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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. Additive Manufacturing of Inorganic Transparent Materials for Advanced Optics

    SBC: PRODUCT INNOVATION AND ENGINEERING LLC            Topic: N19BT028

    The goal of the Phase I project is to demonstrate the feasibility of an AM process capable of depositing the required optical properties, full densification, and smooth surface finish through modeling the glass AM processing, developing the path planning for printing freeform optics, and evaluating the quality of the printed freeform optics with the proposed FFL . The specific objectives of the pr ...

    STTR Phase I 2020 Department of DefenseNavy
  2. Additive Manufacturing of Inorganic Transparent Materials for Advanced Optics

    SBC: PRODUCT INNOVATION AND ENGINEERING LLC            Topic: N19BT028

    The objective of Phase II is to develop the AM process investigated in Phase I to fabricate optical components. The resulting optical components will be evaluated in terms of geometrical, mechanical, microstructural and optical properties to validate the effectiveness of the developed process. The objectives of the Phase II Base are to: 1. Naval optical component design, selection of material tail ...

    STTR Phase II 2021 Department of DefenseNavy
  3. Advanced Mechanical Testing (AMT) System for Highly Irradiated Materials

    SBC: PRODUCT INNOVATION AND ENGINEERING LLC            Topic: 32a

    Establish means and methods to perform comprehensive mechanical characterization using miniature tensile specimens for highly irradiated materials. The solution should aid in dramatic reduction of irradiated material waste and provide feasibility for easy incorporation and remote operation within hot cell environments. Based on previous research, an Advanced Mechanical Test (AMT) test bed incorpor ...

    STTR Phase I 2018 Department of Energy
  4. Advanced Mechanical Testing System for Highly Irradiated Materials

    SBC: PRODUCT INNOVATION AND ENGINEERING LLC            Topic: 32a

    This project will research and develop an Advanced Mechanical Test (AMT) system to perform comprehensive, high throughput, automatic mechanical characterization using miniature tensile specimens for highly irradiated materials. The solution should aid in a dramatic reduction of irradiated material waste, remote operation within hot cell environments, and stochastic characterization. It can also be ...

    STTR Phase II 2019 Department of Energy
  5. Advanced Mechanical Testing System for Highly Irradiated Materials

    SBC: PRODUCT INNOVATION AND ENGINEERING LLC            Topic: C4632a

    Install, test, and refine the AMT to perform comprehensive, high throughput, automatic mechanical characterization using irradiated miniature tensile specimens at INL hot cell facilities. The solution should aid in dramatic reduction of irradiated material waste, remote operation within hot cell environments, and stochastic characterization. It is vital that thorough evaluation and refinement to i ...

    STTR Phase II 2022 Department of Energy
  6. Advanced Silicon Diode Switch for HPRF Systems

    SBC: RADIATION DETECTION TECHNOLOGIES, INC.            Topic: N15AT023

    Silicon-based photoconductive switch technology, despite its widespread industrial use, has not reached its limit in repetition-rate nor recovery-time. While traditional Si-PCSS systems have demonstrated poor recovery time (tens to hundreds of microseconds), new understanding in absolute photo-carrier generation and the resultant reduced sweepout time, provides one means to get beyond this seeming ...

    STTR Phase I 2015 Department of DefenseNavy
  7. Advanced Silicon Diode Switch for HPRF Systems

    SBC: RADIATION DETECTION TECHNOLOGIES, INC.            Topic: N15AT023

    The ultimate goal of the phase II effort is to build Si-based PCSS 10kV-modules and compare coupling of those modules to different microwave radiation technologies. The microwave radiating technologies include at least non-linear transmission lines and direct drive antenna; comparisons and system-level tradeoffs will be identified through normalized field measurements.

    STTR Phase II 2017 Department of DefenseNavy
  8. An Analytical Technology Platform to Identify Symbiotic Interactions Between PGPR and Root Microbiome Members from Biofuel Feedstocks

    SBC: Powers & Zahr, LLC            Topic: 22a

    The overall goal of this STTR proposal is to establish a commercial microwell technology for high-throughput screening and characterization of interactions that are critical to plant growth promoting rhizobacteria (PGPR) survival and function. PGPR can be used to improve crop stress tolerance by enhancing root function; providing nutrient uptake, nitrogen fixation, hormone regulation, and suppress ...

    STTR Phase I 2018 Department of Energy
  9. An Automated Sample Handling Workcell for the SNS Liquids Reflectometer

    SBC: Square One Systems Design, Inc.            Topic: 23a

    78887 When completed, the Spallation Neutron Source (SNS) will provide unprecedented opportunities for performing groundbreaking neutron science. Two reflectometers are planned for the SNS, one optimized for the measurement of liquid surfaces and the other for the measurement of magnetic materials. The SNS¿s high neutron flux will allow these instruments to collect complete data sets in minu ...

    STTR Phase I 2005 Department of Energy
  10. An Automated Sample Handling Workcell for the SNS Liquids Reflectometer

    SBC: Square One Systems Design, Inc.            Topic: 23

    When completed, the Spallation Neutron Source (SNS) will provide unprecedented opportunities for performing groundbreaking neutron science. Two reflectometers are planned for the SNS, one optimized for the measurement of liquid surfaces and the other for the measurement of magnetic materials. The SNS¿s high neutron flux will allow these instruments to collect complete data sets in minutes rat ...

    STTR Phase II 2006 Department of Energy
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