Advanced Cooling Technologies, Inc.

Company Information
Address 1046 New Holland Ave
Lancaster, PA, 17601-5606


DUNS: 126288336

# of Employees: 115

Ownership Information

HUBZone Owned: N

Socially and Economically Disadvantaged: N

Woman Owned: N

Award Charts

Award Listing

  1. Electrically Isolated Hybrid Two-Phase Cooling System

    Amount: $149,999.00

    Radio frequency (RF) power devices using (GaN) high-electron mobility transistors (HEMTs) have revolutionized power electronic applications due to superior electrical performances enabled by the excel ...

    SBIRPhase I2018Department of Energy
  2. Brackish Water for Condensation Irrigation

    Amount: $99,999.00

    Advanced Cooling Technologies, Inc. will develop a low-cost, high-efficiency condensation irrigation system to desalinate brackish water and provide affordable freshwater for agricultural applications ...

    SBIRPhase I2018Department of Agriculture
  3. Spouted Bed Reactor Designs for Thermal Desorption of Mercury Compounds

    Amount: $999,991.00

    Thermal desorption using spouted bed reactor has demonstrated a reduction of 65% of Mercury and 28% of Sulfur content in bituminous coal in laboratory scale setting. Further development is needed to: ...

    SBIRPhase II2018Department of Energy
  4. Advanced Hot Reservoir Variable Conductance Heat Pipes for Planetary Landers

    Amount: $124,997.00

    In contrast to the standard cold reservoir Variable Conductance Heat Pipe (VCHP) where for tight thermal control an electrical heater is used for the reservoir (wicked), Advanced Cooling Technologies, ...

    STTRPhase I2018National Aeronautics and Space Administration
  5. Variable View Factor Two-Phase Radiator

    Amount: $124,995.00

    NASA’s Space Technology Mission Directorate (STMD) is investigating technologies for thermal control systems (TCS) in human spaceflight vehicles, such as variable geometry spacecraft radiator. T ...

    SBIRPhase I2018National Aeronautics and Space Administration
  6. Consumable-Based Cooling for 24 Hour Life Venus Lander

    Amount: $124,996.00

    A reliable thermal management system that will enable at least 24-hours survival of Venus landers in the extreme environment (460°C, 92 bar) is highly desirable for NASA future Venus in-situ explo ...

    SBIRPhase I2018National Aeronautics and Space Administration
  7. Thickness Measurement Technology for Thin Films on Sapphire Substrate

    Amount: $999,999.00

    Silicon-on-sapphire (SOS) integrated circuits have achieved popularity due to their high speed performance and low power consumption in radio frequency applications. An important aspect of the SOS fab ...

    STTRPhase II2018Department of Defense Defense Microelectronics Activity
  8. A Novel Process Modeling Framework for Linear Friction Welding

    Amount: $150,000.00

    Welding of aerospace structural components is an expensive process due to high material cost of titanium alloys, energy consumption, and CO2 emissions. Linear friction welding (LFW) is a solid state p ...

    SBIRPhase I2018Department of Defense Air Force
  9. Spouted Bed Reactor Designs for Thermal Desorption of Mercury Compounds

    Amount: $154,973.00

    Thermal desorption systems are being utilized to remove toxic mercury compounds from coal. However, high moisture level, poor mixing, and unsuitable heating rate reduce the efficiency of thermal desor ...

    SBIRPhase I2017Department of Energy
  10. Enhanced Dropwise Condensation for Improved Dry Cooling Efficiency

    Amount: $999,961.00

    A surface coating technology has been developed to improve the power plant cooling system efficiency. It is anticipated that more than 10% of both capital and operational cost saving can be achieved w ...

    SBIRPhase II2017Department of Energy

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