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AN2485 Datasheet(PDF) 13 Page - STMicroelectronics |
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AN2485 Datasheet(HTML) 13 Page - STMicroelectronics |
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13 / 29 page ![]() AN2485 Test results and significant waveforms 13/29 Figure 22. shows the circuit behavior in case of mains dip. As previously described, the time constant of the VFF pin provides a very fast compensation in case of surge, which is the most critical transition, and a slower compensation in case of mains dip. As shown, in that case the output voltage changes, but in few mains cycles it returns to the nominal value. A controller without the VFF function will instead perform differently. In Figure 23. the behavior of a PFC using the L6562 working in FOT and delivering a similar output power is shown. In case of a mains dip, the output voltage variation is larger and the output voltage requires more time to return to the original value. Deriving a voltage proportional to the RMS line voltage implies a form of integration, which has its own time constant. If the time constant is too small the voltage generated will be affected by a considerable amount of ripple at twice the mains frequency so causing distortion of the current reference (resulting in high THD and poor PF). If the time constant is too large there will be a considerable delay in setting the right amount of feedforward, resulting in excessive overshoot or undershoot of the pre-regulator's output voltage in response to large line voltage changes. Clearly, a trade-off is required. For reference, Figure 24. and Figure 25. compare the input current shape and the measurement of the THD and 3RD Harmonic amplitude for different CFF values. Figure 25. shows that increasing 3 times the CFF capacitor improves the current shape and both the THD and the third harmonic current are also decreased, but not very significantly. The time constant used for VFF (CFF = 470 nF, RFF = 150 K+240 K) is a good compromise. Figure 22. EVAL6563-400W Input mains dip from 140 Vac to 90 Vac - full load - CFF = 470 nF Figure 23. L6562 FOT Input mains dip from 90 Vac to 140 Vac - full load - NO VFF input CH1: Output voltage CH2: Input rectified mains voltage CH4: Input current CH3: VFF voltage - pin #5 CH1: Output voltage CH2: Input rectified mains voltage CH4: Input current CH3: VFF voltage - pin #5 |
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