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AN4077 датащи(PDF) 13 Page - STMicroelectronics |
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AN4077 датащи(HTML) 13 Page - STMicroelectronics |
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13 / 33 page ![]() AN4077 Test results and significant waveforms Doc ID 022997 Rev 1 13/33 THD (total harmonic distortion) of the current is considerably reduced. A major cause of this distortion is the inability of the system to transfer energy effectively when the instantaneous line voltage is very low. This effect is magnified by the high frequency filter capacitor placed after the bridge rectifier, which retains some residual voltage that causes the diodes of the bridge rectifier to be reverse-biased and the input current flow to temporarily stop. To overcome this issue the device forces the PFC pre-regulator to process more energy near the line voltage zero-crossings as compared to that commanded by the control loop. This results in both minimizing the time interval where energy transfer is lacking and fully discharging the high-frequency filter capacitor after the bridge. Essentially, the circuit artificially increases the ON-time of the power switch with a positive offset added to the output of the multiplier in the proximity of the line voltage zero-crossings. This offset is reduced as the instantaneous line voltage increases, so that it becomes negligible as the line voltage moves toward the top of the sinusoid. Furthermore, the offset is modulated by the voltage on the VFF pin so as to have little offset at low line, where energy transfer at zero-crossings is typically quite good, and a larger offset at high line where the energy transfer gets worse. To get the maximum benefit of the THD optimizer circuit, the high- frequency filter capacitors after the bridge rectifier should be minimized, compatible with EMI filtering needs. A large capacitance, in fact, introduces a conduction dead-angle of the AC input current, therefore reducing the effectiveness of the optimizer circuit. In Figure 13 and Figure 14 the detail of the waveforms at switching frequency allows the operating frequency and the current peak at top of the input sine wave during operation at 100 Vac and 230 Vac to be measured. Multiplier waveform has been captured as referenc. Figure 12. L6564H 100 W TM PFC demonstration board: Vds and inductor current at 100 Vac-50 Hz- full load Figure 13. L6564H 100 W TM PFC demonstration board: zoom of Vds and inductor current at 100 Vac- 50 Hz-full load CH1: Q1 Drain voltage CH2: MULT voltage - Pin # 3 CH4: L 2 inductor current AM11506v1 CH1: Q1 Drain voltage CH2: MULT voltage - Pin # 3 AM11507v1 CH4: L 2 inductor current |
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