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PFS7525L 数据表(PDF) 7 Page - Power Integrations, Inc.

部件名 PFS7525L
功能描述  PFC Controller with Integrated High-Voltage MOSFET and Qspeed Diode Optimized for High PF and Efficiency Across Load Range
PDF  36 Pages
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制造商  POWERINT [Power Integrations, Inc.]
网页  http://www.powerint.com
标志 POWERINT - Power Integrations, Inc.

PFS7525L 数据表(HTML) 7 Page - Power Integrations, Inc.

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Rev. A 06/15
7
PFS7523-7529/7533-7539
www.power.com
Figure 9. (a) Frequency Variation over Line Half-Cycle as a Function of Input Voltage (b) Frequency Variation over Line Half-Cycle as a Function of Load.
Note: Frequency Profiles Shown were Analytically Derived and Reflect CCM Operation Across the Entire Line Cycle.
0
45
90
135
180
130
120
230 VAC
180 VAC
135 VAC
90 VAC
Peak Load
115 VAC
100
110
90
80
70
60
50
40
30
20
10
0
Line Conduction Angle (°)
0
45
90
135
180
130
120
110
100
90
80
70
60
50
40
30
20
10
0
Line Conduction Angle (°)
100% Peak Load
75% Peak Load
VIN = 115 VAC
25% Peak Load
50% Peak Load
Expected Frequency
Range at Peak
Rated Load
100% Peak Loaddddddddddd
75% Pk Ld
75% Peak Load
VIN = 115 VAC
25% Peak Load
50% Peak Load
a
50% Peak Load
Expected Frequency
Range at Peak
Rated Load
Figure 10. EcoSmart Frequency Slide V
OFF vs. VE and VOFF(MAX) vs. Input Voltage.
EcoSmart
The HiperPFS-3 includes an EcoSmart function wherein the internal
error signal (V
E) is used to detect the converter output power. Since
the internal error-signal is related to the output power, this signal
level is used to set the average switching frequency as a function of
output power.
As shown in Figure 10, the off-time integrator control reference (V
OFF)
is controlled with respect to the internal error-voltage level (output
power) to allow the converter to maintain output voltage regulation
and relatively flat conversion efficiency from 20% to 100% of rated
load, which is essential to meet many efficiency directives. The
degree of frequency slide is also controlled as a function of input line
voltage. The lower V
OFF slope as a function of input voltage reduces
the average frequency extremes for high input line operation.
Burst-Mode for No-Load Power Consumption Reduction
Under no-load conditions the HiperPFS-3 engine is architected to
enter a burst mode which gates the power switch on and off between
fixed error voltage levels. This ensures low power consumption by
VA
VIN < 140 VAC
4.0 V
(Full Power)
VIN > 170 VAC
4 V 5.2 V
140 VAC
170 VAC
VA
VB
VB
VE
VIN
PI-7228-061615
switching in bursts in order to maintain regulation when leakage
currents constitute the majority of the load. Higher output voltage
ripple at light load is an artifact of efficient burst mode operation.
Power Good Signal (PG)
The HiperPFS-3 features a ‘power good’ (PG) circuit which comprises
an internal comparator that turns ‘on’ an open-drain switch during
start-up when the sensed output voltage on the FEEDBACK pin rises
to ~95% (V
PG+) of the set output voltage threshold. During start-up,
prior to the output voltage reaching V
PG+, the PG signal is in a
high-impedance state (internal switch is in ‘off’ state).
The power good signal transitions from ‘on’ to ‘off’ state when the
sensed output voltage on the FEEDBACK pin falls to a user selected
threshold, programmed with a resistor on the POWER GOOD
THRESHOLD (PGT) pin. The POWER GOOD THRESHOLD pin sources a
fixed current I
PGT. This current combined with the power good thresh-
old resistor sets the threshold when the power good signal transitions
from the ‘on’ state to the high-impedance ‘off’ state as the PFC
output falls out of regulation.



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