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    Peltier Modules

    How do Petlier Modules use the Seebeck Effect?

    Petlier may be be used as a thermoelectric power generator in which they can generate energy using the "Seebeck effect". It works when two wires made from different metals are joined at two ends to form a loop, a voltage develops in the circuit when the two junctions are maintained at different temperatures.

    Electrons present in the hotter metal flow toward the cooler metal because electrons move to where energy is lower. In Petlier Modules, the Seebeck Effect develops a current flow by applying a temperature difference on both sides of the Peltier module.

    How does the Petlier Effect work?

    The Petlier Effect or Thermoelectric effect is similar to The Seebeck Effect but is mainly used for heating and cooling purposes. When electricity is passed through the module, electrons evolve in one semiconductor element and absorbed by the other.

    This allows one side to absorb heat and the other to radiate heat, so the hot and cold sides can be switched depending on the current direction. This is why these modules are good reversing cooling/heating effects.

    Applications for Petlier Modules include:

    • Consumer products (portable coolers, AC units)
    • Science/Medical
    • Military
    • Engineering projects
    • Ecology/Energy

    They possess some key features including

    • Extremely long life
    • Almost perfect temperature control
    • Durable and flexible
    • Easy to install and maintain
    • Safe and convenient

    Browse the broad range of Petlier Devices RS have to offer and order today for next day delivery

    151 Products showing for Peltier Modules

    Adaptive
    11.7W
    +74K
    2.2A
    8.8V
    18 x 18mm
    18mm
    3.8mm
    18mm
    -
    Laird Technologies
    2.4W
    +67°C
    2.1A
    2.06V
    9 x 9mm
    9mm
    3.4mm
    9mm
    -
    European Thermodynamics
    6.8W
    +150K
    6.8A
    2.5V
    62 x 62mm
    62mm
    5.3mm
    62mm
    -
    Adaptive
    85.6W
    +74K
    3.9A
    35.5V
    40 x 40mm
    40mm
    3.6mm
    40mm
    -
    Laird Technologies
    39.1W
    +75°C
    3.9A
    16.4V dc
    29.7 x 29.7mm
    29.7mm
    3.2mm
    29.7mm
    -
    Adaptive
    236.5W
    +68K
    15.4A
    25V
    40 x 40mm
    40mm
    3.3mm
    40mm
    -
    Adaptive
    1.74W
    +250°C
    600mA
    5.7V
    22 x 22mm
    22mm
    3.2mm
    22mm
    -
    Adaptive
    -
    -
    -
    -
    30 x 15mm
    30mm
    15mm
    -
    -
    Adaptive
    -
    -
    5A
    20.1V
    40 x 40mm
    -
    3.6mm
    -
    -
    Adaptive
    1.6W
    +74K
    3.2A
    0.9V
    8 x 8mm
    8mm
    3.8mm
    8mm
    -
    European Thermodynamics
    3.1W
    +150K
    3.1A
    7V
    40 x 40mm
    40mm
    3.8mm
    40mm
    -
    European Thermodynamics
    1.49W
    -
    300mA
    9.96V
    40 x 40mm
    40mm
    6.8mm
    40mm
    -
    European Thermodynamics
    6.6W
    +175°C
    5.7A
    2.3V
    30 x 30mm
    30mm
    3.5mm
    30mm
    -
    Adaptive
    10.4W
    +74K
    2.2A
    7.6V
    12 x 25mm
    12mm
    3.8mm
    25mm
    -
    Adaptive
    82.2W
    +71K
    8.4A
    15.7V
    40 x 40mm
    40mm
    3.8mm
    40mm
    -
    Adaptive
    32.8W
    +73K
    6A
    8.8V
    30 x 30mm
    30mm
    3.9mm
    30mm
    -
    Adaptive
    151.4W
    +68K
    15.4A
    15.8V
    40 x 40mm
    40mm
    3.3mm
    40mm
    -
    Laird Technologies
    31.4W
    +75°C
    6A
    9.2V dc
    29.7 x 29.7mm
    29.7mm
    3.8mm
    29.7mm
    -
    European Thermodynamics
    15.6W
    -
    4.16A
    7.5V
    62 x 62mm
    62mm
    4mm
    62mm
    -
    Adaptive
    -
    -
    8A
    20.1V
    40 x 40mm
    -
    3.3mm
    -
    -
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