Technical documents
Specifications
Brand
AdaptiveMaximum Cooling Capacity
0.4W
Maximum Temperature Difference
+74K
Maximum Current
800mA
Maximum Voltage
0.9V
Active Area
4 x 4mm
Active Area Length
4mm
Active Area Thickness
3mm
Active Area Width
4mm
Country of Origin
China
Product details
Peltier Effect Thermoelectric Module
Thermoelectric Modules - Peltier Effect
A range of semiconductor thermoelectric devices working on the Peltier effect. When supplied with a suitable electric current, they can either cool or heat. When subject to an externally applied temperature gradient these devices will generate a small amount of electrical power.The larger devices can be used for cooling or controlling the temperature of sub-assemblies. The small size of the mini module makes it ideally suited for cooling miniature electronic components such as infra-red detector chips, microwave IC's, fibre-optic lasers and detectors.,Alternatively, it may be used to minimise the effects of temperature coefficients on oscillator stability, reference voltages, amplifier offsets etc. by providing temperature control.
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Technical documents
Specifications
Brand
AdaptiveMaximum Cooling Capacity
0.4W
Maximum Temperature Difference
+74K
Maximum Current
800mA
Maximum Voltage
0.9V
Active Area
4 x 4mm
Active Area Length
4mm
Active Area Thickness
3mm
Active Area Width
4mm
Country of Origin
China
Product details
Peltier Effect Thermoelectric Module
Thermoelectric Modules - Peltier Effect
A range of semiconductor thermoelectric devices working on the Peltier effect. When supplied with a suitable electric current, they can either cool or heat. When subject to an externally applied temperature gradient these devices will generate a small amount of electrical power.The larger devices can be used for cooling or controlling the temperature of sub-assemblies. The small size of the mini module makes it ideally suited for cooling miniature electronic components such as infra-red detector chips, microwave IC's, fibre-optic lasers and detectors.,Alternatively, it may be used to minimise the effects of temperature coefficients on oscillator stability, reference voltages, amplifier offsets etc. by providing temperature control.