QmagiQ

Company Information

Company Name
QmagiQ
Address
NH
Nashua, NH, 03063-4219
Phone
1 603-821-3092
URL
http://www.qmagiq.com
DUNS
168454770
Number of Employees
8
Hubzone Owned:
N
Minority Owned:
N
Woman Owned:
N

Award Totals

PROGRAM/PHASE
AWARD AMOUNT ($)
NUMBER OF AWARDS
SBIR Phase I
$2,124,995.00
21
SBIR Phase II
$9,211,988.00
11
STTR Phase I
$550,000.00
5
STTR Phase II
$2,422,509.00
3
Chart code to be here

Award List

  1. Longwave Imaging for Astronomical Applications

    Amount: $599,988.00

    We propose to develop a compact portable longwave camera for astronomical applications. In Phase 1, we successfully developed the eye of the camera, i.e. the focal plane array (FPA) and produced good ...

    SBIR Phase II 2010 National Aeronautics and Space Administration
  2. Hyperspectral Longwave Infrared Focal Plane Array and Camera Based on Quantum Well Infrared Photodetectors

    Amount: $600,000.00

    We propose to develop a hyperspectral camera imaging in a large number of sharp hyperspectral bands in the thermal infrared. The camera is particularly suitable for the multispectral thermal infrared ...

    SBIR Phase II 2010 National Aeronautics and Space Administration
  3. SLS Photodiodes Grown by MOCVD

    Amount: $100,000.00

    We propose to experimentally investigate MOCVD (Metal Organic Chemical Vapor Deposition) as a technique for growing high-quality Type-II InAs/(In)GaSb SLS (Strained Layer Superlattice) photodiode epi ...

    SBIR Phase I 2010 Missile Defense AgencyDepartment of Defense
  4. FPA and Camera Based on Dualband Infrared SLS Photodiodes

    Amount: $80,000.00

    In Phase I, we will demonstrate a dualband InAs/GaSb strained layer superlattice (SLS) photodiode with bias-selectable 3-5 and 8-12 micron spectral response. Bandgap engineering will be used to minimi ...

    SBIR Phase I 2010 NavyDepartment of Defense
  5. Dramatic Improvement In The Quantum Efficiency Of Large-Format Longwave Infrared Focal Plane Arrays

    Amount: $100,000.00

    We will demonstrate a dramatic 3x to 5x increase (over the state of the art) in the external quantum efficiency (QE) of longwave infrared (LWIR) focal plane arrays (FPAs) fabricated from quantum well ...

    SBIR Phase I 2006 Missile Defense AgencyDepartment of Defense
  6. VERY-LARGE-FORMAT DUAL-BAND INFRARED FOCAL PLANE ARRAY

    Amount: $1,012,000.00

    In Phase 1 of this SBIR program, we developed and delivered a small-format 320x256 dual-band infrared focal plane array (IRFPA) with pixel-registered and simultaneous imaging in the midwave and longwa ...

    SBIR Phase II 2006 Missile Defense AgencyDepartment of Defense
  7. A Novel High-Sensitivity High-Temperature Transistor Infrared Sensor

    Amount: $100,000.00

    We propose a novel infrared focal plane array (IRFPA) based on quantum dots in the channel of a gated high-electron-mobility-transistor (HEMT). This 3-terminal device, that we call a QHEMT, will expl ...

    SBIR Phase I 2005 Missile Defense AgencyDepartment of Defense
  8. Passive IR Sensors Based on High Quantum Efficiency P-on-N Type-II Strained Layer Superlattices

    Amount: $100,000.00

    We propose to develop sensitive passive infrared sensors for ballistic missile defense applications from Type-II InAs/GaSb strained layer superlattices (SLS). The novelty of our approach lies in usin ...

    SBIR Phase I 2007 Missile Defense AgencyDepartment of Defense
  9. Sensitive Longwave Infrared Sensors Based on P-on-N Type-II Strained Layer Superlattices

    Amount: $100,000.00

    We propose to develop high-sensitivity longwave (cutoff ~ 10-12 microns) infrared sensors for space situational awareness applications from Type-II InAs/GaSb strained layer superlattices (SLS). One n ...

    SBIR Phase I 2007 Air ForceDepartment of Defense
  10. Affordable Large-Format Mid-Infrared (IR) Imagers Using Large Metamorphic InSb-on-GaAs Wafers

    Amount: $100,000.00

    We propose epitaxial InSb grown on large metamorphic GaAs substrates as a platform to enable large affordable mid-infrared focal plane arrays (FPAs). In Phase 1, we will design and grow a number of m ...

    SBIR Phase I 2006 Air ForceDepartment of Defense

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