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EVL6563H-100W Просмотр технического описания (PDF) - STMicroelectronics

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EVL6563H-100W Datasheet PDF : 31 Pages
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Test results and significant waveforms
AN3118
To take maximum benefit from the THD optimizer circuit, the high-frequency filter capacitors,
after the bridge rectifier, should be minimized, maintaining compatibility with EMI filtering
needs. A large capacitance, in fact, introduces a conduction dead-angle of the AC input
current in itself, therefore reducing the effectiveness of the optimizer circuit.
Figure 16. EVL6563H-250W TM PFC MOSFET Figure 17. EVL6563H-250W TM PFC MOSFET
current at 100 Vac - 50 Hz - full load
current at 100 Vac - 50 Hz - full load
CH1: Q1 gate voltage, CH2: Q2 gate voltage,
CH3: Q1 drain current
CH4: Q2 drain current
CH1: Q1 gate voltage, CH2: Q2 gate voltage,
CH3: Q1 drain current
CH4: Q2 drain current
In Figure 18, the detail of the waveforms at switching frequency shows the operation of the
transition mode control; once the inductor has transferred all the energy stored a falling edge
on the ZCD pin (#13) is detected and it will trigger a new on-time, by setting the gate drive
high. Once the current signal on the CS pin (#4) has reached the level programmed by the
internal multiplier circuitry according to the input mains instantaneous voltage and the error
amplifier output level, the gate drive is set low and MOSFET conduction is stopped. During
the following off-time the energy stored in the inductor is transferred into the output capacitor
and the load. At the end of the current conduction a new demagnetization will be detected
by the ZCD that will provide for a new on-time of the MOSFET.
In Figure 19 waveforms of the MULT, VFF, INV and COMP pins are captured for user
reference.
Figure 18. EVL6563H-250W TM PFC L6563H
control pins-1 at 115 Vac - 60 Hz -
full load
Figure 19. EVL6563H-250W TM PFC L6563H
control pins-2 at 115 Vac - 60 Hz -
full load
CH1: GD - pin #15, CH2: ZCD - pin #13, CH3: CS - pin #4
CH4: MULT - pin #3
CH1: INV - pin #1, CH2: MULT - pin #3,
CH3: COMP - pin #2 CH, 4: VFF - pin #5
14/31
Doc ID 16847 Rev 2

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