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April 1, 2026Energies0 citationsOpen Access

Evaluating the Use of a Thermoelectric Module Cooling to Increase the Power Density of Power Converters

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AAAbdullahi AbubakarCKChristian KlumpnerPWPatrick Wheeler

Key Points

  • The aim is to assess how thermoelectric module cooling can increase the power density of power converters.
  • Analyzed equivalent circuit model of a thermoelectric module using PLECS simulation.
  • Built experimental setup with power resistors for heat generation.
  • Conducted tests on a DC/DC converter under four cooling conditions.
  • Validated experimental results with PLECS software.
  • Reduction in power-module junction temperature with forced convection using a TEM.
  • 32% potential reduction in weight and size of converter magnetic components.
  • Improved power density observed with the addition of TEM-based cooling.

Abstract

This paper starts by analysing the equivalent circuit model of a Thermoelectric Module (TEM) with PLECS simulation by using the PLECS thermal block-set. The approach enables the evaluation of power-module losses when mounted on a sandwich assembly of a TEM, heatsink, and cooling fan. An experimental setup was first built using power resistors for controlled heat generation to be absorbed by the cooling system and validated with the simulation model. Experimental investigations were then carried out on a DC/DC converter under four cooling conditions: natural convection and forced convection without a TEM and then natural convection and forced convection with a TEM. The experimental results are validated using PLECS Software (version 4.8). This result demonstrates a reduction in the power-module junction temperature of the DC/DC converter when employing forced convection with a TEM compared to forced convection without a TEM. Furthermore, the results indicate about 32% potential weight and size reduction of the converter magnetic components, along with improved power density, through the integration of TEM-based cooling.

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Cite This Study

Abubakar et al. (2026) studied this question.

synapsesocial.com/papers/69cd7b575652765b073a955chttps://doi.org/10.3390/en19071709
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