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Award Data

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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. Microfabricated Broadband Connectors for Frequencies Above 100 GHz

    SBC: Nuvotronics, LLC            Topic: N/A

    The region of the electromagnetic spectrum from 100 GHz to 400 GHz is currently underutilized but an area of exciting promise. Although atmospheric attenuation is higher in this region, the high frequency enables higher bandwidth operation. Transmit and receive components are also small resulting in the potential for lightweight miniature systems. Sub-millimeter waves also have the unique ability ...

    SBIR Phase I 2012 Department of CommerceNational Institute of Standards and Technology
  2. Non-contact Inline Material Sensor for Measurement of Electrical Properties of Nanofiber Films

    SBC: PANERATECH, INC.            Topic: N/A

    PaneraTech is proposing a non-contact dual sensor for broadband and real-time characterization of thin nanofiber films during the manufacturing. Our solution offers several unique aspects that are ideal for this application. For instance, it uses a dual CPW sensor for low frequencies and free space transmission system for higher frequency band. Our proposed sensor system is also equipped with high ...

    SBIR Phase I 2012 Department of CommerceNational Institute of Standards and Technology
  3. Optical Instrumentation for MEMS Oscillatory Parallel-Plate Rheometer

    SBC: AGILTRON, INC.            Topic: 9060563R

    Leveraging Agiltron’s industrial leading developments for optical measurement of motion in MEMS devices, we propose to use electro-optical sensors for measuring the displacement and gap in the NIST micro-rheometer. No electrical connections are required to the moving parts. All electronics and optics are removed from the chip so that it is inexpensive and disposable. A fixed, simple micro-fluidi ...

    SBIR Phase I 2011 Department of CommerceNational Institute of Standards and Technology
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