• TEC sectional view

  • Assemblies with TEC

    We provide our customers with competent advice in respect of optimum technical solutions for mounting in different packages.
  • Solution to the mounting

    A solution for installation in different packages
  • Thermocouples connected in series

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    Date:  27-11-2012, 17:44
    Category:  TEC

     

    Parameters

    Imax

    Input current resulting in greatest ∆T (∆Tmax, Amps);

    Umax

    Voltage at ∆Tmax, (Volts)

    ∆Tmax

    Maximum temperature difference a module can achieve, (°C)

    Qmax

    Maximum amount of heat that can be absorbed at cold face (at I=Imax and ∆T=0), (Watts).

    Tc

    Temperature of cold face during operation, (°C)

    Th

    Temperature of hot face during operation, (°C)


    Date:  13-10-2012, 11:58
    Category:  TEC

    MODEL

    Load output voltage Load output power Load output current Internal resistance, measured under 25°C at 1000Hz Design Hot Side Temperature Design Cold Side
    Temperature
    Overall dimensions More
    Info.
    U, Volts
    Watts
    A
    R, Ohms
    Tdh, °C
    Tdc, °C
    mm
     
    PGM-15-40 5,6 10,85 1,94 2,84 220 50 40x40x3,15
    PGM-32-62 5,6 23,5 4,2 1,33 220 50 62x62x4,0

    Date:  12-11-2011, 14:34
    Category:  TEC

    A thermoelectric cooler (TEC), also referred to as Peltier element, is a single-stage or multi-stage thermoelectric battery of thermocouples connected in series or in parallel. The so-called Peltier effect is generated when electrical current flows through the thermocouples in the TEC; this causes cooling on one side of the TEC while heating is caused on the other side. The change of polarity of the electric current supplied also changes the direction of heat flow. Thanks to this circumstance, the temperature of the object to be cooled can be precisely maintained when the ambient temperature changes or thermal output is released. These beneficial properties of Peltier elements are widely used for temperature stabilisation of temperature-sensitive elements e.g. in laser technology and radio electronics. They are used in all areas in which cooling is required with high reliability and small dimensions without using any moving parts.


    Date:  10-11-2011, 00:10
    Category:  TEC

    Parameters

    Imax

    Input current resulting in greatest ∆T (∆Tmax), (Amps);

    Umax

    Voltage at ∆Tmax, (Volts)

    ∆Tmax

    Maximum temperature difference a module can achieve, (°C)

    Qmax

    Maximum amount of heat that can be absorbed at cold face (at I=Imax and ∆T=0), (Watts).

    Tc

    Temperature of cold face during operation, (°C)

    Th

    Temperature of hot face during operation, (°C)


    Date:  9-11-2011, 23:43
    Category:  TEC

    ,

    Parameters

    Imax

    Input current resulting in greatest ∆T (∆Tmax, Amps);

    Umax

    Voltage at ∆Tmax, (Volts)

    ∆Tmax

    Maximum temperature difference a module can achieve, (°C)

    Qmax

    Maximum amount of heat that can be absorbed at cold face (at I=Imax and ∆T=0), (Watts).

    Tc

    Temperature of cold face during operation, (°C)

    Th

    Temperature of hot face during operation, (°C)


    Date:  9-11-2011, 01:27
    Category:  TEC

    Parameters

    Imax

    Input current resulting in greatest ∆T (∆Tmax), (Amps);

    Umax

    Voltage at ∆Tmax, (Volts)

    ∆Tmax

    Maximum temperature difference a module can achieve, (°C)

    Qmax

    Maximum amount of heat that can be absorbed at cold face (at I=Imax and ∆T=0), (Watts).

    Tc

    Temperature of cold face during operation, (°C)

    Th

    Temperature of hot face during operation, (°C)

    Model

    Umax.

    Imax.

    Qmax.

    ∆Tmax.

    A

    B

    C

    D

    H

    Ø center hole

    Volts

    Amps

    Wats

    °C

    mm

    mm

    mm

    mm

    mm

     mm

    TEC-5,4-6,0-18,0-70-25-CH2,5

    5,4

    6,0

    18,0

    70

    25,0

    25,0

    25,0

    52,0

    3,3

    2,5

    TEC-8,6-3,9-18,7-72-30-CH10 8,6 3,9 18,7 72 30,0 30,0 30,0 30,0 4,5 10,0
    TEC-14,4-1,2-10,0-69-54-CH30 14,4 1,2 10,0 69 54,0 54,0 54,0 54,0 3,2 30,0

    TEC-14,4-1,2-10,0-69-45,6-CH24

    14,4

    1,2

    10,0

    69

    45,6

    45,6

    45,6

    45,6

    3,2

    24,0

    TEC-15,4-6,0-51,0-71-40-CH10

    15,4

    6,0

    51,0

    71

    40,0

    40,0

    40,0

    40,0

    3,7

    10,0

    TEC-15,4-3,9-33,4-72-40-CH4,7

    15,4

    3,9

    33,4

    72

    40,0

    40,0

    40,0

    40,0

    4,8

    4,7

    TEC-15,4-3,9-33,4-71-30-CH8,5

    15,4

    3,9

    33,4

    71

    30,0

    30,0

    30,0

    30,0

    3,2

    8,5

    TEC-24,7-11,4-173,0-69-40-CH3,0

    24,7

    11,4

    173

    69

    40,0

    40,0

    40,0

    40,0

    3,0

    3,0


    Date:  9-11-2011, 01:25
    Category:  TEC

     

    Parameters

    Imax

     

    Umax

    Voltage at ∆Tmax, (Volts)

    ∆Tmax

    Maximum temperature difference a module can achieve, (°C)

    Qmax

    Maximum amount of heat that can be absorbed at cold face (at I=Imax and ∆T=0), (Watts).

    Tc

    Temperature of cold face during operation, (°C)

    Th

    Temperature of hot face during operation, (°C)


    Date:  9-11-2011, 01:21
    Category:  TEC

     

    Parameters

    Imax

    Input current resulting in greatest ∆T (∆Tmax, Amps);

    Umax

    Voltage at ∆Tmax, (Volts)

    ∆Tmax

    Maximum temperature difference a module can achieve, (°C)

    Qmax

    Maximum amount of heat that can be absorbed at cold face (at I=Imax and ∆T=0), (Watts).

    Tc

    Temperature of cold face during operation, (°C)

    Th

    Temperature of hot face during operation, (°C)


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