR Phase II 2008 Department of DefenseDefense Advanced Research Projects Agency
  10. Portable Time of Flight Mass Spectrometer for Nuclear Forensics

    SBC: CREARE LLC            Topic: DTRA08004

    Analysis of nuclear material samples in the field has many advantages over laboratory analysis. Laboratory analyses can be slow, involve increased expense, lead to additional waste generation and disposal problems, and may introduce errors due to sample degradation or mishandling. In situ analysis mitigates all of these problems. The specific aim of this project is the development of a truly por ...

    SBIR Phase I 2008 Department of DefenseDefense Threat Reduction Agency
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