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AN1172 数据表(PDF) 21 Page - STMicroelectronics

部件名 AN1172
功能描述  A logic-level transient-voltage protected AC switch
PDF  23 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

AN1172 数据表(HTML) 21 Page - STMicroelectronics

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AN1172
How to calculate the junction temperature during clamping periods
21/23
Figure 23. shows the maximum
∆Tj reached for different load RMS currents and power
factors. Calculations are similar whatever the package is (TO92, DIL20, SOT223), because
in such a range of times, the Zth is only due to the die area.
Note that
∆Tj first increases. On this curve part, the load peak current is lower than the iH
level (taken equal to its worst value: 60 mA). So, when the load RMS current increases, the
turned-off current increases too. When the load peak current becomes higher than iH, ∆Tj
decreases because of the load series inductance decrease (here the turn-off current is
constant and equals iH).
Figure 23.
Supplementary temperature rise at clamping depending on load nature
(for ACS402-5SB4 or ACS108-5SX)
It can be concluded that, if the junction temperature was 110° C before turn-off, the
maximum transient temperature can reach 160° C. As these events last less than one ms
(refer to Figure 22.), such junction temperatures can be permitted.
C.3
Repetitive clampings
To evaluate heating due to repetitive clampings, Equation C6 can be used, assuming that
the clampings occur at a constant period T and that the conduction losses can be neglected
in front of the previous ones.
Equation C6
In practice T (above 1s) is very much higher than the clamping duration. Equation C6 can
then be simplified to the following one.
Equation C7
60
45
cos
=0.1
ϕ
cos
=0.7
ϕ
cos
=0.9
ϕ
cos
=0.98
ϕ
30
0
0.1
0.2
0.3
0.4
0.5
15
IRMS (A)
⎥
⎦
⎤
⎢
⎣
⎡
-
+
-
-
+
⎟
⎠
⎞
⎜
⎝
⎛
-
-
+
-
⋅
=
∆
)
t
t
(
Zth
)
T
(
Zth
)
t
t
T
(
Zth
T
t
t
1
Rth
T
t
t
I
V
2
1
T
0
ZC
0
ZC
0
ZC
0
ZC
H
cl
rep
Rth
T
t
t
I
V
2
1
T
0
ZC
H
cl
rep
-
⋅
=
∆



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