FGH75N60SFTU Fairchild Semiconductor, FGH75N60SFTU Datasheet - Page 5

IGBT N-CH 600V 75A TO-247

FGH75N60SFTU

Manufacturer Part Number
FGH75N60SFTU
Description
IGBT N-CH 600V 75A TO-247
Manufacturer
Fairchild Semiconductor
Datasheet

Specifications of FGH75N60SFTU

Igbt Type
Field Stop
Voltage - Collector Emitter Breakdown (max)
600V
Vce(on) (max) @ Vge, Ic
2.9V @ 15V, 75A
Current - Collector (ic) (max)
150A
Power - Max
452W
Input Type
Standard
Mounting Type
Through Hole
Package / Case
TO-247-3
Channel Type
N
Configuration
Single
Collector-emitter Voltage
600V
Gate To Emitter Voltage (max)
±20V
Pin Count
3 +Tab
Mounting
Through Hole
Operating Temperature (max)
150C
Operating Temperature Classification
Military
Collector- Emitter Voltage Vceo Max
600 V
Maximum Gate Emitter Voltage
+/- 20 V
Maximum Operating Temperature
+ 150 C
Continuous Collector Current Ic Max
150 A
Minimum Operating Temperature
- 55 C
Mounting Style
Through Hole
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
FGH75N60SF Rev. A
Typical Performance Characteristics
Figure 13. Turn-on Characteristics vs.
Figure 15. Turn-on Characteristics vs.
Figure 17. Switching Loss vs. Gate Resistance
100
100
200
200
10
10
15
10
1
20
0
0
Common Emitter
V
T
T
Common Emitter
V
I
T
T
C
C
C
GE
C
C
Gate Resistance
Collector Current
CC
= 75A
= 25
= 125
= 25
= 125
= 15V, R
40
= 400V, V
o
o
10
10
C
o
C
o
C
C
t
t
d(on)
Collector Current, I
r
Gate Resistance, R
Gate Resistance, R
60
G
GE
= 3
= 15V
20
20
80
100
Common Emitter
V
I
T
T
C
CC
C
C
30
30
= 75A
= 25
= 125
= 400V, V
C
G
G
E
[A]
E
o
120
[ Ω ]
[ Ω ]
off
on
C
o
C
t
t
d(on)
r
40
40
GE
140
= 15V
160
50
50
5
Figure 18. Switching Loss vs. Collector Current
Figure 14. Turn-off Characteristics vs.
Figure 16. Turn-off Characteristics vs.
1000
6000
100
100
200
0.1
10
10
10
30
1
20
20
0
Common Emitter
V
I
T
T
Common Emitter
V
T
T
C
C
C
CC
GE
C
C
= 75A
= 25
= 125
= 25
= 125
= 400V, V
40
= 15V, R
40
o
o
10
Collector Current
C
o
Gate Resistance
C
o
C
C
Gate Resistance, R
Collector Current, I
Collector Current, I
60
60
G
GE
= 3
= 15V
20
80
80
100
100
30
E
E
t
t
Common Emitter
V
T
T
d(off)
off
f
on
G
C
GE
C
C
C
[ Ω ]
[A]
= 25
= 125
120
120
= 15V, R
[A]
t
t
d(off)
f
o
C
o
40
C
140
140
G
= 3
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160
160
50

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