Aug.1998
AUXILIARY CATHODE
CONNECTOR (RED)
500 ± 8
GATE (WHITE)
φ
3.5 DEPTH 2.2 ± 0.2
CATHODE
0
0
TYPE NAME
ANODE
φ
85 ± 0.2
φ
85 ± 0.2
φ
120 MAX
2
φ
3.5 DEPTH 2.2 ± 0.2
MITSUBISHI REVERSE-CONDUCTING GTO THYRISTORS
FGR3000FX-90DA
HIGH POWER INVERTER USE
PRESS PACK TYPE
FGR3000FX-90DA
OUTLINE DRAWING
Dimensions in mm
A
A
A
kA
A
2
s
A
A
kA
A
2
s
A/
μ
s
V
V
A
A
W
kW
W
W
°
C
°
C
kN
g
V
DM
= 4500V, T
j
= 125
°
C, C
S
= 6.0
μ
F, L
S
= 0.2
μ
H
f = 60Hz, sine wave
θ
= 180
°
, T
f
= 70
°
C
One half cycle at 60Hz
One cycle at 60Hz
f = 60Hz, sine wave
θ
= 180
°
C, T
f
= 75
°
C
One half cycle at 60Hz
One cycle at 60Hz
V
D
= 3000V, I
GM
= 75A, T
j
= 75
°
C
Recommended value 37
Standard value
Repetitive controllable on-state current
RMS on-state current
Average on-state current
Surge (non-repetitive) on-state current
I
2
t for fusing
RMS Reverse current
Average reverse current
Surge (non-repetitive) reverse current
Current-squared, time integration
Critical rate of rise of on-state current
Peak forward gate voltage
Peak reverse gate voltage
Peak forward gate current
Peak gate reverse current
Peak forward gate power dissipation
Peak reverse gate power dissipation
Average forward gate power dissipation
Average reverse gate power dissipation
Junction temperature
Storage temperature
Mounting force required
Weight
I
TQRM
I
T(RMS)
I
T(AV)
I
TSM
I
T2t
I
R(RMS)
I
R(AV)
I
RSM
I
R2t
d
iT
/d
t
V
FGM
V
RGM
I
FGM
I
RGM
P
FGM
P
RGM
P
FG(AV)
P
RG(AV)
T
j
T
stg
—
—
Symbol
Parameter
Conditions
Ratings
3000
1220
780
16
1.0
×
10
6
940
600
16
1.0
×
10
6
500
10
18
100
900
400
27
100
230
–40 ~ +125
–40 ~ +150
31 ~ 43
1450
Unit
APPLICATION
Inverters, D.C. choppers, Induction heaters, D.C. to D.C. converters.
G
I
TQRM
Repetitive controllable on-state current
...........3000A
G
I
T(AV)
Average on-state current.......................780A
G
V
DRM
Repetitive peak off state voltage
...................4500V
G
Reverse conducting type
MAXIMUM RATINGS
V
DRM
V
DSM
V
D(DC)
V
LTDS
+
: V
GK
= –2V
Unit
Symbol
Parameter
V
V
V
V
Voltage class
90DA
4500
4500
3600
3000
Repetitive peak off-state voltage
+
Non-repetitive peak off-state voltage
+
DC off-state voltage
+
Long term DC stability voltage
+