This article proposes a scheme for balancing the voltage of series-connected insulated gate bipolar transistors (IGBTs), which is also very effective under short-circuit conditions. An optimized clamp-mode snubber is proposed, including an active-driver to balance the currents of the IGBTs during short-circuit, which in turn allows for a considerable reduction of the snubber capacitance. The approach is proven to be effective under short-circuit conditions by a maximum of 55 V voltage increment and a negligible difference in the current values. The effectiveness of the proposed approach is demonstrated through simulations in PSPICE software and experimental tests performed at 2 kV.

Voltage Balancing of Series IGBTs in Short-Circuit Conditions / Zarghani, M., Peyghami, S., Iannuzzo, F., Blaabjerg, F., Kaboli, S.. - In: IEEE TRANSACTIONS ON POWER ELECTRONICS. - ISSN 0885-8993. - 37:5(2022), pp. 5675-5686. [10.1109/TPEL.2021.3132456]

Voltage Balancing of Series IGBTs in Short-Circuit Conditions

Iannuzzo F.;
2022

Abstract

This article proposes a scheme for balancing the voltage of series-connected insulated gate bipolar transistors (IGBTs), which is also very effective under short-circuit conditions. An optimized clamp-mode snubber is proposed, including an active-driver to balance the currents of the IGBTs during short-circuit, which in turn allows for a considerable reduction of the snubber capacitance. The approach is proven to be effective under short-circuit conditions by a maximum of 55 V voltage increment and a negligible difference in the current values. The effectiveness of the proposed approach is demonstrated through simulations in PSPICE software and experimental tests performed at 2 kV.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/3015017
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