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2004 IXYS All rights reserved
1 - 3
MCC 200
MCD 200
IXYS reserves the right to change limits, test conditions and dimensions
448
I
TRMS
= 2x340 A
I
TAVM
= 2x196 A
V
RRM = 1400-1800 V
V
RSM
V
RRM
Type
V
DSM
V
DRM
VV
1500 1400
MCC 200-14io1 MCD 200-14io1
1700 1600
MCC 200-16io1 MCD 200-16io1
1900 1800
MCC 200-18io1 MCD 200-18io1
Data according to IEC 60747 and refer to a single thyristor/diode unless otherwise stated.
Features
International standard package
Direct copper bonded Al
2O3 -ceramic
base plate
Planar passivated chips
Isolation voltage 3600 V~
UL registered, E 72873
Keyed gate/cathode twin pins
Applications
Motor control
Power converter
Heat and temperature control for
industrial furnaces and chemical
processes
Lighting control
Contactless switches
Advantages
Space and weight savings
Simple mounting
Improved temperature and power
cycling
Reduced protection circuits
Symbol
Conditions
Maximum Ratings
I
TRMS / IFRMS
T
VJ = TVJM
340
A
I
TAVM / IFAVM
T
C = 90°C; 180° sine
196
A
T
C = 85°C; 180° sine
216
A
I
TSM / IFSM
T
VJ = 45°C;
t = 10 ms (50 Hz), sine
8000
A
V
R = 0
t = 8.3 ms (60 Hz), sine
8600
A
T
VJ = TVJM
t = 10 ms (50 Hz), sine
7000
A
V
R = 0
t = 8.3 ms (60 Hz), sine
7500
A
∫∫∫∫∫i2dt
T
VJ = 45°C;
t = 10 ms (50 Hz), sine
320 000
A2s
V
R = 0
t = 8.3 ms (60 Hz), sine
311 000
A2s
T
VJ = TVJM;
t = 10 ms (50 Hz), sine
245 000
A2s
V
R = 0
t = 8.3 ms (60 Hz), sine
236 000
A2s
(di/dt)
cr
T
VJ = TVJM;
repetitive; I
T = 500 A
100
A/s
f = 50Hz; t
P = 200s;
V
D =
2/
3 VDRM;
I
G = 0.5 A;
non repetitive; I
T = 500 A
500
A/s
di
G/dt = 0.5 A/s
(dv/dt)
cr
T
VJ = TVJM; VDR =
2/
3 VDRM
1000
V/s
R
GK =
∞; method 1 (linear voltage rise)
P
GM
T
VJ = TVJM; tP =
30 s
120
W
I
T = ITAVM;
t
P = 500 s
60
W
P
GAV
20
W
V
RGM
10
V
T
VJ
-40...+125
°C
T
VJM
125
°C
T
stg
-40...+125
°C
V
ISOL
50/60 Hz, RMS;
t = 1 min
3000
V~
I
ISOL
≤ 1 mA;
t = 1 s
3600
V~
M
d
Mounting torque (M6)
2.25-2.75/20-25 Nm/lb.in.
Terminal connection torque (M6)
4.5-5.5/40-48 Nm/lb.in.
Weight
Typical including screws
125
g
Thyristor Modules
1
2
3
6 7
5
4
36 7 1
5 4 2
31
5 4 2
MCC
MCD