Dual Cool Jet

Dual Cool Jet

Product catalog summary
Overview
Aavid Thermalloy's Dual Cool Jets (DCJs) are advanced cooling solutions that utilize a bellowing action to emit air pulses across heat sources. This action is powered by a piezoelectric actuator, creating a turbulent air flow that enhances heat transfer by entraining ambient air into a jet-like stream.
Key Features
  • Compact Design: Extremely small form factor with dimensions less than 2.5mm in height, 50mm in length, and 58mm in width.
  • Low Power Consumption: Ranges from 250mW to 850mW.
  • Low Noise Levels: Operates at less than 30dBA at a distance of 1 meter.
  • Durability: Contains no frictional moving parts, enhancing reliability.
  • High Turbulence: Provides three times the heat transfer compared to natural convection.
  • Entrainment Capability: Offers high volumetric flow for power consumption, ranging from 0.1CFM to 1.0CFM.
Applications
  • Enhances thermal transfer in natural convection heat sinks through entrained air flow.
  • Improves cooling potential of existing forced convection heat sinks by disrupting boundary layers.
  • Targets hot spots in confined spaces with directed turbulent air flow.
Product Specifications
SettingHighLow
Flow (CFM)0.93<0.24
Noise @ 1’ (dBA)5142
Power (mW)815255
Contact Information
USA: 1.855.32.AAVID
Europe: 39.051.764002
Asia: 86.21.6115.2000
Website: www.aavid.com
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Catalog excerpts

Dual Cool Jet-1

Dual Cool Jets Low Profile Air Movers DUAL COOL JETS Aavid Thermalloy’s Dual Cool Jets (DCJs) are forced convection cooling solutions that use a bellowing action to emit pulses of air across a heat source. The action is driven by a piezoelectric actuator within the DCJ to push air out and create a turbulent flow that entrains ambient air to create a jet-like stream and increase heat transfer. The DCJs’ unique design allows for an extremely small form and contains no frictional moving parts, allowing for greater reliability and durability in devices where space and weight are key issues. APPLICATIONS Utilize entrained air flow to increase the thermal transfer of natural convection heat sinks Break up boundary layers and increase the cooling potential of existing forced convection heat sinks Target hot spots in tight places with DCJs’ directed turbulent air flow No Frictional Moving Parts High Turbulence: 3x Heat Transfer than Natural Convection Entrainment: High Volumetric Flow for Power Consumption (0.1CFM to 1.0 CFM) PRODUCT SPECIFICATIONS Setting

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