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AN2782 Datasheet(PDF) 17 Page - STMicroelectronics

Part # AN2782
Description  Solution for designing a 400 W fixed-off-time controlled
PDF  39 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN2782 Datasheet(HTML) 17 Page - STMicroelectronics

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AN2782
Designing a fixed off-time PFC
Doc ID 14763 Rev 2
17/39
In general, the capacitive losses are given by:
where Cd is the total drain capacitance including the MOSFET and the other parasitic
capacitances such as inductor etc. At the drain node, VMOS is the drain voltage at MOSFET
turn-on.
Taking into account the frequency variation with the input line voltage and the phase angle
similar to (45), a detailed description of the capacitive losses per 1 nF of total drain
capacitance can be calculated as:
The total drain capacitance of the two MOSFETs is //Cd = 0.36 nF, Vout is the drain voltage
at MOSFET turn-on.
The function of the total losses of the input mains voltage is the sum of the three previous
losses from equations (43), (45) and (47) multiplied for the two parallel MOSFET
parameters:
From (48) using the data relevant to the MOSFET selected and calculating the losses at
VACmin and VACmax, we observe that the maximum total losses occurs at VACmin which is
9 W. From this number and the maximum ambient temperature (20), the total maximum
thermal resistance required to keep the junction temperature below 125 °C is:
If the result of equation (49) is lower than the junction-ambient thermal resistance given in
the MOSFET datasheet for the selected device package, a heat sink must be used.
(46)
(47)
(48)
(49)
)
VAC
(
f
V
C
2
1
)
VAC
(
P
sw
MOS
2
d
cap
⋅
⋅
⋅
=
()
ϑ
⋅
ϑ
π
⋅
=
′
∫
π
d
)
,
VAC
(
f
V
1
2
1
)
VAC
(
P
0
sw
2
out
cap
)
VAC
(
P
C
)
VAC
(
P
2
t
t
)
VAC
(
P
RDS
)
VAC
(
P
cap
d
sw
fall
rise
cond
on
loss
′
⋅
+
′
⋅
⎟
⎠
⎞
⎜
⎝
⎛
+
+
′
⋅
=
)
VAC
(
P
T
C
125
R
loss
ambx
th
−
°
=
W
C
1
.
8
W
9
C
50
C
125
R
th
°
=
°
−
°
=



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