< Dual-In-Line Package Intelligent Power Module >
Series Application note
Publication Date: September 2016
47
3.3.3 Static electricity withstand capability
Typical static electricity withstand capability by Machine Model(R=0
Ω, C=200pF) is described as follows and the
result is described as following Table 3-3-1 and 2.
Conditions: Surge voltage increases by degree and one surge pulse is impressed at each surge voltage.
(Limit voltage of surge simulator: ±4.0kV, Judged by change in V-I characteristic)
Fig.3-3-3 Surge test circuit example (V
N1
terminal) Fig.3-3-4 Surge test circuit example (V
P1
terminal)
Table 3-3-1 PSSxxxC1Fx Typical ESD capability (MM)
[Control part for Inverter]
Evaluated terminals
+ Polarity
- Polarity
Unit
V
UFB
-V
UFS,
V
VFB
-V
VFS
,V
WFB
-V
WFS
2.7
2.7
kV
UP, VP, WP-V
NC
0.7
0.9
V
P1
-V
NC(PC)
3.0
3.5
UN, VN, WN-V
NC
0.8
0.8
V
N1
-V
NC
4.0 or more
4.0 or more
Fo-V
NC
0.8
1.2
CIN-V
NC
0.8
1.0
V
OT
-V
NC
0.9
1.4
CFo-V
NC
1.1
1.2
[Power part for Inverter]
Evaluated terminals
+ Polarity
- Polarity
Unit
P-NU,NV,NW
4.0 or more
4.0 or more
kV
U-NU, V-NV, W-NW
4.0 or more
4.0 or more
[Power part for Converter]
Evaluated terminals
+ Polarity
- Polarity
Unit
P1-N1
4.0 or more
4.0 or more
kV
R, S, T-N1
4.0 or more
4.0 or more
Table 3-3-2 PSSxxMC1Fx Typical ESD capability (MM)
[Control part for Brake]
Evaluated terminals
+ Polarity
- Polarity
Unit
V
P1
-V
NC
3.0
3.5
kV
AIN-V
NC
0.8
0.8
[Power part for Brake]
Evaluated terminals
+ Polarity
- Polarity
Unit
P-N(B)
4.0 or more
4.0 or more
kV
B-N(B)
4.0 or more
4.0 or more
P-B
2.7
4.0 or more
V
N1
U
N
V
NC
V
N
LVIC
R
C
W
N
V
P1
V
NC
U
P
HVIC
R
C
V
UFB
V
UFS
Ho