Fans & Cooling
Axial fans, blowers, filter fans, heat sinks and thermoelectric.
Also searched as: axial fanblowerheat sinkcabinet fanpeltier
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200mm AC Axial Flow Cooling Fans
Fan Size: 200 mmPower Type: AC
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42" 1HP 720RPM DIRECT DRIVE PRTBL BLOWER
Airflow: 2929.9 CFMFan Speed: 720 RPMHorsepower: 1 HPSize: 42"
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48V 250mm Ball Bearing Axial Flow Fan
Bearing Type: Ball BearingFan Diameter: 250 mmFan Type: Axial FlowVoltage: 48V
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60X60X15mm 60mm 5V 12V 24V Dual Ball Bearing PWM Cooling Fan
Bearing Type: Dual Ball BearingFan Size: 60x60x15 mmVoltage: 5V 12V 24V
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8 Inches 220V Single Inlet Metal Centrifugal Exhaust Fan
Fan Diameter: 8 InchesInlet Type: Single InletVoltage: 220V
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800mm External Rotor Axial Fan
Diameter: 800 mm
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AC axial flow Fan
Size: 80x38 mm
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Aluminum Box Heat Sink
Material Grade: 6063-5
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Aluminum Extrusion Heat Sink
Material Grade: AL 6063
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Aluminum Heat Sink for LED Spot Lighting
Beam Angle: 15°, 24°, 36°, 55°CRI: >90Color Temperature: 2700-4500K
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Ball Bearing Small Axial Fan
Diameter: 3 inchSize: 80x80x25 mmVoltage: 110V 220V 230V 380V
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Electric 900W 3-Speed Carpet Air Mover
Power: 900WSpeed Settings: 3-Speed
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Silver Diamond Mesh Thermal Management Heat Sink
Hole Shape: Diamond, Square, HexagonalThickness: 0.05mm - 5.0mm
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Tec Thermoelectric Cooler
Delta Tmax: 67ºCDimension: 40*40mm
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Tec1-07115 Powerful Semiconductor Peltier
Size: 30*30mm
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Tec1-13920 Thermoelectric Semiconductor
Power: 194.6W
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Tes1-04905 High Delta T 65℃ Thermoelectric Peltier
Delta T: 65℃
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Thermoelectric Semiconductor Peltier Cooling Tec Module
Max Temperature Difference: 66℃
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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.