The predicting correction technique (PCT) is proposed to achieve an adaptive on-time control for ripple-based buck converters. The switching frequency fSW variation is suppressed when the PCT technique considers complete parasitic resistances of the components and devices. Even without extra clock-controlled circuits and current sensing circuits, the buck converter operates with a nearly constant fSW over a wide load range. Parasitic resistances almost cause no influence and restriction on fSW. Only input voltage is used to predict the adaptive on-time. Measurement results show only 0.32% in ΔfSW/fSWand 5.7 kHz/A in ΔfSW/ΔILOADin case of 1.4 A load current change and fSWis 2.5 MHz. Consequently, a pseudo-constant fSWwith well-defined noise spectrum strongly benefits the solution of electromagnetic interference (EMI) for system-on-a-chip (SoC) applications.
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Chen et al. (2015) studied this question.
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