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Science Research Laboratory, Inc

Company Information
Address
15 Ward St
Somerville, MA 02143-4228
United States


http://SRL.COM

Information

DUNS: 106771140

# of Employees: 3


Ownership Information

HUBZone Owned: No

Socially and Economically Disadvantaged: No

Woman Owned: No



Award Charts




Award Listing

  1. Low Temperature Diffusion Bonding of Semiconductor Devices

    Amount: $1,549,769.00

    Laser diodes (LD) have many desirable properties, e.g. small size and high electrical-to-optical efficiency. For ease of use, most applications require coupling the LD photons to an optical fiber. ...

    SBIRPhase II2010Department of Defense Defense Advanced Research Projects Agency
  2. High Power All-Solid-State 4- Micron Source

    Amount: $2,249,720.00

    Science Research Laboratory proposes to develop a pulsed, tunable mid-IR source with average power greater than 55 watts and high pulse repetition frequency (20 kHz). The program is divided into a bas ...

    SBIRPhase II2010Department of Defense Defense Advanced Research Projects Agency
  3. Advanced Low Thermal Resistance, Large Heat Capacity Coolers For Semiconductor Devices

    Amount: $1,749,650.00

    There is a critical need for revolutionary approaches for thermal management of 21st century semiconductor devices and hardware, such as advanced high performance computers, high-power laser diodes an ...

    SBIRPhase II2010Department of Defense Defense Advanced Research Projects Agency
  4. Low Temperature Diffusion Bonding of Semiconductor Devices

    Amount: $1,849,690.00

    Laser diodes (LD) have many desirable properties, e.g. small size and high electrical-to-optical efficiency. For ease of use, most applications require coupling the LD photons to an optical fiber. ...

    SBIRPhase II2010Department of Defense Defense Advanced Research Projects Agency
  5. Microelectromechanical systems/Nano-Electro-Mechanical-Systems (MEMS/NEMS) High Temperature Thermal Barrier Coatings

    Amount: $739,784.00

    We propose to continue developing a potentially revolutionary technological innovation: advanced coatings that will significantly increase the efficiency, lifetime and reliability of gas-turbine engin ...

    SBIRPhase II2009Department of Defense Defense Advanced Research Projects Agency
  6. Thermal-Barrier Coatings (TBCs) with Improved Efficiency, Lifetime and Smart Sensors

    Amount: $749,858.00

    We propose to develop a revolutionary technological innovation that will significantly increase the efficiency, lifetime and reliability of gas-turbine engines. Despite the tremendous improvements in ...

    SBIRPhase II2009Department of Defense Defense Advanced Research Projects Agency
  7. Retrofittable Laser Protection for Weapons

    Amount: $99,988.00

    High-energy laser (HEL) weapons systems are still in their infancy, but with the acute need for a reliable, inexpensive missile defense, and the rapid pace at which laser technology is developing, it ...

    SBIRPhase I2009Department of Defense Air Force
  8. Thermal-Barrier Coatings (TBCs) with Improved Efficiency, Lifetime and Smart Sensors

    Amount: $1,502,600.00

    We propose to develop a revolutionary technological innovation that will significantly increase the efficiency, lifetime and reliability of gas-turbine engines. Despite the tremendous improvements in ...

    SBIRPhase II2009Department of Defense Defense Advanced Research Projects Agency
  9. MEMS/NEMS High Temperature Thermal Barrier Coatings

    Amount: $398,696.00

    We propose to develop a potentially revolutionary technological innovation that will significantly increase the efficiency, lifetime and reliability of gas-turbine engines. Despite the tremendous impr ...

    SBIRPhase I2008Department of Defense Defense Advanced Research Projects Agency
  10. Shipboard Atmospheric Propagation Measurements

    Amount: $599,983.00

    Directing a high-power laser (HPL) beam through the atmosphere onto a distant target is limited by atmospheric absorption of the laser light, which causes thermal blooming and wavefront distortions th ...

    SBIRPhase II2008Department of Defense Navy
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