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Metamagnetics Inc.

Company Information
Address 115 FLANDERS RD STE 135
WESTBOROUGH, MA, 01581-1087


Information

DUNS: 829728067

# of Employees: 17


Ownership Information

HUBZone Owned: N

Socially and Economically Disadvantaged: N

Woman Owned: N



Award Charts




Award Listing

  1. Signal Processing at Radio Frequency (RF) for Position Navigation & Timing Co-Site Interference

    Amount: $499,899.12

    Numerous operations in an increasingly congested electromagnetic spectrum, intensify demand for data at the tactical edge, and the diminishing extent of electromagnetic spectrum provisioned for the mi ...

    SBIRPhase II2019Department of Defense Army
  2. Substrate materials to grow single crystal quality Magnetic films by Liquid Phase Epitaxy (LPE)

    Amount: $99,946.95

    Metamagnetics proposes the development and refinement of a Liquid Phase Epitaxy (LPE) growth process for epitaxial quality, thick films of Yittrium Iron Garnet (YIG). YIG is a magnetic material with u ...

    SBIRPhase I2019Department of Defense Army
  3. Advanced Interference Mitigation Technologies for Wideband Tactical Radios

    Amount: $149,995.69

    Metamagnetics proposes to demonstrate innovative methods of protecting receivers from large interference signals and associated intermodulation distortion (IMD) products. This solution will be applica ...

    SBIRPhase I2019Department of Defense Special Operations Command
  4. Optimized Higher Power Microwave Sources

    Amount: $139,960.00

    HPM (high power microwave) weapons could disable vehicles, enable vehicle recovery, and reduce collateral damage. Metamagnetics, in partnership with Professor Jane Lehr (University of New Mexico), and ...

    STTRPhase I2019Department of Defense Navy
  5. Modeling the effects of non-linear magnetic spin wave dynamics on RF circuits in COMSOL

    Amount: $499,862.00

    Metamagnetics proposes to develop a set of computational models that captures the behavior of non-linear microwave magnetic components, such as frequency selective limiters (FSL) and signal to noise e ...

    SBIRPhase II2018Department of Defense Defense Advanced Research Projects Agency
  6. Adaptive Auto Tune Filters for Nanosecond Response Signal Processing for ESM

    Amount: $124,984.00

    Jamming and co-site Interference from high power, on-board emitters such as long-range radar present significant challenges to multi-mission capability and interoperability for airborne Electronic Int ...

    SBIRPhase I2018Department of Defense Navy
  7. Modeling the effects of non-linear magnetic spin wave dynamics on RF circuits in COMSOL

    Amount: $149,739.55

    Metamagnetics proposes to develop a set of computational models that captures the non-linear behavior in frequency and time domain of RF magnetic components, such as FSLs and SNEs, and deploy it withi ...

    SBIRPhase I2017Department of Defense Defense Advanced Research Projects Agency
  8. Small, High Performance Circulators Based on Ferrite Materials Compatible with MMIC

    Amount: $124,992.00

    The Navy needs innovative T/R modules to achieve performance enhancement, cost reduction, decreased size and MMIC integration. New techniques compatible with RF MMIC fabrication in Gallium Nitride (Ga ...

    SBIRPhase I2017Department of Defense Navy
  9. Synthesis and Realization of Broadband Magnetic Flux Channel Antennas

    Amount: $399,886.00

    In this SBIR Phase II program, we will address the need for a high permeable and mechanically flexible magnetic material for use in the recently developed magnetic flux channel antennas, which are of ...

    SBIRPhase II2017Department of Defense Navy
  10. Ferrite-Based Frequency Selective Limiter and Signal-to-Noise Enhancer for Interference Protection and Prevention in UHF SATCOM

    Amount: $749,794.00

    Increasing global RF electromagnetic (EM) activity related to commercial, scientific, and military systems, threatens the integrity of satellite communication links and has resulted in an environment ...

    SBIRPhase II2017Department of Defense Navy
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