Fans & Cooling
Axial fans, blowers, filter fans, heat sinks and thermoelectric.
Also searched as: axial fanblowerheat sinkcabinet fanpeltier
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12706 Thermoelectric Cooler Peltier Module
Size: 40x40 mmVoltage: 12 V
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15cm cooling cabinet fan
Fan Diameter: 15 cmPower: 36WVoltage: 220V
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172mm Fan 230V Electric Cabinet Ventilation
Fan Diameter: 172 mmVoltage: 230V
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70mm USB Cooling Fan
Bearing Type: Double Ball BearingFan Diameter: 70 mmPower Source: USBVoltage: 5V
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Aluminum Chipset Cooler
Dimensions: 60x30x8mmThickness: 8mmWeight: 20.5g
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Aluminum Heat Sink
Dimensions: 300x140x20MM
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Aluminum Heat Sink
Dimensions: 40x20mm, 50x20mm, 80x20mm, 100x20mm, 150x20mm
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Aluminum Heat Sink for LED Cooling
Dimensions: 20x20x6mm
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Cooling cabinet fan 220V electrical cabinet axial flow fan
Fan Type: Axial FlowVoltage: 220V
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DC Brushless Fan
Bearing Type: Sleeve BearingFan Dimensions: 25x10mm, 30x10mm, 35x10mm, 40x10mm, 50x10mmNumber of Blades: 14Voltage: 5V, 12V, 24V
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Dualchip 144W Peltier Cooler TEC112706
Power: 144 W
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Heatsink Radiator Cooling Fin, 8.8x8.8x5mm
Dimensions: 8.8x8.8x5mm
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High Power LED Heat Sink
Power Rating: 1W, 3W, 5W
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Industrial Electrical Cabinet Fan Filter 92 mm
Fan Diameter: 92 mm
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LED PCB Heat Sink
Base Plate Diameter: 20mmBase Plate Thickness: 1.5mm
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Peltier Cooler
Size: 23x23 mmVoltage: 5-8 V DC
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SR-01 Thermoelectric Cooler Peltier Module
Voltage: 5 V
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Silicone Heat Sink
Power Rating: 24W
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TEC1-12706 Peltier Cooler Module
Size: 40x40 mmVoltage: 12 V
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TEC1-24104/24106/24108//24110 Peltier cooling module
Size: 60x60 mmVoltage: 29 V
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USB Quiet Cabinet Fan for AV Cabinets
Airflow: 44 CFMCable Length: 110 cmControl: 0-40℃ thermostatCurrent: 1AVoltage: 5V
About fans & cooling
Fans and cooling components manage thermal loads in electronic systems and enclosures. This category includes axial fans, which move air parallel to the fan's axis; blowers, which generate higher static pressure and move air centrifugally; filter fans, which integrate a fan with a filtration medium for dust protection; heat sinks, passive devices that dissipate heat through conduction and convection; and thermoelectric coolers (Peltier devices), which create a temperature differential using the Peltier effect. Key selection parameters for fans include airflow (CFM or m³/h), static pressure (in. H₂O or Pa), noise level (dBA), operating voltage (VDC or VAC), and physical dimensions (mm). Heat sinks are characterized by thermal resistance (°C/W), fin geometry, and material, typically aluminum alloys (e.g., 6063-T5) or copper. Thermoelectric coolers are specified by maximum heat pump capacity (Qmax in W), maximum temperature differential (ΔTmax in °C), and current/voltage ratings. Common fan bearing types include sleeve, ball, and fluid dynamic. Materials for fan impellers and housings are often thermoplastics like PBT or ABS, sometimes with flame retardant additives.
How to choose
Selecting fans and cooling components begins with determining the required thermal dissipation. First, define the heat load (W) and the maximum allowable component or enclosure temperature. For fans, establish the necessary airflow (CFM or m³/h) and static pressure (in. H₂O or Pa) to maintain the desired temperature, considering system impedance. Next, consider the available space and mounting constraints to narrow down physical dimensions. Evaluate power requirements (VDC/VAC) and noise limitations (dBA). For heat sinks, calculate the required thermal resistance (°C/W) based on the heat source and ambient conditions, then choose a material and fin geometry that fits the space. For thermoelectric coolers, specify Qmax and ΔTmax based on the application's cooling needs and temperature difference requirements, then match to available power.