A high-light-load-efficiency hysteresis-controlled buck converter with adaptively clocked hysteresis dynamic comparator for IoT applications

Author:

Wang Hao,Luo Ping,Huang Jingwei,Xin Xiangwen

Funder

University of Electronic Science and Technology of China

Publisher

Elsevier BV

Reference21 articles.

1. Review of power conversion and energy management for low-power, low-voltage energy harvesting powered wireless sensors;Newell;IEEE Trans. Power Electron.,2019

2. Battery management technique to reduce standby energy consumption in ultra-low power IoT and sensory applications;Radfar;IEEE Trans. Circ. Syst. I,2020

3. A high-light-load-efficiency low-ripple-voltage PFM buck converter for IoT applications;Kim;IEEE Trans. Power Electron.,2022

4. A 12nA quiescent current and 86.2% light-load efficiency buck converter with sleep time control for IoT applications;Liu,2022

5. Clocked hysteresis control scheme with power-law frequency scaling in buck converter to improve light-load efficiency for IoT sensor nodes;Wu;IEEE Trans VLSI Syst,2018

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