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AN2782 датащи(PDF) 20 Page - STMicroelectronics

номер детали AN2782
подробное описание детали  Solution for designing a 400 W fixed-off-time controlled
PDF  39 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
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Designing a fixed off-time PFC
AN2782
20/39
Doc ID 14763 Rev 2
The commercial values selected are RoutH = 1530 MΩ and RoutL = 9.5 kΩ.
Please note that for RoutH a resistor with a suitable voltage rating (>400 V) is needed, or
more resistors in series have to be used.
This pin can also be used as an ON/OFF control input if tied to GND by an open collector or
open drain.
●
Pin 2 (COMP): This pin is the output of the E/A that is fed in one of the two inputs of the
multiplier. A feedback compensation network is placed between this pin and INV [1]. It
has to be designed in with a narrow bandwidth in order to avoid that the system rejects
the output voltage ripple (100 Hz) that would bring high distortion of the input current
waveform. A theoretical criterion to define the compensation network value is to set the
E/A bandwidth (BW) from 20 to 30 Hz.
For a more complex way of compensating the FOT PFC please refer to [1], [2], [3].
A compensated two-pole feedback network for this 400 W FOT PFC has been obtained with
the following values:
to which correspond the following open-loop transfer function and its phase function.
The two bode plot charts are in reference to the PFC operating at the main voltage set point
of 265 Vac and full load. In this condition the crossover frequency is fc = 25 Hz, the phase
margin is 30 ° and the third harmonic distortion is under 3%.
●
Pin 4 (CS): Pin #4 is the inverting input of the current sense comparator. Through this
pin, the L6562A reads the instantaneous inductor current, converted to a proportional
(54)
(55)
159
R
R
outH
outL =
Ω
=
=
k
32
.
9
159
R
R
outH
outL
nF
220
C
compP =
F
2
.
2
C
compS
μ
=
Ω
=
k
47
R
compS
Figure 12.
Bode plot - open-loop transfer
function
Figure 13.
Bode plot - phase
IFI
Open Loop Transfer Function
-200
-100
0
100
0.1
1
10
100
1000
f [Hz]
Phase F
-200
-150
-100
0.1
1
10
100
1000
f [Hz]



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