SuperCool Series, Thermoelectric, Peltier Assemblies

Results:
7
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Series
Dimensions - Overall
Power - Cooling
Current
Weight
Power - Input
Heat Transfer Type
Operating Temperature
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SuperCool
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ImageProduct DetailPriceAvailabilityECAD ModelOperating TemperatureWeightSeriesHeat Transfer TypePower - CoolingCurrentVoltageFan LocationPower - InputDimensions - Overall
387000639
THERMOELECT ASSY LIQUID-AIR 202W
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Quantity
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PCB Symbol, Footprint & 3D Model
-20°C ~ 70°C
-
SuperCool
Liquid to Air
202 W
6.9 A
24 V
Cold Side / Warm Side
100 W
300mm L x 180mm W x 108mm H
387003326
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Quantity
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PCB Symbol, Footprint & 3D Model
-20°C ~ 60°C
14 lbs (6.4 kg)
SuperCool
Liquid to Air
140 W
6.4 A
30 V
Cold Side / Warm Side
-
230mm L x 150mm W x 109mm H
387000612
THERMOELECT ASSY AIR-AIR 166W
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Quantity
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PCB Symbol, Footprint & 3D Model
-20°C ~ 70°C
-
SuperCool
Air to Air
166 W
6.9 A
24 V
Cold Side / Warm Side
100 W
300mm L x 180mm W x 160mm H
387003325
THERMOELECT ASSY DIRECT-AIR 130W
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Quantity
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PCB Symbol, Footprint & 3D Model
-20°C ~ 70°C
5 lbs (2.3 kg)
SuperCool
Direct to Air
130 W
5 A
24 V
Cold Side / Warm Side
-
230mm L x 119mm W x 103mm H
387000624
THERMOELECT ASSY DIRECT-AIR 193W
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Quantity
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PCB Symbol, Footprint & 3D Model
-20°C ~ 70°C
-
SuperCool
Direct to Air
193 W
6.9 A
24 V
Cold Side / Warm Side
100 W
300mm L x 150mm W x 103mm H
387003324
THERMOELECT ASSY AIR-AIR 113W
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Quantity
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PCB Symbol, Footprint & 3D Model
-20°C ~ 70°C
6.0 lbs (2.7 kg)
SuperCool
Air to Air
113 W
4.9 A
24 V
Cold Side / Warm Side
-
230mm L x 150mm W x 139mm H
387004253
SLA-400-24-02-00-00 SUPERCOOL
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Quantity
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PCB Symbol, Footprint & 3D Model
-20°C ~ 60°C
-
SuperCool
Liquid to Air
325.81 W
13.3 A
24 V
Cold Side / Warm Side
319 W
329.3mm L x 157.2mm W x 173.6mm H

About  Thermoelectric, Peltier Assemblies

A thermoelectric (TE) module, also known as a Peltier assembly, is a semiconductor device that utilizes the Peltier effect to transfer heat from one side of the module to the other when a low voltage DC power source is applied. This unique phenomenon allows for cooling on one face of the module while simultaneously heating the opposite face. By reversing the polarity of the DC voltage, the direction of heat transfer can be reversed as well. TE modules can also generate an electric current when a temperature differential is applied across the device. This characteristic makes them versatile in applications where both heating and cooling are required, such as temperature regulation in electronic devices, environmental control systems, and scientific instrumentation. TE modules are classified based on various factors including the type of heat transfer, cooling power, current rating, voltage requirements, and overall dimensions. The choice of a specific TE module depends on the particular application's thermal management needs and desired performance characteristics. These modules find application in diverse industries, including automotive, aerospace, telecommunications, medical, and consumer electronics. They provide efficient and compact cooling solutions for electronic components, enabling precise temperature control and thermal stabilization. In summary, thermoelectric modules or Peltier assemblies harness the Peltier effect to achieve heat transfer and temperature control. Their ability to generate cooling or heating effects by applying a low voltage DC power source makes them invaluable in numerous industries where precise thermal management is essential.