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  • Performance Evaluation System for Thermoelectric Materials in Atmospheric Environment - F-PEM
  • Performance Evaluation System for Thermoelectric Materials in Atmospheric Environment - F-PEM
Performance Evaluation System for Thermoelectric Materials in Atmospheric Environment - F-PEMPerformance Evaluation System for Thermoelectric Materials in Atmospheric Environment - F-PEM

Performance Evaluation System for Thermoelectric Materials in Atmospheric Environment - F-PEM

  • Product Item : 67676
  • Category: Materials Science Instruments
  • Performance Evaluation System for Thermoelectric Materials in Atmospheric Environment - F-PEM
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Performance Evaluation System for Thermoelectric Materials in Atmospheric Environment - F-PEM

The F-PEM performance evaluation system for thermoelectric materials in atmospheric environments launched by the company can measure the power generation and heat flow rate generated by thermoelectric materials with load temperature differences in atmospheric environments. The thermoelectric conversion efficiency can be calculated based on large power generation and heat flow rates. At the same time, the system can also run long-term thermal cycling tests, which are applied to the development of new thermoelectric materials, as well as durability testing of commercial components under load and temperature.
application area
1. Measure the large power generation and heat flow rate of the thermoelectric module under air and load conditions;
2. Calculate the thermoelectric conversion efficiency through high power generation and heat flow rate;
3. Evaluate the durability of thermoelectric modules through long-term measurements.

Equipment characteristics
1. The output characteristics of the thermoelectric module can be evaluated under high temperature continuous loading in the atmospheric environment;
2. It is possible to repeatedly measure Pmax and continuously apply the load within a continuous time interval;
3. Measurement can be carried out under a constant load that is consistent with the actual usage environment of the thermoelectric module.
Equipment concept diagram
Power generation P=V I
Penetration heat flow rate Q=C (Tout Tin) v
(C: Water specific heat capacity v: Water flow rate)
Thermal electric conversion efficiency η = P/(P+Q)
Basic parameters
Model: F-PEM
Measurement values: thermoelectric conversion efficiency, power generation, heat flow rate
Sample size: Square 40mm sqr * 5-30mmT
Atmosphere: Air
Temperature range: room temperature to 600 ℃ (heating part)
External dimensions: W600 * D600 * H1700mm
Weight: Approximately 120Kg
Power supply: single-phase AC 200V, 5KW (main unit)
Single phase AC 100V, 1KW (PC)

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