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We also supply   

TEG Thermoelectric Power Module Selection
Part Number Specification
The following specification are based on hot side temperature of 230C (446F) and cold side of 50C (122F). Power generation will vary with DT ( Delta Temperature) The below modules are designed for Seebeck Effect applications
                                                 DT = Hot side - Cold side                    

PLEASE NOTE:   TEG1-12610-5.1 and TEG1-12611-6.0 are stock
                       ****** No Minimums on Stock TEG Modules******
Are stock Thermoelectric Power Modules designed for Seebeck effect.
 All other modules are custom made to order ****LOW Minimums apply !!



TEG1-1263-4.3
Size: 30mmx30mm
Open circuit voltage: 8.8volts
Internal resistance: 7 Ohm
Match load output voltage: 4.3V
Match load output current: 0.6A
Match load output Power: 2.6W
Heat flow through the module: About 60 watts
Heat flux: About 6.67watts/cm^2
                                                                TEG1-1268-4.3
Size: 35mmx35mm
Open circuit voltage*: 8.8volts
Internal resistance: 6.5 Ohm
Match load output* voltage: 4.3V
Match load output current: 0.66A
Match load output Power: 2.8W
Heat flow through the module: About 64 watts
Heat flux: About 5.22watts/cm^2
TEG1-12610-4.3
Size: 40mmx40mm
Open circuit voltage*: 8.8volts
Internal resistance: 7 Ohm
Match load output* voltage: 4.3V
Match load output current: 0.6A
Match load output Power: 2.6W
Heat flow through the module: About 60 watts
Heat flux: About 3.75watts/cm^2
          TEG1-12610-5.1    IN STOCK
                                            Size: 40mmx40mm
                                            Open circuit voltage: 8.6volts
                                            Internal resistance: 3 Ohm
                                            Match load output voltage: 4.2V
                                            Match load output current: 1.4A
                                            Match load output power: 5.9W
                                            Heat flow through the module: About 140 watts
Heat flux: About 8.8watts/cm^2



TEG1-12611-8.0
Size: 56mmx56mm
Open circuit voltage: 8.7volts
Internal resistance: 1.7 Ohm
Match load output voltage: 4.2V
Match load output current: 2.5A
Match load output power: 10.5W
Heat flow through the module: About 240 watts
Heat flux density: About 8watts/cm^2
            TEG1-12611-6.0   IN STOCK
                                             Size: 56mmx56mm
                                             Open circuit voltage: 8.6volts
                                             Internal resistance: 1.2 Ohm
                                             Match load output voltage: 4.2V
                                             Match load output current: 3.5A
                                             Match load output power: 14.7W
                                             Heat flow through the module: About 350 watts
Heat flux: About 11watts/cm^
    DT-OUTPUT CHART                    



We offer slitting services for Thermoelectric generator modules with very high temperature
cycling applications. This process protects the power module from the enormous temperature differentials which result in thermoelectric power generation environments  
with our 56 x 56 mm TEG1-12611-6.0 we slit the cold side to offer the ability of the size module to withstand thousands of cycles without degradation or failure.    
 Link below for Resistance Vs. Temperature for TEG1-12610-5.1 and TEG1-12611-6.0

 We also sell all hardware including
- Belleville spring washers for correct torque rating on all modules we sell.
- 4-40 stainless steel screw and nuts
All you require to build you own Thermoelectric Power Generators (TEG).
                   OR  Peltier cooler.
                    Please e-mail or call us!  1-800-769-2395 North America
                                          905-751-1362 international
                                                   CONTACT US
                                         www.thermoelectric-generator.com


                                                                          Revised 09/2009
                                                                          Kooler Device Corp.