2019•Unpublished venueRequires access

A high efficiency, fast response buck converter for low voltage applications

M S Sunita, B S Rakshitha, K Sankirthana, Shashidhar Tantry

Open publisher page 2 citations

Abstract

A power efficient, fast response buck converter is presented in this paper using the adaptive on-time I2control technique. The buck converter is designed to produce an output voltage of 0.3V for a 1.5V input voltage. It is implemented on Cadence Virtuoso using a generic 45nm CMOS process. The performance of the converter is studied for different values of the output ripple. It is seen that the power efficiency of the converter can be as high as 98.5% while maintaining constant switching frequency of 50MHz, which is a significant improvement over the existing work. The response of the converter to varying input voltage is found to be 45ns which is 2.25 times the switching period.

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What this paper is about

A power efficient, fast response buck converter is presented in this paper using the adaptive on-time I2control technique. The buck converter is designed to produce an output voltage of 0.3V for a 1.5V input voltage. It is implemented on Cadence Virtuoso using a generic 45nm CMOS process. The performance of the converter is studied for different values of the output ripple. It is seen that the power efficiency of the converter can be as high as 98.5% while maintaining constant switching frequency of 50MHz, which is a significant improvement over the existing work. The response of the converter to varying input voltage is found to be 45ns which is 2.25 times the switching period.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A power efficient, fast response buck converter is presented in this paper using the adaptive on-time I2control technique. The buck converter is designed to produce an output voltage of 0.3V for a 1.5V input voltage. It is implemented on Cadence Virtuoso using a generic 45nm CMOS process. The performance of the converter is studied for different values of the output ripple. It is seen that the power efficiency of the converter can be as high as 98.5% while maintaining constant switching frequency of 50MHz, which is a significant improvement over the existing work. The response of the converter to varying input voltage is found to be 45ns which is 2.25 times the switching period.

Key concepts: Buck converter, Voltage, Cadence, CMOS, Ripple, Buck–boost converter, Computer science, Power (physics)

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