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RESODYN CORPORATION

Company Information
Address
130 N MAIN ST STE 600
BUTTE, MT 59701-9314
United States


http://www.resodyn.com

Information

UEI: NUT8PKD37ZH3

# of Employees: 26


Ownership Information

HUBZone Owned: No

Socially and Economically Disadvantaged: No

Woman Owned: No




Success Stories

  1. SBIR-STTR-Success: Resodyn, Corp.

    SAFE AND SOUND DEFENSE: Low-frequency, high-intensity acoustic energy mixes a broad range of compoundsWhether it’s mixing pharmaceuticals, nanomaterials, or energetics for Department of Defense applications, the ResonantAcoustic® Mixing (RAM) technology uses sound energy to mix anything...

Award Charts




Award Listing

  1. Transdermal Delivery of Anti-Malarial Drug

    Amount: $70,000.00

    This Phase I proposal is aimed to develop a technology to delivery lipophilic therapeutic ingredients in broad and antimalarial drug primaquine in specific through skins. The proposed driving force of ...

    SBIRPhase I2005Department of Defense Army
  2. Fatigue Enhanced Cold-worked Hole FECH- Analyzer

    Amount: $149,999.00

    The Navy routinely uses a structural strengthening technique called cold hole expansion for increasing the fatigue life of primary aircraft structures that are fastened together. This process creates ...

    SBIRPhase I2005Department of Defense Navy
  3. SBIR Phase I: Development of a BioAcoustic Mixing Platform

    Amount: $100,000.00

    This Small Business Innovation Research Phase I project will demonstrate the feasibility of using ResonantAcoustics (low-frequency acoustic mixing) as the basis for developing a highly efficient BioAc ...

    SBIRPhase I2005National Science Foundation
  4. SBIR Phase I: Multimodal Acoustic Mixing of Carbon Nanotube Composites

    Amount: $100,000.00

    This Small Business Innovative Research Phase I project will demonstrate the feasibility of using multiple acoustic frequencies as a multimodal approach to mixing small diameter carbon nanotubes into ...

    SBIRPhase I2005National Science Foundation
  5. Sewage Trap Grease Conversion with an Acoustic Driven Reactor

    Amount: $70,000.00

    There are more than 11 billion pounds of trap grease available annually which have the potential to create over 1 billion gallons of biodiesel that can be utilized to power the nation's public works a ...

    SBIRPhase I2005Environmental Protection Agency
  6. Low Permeability Polyimide Insulation

    Amount: $70,000.00

    Resodyn Technologies proposes a new technology that enables the application of polyimide based cryogenic insulation with low hydrogen permeability. This effort supports the Vision for U.S. Space Expl ...

    SBIRPhase I2005National Aeronautics and Space Administration
  7. Development of an Acoustic Biological Shaker

    Amount: $124,358.00

    DESCRIPTION (provided by applicant): This Small Business Innovation Research Phase I project will demonstrate the feasibility of using ResonantAcoustics (low-frequency acoustic mixing) as the basis fo ...

    SBIRPhase I2005Department of Health and Human Services National Institutes of Health
  8. Sewage Trap Grease Conversion with an Acoustic Driven Reactor

    Amount: $70,000.00

    There are more than 11 billion pounds of trap grease available annually, with the potential to create more than 1 billion gallons of biodiesel that can be utilized to power the Nation’s public works ...

    SBIRPhase I2005Environmental Protection Agency
  9. Development of a High Performance Bioreactor

    Amount: $750,001.00

    DESCRIPTION (provided by applicant): The Phase II project specific aim is to perform research to develop and demonstrate an advanced, High Performance Bioreactor (HPBR) fermentation technology that e ...

    SBIRPhase II2004Department of Health and Human Services National Institutes of Health
  10. SBIR Phase I: Powder-Powder Mixing and Powder-Liquid Mixing by a Novel High-Intensity Vibrational Mixer

    Amount: $100,000.00

    This Small Business Innovative Research (SBIR) Phase I project proposes to demonstrate the feasibility of using high intensity resonant vibrational energy as the basis for developing an efficient, sca ...

    SBIRPhase I2004National Science Foundation
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