Grennerat, Vincent and Xavier, Pascal and Jeannin, Pierre-Olivier and Géczy, Attila (2025) Power Electronics Solar Inverter on a Biosourced and Biodegradable Substrate – Thermal Study. In: 2025 International Spring Seminar on Electronics Technology (ISSE).
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Abstract
This paper presents a comparative study between traditional and sustainable approaches on a power electronics inverter; it focuses on the thermal management of the DC-AC bridge thermal losses. The system is based on the design of the DC-AC stage of a commercial photovoltaic inverter, from which an as close as possible design copy was realized on a traditional printed circuit board flame retardant 4 (FR4) substrate, made of 4 copper layers (reference design). An adaptation of this design was prepared to implement it on a novel biobased and biodegradable substrate based on polylactic acid (PLA), flax fibers and biosourced flame retardant, with only 2 copper layers. Because this composite has a reduced glass transition temperature compared to FR4, it makes it more sensitive to intense thermal dissipation. In this system, the thermal dissipation is achieved through the PCB with thermal vias. An analytical modeling was performed to evaluate the thermal resistance of the vias in both designs and the resulting increase of temperature of the substrate. Thermal infrared measurements were then conducted on both designs, at selected operating points to evaluate the possibilities and limitations of the bio-substrate on such application.
| Item Type: | Conference or Workshop Item (Paper) |
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| Uncontrolled Keywords: | Sustainable electronics, power electronics, DC-AC inverter, bio-based PCB substrates, thermal management |
| Subjects: | T Technology / alkalmazott, műszaki tudományok > TK Electrical engineering. Electronics Nuclear engineering / elektrotechnika, elektronika, atomtechnika |
| Depositing User: | Dr. Balázs Illés |
| Date Deposited: | 19 Jan 2026 06:52 |
| Last Modified: | 19 Jan 2026 06:52 |
| URI: | https://real.mtak.hu/id/eprint/232089 |
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