A single power-conversion LED backlight driving system with high power factor control is proposed. The proposed converter is composed of a full-bridge diode rectifier and a quasi-resonant flyback converter. The proposed converter provides a simple structure, a low cost, and high power factor of 0.988 by using the novel control algorithm without the PFC circuit. To achieve good controllability, the novel control algorithm is transformed by adding a nominal value predetermined to relax its control burden. Detailed analysis and experimental results for a 90-W prototype are discussed.X1144sciescopu
Abstract The incandescent and fluorescent lighting systems which have been the most prominent electr...
The paper illustrates the design and operation of a line fed, solid state lamp driver based on the a...
In this thesis, design and implementation of power drives for light-emitting diode (LED) strings is ...
A novel single-switch single-stage high power factor LED driver is proposed by integrating a flyback...
This paper presents a new control strategy for power factor correctors (PFCs) used to drive high-bri...
This paper proposes a single-stage, high power-factor light-emitting diode (LED) driver with a self-...
This paper presents and implements a single-stage high-power-factor light-emitting diode (LED) drive...
This paper deals with power factor correction (PFC) in high-brightness (HB) light emitting diode (LE...
[[abstract]]In this paper, a multistring light-emitting diode (LED) backlight driving system for liq...
[[abstract]]In this paper, a high power factor LED driver with hot swap, smart output voltage regula...
This work deals with the design and implementation of an AC to DC LED driving circuit consisting of ...
A highly power-efficient light-emitting diode (LED) backlight driving system for liquid crystal disp...
This paper presents a new control strategy for power factor correctors (PFCs) that are used to drive...
A novel control scheme of Quasi-Resonant (QR) mode and valley-switching for high-Power-Factor (PF) a...
This paper focuses on a single-switch buck-boost (SSBB) converter for light emitting diode (LED) lig...
Abstract The incandescent and fluorescent lighting systems which have been the most prominent electr...
The paper illustrates the design and operation of a line fed, solid state lamp driver based on the a...
In this thesis, design and implementation of power drives for light-emitting diode (LED) strings is ...
A novel single-switch single-stage high power factor LED driver is proposed by integrating a flyback...
This paper presents a new control strategy for power factor correctors (PFCs) used to drive high-bri...
This paper proposes a single-stage, high power-factor light-emitting diode (LED) driver with a self-...
This paper presents and implements a single-stage high-power-factor light-emitting diode (LED) drive...
This paper deals with power factor correction (PFC) in high-brightness (HB) light emitting diode (LE...
[[abstract]]In this paper, a multistring light-emitting diode (LED) backlight driving system for liq...
[[abstract]]In this paper, a high power factor LED driver with hot swap, smart output voltage regula...
This work deals with the design and implementation of an AC to DC LED driving circuit consisting of ...
A highly power-efficient light-emitting diode (LED) backlight driving system for liquid crystal disp...
This paper presents a new control strategy for power factor correctors (PFCs) that are used to drive...
A novel control scheme of Quasi-Resonant (QR) mode and valley-switching for high-Power-Factor (PF) a...
This paper focuses on a single-switch buck-boost (SSBB) converter for light emitting diode (LED) lig...
Abstract The incandescent and fluorescent lighting systems which have been the most prominent electr...
The paper illustrates the design and operation of a line fed, solid state lamp driver based on the a...
In this thesis, design and implementation of power drives for light-emitting diode (LED) strings is ...