This paper deals with heatsink design and verification of IGBT-based full-bridge converter of rated power 150 kVA. The converter is designed for air cooling-based installation of total power 1.35 MVA operating in medium-voltage power system. In order to exactly determine the cooling ability of the designed system, dc current analysis has been applied to IGBT modules connected in series
The paper discusses an approach to the design of the forced air-cooling heat sink for power electron...
Power Electronics is an advanced technology and it plays a critical and vital role in the establishm...
This report presents a design methodology to develop electro-thermal models for High Power Density C...
Power losses in high power HVDC converters are dominated by those that occur within the power electr...
Abstract—This paper presents a design procedure for a full-bridge converter with IGBT transistors lo...
This paper discusses concepts of a 20 kVA power converter design and key differences between discret...
A simplified dynamic thermal analysis approach is proposed for the estimation of the peak junction ...
This paper proposes a novel analytical approach for accurate calculation of IGBT losses in rectifier...
This paper presents an in-depth analytical and experimental investigation of an indirect DC-DC conve...
Abstract--This paper studies a DC/DC converter based on IGBT-bridges which is suitable for connectio...
The power losses in switching devices have a direct effect on the maximum converter power. For a vol...
Thermal loading of power devices are closely related to the reliability performance of the whole con...
The proper selection of the heat sink, which is attached at the insulated-gate bipolar transistor (I...
For a 100 kW power converter module for fast charging application, the loss and thermal analysis are...
Nowadays, the electric power conversion from one form to another is necessary and important in our e...
The paper discusses an approach to the design of the forced air-cooling heat sink for power electron...
Power Electronics is an advanced technology and it plays a critical and vital role in the establishm...
This report presents a design methodology to develop electro-thermal models for High Power Density C...
Power losses in high power HVDC converters are dominated by those that occur within the power electr...
Abstract—This paper presents a design procedure for a full-bridge converter with IGBT transistors lo...
This paper discusses concepts of a 20 kVA power converter design and key differences between discret...
A simplified dynamic thermal analysis approach is proposed for the estimation of the peak junction ...
This paper proposes a novel analytical approach for accurate calculation of IGBT losses in rectifier...
This paper presents an in-depth analytical and experimental investigation of an indirect DC-DC conve...
Abstract--This paper studies a DC/DC converter based on IGBT-bridges which is suitable for connectio...
The power losses in switching devices have a direct effect on the maximum converter power. For a vol...
Thermal loading of power devices are closely related to the reliability performance of the whole con...
The proper selection of the heat sink, which is attached at the insulated-gate bipolar transistor (I...
For a 100 kW power converter module for fast charging application, the loss and thermal analysis are...
Nowadays, the electric power conversion from one form to another is necessary and important in our e...
The paper discusses an approach to the design of the forced air-cooling heat sink for power electron...
Power Electronics is an advanced technology and it plays a critical and vital role in the establishm...
This report presents a design methodology to develop electro-thermal models for High Power Density C...