
5.2
Condensed Electrical And Thermal Characteristics And Ratings
~
~
GETYPE
CONSTRUCTION
1 Voltage Range
Forward Conduction
I(RMS)
I
TSM
I2t
ReJC
tq
QRR
di/dt
T
J
dV/dt voltage, exponential to rated V
IGT
VGT
V
TM
ReJc
Package Outline No.
Max. Mounting Force
Expanded Electrical Characterization, see page:
I.
Voltage Drop Model: V
"2.
Transient Resistance Model:
* tq measured with V R
307
SPECIFICATIONS:
Max. forward conduction sinusoidal:
@T
=
65°C,
c
50% duty (A)
@60Hz.
@600Hz.
@
1000Hz.
@ 1200Hz. 800
@2500Hz.
@5OOOHz.
@ 10,000 Hz. -
Max. peak one-cycle, nonrepetitive surge current (A)
2
Max. I
t for fusing 1.5 msec
Max. thermal impedance
Thrn-offtime @ rated voltage and T
V
~
50V (j.lsec)
R
@ 20V I
j.lsec
reapplied
@ l00V/j.lsec reapplied @ 200V I
@ 400V I
j.lsec
reapplied
j.lsec
reapplied -
Max. reverse recovered charge(j.lc), T
Critical rate-of-rise
of
on-state current (AI
j.ls)
Junction operating temperature range
Min. critical rate-of-rise
@ Max. T
(V/j.ls)
J
Max. required gate current to trigger
@
-40°C
@
+25°C
Max. required voltage to
trigger (V) from -
40°C
Max. forward voltage I
drop for the
current
range:
Transient thermal
2
resistance for
time:
~
A +
B·
F
:$
5V.
LN(I) + CI +
RS1C ~ F·
500
50 Hz.
60Hz.
(A
2
sec
(OC/w)
of
off-state
DRM
to + 125°C
G
t
INVERTER SCRs
TO
650
AMPERES
100-700
975
1050
900
500
270
7600
8000
)
100,000
.045
J
10
14
=
25°C
J
-
500
-40
(0
(0C)
125°C
200
(mA)
400
200
5
IM1N(A)
IMAX(A)
A
B
C
D
T
MIN(s)
TMAX(s)
F
G
200
3000
-1.1066
.6344
.0011
-.0845
.001
.01
.16
.602
307
Lbs
KN
2000
8.9
212
D-'1.
136
100-700 1 800-1400 1 500-1200 11200-1800
975 700 575
1050 700
500
-
900 675 400 500
800 650 275
500 450 150
-
-
270 200 -
-
-
7600 7600
8000 8000
100,000 100,000
.045
15
-
.06
- 20 -
- - -
-
5000 6500
5500 7000
50,000
.045
-
.06
20 30 60
-40(0
-
-
200
125°C
200
200
-
- -
15,20*
500 500
-40
(0
125°C
-4010125°C
200 400 200
400
200
400
200 200
5 5
200 20
3000 3000
-1.1066
.6344
.0011
-.0845
.001
.01
- 1.1066
.634 - .45
.0011
-.0845
.001
.01 .01 .01
.16 .16
.602
.602 .602 .65
-
6.0
500
-40(0
125°C
400 400
5 5
500
4000
2.96
.00009
.067
.001 .001
.16 .365
307 276 307 276
2000 2000 2000 2000
8.9 8.9
8.9
212 255 214
8.9
N.A.
1

5.3
Expanded Electrical Characterization
SINUSOIDAL CURRENT WAVEFORMS
4
10
(J)
III
a:
w
a..
:::0
«
,
~
Z
III
a:
3
!5
10
u
III
---
~
~
(J)
~--
I
Z
o
-
'"
«
III
1---
a..
1.
MAXIMUM
VS.
10
./
~-
1000
--
Hz
2
~::;:;
I-
~
...
I"::::
----
,..-
-I-
f--
...
--
2S00
F'-
-'
PULSE BASE WIDTH - MICROSECONDS
ALLOWABLE PEAK ON-STATE CURRENT
PULSE
WIDTH
FOR
~
Hz
T c =
::-:
~
~~
-~
Vs = BOOV
RS
SNUBBER:
BOO
LB
MOUNTING
DOUBLE SIDE COOLED
--VR~IOV
---
VR:S
II
3
10
65°C & 800
'I
..............
Sil,
BOOV
i'--
:--.
