Aviation Electronics, Information Technology, Telecommunications, Electricals, and Controls (AVITEC)
Vol 8, No 2 (2026): August

Power-Loss and Efficiency Comparison of SiC C3M0075120D and GaN GS66508B in a DC–DC Buck Converter

Adi Setiawan (Institut Teknologi Dirgantara Adisutjipto)
Bambang Sudibya (Institut Teknologi Dirgantara Adisutjipto)
R. Nur Akhmad Triwibowo (Institut Teknologi Dirgantara Adisutjipto)
Okto Dinaryanto (Institut Teknologi Dirgantara Adisutjipto)



Article Info

Publish Date
29 Aug 2026

Abstract

The growing demand for high-efficiency power conversion has accelerated adoption of wide-bandgap (WBG) devices in DC-DC converters. While SiC and GaN MOSFETs outperform conventional silicon, direct quantitative comparisons under identical buck-converter conditions remain an area of active investigation. This simulation-based study investigates power losses and estimated efficiency of SiC C3M0075120D (1200 V, 75 m ) and GaN GS66508B (650 V, 50 m ) in a 200 V-to-100 V, 50 kHz DC-DC buck converter under identical loads (5 A and 10 A). Using LTspice simulations with manufacturer-supplied models and Double Pulse Test methodology for loss separation, the study explicitly distinguishes switching and conduction losses under fixed operating conditions, providing validated simulation-based quantification for these specific devices. The results indicate that for the GaN device achieves lower modeled total losses than the SiC device at 10 A (6.85 W vs. 17.05 W) and attains higher simulated estimated converter efficiency (99.31% vs. 98.25% at full load). For the two specific devices and simulated operating conditions examined, switching loss remains the dominant loss mechanism at 50 kHz. A frequency sensitivity analysis from 50 to 500 kHz reveals that the GaN device maintains approximately 60% lower losses across the frequency range, with absolute savings increasing from 10.2 W to 91.2 W. These findings apply specifically to the investigated devices and operating conditions, and the comparison involves devices with different voltage ratings. The methodology demonstrates the utility of LTspice as a pre-prototyping tool for WBG converter development, although experimental validation remains necessary to confirm estimated efficiency figures.

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Journal Info

Abbrev

avitec

Publisher

Subject

Aerospace Engineering Computer Science & IT Electrical & Electronics Engineering Engineering

Description

This journal is the scientific publications journal published by Department of Electrical Engineering, Sekolah Tinggi Teknologi Adisutjipto. It aims to promote and disseminate the research finding in the development of management theories and practices. It will provide a platform for academicians, ...