This paper presents a comparative study of lateral and trench power MOSFETs in hard switching synchronous buck converters operating in the multi-MHz frequency range based on a mixed-mode device/circuit modeling approach. Detailed power loss analysis is performed for the control and synchronous MOSFETs. It is observed that the inherently low gate charge QG of lateral MOSFETs offers significant reduction in gate drive losses, which become increasingly important in the multi-MHz frequency range and especially light load conditions. Furthermore, the power loss due to the reverse recovery of the SyncFET body diode becomes a major limiting factor in the MHz frequency range for both trench and lateral MOSFETs. This factor will eventually determine...
This paper investigates the poor body diode reverse recovery characteristics of lateral power MOSFET...
Designers of low-voltage dc-to-dc converters have two main concerns: reducing size and reducing loss...
Abstract—This work is about the analysis of dead time variation on switching losses in a Zero Voltag...
This paper presents a comparative study of lateral and trench power MOSFETs in hard switching synchr...
The purpose of this paper is to comprehensively investigate the performance perspectives and theoret...
The paper deals with the optimal selection of low side and high side switches, in a synchronous buck...
This paper presents an evaluation of laterally double-diffused MOS transistors in synchronous dc-dc ...
This paper presents an evaluation of laterally double-diffused MOS transistors in synchronous dc-dc ...
For the first time, power loss comparison between 20V-rated devices including a trench MOSFET and fo...
Evolutions in microprocessor technology require the use of a high-frequency synchronous buck convert...
DC/DC converters to power future CPU cores mandate low-voltage power metal-oxide semiconductor field...
DODC converters to power future CPU cores mandate low-voltage power metal-oxide semiconductor field-...
Evolutions in integrated circuit technology require the use of a high-frequency synchronous buck con...
This chapter provides an overview of power MOSFET (metal oxide semiconductor field effect transistor...
Numbers of switching-loss-reduction methods recently proposed for MHz-switching buck converters are ...
This paper investigates the poor body diode reverse recovery characteristics of lateral power MOSFET...
Designers of low-voltage dc-to-dc converters have two main concerns: reducing size and reducing loss...
Abstract—This work is about the analysis of dead time variation on switching losses in a Zero Voltag...
This paper presents a comparative study of lateral and trench power MOSFETs in hard switching synchr...
The purpose of this paper is to comprehensively investigate the performance perspectives and theoret...
The paper deals with the optimal selection of low side and high side switches, in a synchronous buck...
This paper presents an evaluation of laterally double-diffused MOS transistors in synchronous dc-dc ...
This paper presents an evaluation of laterally double-diffused MOS transistors in synchronous dc-dc ...
For the first time, power loss comparison between 20V-rated devices including a trench MOSFET and fo...
Evolutions in microprocessor technology require the use of a high-frequency synchronous buck convert...
DC/DC converters to power future CPU cores mandate low-voltage power metal-oxide semiconductor field...
DODC converters to power future CPU cores mandate low-voltage power metal-oxide semiconductor field-...
Evolutions in integrated circuit technology require the use of a high-frequency synchronous buck con...
This chapter provides an overview of power MOSFET (metal oxide semiconductor field effect transistor...
Numbers of switching-loss-reduction methods recently proposed for MHz-switching buck converters are ...
This paper investigates the poor body diode reverse recovery characteristics of lateral power MOSFET...
Designers of low-voltage dc-to-dc converters have two main concerns: reducing size and reducing loss...
Abstract—This work is about the analysis of dead time variation on switching losses in a Zero Voltag...