A novel low quiescent current PFM method with independent threshold for buck switching converters

Author:

Shao Bin

Publisher

Springer Science and Business Media LLC

Subject

Surfaces, Coatings and Films,Hardware and Architecture,Signal Processing

Reference16 articles.

1. Chang, R. C.-H., Chen, H.-M., Chia, C.-H., & Lei, P.-S. (2009). An exact current-mode PFM boost converter with dynamic stored energy technique. IEEE Transactions on Power Electronics, 24(4), 1129–1134.

2. Sahu, B., & Rincón-Mora, G. A. (2007). An accurate, low-voltage, CMOS switching power supply with adaptive on-time pulse-frequency modulation (PFM) control. IEEE Transactions on Circuits and Systems, 54(2), 312–321.

3. Das, N., & Kazimierczuk, M.K. (2005). Power losses and efficiency of buck PWM DC–DC power converter. In Proceedings on electrical insulation conference and electrical manufacturing expo (pp. 417–423). Baltimore: IEEE.

4. Man, T. Y., Mok, P. K. T., & Chan, M. (2008). An auto-selectable-frequency pulse-width modulator for buck converters with improved light-load efficiency. In IEEE international solid-state circuits conference (pp. 440–626). San Francisco: IEEE.

5. Mulligan, M. D., Broach, B., & Lee, T. H. (2007). A 3 MHz low-voltage buck converter with improved light load efficiency. In IEEE international solid-state circuits conference (pp. 528–620). San Francisco: ISSCC.

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