QmagiQ

Address

NH
Nashua, NH, 03063-4219

http://www.qmagiq.com

Information

DUNS: 168454770
# of Employees: 8

Ownership Information

Hubzone Owned: N
Socially and Economically Disadvantaged: N
Woman Owned: N

Award Charts




Award Listing

  1. Antimony-Based Focal Plane Arrays for Shortwave-Infrared to Visible Applications

    Amount: $749,980.00

    We propose to develop antimony-based focal plane arrays (FPAs) for NASA's imaging and spectroscopy applications in the spectral band from visible to shortwave-infrared (SWIR), viz. wavelengths from 0. ...

    SBIRPhase II2016National Aeronautics and Space Administration
  2. Megapixel Longwave Infrared SLS FPAs for High Spatial Resolution Earth Observing Missions

    Amount: $124,996.00

    Earth observing missions like NASA's LANDSAT Data Continuity Mission - Thermal Infrared Sensor (LDCM-TIRS) require greater spatial resolution of the earth than the ~ 100m provided by the current instr ...

    SBIRPhase I2016National Aeronautics and Space Administration
  3. Metamorphic Buffer Layer Growth for Bulk InAs(x)Sb(1-x) LWIR Detectors

    Amount: $149,998.00

    Bulk InAs(x)Sb(1-x) is an infrared detector material that promises higher quantum efficiency than antimony-based superlattices in the longwave infrared (LWIR). This is due to the longer diffusion len ...

    STTRPhase I2016Department of Defense Army
  4. High Performance Long Wave Infrared (LWIR) Focal Plane Array (FPA) Sensor for Missile Defense

    Amount: $125,000.00

    We propose to bandgap-engineer the antimony-based Group III-V compound semiconductor material system to realize a dualband focal plane array (FPA) made up of stacked multi-barrier Type-II strained lay ...

    SBIRPhase I2015Department of Defense
  5. Dualband MW/LW Strained Layer Superlattice Focal Plane Arrays for Satellite-Based Wildfire Detection

    Amount: $749,999.00

    Infrared focal plane arrays (FPAs) based on Type-II strained layer superlattice (SLS) photodiodes have recently experienced significant advances. In Phase I we developed and delivered to NASA a 320x25 ...

    SBIRPhase II2015National Aeronautics and Space Administration
  6. Antimony-Based Focal Plane Arrays for Shortwave-Infrared to Visible Applications

    Amount: $124,996.00

    We propose to develop antimony-based focal plane arrays (FPAs) for NASA's imaging and spectroscopy applications in the spectral band from visible to shortwave-infrared, viz. wavelengths from 0.5 - 2.5 ...

    SBIRPhase I2015National Aeronautics and Space Administration
  7. VLWIR SLS Digital FPA for Hyperspectral Imaging

    Amount: $999,994.00

    QmagiQ and MIT-LL will partner to develop a high-performance very longwave infrared digital focal plane array (VLWIR DFPA) suitable for hyperspectral imaging applications. The DFPA will be based on Ty ...

    STTRPhase II2015Department of Defense Army
  8. Advanced Infrared Focal Plane Arrays with Strained Layer Superlattice Detectors on Digital-Pixel Readout Integrated Circuits

    Amount: $893,858.00

    We propose to combine QmagiQ's strained layer superlattice (SLS) sensor technology with MIT Lincoln Laboratory's novel digital pixel readout integrated circuit (DROIC) to realize an advanced ...

    STTRPhase II2014Missile Defense Agency Department of Defense
  9. Dualband MW/LW Strained Layer Superlattice Focal Plane Arrays for Satellite-Based Wildfire Detection

    Amount: $124,995.00

    Dualband focal plane arrays (FPAs) based on gallium-free Type-II strained layer superlattice (SLS) photodiodes have recently experienced significant advances. We propose to develop a new class of dev ...

    SBIRPhase I2014National Aeronautics and Space Administration
  10. High Quantum Efficiency 1024x1024 Longwave Infrared SLS FPA and Camera

    Amount: $700,000.00

    We propose a high quantum efficiency (QE) 1024x1024 longwave infrared focal plane array (LWIR FPA) and CAMERA with ~ 12 micron cutoff wavelength made from bandgap-engineered Type-II InAs/GaSb strained ...

    SBIRPhase II2013National Aeronautics and Space Administration

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