Feature

●【The Principle of Heat Generation】: Thermal energy flows into the thermoelectric generator from the high temperature side. When the thermal energy is discharged from the low temperature side through the thermoelectric power generation piece, part of the thermal energy flowing into the device does not exotherm, and becomes electric energy in the device, and outputs DC voltage and current. A larger voltage can be obtained by connecting a plurality of such devices.
●【Usage】: One side of teg peltier(with word) is close to the heat dissipating surface (cold end), the non-word side is placed on the heat absorbing surface (hot end), the red line is connected to the positive pole, the black line is connected to the negative pole, and the power can be generated when there is a temperature difference.
●【High Reliability】: SP1848-27145 thermoelectric peltier teg module has no extra moving parts, easy to move, light weight. Thermoelectric generator module has long life, high reliability .
●【Note】: The temperature difference will appear on both sides of the 12 volt power supply cooling chip. When one side is cold and one side is hot, do not energize the refrigerator for a long time without a radiator. Otherwise, the inside of the refrigerator will be overheated or burn.
●【After-sale Service】:If you have any question about the thermal electric generator ,please contact with us and our professional customer team will answer and handle your question in time.


Description

The thermoelectric module made by unique technology can directly convert heat energy into electric energy! The working temperature is 150 ℃!

  • When there is a temperature difference between the two ends of the thermoelectric module, the modified module can generate continuous DC power, and the greater the temperature difference between the two ends of the module, the greater the DC power generated, and the thermoelectric conversion efficiency will also be improved. When in use, the flexible graphite thermal conductive paper with high temperature resistance and good thermal conductivity is pasted on both ends of the module, which can improve the thermal conductivity of the module and the efficiency and durability of the device.

About the Temperature Difference

  • 20 Degree Temperature Difference: Open-circuit Voltage
  • 0.97V,Generated Current: 225MA
  • 40 Degree Temperature Difference: Open Circuit Voltage 1.8V,
  • Generated Current: 368MA
  • 60 Degree Temperature Difference: Open Circuit Voltage 2.4V,
  • Generated Current: 469MA
  • 80 Degree Temperature Difference: Open Circuit Voltage 3.6V,
  • Generated Current: 558MA
  • 100 Degree Temperature Difference: Open Circuit Voltage 4.8V,
  • Generated Current: 669MA

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