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VIPER35 数据表(PDF) 35 Page - STMicroelectronics |
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VIPER35 数据表(HTML) 35 Page - STMicroelectronics |
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35 / 44 page ![]() DocID026980 Rev 4 35/44 VIPer35 Operation description 44 Figure 41. Timing diagram: overload protection 8.14 Burst mode operation at no-load or very light load When the load decreases, the feedback loop lowers the feedback pin voltage. If it falls down the burst mode threshold, VFBBm, the power MOSFET doesn’t switch on. After the MOSFET stops, the feedback pin voltage increases and by exceeding the level, VFBbm + VFBbmhys, the power MOSFET starts switching again. The burst mode thresholds are reported in Table 7 and Figure 42 shows this behavior. System alternates period of time where power MOSFET switches to period of time where power MOSFET doesn’t switch; this device working mode is the burst mode. The power delivered to output during switching periods exceeds the load power demands; the excess of power is balanced by the period where no power is processed. The advantage of burst mode operation is an average switching frequency much lower than the normal operation working frequency, up to some hundred of hertz, minimizing all frequency-related losses. During the burst mode the drain current peak is clamped to the level, ID_BM, (see Table 7). |
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