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 SII150N12
NPT IGBT Modules
Dimensions in mm (1mm = 0.0394")
Absolute Maximum Ratings Symbol VCES IC ICRM VGES
Ptot TVj,(Tstg) Visol RthJC RthJCD
o
TC = 25oC, unless otherwise specified Conditions
Values 1200 210(150) 420(300) _ +20 1250 _ 40...+125(150) 2500 _ 0.1 <
o
Units V A A V
W C
TC= 25(80) C TC= 25(80)oC, tP =1ms
_ TOPERATION < Tstg AC, 1min
V
K/W
_ < 0.25
Sirectifier
R
SII150N12
NPT IGBT Modules
Electeical Characteristics
Symbol Conditions Static Characteristics VGE(th) VGE = VCE, IC =6mA ICES VGE = 0; VCE = 1200V; Tj = 25(125)oC IGES VGE = 20V, VCE = 0 VCE(sat) IC =150A; VGE = 15V; Tj = 25(125)oC; chip level AC Characteristics Cies under following conditions Coes VGE = 0, VCE = 25V, f = 1MHz Cres gfs VCE=20V, IC=150A Switching Characteristics td(on) VCC = 600V, IC = 150A tr RGon = RGoff =5.6 , Tj = 125oC td(off) VGE = 15V tf FWD under following conditions: VF IF = 150A, VGE = 0V, Tj = 25(125)oC trr IF=150A, VR= _600V,VGE=0V,di/dt=_ 1500A/us,Tj = 125oC _ IF = 150A, VGE = 0V, VR= 600V Qrr _1500A/us, Tj = 25(125)oC di/dt= Ms Mt w to heatsink M6 to terminals M5 3 2.5 TC = 25oC, unless otherwise specified min. 4.5 typ. 5.5 2(8) 2.5(3.1) 11 1.6 0.6
62
max. 6.5 2.8 320 3(3.7)
Units V mA nA V
nF S
200 100 600 70 2.3(1.8) 0.4 5(18)
400 200 800 100 2.8
ns
V us uC
Mechanical Data 5 5 325 Nm Nm g
Sirectifier
R
SII150N12
NPT IGBT Modules
Power dissipation Ptot = (TC) parameter: Tj 150 C
1300 W 1100 Ptot 1000 900 800 700 600 500 10 1 400 300 200 100 0 0 20 40 60 80 100 120 C 160 10 0 0 10 10
1 10 ms 1 ms
Safe operating area IC = (VCE) parameter: D = 0, TC = 25C , Tj 150 C
10 3
t = 18.0s p
A IC 10 2
100 s
10
2
DC 3 10
V
TC
VCE
Collector current IC = (TC) parameter: VGE 15 V , Tj 150 C
240 A 200 IC 180 160 140 120 100 80 60 40
Transient thermal impedance Zth JC = (tp) parameter: D = tp / T
10 0
IGBT
K/W ZthJC
10 -1
10 -2 D = 0.50 0.20 0.10 10
-3
0.05 0.02 0.01 single pulse
20 0 0 20 40 60 80 100 120 C 160 10 -4 -5 10 10
-4
10
-3
10
-2
10
-1
s 10
0
TC
tp
Sirectifier
R
SII150N12
NPT IGBT Modules
T yp. output c harac teris tic s I C = f (V C E ) parameter: tp = 80 s , T j = 25 C
300 A 260
T yp. output c harac teris tic s I C = f (V C E ) parameter: tp = 80 s , T j = 125 C
300 A
IC
240 220 200 180 160 140 120 100 80 60 40 20 0 0
17V 15V 13V 11V 9V 7V
260
IC
240 220 200 180 160 140 120 100 80 60 40 20 0
17V 15V 13V 11V 9V 7V
1
2
3
V
5
0
1
2
3
V
5
VC E
VCE
T yp. trans fer c harac teris tic s I C = f (V G E ) parameter: tp = 80 s , V C E = 20 V
300 A 260
IC
240 220 200 180 160 140 120 100 80 60 40 20 0 0
2
4
6
8
10
V 14 VGE
Sirectifier
R
SII150N12
NPT IGBT Modules
Typ. gate charge VGE = (QGate) parameter: IC puls = 150 A
20 V nF VGE 16 14 12 10 8 10 0 6 4 2 0 0 200 400 600 800 nC 1100 10 -1 0 600 V 800 V
T yp. c apac itanc es
C = f (V C E )
parameter: V G E = 0 V , f = 1 MHz
10 2
C
10 1
C is s
C os s C rs s
5
10
15
20
25
30
QGate
V VCE
40
R evers e bias ed s afe operating area I C puls = f(V C E ) , T j = 150C parameter: V G E = 15 V
2.5
S hort c irc uit s afe operating area I C s c = f(V C E ) , T j = 150C parameter: V G E = 15 V , tS C 10 s , L < 25 nH
12
IC puls /I C
IC s c/IC
8 1.5 6 1.0 4
0.5 2
0.0 0
200
400
600
800
1000 1200
V 1600 VC E
0 0
200
400
600
800
1000 1200
V 1600 VC E
Sirectifier
R
SII150N12
NPT IGBT Modules
T yp. s witc hing time I = f (IC ) , inductive load , T j = 125C par.: V C E = 600 V , V G E = 15 V , R G = 5.6
10 4
T yp. s witc hing time t = f (R G ) , inductive load , T j = 125C par.: V C E = 600 V , V G E = 15 V , I C = 150 A
10 4
ns
ns
t
10 3
t
10 3
tdoff
tdoff tdon tdon tr
10 2 10 2
tr
tf
tf
10 1 0
50
100
150
200
250
300
A IC
400
10 1 0
10
20
30
40
60
RG
T yp. s witc hing los s es E = f (IC ) , inductive load , T j = 125C par.: V C E = 600 V , V G E = 15 V , R G = 5.6
120
T yp. s witc hing los s es E = f (R G ) , inductive load , T j = 125C par.: V C E = 600V , V G E = 15 V , I C = 150 A
120
mWs
E
E on
mWs
E
80
80
E on
60
60
40
40
E off
E off
20
20
0 0
50
100
150
200
250
300
A IC
400
0 0
10
20
30
40
60
RG
Sirectifier
R
SII150N12
NPT IGBT Modules
F orward c harac teris tic s of fas t rec overy revers e diode IF = f(V F ) parameter: T j
300 A 260
Transient thermal impedance Zth JC = (tp) parameter: D = tp / T
10 0
Diode
K/W ZthJC
IF
240 220 200 180 160 140 120 100 80 60 40 20 0 0.0 0.5 1.0 1.5 2.0 V 3.0
10 -1
T j=125C
T j=25C
10 -2 D = 0.50 0.20 0.10 10 -3 single pulse 0.05 0.02 0.01
10 -4 -5 10
10
-4
10
-3
10
-2
10
-1
s 10
0
VF
tp
Sirectifier
R


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