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MPZ2012S221A 数据表(PDF) 23 Page - STMicroelectronics |
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MPZ2012S221A 数据表(HTML) 23 Page - STMicroelectronics |
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23 / 56 page ![]() 7 Device protections 7.1 Overvoltage protection The overvoltage is a second level protection, and it should never be triggered in normal operating conditions if the system is properly dimensioned. In other words, the selection of the external power components and the dynamic performance determined by the compensation network should guarantee an output voltage regulation within the overvoltage threshold even during the worst-case scenario in terms of load transitions. 7.2 Overcurrent protection Primary side The current protection circuitry features a constant current protection, so the device limits the maximum peak current (see Table 6. Electrical characteristics) in an overcurrent condition. The L6983I device implements a pulse-by-pulse current sensing on both power elements (high-side and low-side switches) for effective current protection over the duty cycle range. The high-side current sensing is called “peak”, the low-side sensing “valley”. The internal noise generated during the switching activity makes the current sensing circuitry ineffective for a minimum conduction time of the power element. This time is called “masking time” (see section Section 5.1.4 Minimum on-time) because the information from the analog circuitry is masked by the logic to prevent an erroneous detection of the overcurrent event. Therefore, the peak current protection is disabled for a masking time (typ. 390 ns) after the high-side switch is turned on. The masking time for the valley sensing (TOFF_MIN, see Table 6. Electrical characteristics) is activated after the low-side switch is turned on. In other words, the peak current protection can be ineffective at extremely low duty cycles, the valley current protection at extremely high duty cycles. The L6983I device assures an effective overcurrent protection sensing the current flowing in both power elements. In case one of the two current sensing circuitries is ineffective because of the masking time, the device is protected sensing the current on the opposite switch. Thus, the combination of the “peak” and “valley” current limits (IPK and IVY respectively) assure the effectiveness of the overcurrent protection even in extreme duty cycle conditions. Figure 28. Effects of the peak and valley current protections on duty cycle and frequency L6983I Device protections DS14040 - Rev 1 page 23/56 |
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