A buck converter with maximum charging current control in achieving high tracking speed is presented. An adaptive delay compensation scheme is employed to keep the switching frequency at 850kHz within ±2.5% across the whole operation range. The integrated buck converter was fabricated using a 0.35μm CMOS process and all functions are verified by extensive measurements
Time-based control techniques for the design of high switching frequency buck converters are present...
A monolithic output-ripple-based buck converter with adaptive output and ultra-fast reference tracki...
Abstract — This DC-DC buck converter is able to operate up to 120-MHz switching frequency with peak ...
An integrated DC-DC hysteretic buck converter with ultrafast adaptive output transient response for ...
In recent years, the demand for fast reference tracking speed converter in high-speed adaptive suppl...
A highly integrated synchronous buck converter with a predictive dead time control for input voltage...
In this paper, a new control scheme for buck converters was proposed. The buck converter utilizes th...
An adaptive inverter-based dead-time controller for synchronous DC-DC converter is proposed. With th...
This paper presents an integrated synchronous buck converter for input voltages >12V with 10MHz swit...
With the rapid development of system-on-chip integration and continuously scaling-down power supply,...
Dynamic voltage scaling (DVS) is an effective strategy in reducing the power consumption of a proces...
Digitally controlled switching converter suffers from bandwidth limitation because of the additional...
This paper introduces a novel direct current to direct current (DC-DC) buck converter that uses a ps...
Digital current-mode control is a dual-loop control which potentially results in a better transient ...
The bandwidth achievable by using voltage mode control or current mode control in switch-mode power ...
Time-based control techniques for the design of high switching frequency buck converters are present...
A monolithic output-ripple-based buck converter with adaptive output and ultra-fast reference tracki...
Abstract — This DC-DC buck converter is able to operate up to 120-MHz switching frequency with peak ...
An integrated DC-DC hysteretic buck converter with ultrafast adaptive output transient response for ...
In recent years, the demand for fast reference tracking speed converter in high-speed adaptive suppl...
A highly integrated synchronous buck converter with a predictive dead time control for input voltage...
In this paper, a new control scheme for buck converters was proposed. The buck converter utilizes th...
An adaptive inverter-based dead-time controller for synchronous DC-DC converter is proposed. With th...
This paper presents an integrated synchronous buck converter for input voltages >12V with 10MHz swit...
With the rapid development of system-on-chip integration and continuously scaling-down power supply,...
Dynamic voltage scaling (DVS) is an effective strategy in reducing the power consumption of a proces...
Digitally controlled switching converter suffers from bandwidth limitation because of the additional...
This paper introduces a novel direct current to direct current (DC-DC) buck converter that uses a ps...
Digital current-mode control is a dual-loop control which potentially results in a better transient ...
The bandwidth achievable by using voltage mode control or current mode control in switch-mode power ...
Time-based control techniques for the design of high switching frequency buck converters are present...
A monolithic output-ripple-based buck converter with adaptive output and ultra-fast reference tracki...
Abstract — This DC-DC buck converter is able to operate up to 120-MHz switching frequency with peak ...