RAM Photonics

Basic Information

4901 Morena Blvd. Suite 128
San Diego, CA, -

http://www.ramphotonics.com

Company Profile

n/a

Additional Details

Field Value
DUNS: 831819979
Hubzone Owned: N
Socially and Economically Disadvantaged: N
Woman Owned: N
Number of Employees: 6


  1. Frequency-Agile Heterodyne-Driven MMW Signal Generator

    Amount: $498,486.00

    Conventional generation of a high-quality RF carrier (signal) beyond 50GHz requires high precision cavity engineering that inherently restricts contiguous bandwidth coverage. Worse, even if one were c ...

    SBIR Phase II 2014 NavyDepartment of DefenseDepartment of Defense
  2. Nonlinear-DSP-Enabled RF-Photonic Link

    Amount: $79,920.00

    Digital equalizers have been the major enablers in RF communications in terms of managing component imperfections and channel impairments. Specifically, the ever increasing processing power of the ded ...

    STTR Phase I 2014 NavyDepartment of DefenseDepartment of Defense
  3. High-Efficiency Polarization-Insensitive Diffraction Grating for All-Glass Monolithic SBC Fiber Laser System

    Amount: $799,402.00

    Spectral beam combination (SBC) of fiber lasers is the most practical approach to DEW-class HELs using diode-pumped fiber lasers. Use of conventional diffraction gratings to combine wavelengths is lim ...

    SBIR Phase II 2014 NavyDepartment of DefenseDepartment of Defense
  4. Low-Noise, Parametric, Photonic Oscillator in Short-Wave Infrared (SWIR) Band

    Amount: $699,314.00

    ABSTRACT: In contrast to the NIR band, which is supported by an infrastructure of devices developed to serve telecommunication applications, the SWIR band remains out of reach for critical defense ap ...

    SBIR Phase II 2014 Air ForceDepartment of DefenseDepartment of Defense
  5. High-Efficiency Polarization-Insensitive Diffraction Grating for All-Glass Monolithic SBC Fiber Laser System

    Amount: $79,974.00

    Spectral beam combination (SBC) of fiber lasers is the most practical approach to DEW-class HELs using diode-pumped fiber lasers. Use of conventional diffraction gratings to combine wavelengths is lim ...

    SBIR Phase I 2013 Department of DefenseNavyDepartment of Defense
  6. Low-Noise, Parametric, Photonic Oscillator in Short-Wave Infrared (SWIR) Band

    Amount: $149,488.00

    ABSTRACT: In contrast to the NIR band, which is supported by an infrastructure of devices developed to serve telecommunication applications, the SWIR band remains out of reach for critical defense an ...

    SBIR Phase I 2013 Department of DefenseAir ForceDepartment of Defense
  7. Frequency-Agile Heterodyne-Driven MMW Signal Generator

    Amount: $79,850.00

    Conventional generation of a high-quality RF carrier (signal) beyond 50GHz requires high precision cavity engineering that inherently restricts contiguous bandwidth coverage. Worse, even if one were c ...

    SBIR Phase I 2013 NavyDepartment of DefenseDepartment of Defense
  8. High-Efficiency Data-Rate-Scalable Laser Transmitter for Interplanetary Optical Communications

    Amount: $99,875.00

    Interplanetary missions are at the core of NASA's current space exploration program and are expected to lead the way to new resource discovery in the next decade and beyond. In the absence of ma ...

    SBIR Phase I 2012 National Aeronautics and Space Administration
  9. High-Performance Nonlinear Compensator for Next-Generation Fiber Optic Gyroscopes

    Amount: $99,950.00

    Fiber-optic gyroscopes (FOGs) are used as the fundamental building block for high-precision inertial and angular displacement sensors in applications ranging from missile and UAV to war-plane and sate ...

    SBIR Phase I 2011 Department of DefenseMissile Defense AgencyDepartment of Defense
  10. Fast, Narrow Linewidth Near Infrared (NIR) / Shortwave Infrared (SWIR) Scanner

    Amount: $749,875.00

    Rapid tuning of narrowband sources is inherently limited by the number of roundtrips required in the high-Q cavity, which is required for generation of a narrow lasing linewidth. We propose to break ...

    SBIR Phase II 2011 Department of DefenseDefense Advanced Research Projects AgencyDepartment of Defense

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