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VIPER35 数据表(PDF) 32 Page - STMicroelectronics |
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VIPER35 数据表(HTML) 32 Page - STMicroelectronics |
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32 / 44 page ![]() Operation description VIPer35 32/44 DocID026980 Rev 4 8.13 Feedback and overload protection (OLP) The feedback pin (FB) controls the PWM operation, enters the burst mode and manages the delayed overload protection. VFBbm and VFBlin thresholds (Table 7) are respectively low and high limit of PWM operations, where the drain current is sensed by the integrated resistor, RSENSE, and applied to the comparator PWM. The PWM logic turns off the power MOSFET as soon as the sensed voltage is equal to the voltage applied to FB pin and through the integrated resistor network (see Figure 2 and Figure 23). IC block diagram (Figure 2) shows in parallel with the PWM comparator how OCP comparator limits the drain current to IDlim value, as per Table 7. In case of higher load, the voltage VFB increases, when it reaches VFBlin threshold, the drain current is limited to IDlim by OCP comparator and the internal current starts the charge of CFB capacitor. As soon as the voltage VFB reaches the threshold VFBolp, see Figure 41, the protection turns off the IC. The auto-restart mode is active using the low value of the current IDDch, see Table 7. The time, from the high load detection, VFB = VFBlin, to the overload turn-off, VFB = VFBolp, depends on the value of CFB capacitor and on the internal charge current, IFB. OLP delay time can be calculated as follows: Equation 8 The current, IFB, is 3 A as minimum value. Components, connected to FB pin, belong to the compensation loop, so they have to be selected taking into account the proper delay and loop stability. Figure 39 and Figure 40 show two different feedback networks. Table 10. ZCD pin configurations IDlim OVP FF RLim ROVP RFF DOVP ■□ □ Equation 4 Equation 7 with VOUTOVP ˃ 2 VOUT ˗ Yes □■ □ 22 k Ω Equation 7 ˗ Yes □□ ■ 22 k Ω Equation 7 with VOUTOVP˃2 VOUT Equation 3 Yes ■■ □ Equation 4 with RFF= ∞ Equation 7 ˗ Yes □■ ■ 22 k Ω Equation 7 Equation 3 Yes ■□ ■ Equation 4 Equation 7 with VOUTOVP ˃2 VOUT Equation 3 Yes ■ ■■ Equation 4 Equation 7 Equation 3 Yes T OLP_delay C FB V FBolp V FBlin – I FB ---------------------------------------- × = |
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