Peltier – Thermoelectric Cooler Module Calculator


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Calculate the Thermoelectric (Peltier) cooling module that is best for your application

Click for instructions on how to use this Module Selector program.


Enter Cooling Requirements
Modules


DTmax of module:

°C
Need a starting point for DTmax?
70 °C is typical for an unpotted single-stage module
68 °C is typical for a potted module.
2
Heat Load (Q): watts
3
Hot-side Temperature: °C
4
Cold-side Temperature: °C
4
Potted:
Information on potted or sealed
(terms are used interchangeably)
modules can be found on the page
Moisture Protection & Ruggedizing

 

   
Module Calculations
width=16 DT:    - Temperature difference, Thot - Tcold.
width=16
DT/DTmax:    - Ratio of the module's operating temperature difference to the DTmax of the module.
width=16
l/lmax for lowest power:    - Ratio of the module's suggested operating current to the Imax of the module.
width=16
Q/Qmax for lowest power:    - Ratio of Q to Qmax of a module that's been optimized for minimum power consumption.
width=16
Qmax for lowest power:  - Qmax of a module that's been optimized for minimum power consumption.
width=16
Q/Qmax for smallest size:    - Ratio of Q to the minimum Qmax capable of meeting the cooling requirements.
width=16
Qmax for smallest size:  - Minimum Qmax of a module that will meet the cooling requirement. This generally translates to a module that is as physically small as possible.
Suggested Modules

Suggested modules for lowest power consumption

Click on the module's name to link to it's specifications.
Product
Imax
(amps)
Vmax
(volts)
Qmax
(watts)
DTmax
(unpotted)
DTmax
(potted)
Width
(mm)
Length
(mm)
Height
(mm)







Suggested modules for smallest size

Click on the module's name to link to it's specifications.
Product
Imax
(amps)
Vmax
(volts)
Qmax
(watts)
DTmax
(unpotted)
DTmax
(potted)
Width
(mm)
Length
(mm)
Height
(mm)


Graphs

Please select a module and click the GRAPH button





Summary Report and Contact Information


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Disclaimer: The suggestions provided in the design analysis are only estimations based on the limited data submitted by you and do not take into consideration many other relevant factors. It is the responsibility of the customer to verify the design analysis and test the product in the desired application. TE Technology, Inc. has made no promises with regard to the design analysis. TE Technology, Inc. disclaims all warranties in connection with the design analysis, express or implied, as to any matter whatsoever, including without limitation description, quality, design, performance, specifications, condition, merchantability, and fitness for any particular purpose.