DocumentCode :
105731
Title :
Feedback Loop Analysis and Optimized Compensation Slope of the Current-Mode Buck DC-DC Converter in DCM
Author :
Sugimoto, Yoshiki ; Sai, Toru ; Watanabe, K. ; Abe, Makoto
Author_Institution :
Chuo Univ., Tokyo, Japan
Volume :
62
Issue :
1
fYear :
2015
fDate :
Jan. 2015
Firstpage :
311
Lastpage :
319
Abstract :
Frequency characteristics of the total feedback loop of a current-mode buck DC-DC converter in the discontinuous conduction mode (DCM) are examined by formulating an equivalent small-signal transfer function using a proposed block structure that does not suffer direct influence from the current feedback. Utilizing this transfer function, it is clarified that the type of the compensation slope in a current feedback loop affects the loop frequency characteristics in DCM, and in terms of stability, high voltage gain and large 0-dB frequency bandwidth, the quadratic compensation slope is more effective than the linear compensation slope. The validity of the proposed block structure and formulations and the effectiveness of applying a quadratic compensation slope instead of a linear compensation slope in DCM are verified by comparing calculation results, SPICE simulation results and evaluation results using circuit and measurement data from an MOS current-mode buck DC-DC converter IC that had been previously fabricated. More than 10-dB higher voltage gain, three times larger 0-dB frequency bandwidth, more than 10-degree larger phase margin and faster recovery time in load current change are realizable in DCM compared with the case using a linear compensation slope.
Keywords :
DC-DC power convertors; MIS devices; SPICE; compensation; transfer functions; DCM; MOS current-mode buck DC-DC converter IC; SPICE simulation; block structure; discontinuous conduction mode; frequency bandwidth; frequency characteristics; high voltage gain; quadratic compensation slope optimization; small-signal transfer function; total feedback loop analysis; transfer function utilization; DC-DC power converters; Equations; Feedback loop; Inductors; Integrated circuits; Mathematical model; Transfer functions; Buck DC-DC; DCM; current-mode; duty-independent frequency characteristics; quadratic slope;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2014.2358313
Filename :
6922164
Link To Document :
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