Eti Instrument Systems Inc.

Company Information

Company Name
Eti Instrument Systems Inc.
Address
1317 Webster Ave
Fort Collins, CO, 80524
Phone
n/a
URL
n/a
DUNS
n/a
Number of Employees
n/a

Award Totals

PROGRAM/PHASE
AWARD AMOUNT ($)
NUMBER OF AWARDS
SBIR Phase I
$670,560.00
14
SBIR Phase II
$2,375,931.00
6
Chart code to be here

Award List

  1. "DEVELOPMENT OF A UNIQUE LABORATORY STANDARD INDIUM GALLIUM ARSENIDE DETECTOR FOR THE 0.5-1.7 MICRON SPECTRAL RANGE "

    Amount: $500,000.00

    SPECTRAL MEASUREMENTS OVER THE VISIBLE/NEAR-INFRARED 0.5-1.7 MICRON RANGE CANNOT BE DONE AT PRESENT WITH A SINGLEDETECTOR. TWO SEPARATE DETECTORS (SILICON FOR 0.5-1.1 MICRONS AND GERMANIUM FOR 1.0-1.7 ...

    SBIR Phase II 1988 National Aeronautics and Space Administration
  2. "A SIMPLE HIGH PERFORMANCE AVALANCHE PHOTODIODE FOR LONG-WAVELENGTH OPTICAL COMMUNICATIONS"

    Amount: $222,944.00

    FUTURE HIGH SPEED ( 1GBIT) OPTICAL COMMUNICATION SYSTEMS WILL REQUIRE AVALANCHE PHOTODETECTORS (APDS) WHICH OPERATE AT 1300 AND 1550NM WAVELENGTHS. LABORATORY TESTS HAVE SHOWN THAT INGAAS/INP APDS CAN ...

    SBIR Phase II 1989 National Science Foundation
  3. INNOVATIVE GROWTH TECHNIQUE FOR INFRARED DETECTORS: ATOMIC LAYER EPITAXY

    Amount: $49,715.00

    WE PROPOSE TO DEVELOP AN ATOMIC LAYER EPITAXY (ALE) TECHNIQUE WHEREBY THE CRYSTAL GROWTH OF SINGLE ATOMIC LAYERS WILL BE APPLIED TO THE FABRICATION OF INFRARED DETECTOR ARRAYS WITH EXTREMELY HIGH UNIF ...

    SBIR Phase I 1987 Air ForceDepartment of Defense
  4. "HIGH PERFORMANCE INDIUM GALLIUM ARSENIDE ARRAYS FOR THE 1.0-1.7 MICRON SPECTRUM"

    Amount: $497,211.00

    WE PROPOSE TO OPTIMIZE EPITAXIAL LAYERS OF IN.53GA.47AS ALLOYS WHICH DETECT LIGHT IN THE 1.0-1.7 MICRON SPECTRAL REGION. THE GOAL OF THE PROGRAM IS TO BRING THE YIELD OF INGAAS PHOTODIODES TO SUCH A L ...

    SBIR Phase II 1989 National Aeronautics and Space Administration
  5. A HIGH PERFORMANCE 1.93 MICRON SEMICONDUCTOR PHOTODIODE

    Amount: $49,772.00

    THERE IS A GREAT INTEREST IN HIGH SPEED (5 NS) LIGHT DETECTION IN THE 1.7 TO 2.0 MICRON SPECTRAL RANGE. APPLICATIONS INCLUDE GAS MONITORING, DOWNHOLE LOGGING, ATMOSPHERIC TRANSMISSION, AND ACTIVE OPTI ...

    SBIR Phase I 1988 ArmyDepartment of Defense
  6. A MERGED HYDRIDE/METALORGANIC VPE REACTOR FOR HIGH-PERFORMANCE OPTOELECTRONIC DEVICES

    Amount: $461,000.00

    EPITAXX PROPOSES TO MERGE THE BEST ASPECTS OF HYDRIDE VAPOR PHASE EPITAXY (VPE) AND METALORGANIC CHEICAL VAPOR DEPOSITION (MOCVD) INTO ONE TECHNIQUE TO FABRICATE SUPERIOR INGAASP/INP DETECTORS, LASERS ...

    SBIR Phase II 1989 ArmyDepartment of Defense
  7. DEVELOPMENT OF A NEW VAPOR PHASE EPITAXY (VPE) TECHNIQUE TO PREPARE THE SEMICONDUCTOR- IN 0.53 GA 0.47 AS

    Amount: $521,429.00

    HYDRIDE VAPOR PHASE EPITAXY (VPE) IS A WELL ESTABLISHED GROWTH METHOD FOR DEVICES SUCH AS INGAAS PHOTODETECTORS. RECENTLY, AN IMPORTANT SIMPLIFICATION OF THE METHOD WAS DEMONSTRATED IN WHICH IN-GA ALL ...

    SBIR Phase II 1989 Air ForceDepartment of Defense
  8. LARGE SIZE (> 1CM) INGAAS PHOTODETECTORS FOR 1.3 TO 2.1 UM

    Amount: $49,411.00

    WE PROPOSE TO DEVELOP A LARGE-SIZE (>1CM DIAMETER) INDIUM GALLIUM ARSENIDE PHOTODETECTOR WITH HIGH QUANTUM EFFICIENCY (>70%) OUT TO 2.1UM FOR FIBER OPTICS, EYESAFE RANGEFINDING, LIDAR AND LASER SEEKIN ...

    SBIR Phase I 1989 ArmyDepartment of Defense
  9. HIGH-GAIN AVALANCHE PHOTODIODE ARRAYS FOR LONG-WAVELENGTH APPLICATIONS

    Amount: $49,909.00

    WE PROPOSE TO DEVELOP HIGH-PERFORMANCE ARRAYS OF INDIUM GALLIUM ARSENIDE (INGAAS) AVALANCHE PHOTODIODES (APDS) FOR FIBER OPTIC, REMOTE SENSING AND SPECTROSCOPY APPLICATIONS INTHE 1.0-1.7 MICRON SPECTR ...

    SBIR Phase I 1989 National Aeronautics and Space Administration
  10. AN OPTOELECTRONIC INTEGRATED CIRCUIT (OEIC) INDIUM GALIUM ARSENIDE RECEIVER ON A SILICON SUBSTRATE

    Amount: $49,765.00

    THE RESEARCHERS PROPOSE TO DEVELOP A FULLY MONOLITHIC INTEGRATED RECEIVER CHIP FOR THE 1.3 AND 1.55 UM FIBER OPTIC WAVELENGTHS. THE CHIP WILL BE FABRICATED ON A SI SUBSTRATE SO THAT CONVENTIONAL BIPOL ...

    SBIR Phase I 1989 National Science Foundation

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