This paper investigates the use of the class-E inverter for power factor correction (PFC) applications. Analytical and state-space models are derived showing the class-E inverter’s capability of achieving inherent PFC operation with a constant duty cycle. The inherent PFC operation limits the controller responsibility to the regulation of the output voltage, which is key for resonant converters with challenging control. A converter incorporating a diode bridge, a class-E inverter, and a class-D rectifier is presented for the PFC stage in single-phase offline converters. A prototype is designed to validate the analysis and presented design method. The prototype operates with zero-voltage switching (ZVS) across the load range and achieves up ...
In this paper, a front end ac–dc power factor correction topology is proposed for plug-in hybrid ele...
This paper presents a class of soft-switched power factor correction circuits (PFC) based on the qua...
We present a new approach to design resonant dc-dc converters, that allows us to achieve both a more...
This paper investigates the use of the class-E inverter for power factor correction (PFC) applicatio...
Connection of nonlinear utility load har increased through resent years and is expected to continue ...
This paper presents the analysis and design of a resonant power factor correction (PFC) rectifier fo...
This paper presents a power factor correction (PFC) rectifier for single-phase offline converters. W...
Resonant converter topologies have the ability to eliminate switching losses through zero-voltage sw...
In this paper, we review the development of power factor correction circuits (PFCC) and present the ...
Rectifiers with Alternating Current (AC) input and Direct Current (DC) output are required in many a...
There is a large diversity of manufacturing, technical and medical practices that require consistent...
This paper presents an ac-dc converter topology for realization of power factor correction (PFC) vol...
An ac to dc converter is an integral part of any power supply unit used in the all electronic equipm...
Due to increase in modern power electronic systems the more emphasis is put on power quality. Nowada...
Resonant power converters represent a step further in the effort of increasing the operating frequen...
In this paper, a front end ac–dc power factor correction topology is proposed for plug-in hybrid ele...
This paper presents a class of soft-switched power factor correction circuits (PFC) based on the qua...
We present a new approach to design resonant dc-dc converters, that allows us to achieve both a more...
This paper investigates the use of the class-E inverter for power factor correction (PFC) applicatio...
Connection of nonlinear utility load har increased through resent years and is expected to continue ...
This paper presents the analysis and design of a resonant power factor correction (PFC) rectifier fo...
This paper presents a power factor correction (PFC) rectifier for single-phase offline converters. W...
Resonant converter topologies have the ability to eliminate switching losses through zero-voltage sw...
In this paper, we review the development of power factor correction circuits (PFCC) and present the ...
Rectifiers with Alternating Current (AC) input and Direct Current (DC) output are required in many a...
There is a large diversity of manufacturing, technical and medical practices that require consistent...
This paper presents an ac-dc converter topology for realization of power factor correction (PFC) vol...
An ac to dc converter is an integral part of any power supply unit used in the all electronic equipm...
Due to increase in modern power electronic systems the more emphasis is put on power quality. Nowada...
Resonant power converters represent a step further in the effort of increasing the operating frequen...
In this paper, a front end ac–dc power factor correction topology is proposed for plug-in hybrid ele...
This paper presents a class of soft-switched power factor correction circuits (PFC) based on the qua...
We present a new approach to design resonant dc-dc converters, that allows us to achieve both a more...