IXGK50N90B2D1 IXYS, IXGK50N90B2D1 Datasheet - Page 6

IGBT 900V FRD TO-264

IXGK50N90B2D1

Manufacturer Part Number
IXGK50N90B2D1
Description
IGBT 900V FRD TO-264
Manufacturer
IXYS
Series
HiPerFAST™r
Datasheet

Specifications of IXGK50N90B2D1

Igbt Type
PT
Voltage - Collector Emitter Breakdown (max)
900V
Vce(on) (max) @ Vge, Ic
2.7V @ 15V, 50A
Current - Collector (ic) (max)
75A
Power - Max
400W
Input Type
Standard
Mounting Type
Through Hole
Package / Case
TO-264
Vces, (v)
900
Ic25, Tc=25°c, Igbt, (a)
75
Ic90, Tc=90°c, Igbt, (a)
-
Ic110, Tc=110°c, Igbt, (a)
50
Vce(sat), Max, Tj=25°c, Igbt, (v)
2.7
Tfi, Typ, Tj=25°c, Igbt, (ns)
200
Eoff, Typ, Tj=125°c, Igbt, (mj)
8.7
Rthjc, Max, Igbt, (°c/w)
0.31
If, Tj=110°c, Diode, (a)
15
Rthjc, Max, Diode, (ºc/w)
0.9
Package Style
TO-264
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
IXYS reserves the right to change limits, test conditions, and dimensions.
Z
Fig. 18. Forward current I
Fig. 21. Dynamic parameters Q
Fig. 24 Transient thermal resistance junction to case
I
0.001
F
K
thJC
0.01
K/W
f
2.0
1.5
1.0
0.5
0.0
0.1
0.00001
70
60
50
40
30
20
10
A
0
2
1
0
0
T
T
versus T
VJ
VJ
=150°C
=100°C
40
1
I
RM
Q
r
0.0001
VJ
80
2
T
F
VJ
T
V
versus V
120
VJ
F
3
= 25°C
C
r
, I
V
0.001
RM
160
F
4
t
Q
rr
Fig. 19. Reverse recovery charge Q
Fig. 22. Recovery time t
220
200
180
160
140
120
r
μC
ns
5
4
3
2
1
0
100
0.01
0
T
V
versus -di
VJ
R
= 100°C
= 600V
200
I
I
I
F
F
F
= 60A
= 30A
= 15A
400
F
/dt
0.1
-di
I
I
I
600
F
F
F
IXGH 50N90B2D1 IXGK 50N90B2D1
= 60A
= 30A
=15A
F
-di
T
V
/dt
rr
VJ
R
t
F
versus -di
/dt
= 100°C
= 600V
A/μs
800
s
A/μs
1000
1000
1
F
/dt
r
I
V
RM
FR
120
Fig. 20. Peak reverse current I
Constants for Z
Fig. 23. Peak forward voltage V
60
50
40
30
20
10
80
40
A
V
0
0
1
2
3
i
0
0
T
V
t
VJ
R
fr
versus -di
I
I
I
= 100°C
= 600V
F
F
F
= 60A
= 30A
=15A
200
200
t
fr
IXGX 50N90B2D1
versus di
R
0.465
0.179
0.256
thi
400
400
thJC
(K/W)
F
/dt
calculation:
F
600
600
/dt
di
-di
T
I
F
F
V
/dt
F
VJ
/dt
FR
= 100°C
A/μs
= 30A
800
A/μs
800 1000
t
0.0052
0.0003
0.0397
i
(s)
RM
1000
FR
and
μs
1.2
0.8
0.4
0.0
t
fr

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