This letter presents a hardware demonstrator of an all-SiC three-level T-type (3LTT) inverter with the common-mode (CM) EMI filter stages placed on the DC input instead of the AC output side, targeting, for example, high-efficiency PV applications. The extensive experimental characterization shows that state-of-the-art SiC transistors and a DC-side CM filter enable an unprecedented peak/full-load efficiency of 99.4% (calorimetric measurement) at 12.5 kW and a power density of 2.4 kW/dm3 (39 W/in3). The demonstrator fulfills CISPR 11 Class A EMI regulations as well as upcoming EMI standards for the frequency range of 9–150 kHz. Compared to other high-efficiency converters, which often employ bridge legs with more output voltage levels, the described 3LTT concept thus offers a very favorable trade-off between complexity and performance.
All‐SiC 99.4%‐efficient three‐phase T‐type inverter with DC‐side common‐mode filter
Marciano, Daniele;Busatto, Giovanni;
2023-01-01
Abstract
This letter presents a hardware demonstrator of an all-SiC three-level T-type (3LTT) inverter with the common-mode (CM) EMI filter stages placed on the DC input instead of the AC output side, targeting, for example, high-efficiency PV applications. The extensive experimental characterization shows that state-of-the-art SiC transistors and a DC-side CM filter enable an unprecedented peak/full-load efficiency of 99.4% (calorimetric measurement) at 12.5 kW and a power density of 2.4 kW/dm3 (39 W/in3). The demonstrator fulfills CISPR 11 Class A EMI regulations as well as upcoming EMI standards for the frequency range of 9–150 kHz. Compared to other high-efficiency converters, which often employ bridge legs with more output voltage levels, the described 3LTT concept thus offers a very favorable trade-off between complexity and performance.File | Dimensione | Formato | |
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2023 Electronics Letters - 2023 - Anderson - All‐SiC 99 4 ‐efficient three‐phase T‐type inverter with DC‐side common‐mode filter.pdf
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