This letter presents a high-frequency boost converter using an accurate feedforward-path current sensor for the fast-load transient response. To operate with the switching frequency of up to 25 MHz, the proposed current sensor senses the inductor current with a fast-sensing response time of about 4.5 ns. It also provides more accurate sensing gain than previous current sensors. In addition, the adaptive on-time control method is used for the proposed converter to further enhance the transient responses. The converter has been fabricated using a 0.18-mu m CMOS process with a total chip area of 1.3 x 1.12 mm. It achieves a fast-load transient of only 1 mu s at a 400-mA load step, and peak efficiency of 91.5 and 88.2% at switching frequencies ...
Department of Electrical EngineeringThe rapid growth and development of Internet of Things (IoT) app...
A 1-V integrated CMOS current-mode boost converter implemented in a standard 3.3/5-V 0.6-mu m CMOS t...
Abstract:- This paper proposes a new control technique for single-phase boost power-factor-correctio...
DC-DC converters with a high switching frequency are very attractive when fast-response, and small-a...
An integrated fixed frequency adaptive-on-time DC-DC converter with fast transient response is prese...
Size and cost of a boost converter can be minimized by reducing the voltage overshoot and fastening ...
Loop gain analysis for performance evaluation of current sensors for switching converters is present...
In this work, techniques to design fast-response on-chip current sensor for buck converter (BC) with...
A high-voltage replica based current sensor is presented, along with challenges and design technique...
A novel average inductor current sensing circuit integrable in CMOS technologies is presented. It is...
A novel current-sensing circuit that can operate from 1MHz to 4MHz has been designed and implemented...
An integrated fixed-frequency adaptive-on-time DC-DC converter with fast transient response and high...
This paper presents a 5-V to 30-V current-mode boost converter for powering the drive circuit of a m...
To realize accurate current control for a boost converter, a precise measurement of the inductor cur...
The project proposed a configuration of CMOS current sensing circuit with offset-current cancellatio...
Department of Electrical EngineeringThe rapid growth and development of Internet of Things (IoT) app...
A 1-V integrated CMOS current-mode boost converter implemented in a standard 3.3/5-V 0.6-mu m CMOS t...
Abstract:- This paper proposes a new control technique for single-phase boost power-factor-correctio...
DC-DC converters with a high switching frequency are very attractive when fast-response, and small-a...
An integrated fixed frequency adaptive-on-time DC-DC converter with fast transient response is prese...
Size and cost of a boost converter can be minimized by reducing the voltage overshoot and fastening ...
Loop gain analysis for performance evaluation of current sensors for switching converters is present...
In this work, techniques to design fast-response on-chip current sensor for buck converter (BC) with...
A high-voltage replica based current sensor is presented, along with challenges and design technique...
A novel average inductor current sensing circuit integrable in CMOS technologies is presented. It is...
A novel current-sensing circuit that can operate from 1MHz to 4MHz has been designed and implemented...
An integrated fixed-frequency adaptive-on-time DC-DC converter with fast transient response and high...
This paper presents a 5-V to 30-V current-mode boost converter for powering the drive circuit of a m...
To realize accurate current control for a boost converter, a precise measurement of the inductor cur...
The project proposed a configuration of CMOS current sensing circuit with offset-current cancellatio...
Department of Electrical EngineeringThe rapid growth and development of Internet of Things (IoT) app...
A 1-V integrated CMOS current-mode boost converter implemented in a standard 3.3/5-V 0.6-mu m CMOS t...
Abstract:- This paper proposes a new control technique for single-phase boost power-factor-correctio...