FTL Systems, Inc.

Basic Information

1620 Greenview DR SW
Rochester, MN, -

http://www.ftlsystems.com

Company Profile

n/a

Additional Details

Field Value
DUNS: 928507755
Hubzone Owned: N
Socially and Economically Disadvantaged: N
Woman Owned: N
Number of Employees: 8


  1. Compensation of Superconducting ADC for Improved Accuracy

    Amount: $69,081.00

    Real-time compensation techniques investigated in this effort can improve the precision and accuracy of Superconducting Analog to Digital Converters. Converters of interest include Sigma-Delta (BP and ...

    SBIR Phase I 2010 NavyDepartment of DefenseDepartment of Defense
  2. Agile, Robust and Concurrent Cross-Correlation From HF Through Ka Band

    Amount: $449,944.00

    Reception of numerous, concurrent emitters may be accomplished through a novel ultra-high frequency ADC, novel cross-correlator and novel real time template-generation software running on a high perfo ...

    SBIR Phase II 2009 Department of DefenseNavyDepartment of Defense
  3. Agile, Robust and Concurrent Cross-Correlation From HF Through Ka Band

    Amount: $69,966.00

    Cross-correlation technology investigated in this effort improve electronic warfare and signals intelligence capability relative to that which is known to be deployed. Agility enables detection of ne ...

    SBIR Phase I 2008 NavyDepartment of DefenseDepartment of Defense
  4. Streaming Data Capture, Processing and Network Access from Array of Superconducting Analog to Digital Converters

    Amount: $548,316.00

    Streaming 10GHz+ analog-bandwidth data from two high precision, synchronized, sigma-delta analog to digital converters are captured in a cyrogenic environment via a unique low noise amplifier array. ...

    SBIR Phase II 2008 NavyDepartment of DefenseDepartment of Defense
  5. Low-Jitter/Skew, Tunable, High Bandwidth Clock Generation and Distribution into Cyrogenic Environments

    Amount: $666,426.00

    Tunable clocks targeting 10GHz through greater than 70GHz are optically generated, distributed and interfaced into an array of one or more cyrogenic, electronic operating environments. Design criteri ...

    SBIR Phase II 2008 NavyDepartment of DefenseDepartment of Defense
  6. Streaming Data Capture, Processing and Network Access

    Amount: $69,369.00

    In order to capture incoming data streams at tens of terabits per second continuously or for tens of minutes, it is useful to preprocess the data as close to the collector as possible, then make eithe ...

    SBIR Phase I 2006 NavyDepartment of DefenseDepartment of Defense
  7. Array Clocking with Reduced Jitter Using Taped Delay Lines

    Amount: $69,369.00

    Deriving coherent antenna array clocks from a common tapped delay line driven by a synchronizing pulse per clock cycle results in reduced jitter and optimal beam forming at minimal cost. Phase one eff ...

    SBIR Phase I 2006 NavyDepartment of DefenseDepartment of Defense
  8. Gigascale, Mixed-Signal, Integrated System Verification

    Amount: $375,000.00

    "Next-generation military systems integrating one billion or more transistor-equivalent digital, analog, and high frequency components may be iteratively verified more than 100 times as rapidly by tec ...

    SBIR Phase II 2002 Defense Advanced Research Projects AgencyDepartment of DefenseDepartment of Defense
  9. Next Generation CAD Tools for Gigascale Integrated Mixed Signal System on a Chip

    Amount: $99,000.00

    This proposal demonstrates the feasibility of top-down, VHDL-based verificationof gigascale, integrated, mixed-signal system-on-a-chip for military applications.Building on FTL Systems' unique paralle ...

    SBIR Phase I 2001 Defense Advanced Research Projects AgencyDepartment of DefenseDepartment of Defense
  10. CAD Conversion Tools for VHDL-AMS Library Generation

    Amount: $746,173.00

    This project enables and incentivizes adaptation of IEEE Draft Standard 1076.1 (VHDL AMS) by mixed signal (analog/digital) engineers by providing a feasible, low risk migration path for existing SPICE ...

    SBIR Phase II 1998 Air ForceDepartment of DefenseDepartment of Defense

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