MetroLaser, Inc.

Company Information

Company Name
MetroLaser, Inc.
Address
CA
Irvine, CA, 92618-2008
Phone
1 949-553-0688
URL
http://www.metrolaserinc.com
DUNS
188465819
Number of Employees
29
Minority Owned

Award Totals

PROGRAM/PHASE
AWARD AMOUNT ($)
NUMBER OF AWARDS
SBIR Phase I
$12,111,861.00
148
SBIR Phase II
$46,864,235.00
76
STTR Phase I
$1,399,177.42
14
STTR Phase II
$3,599,769.00
6
Chart code to be here

Award List

  1. Probing Dense Sprays with Gated, Picosecond, Digital Particle Field Holography

    Amount: $69,996.00

    This is a proposal to develop a unique, robust, fieldable, gated, picosecond, digital holography system for characterizing dense particle fields under harsh conditions. Many powerful imaging methods h ...

    STTR Phase I 2010 NavyDepartment of Defense
  2. Simultaneous Imaging of Velocity and Temperature Fields in Reacting Flows using Thermographic Phosphors

    Amount: $99,986.00

    A method is proposed for the simultaneous imaging of temperature and velocity fields inside combustion chambers to enable experimental data on turbulent heat fluxes needed for model validation and dev ...

    STTR Phase I 2010 ArmyDepartment of Defense
  3. A Novel, Portable, Projection, Focusing Schlieren System

    Amount: $99,982.00

    The schlieren technique has been used for flow diagnostics in wind tunnels since the beginning of aerospace research, due to its ability to make airflows

    SBIR Phase I 2010 National Aeronautics and Space Administration
  4. Long-Range Laser Vibrometer for Target Identification

    Amount: $749,988.00

    In response to an Air Force requirement for a laser measurement system capable of identifying targets through a turbulent atmosphere, MetroLaser proposes a multi-aperture laser Doppler vibrometer (LDV ...

    SBIR Phase II 2010 Department of Defense
  5. Lucky Imaging with Coherent Illumination and Tracking for Space Situational Awareness

    Amount: $749,277.00

    Ground-based space surveillance (GSS) is crucial to Space Situational Awareness (SSA). The limiting factor in GSS performance is atmospheric turbulence. Recent advances in CCDs enable practical implem ...

    SBIR Phase II 2010 Air ForceDepartment of Defense
  6. LASER FLUORESCENCE TECHNIQUE TO MEASURE MULTIPLE PARAMETERS IN HYPERSONIC FLOWS

    Amount: $400,000.00

    A NEW PLANAR LASER INDUCED FLUORESCENCE TECHNIQUE WHICH WILL PROVIDE THE FLOW VELOCITY AND THE CONCENTRATION OF VARIOUS SPECIES AT MANY POINTS ON A PLANE OF A HYPERSONIC FLOW (WITH AND WITHOUT CHEMIST ...

    SBIR Phase II 1992 Air ForceDepartment of Defense
  7. TWO-PHOTON PHOTODISSOCATION IMAGING OF WATER VAPOR TO MEASURE HYDROGEN/AIR MIXING IN HYPERSONIC PROPULSION

    Amount: $464,000.00

    THE PRESENCE OF WATER VAPOR PROVIDES AN INDICATION OF THE RAPID MIXING OF HYDROGEN AND AIR IN HYPERSONIC PROPULSION ENGINES. THIS IS A CRITICAL ISSUE WHICH CAN BE ADDRESSED BY NONINTRUSIVE IMAGING OF ...

    SBIR Phase II 1990 Air ForceDepartment of Defense
  8. LIQUID ROCKET ATOMIZATION, AN INNOVATIVE NUMERICAL AND EXPERIMENTAL SIMULATION

    Amount: $49,967.00

    THE WORK PROPOSED HERE CONSISTS OF A THEORETICAL AND EXPERIMENTAL INVESTIGATIVE EFFORT AIMED AT QUALITATIVE AND QUANTITATIVE UNDERSTANDING OF THE FLUID DYNAMICS OF INTERACTING LIQUID JETS AS OCCUR, FO ...

    SBIR Phase I 1989 National Aeronautics and Space Administration
  9. PHOTOTHERMAL LASER DEFLECTION AN INNOVATIVE TECHNIQUE TO MEASURE PARTICLES IN EXHAUSTS

    Amount: $49,928.00

    AN INNOVATIVE TECHNIQUE TO MEASURE IN REAL-TIME THE MASS CONCENTRATION OF PARTICLES IN EXHAUSTS IS PROPOSED HERE. THE TECHNIQUE IS BASED ON THE DEFLECTION EXPERIENCED BY A LASER BEAM THAT TRAVELS THRU ...

    SBIR Phase I 1989 Air ForceDepartment of Defense
  10. LONG RANGE HOLOGRAPHIC INSTRUMENT FOR MOTION ANALYSIS OF LARGE SURFACES

    Amount: $231,560.00

    THIS IS A PROPOSAL TO DEVELOP A HOLOGRAPHIC CAMERA THAT IS CAPABLE OF PRODUCTING A MOTION AND STRAIN DIAGNOSTICS PICTURE OF A LARGE SURFACE AT KILOMETER DISTANCES. THE INTENDED PURPOSE OF THE INSTRUME ...

    SBIR Phase II 1990 National Science Foundation

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