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AN4461 датащи(PDF) 14 Page - STMicroelectronics |
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AN4461 датащи(HTML) 14 Page - STMicroelectronics |
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14 / 70 page ![]() PFC stage AN4461 14/70 DocID026130 Rev 2 technique. The algorithm also adapts the bandwidth to quickly react to fast variation of the input voltage or output load. The resulting bandwidth is then approximately equal to 5 Hz. The CPP0 input is used to detect an overvoltage and switches off the PWM once the PFC voltage is greater than an internally configured safety threshold. The threshold is adjusted depending on the AC input voltage. Once the PFC output voltage reaches the safety threshold, the PWM is disabled within ~50 ns. The PFC is activated 30 mS after power-on or activation. This time is used to sense the input AC voltage and enable the PFC with the optimal parameters for the given AC voltage. The STLUX385A also implements a THD optimizer approach (US2013194842 and US2013194845) via the DIGIN2 pin. 3.4 PFC stage customization 3.4.1 Inductor The operating frequency of the PFC stage varies along every half cycle of the rectified AC input voltage and at different load conditions. The inductor value can be selected in order to obtain an operating frequency greater than a minimum value, normally ranging between 35 kHz and 60 kHz. Equation 2 can be used to select the minimum operating frequency, using either minimum or maximum VAC value, whichever gives the lower value for L. Equation 2 The saturation current can be selected slightly higher than the maximum peak current occurring in correspondence of the peak of the input sine wave at full output power and low input voltage. Equation 3 Once obtained these two values, the inductor physical design can be done using one of the approaches described in some relevant application notes (see AN966 on www.st.com). 3.4.2 Output capacitor The output capacitor is responsible for reducing the frequency ripple and maximizing the hold-up time. The operating frequency of the secondary LC stage is strongly dependent on its input voltage: it is therefore necessary to minimize the PFC output voltage ripple to avoid very wide frequency variation during the LC half-bridge operations. The capacitor can be chosen according to Equation 4. Equation 4 L = V 2 ac ·(Vpfc - v2 Vac) 2 f sw_min · Pin · Vpfc - Boost min ac, in Lsat V P 2 2 I ⋅ = pfc pfc mains out pfc ∆V V f 4π P C ⋅ ⋅ ⋅ ≥ |
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