0.2SJLF
FORCE
_
1-1-
II
LBS.
MOUNTING
(J)
w
a:
III
a..
:::0
«
~
z
UJ
a:
!5
10
u
III
~
(J)
I
Z
o
'"
«
UJ
a..
1010,
3
....-
I-
I-
1---
2
-1---
/
~
~
--
-,#
-
1000
--
2500Hz-
,-
-
---
PULSE BASE WIDTH - MICROSECONDS
--~
2
10
j--------.,-
Hz
~
,......
LB
10
Iii
VR
3
I'-....
5il,
MOUNTING
~
BOOV I
400Hz
Vs = BOOV
RC
SNUBBER:
2000
DOUBLE SIDE COOLED
--VR:SIOV
---
1 1
,I'--
"
0.25JLF
FORCE
I
3. MAXIIVIUM ALLOWABLE PEAK ON-STATE CURRENT
VS.
PULSE
WIDTH
FOR
T c =
65°C & 2000
LBS.
MOUNTING
C436
\
f-
Vs
= BOOV
I-
RC
(J)
UJ
a:
UJ
a..
:::0
«
,
~
Z
III
a:
~
10
u
UJ
~
(J)
-
I
Z
o
«
'"
w
a..
2.
SNUBBER:
2000
LB
I-
DOUBLE SIDE COOLED
--VR:S
---VR
3
_r-
--I-'
--
f..--
---
---
2
MAXIMUM
VS. PULSE WIDTH
L
5il,O.25JLF
MOUNTING FORCE
10V
~
BOOV
k-:r-
-
-
-
.~
V.
..........
1-"
..........
~--
L
,-
1000Hz
1"'"-
-
r'"
~
<lO
~
OH
f..
-
2
10
PULSE BASE WIDTH - MICROSECONDS
ALLOWABLE PEAK ON-STATE CURRENT
FOR
T c =
3
10
90°C & 800
""
...
~
SCR
I'...
r......
LBS.
MOUNTING
t--
Vs
= BOOV
f-
RC
(J)
UJ
a:
UJ
a..
:::0
«
,
~
z
w
a:
a:
::J
10
u
UJ
~
(J)
I
Z
o
'"
«
UJ
a..
10
4.
SNUBBER:
2000
I-
DOUBLE SIDE COOLED
--VR:SIOV
---VR ~ BOOV
3
I-"
1---
---
-
1---
--
1---
1---
2~
101
MAXIMUM
VS. PULSE WIDTH
5il,
LB
0.25JLF
MOUNTING FORCE
-
~
~
I---:::
Hz
10
..
"
.~
I-
1000
r-
--
2
I-
v
-
I-
I--
-
2500
PULSE BASE WIDTH - MICROSECONDS
"'"'
400Hz
Hz
~
3
10
...
~
ALLOWABLE PEAK ON-STATE CURRENT
FOR
T c =
90°C & 2000
f'.-
r......
LBS.
MOUNTING
-
--
(J)
- -
UJ
a:
UJ
a..
:::0
«
,
~
Z
UJ
a:
3
!5
10
U
UJ
~
~
1---1-_
f
z
o
«
'"
III
---~
a..
2
1010,
--
WITHOUT
WITH
-r-..
_
5. ENERGY
ORR
ORR
-\--.:
\"'"--,
-r--
r·
r---
.... 0
~f~,
PULSE BASE WIDTH - MICROSECONDS
PER
PULSE
,-.....
......
~
"I'..
~
.....
'-
~
s
2
10
FOR
l1-.qr
r,&
'I'-
'r-..
.......
1'\
~C
~
'"
.......
I"\...
I".
'"
[\
0
0 ".1
0
'~I--
r--.
IT
~
SINUSOIDAL PULSES
{O
~
'"
'\
""
r\.
3
10
NOTES:
~U'
~r-I-f-
~1'A>
f-+-
~
U'<"
I-
"i'
.1
I~
r'\
~
,
1\
r'~
214
1. Switching Voltage";;;
2.
R-C
Snubber
3.
Curves do
pute
V A = Average Blocking Voltage
I =
f =
4.
--VR";;;
5.
___
this
.045A
Repetition
VR";;;
Circuit =
not
include blocking voltage losses,
on a per
10V
800V
800
Volts.
.251-'1.
15n.
cycle basis: E = VA (1/f).
Rate
(Hz)
To
com-
where: