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Электронный компонент: FGC4000BX-90DS

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Aug.1998
A
A
A
kA
A
2
s
A/
s
V
V
A
A
kW
kW
W
W
C
C
kN
g
MITSUBISHI GATE COMMUTATED TURN-OFF THYRISTORS
FGC4000BX-90DS
HIGH POWER INVERTER USE
PRESS PACK TYPE
FGC4000BX-90DS
OUTLINE DRAWING
Dimensions in mm
4000
1880
1200
25
2.6
10
6
1000
10
21
1000
4000
10
120
200
6300
20 ~ +125
20 ~ +150
32 ~ 48
1500
Repetitive controllable on-state current
RMS on-state current
Average on-state current
Surge on-state 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 reverse gate 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
APPLICATION
Inverters, DC choppers, Induction heaters, DC to DC converters.
Symbol
Parameter
Conditions
Ratings
Unit
+
: V
GK
= 2V
V
RRM
V
RSM
V
R(DC)
V
DRM
V
DSM
V
D(DC)
V
LTDS
Unit
Symbol
Parameter
V
V
V
V
V
V
V
Voltage class
Repetitive peak reverse voltage
Non-repetitive peak reverse voltage
DC reverse voltage
Repetitive peak off-state voltage
+
Non-repetitive peak off-state voltage
+
DC off-state voltage
+
Long term DC stability voltage
+
MAXIMUM RATINGS
90DS
21
21
21
4500
4500
3600
3000
I
TQRM
I
T(RMS)
I
T(AV)
I
TSM
I
2t
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
--
--
q
I
TQRM
Repetitive controllable on-state current ........... 4000A
q
I
T(AV)
Average on-state current .....................1200A
q
V
DRM
Repetitive peak off state voltage ................... 4500V
q
Anode short type
(Snubberless)
V
DM
= 4500V, V
D
= 2250V, L
C
= 0.2
H, V
RG
= 21V
d
iGQ
/d
t
= 6000A/
s. Tj = 25/125
C
Applied for all conduction angles
f = 60Hz, sinewave
= 180
, T
f
= 70
C
One half cycle at 60Hz, T
j
= 125
C
V
D
= 2250V, I
TM
= 4000A, I
GM
= 200A, T
j
= 125
C
di
G
/d
t
= 100A/
s (Snubberless)
(Recommended value 40kN)
Typical value
3.5 0.2 2.2 0.2DEPTH
85 0.2
+ 0
0.3
26 0.5
120MAX
(
127)
M3
!
0.5 2.5DEPTH
NOTE1
0.4MIN
0.4MIN
(6.8)
134 0.4
22.5 0.5
16-
4.5
+0.2
0
147 0.4
85 0.2
(4 )
Aug.1998
V
mA
mA
mA
V/
m
s
m
s
m
s
A
A
V
C/W
On-state voltage
Repetitive peak reverse current
Repetitive peak off-state current
Reverse gate current
Critical rate of rise of off-state voltage
Turn-on delay
Storage time
Peak gate turn-off current
Gate trigger current
Gate trigger voltage
Thermal resistance
(Snubberless)
I
T
= 4000A, V
DM
= 4500V, V
D
= 2250V
d
iGQ
/d
t
= 6000A/
m
s, C
C
= 6
m
F, L
C
= 0.2
m
H
V
RG
= 21V, T
j
= 125
C
(see Fig. 2)
Junction to fin
4.0
100
150
100
--
3
3
--
4.0
1.5
0.011
--
--
--
--
--
--
--
--
--
--
--
--
--
--
--
3000
--
--
--
--
--
--
V
TM
I
RRM
I
DRM
I
GRM
d
v
/d
t
t
d
t
s
I
GQ
I
GT
V
GT
R
th(j-f)
I
T
= 4000A, T
j
= 125
C
V
RM
= 21V, T
j
= 125
C
V
DM
= 4500V, V
GK
= 2V, T
j
= 125
C
V
RG
= 21V, T
j
= 125
C
V
D
= 2250V, T
j
= 125
C, V
GK
= 2V
(Expo. ware)
(see Fig. 3)
I
T
= 4000A, V
D
= 2250V, I
GM
= 200A, T
j
= 125
C
d
i
/d
t
= 1000A/
m
s, d
iG
/d
t
= 100A/
m
s
(Snubberless)
(see Fig. 1)
MITSUBISHI GATE COMMUTATED TURN-OFF THYRISTORS
FGC4000BX-90DS
HIGH POWER INVERTER USE
PRESS PACK TYPE
ELECTRICAL CHARACTERISTICS
Symbol
Parameter
Test conditions
Limits
Min
Typ
Max
Unit
td
V
D
0.9V
D
0.9I
T
di
G
/dt
diG
Q
/dt
I
GQ
L
C
D
C
GCT
td:0V
G
~0.9V
D
, tgt:0V
G
~0.1V
D
di
G
/dt:0.1I
GM
~0.9I
GM
(1) TURN-ON SWITCHING WAVEFORM
(1) TURN-OFF SWITCHING WAVEFORM
(2) TURN-ON TEST CIRCUIT
Fig.3 dv/dt TEST WAVEFORM
Fig.1 TURN-ON SWITCHING WAVEFORM AND TEST CIRCUIT
Fig.1 TURN-OFF SWITCHING WAVEFORM AND TEST CIRCUIT
(2) TURN-OFF TEST CIRCUIT
ts:0V
G
~0.9I
T
diG
Q
/dt:0.1I
GQ
~0.9I
GQ
R
C
C
C
0.1V
D
I
GM
I
G
G
G
G
G
VG
GCT
I
TM
I
T
t
s
V
DM
V
D
V
G
tgt
V
D
0.632V
D
0
t
dv/dt=0.632V
D
/
t
t
DC METHOD : V
D
= 24V, R
L
= 0.1
W
, T
j
= 25
C
Aug.1998
MITSUBISHI GATE COMMUTATED TURN-OFF THYRISTORS
FGC4000BX-90DS
HIGH POWER INVERTER USE
PRESS PACK TYPE
PERFORMANCE CURVES
MAXIMUM ON-STATE CHARACTERISTIC
ON-STATE CURRENT
( A
)
ON-STATE VOLTAGE (V)
RATED SURGE ON-STATE CURRENT
SURGE ON-STATE CURRENT (kA)
CONDUCTION TIME
(CYCLES AT 60Hz)
GATE CHARACTERISTICS
GATE VOLTAGE (V)
GATE CURRENT (mA)
MAXIMUM THERMAL IMPEDANCE
CHARACTERISTIC
(JUNCTION TO FIN)
THERMAL IMPEDANCE (C/W)
TIME (S)
10
1
10
2
2
3
5
7
10
3
2
3
5
7
10
4
2
3
5
7
0
1.0 2.0 3.0 4.0 5.0 6.0 7.0 8.0
T
j
= 125C
0
5
10
15
20
25
30
10
0
10
1
2
3
5
7
10
2
2
3
5
7
10
0
2 3
10
0
5 7
10
1
2 3
5 7
10
2
2 3
5 7
10
3
10
2
7
5
3
2
10
1
7
5
3
2
7
5
3
2
10
1
V
FGM
= 10V
V
GT
= 1.5V
P
FG(AV)
= 200W
I
FGM
= 1000A
T
j
= 25C
I
GT
= 4.0A
P
FGM
= 10kW
0
0.002
0.004
0.006
0.008
0.010
0.012
0.014
10
3
2
10
2
3
5 7
10
0
2
10
1
3
5 7
2
10
1
3
5 7
2
10
0
3
5 7
ON-STATE POWER DISSIPATION (W)
AVERAGE ON-STATE CURRENT (A)
MAXIMUM ON-STATE POWER DISSIPATION
CHARACTERISTICS
(SINGLE-PHASE HALF WAVE)
AVERAGE ON-STATE CURRENT (A)
FIN TEMPERATURE (C)
ALLOWABLE FIN TEMPERATURE VS.
AVERAGE ON-STATE CURRENT
(SINGLE-PHASE HALF WAVE)
0
1000
2000
3000
4000
5000
500
1500
2500
3500
4500
0
1200
200
400
600
800
1000
= 30
60
90
120
180
360
RESISTIVE,
INDUCTIVE
LOAD
25
50
75
100
125
150
0
1200
200
400
600
800
1000
= 30
60
90 120
180
360
RESISTIVE,
INDUCTIVE
LOAD
Aug.1998
MITSUBISHI GATE COMMUTATED TURN-OFF THYRISTORS
FGC4000BX-90DS
HIGH POWER INVERTER USE
PRESS PACK TYPE
0
1000
2000
3000
4000
5000
6000
0
400
800
1200
1600
2000
360
RESISTIVE,
INDUCTIVE
LOAD
DC
270
= 30
120
180
90
60
25
50
75
100
125
150
0
2000
500
1000
1500
= 30
180
DC
270
60
120
90
360
RESISTIVE,
INDUCTIVE
LOAD
0
2
4
6
8
10
12
14
16
40
0
40
80
120
160
V
D
= 24V
R
L
= 0.1
DC METHOD
IGT
FIN TEMPERATURE (C)
AVERAGE ON-STATE CURRENT (A)
ALLOWABLE FIN TEMPERATURE VS.
AVERAGE ON-STATE CURRENT
(RECTANGULAR WAVE)
GATE TRIGGER CURRENT (A)
JUNCTION TEMPERATURE (C)
GATE TRIGGER CURRENT VS.
JUNCTION TEMPERATURE
(MAXIMUM)
TURN ON SWITCHING ENERGY
(MAXIMUM)
ON-STATE POWER DISSIPATION (W)
AVERAGE ON-STATE CURRENT (A)
MAXIMUM ON-STATE POWER DISSIPATION
CHARACTERISTICS
(RECTANGULAR WAVE)
SWITCHING ENERGY Eon (J/P)
TURN ON CURRENT (A)
0
4
8
12
16
20
0
1000
2000
3000
4000
5000
V
D
= 2250V
V
DM
= V
D
0.44
!
I
T
d
iGQ
/d
t
= 6000A/
s
C
C
= 6.0
F
L
C
= 0.2
H
T
j
= 125C
SWITCHING ENERGY Eoff (J/P)
TURN OFF CURRENT (A)
TURN OFF SWITCHING ENERGY
(MAXIMUM)
0
0.5
1.0
1.5
2.0
2.5
3.0
0
1000
2000
3000
4000
5000
V
D
= 2250V
I
GM
= 200A
d
iT
/d
t
= 1000A/
s
d
iG
/d
t
= 100A/
s
T
j
= 125C
+