MDMA380P1600KC
Standard Rectifier Module
VRRM
= 2x 1600 V
I FAV
=
380 A
VF
=
0.93 V
Phase leg
Part number
MDMA380P1600KC
Backside: isolated
2
1
3
Features / Advantages:
Applications:
Package: Y1
● Planar passivated chips
● Very low leakage current
● Very low forward voltage drop
● Improved thermal behaviour
● Diode for main rectification
● For single and three phase
bridge configurations
● Supplies for DC power equipment
● Input rectifiers for PWM inverter
● Battery DC power supplies
● Field supply for DC motors
● Isolation Voltage: 4800 V~
● Industry standard outline
● RoHS compliant
● Base plate: Copper
internally DCB isolated
● Advanced power cycling
Disclaimer Notice
Information furnished is believed to be accurate and reliable. However, users should independently
evaluate the suitability of and test each product selected for their own applications. Littelfuse products are not designed for,
and may not be used in, all applications. Read complete Disclaimer Notice at www.littelfuse.com/disclaimer-electronics.
IXYS reserves the right to change limits, conditions and dimensions.
© 2019 IXYS all rights reserved
Data according to IEC 60747and per semiconductor unless otherwise specified
20191204d
MDMA380P1600KC
Ratings
Rectifier
Conditions
Symbol
VRSM
Definition
max. non-repetitive reverse blocking voltage
TVJ = 25°C
VRRM
max. repetitive reverse blocking voltage
TVJ = 25°C
1600
IR
reverse current
VF
forward voltage drop
min.
typ.
VR = 1600 V
TVJ = 25°C
500
µA
TVJ = 150°C
20
mA
I F = 300 A
TVJ = 25°C
1.05
V
1.18
V
0.93
V
TVJ = 125 °C
I F = 300 A
I F = 600 A
average forward current
VF0
threshold voltage
rF
slope resistance
R thJC
thermal resistance junction to case
TC = 100 °C
rectangular
R thCH
thermal resistance case to heatsink
total power dissipation
I FSM
max. forward surge current
I²t
CJ
value for fusing
junction capacitance
IXYS reserves the right to change limits, conditions and dimensions.
© 2019 IXYS all rights reserved
1.10
V
T VJ = 150 °C
380
A
TVJ = 150 °C
0.75
V
0.53
mΩ
d = 0.5
for power loss calculation only
Ptot
V
VR = 1600 V
I F = 600 A
I FAV
max. Unit
1700
V
0.11 K/W
K/W
0.04
TC = 25°C
1140
W
t = 10 ms; (50 Hz), sine
TVJ = 45°C
11.0
kA
t = 8,3 ms; (60 Hz), sine
VR = 0 V
11.9
kA
t = 10 ms; (50 Hz), sine
TVJ = 150 °C
9.35
kA
t = 8,3 ms; (60 Hz), sine
VR = 0 V
10.1
kA
t = 10 ms; (50 Hz), sine
TVJ = 45°C
605.0 kA²s
t = 8,3 ms; (60 Hz), sine
VR = 0 V
587.1 kA²s
t = 10 ms; (50 Hz), sine
TVJ = 150 °C
437.1 kA²s
t = 8,3 ms; (60 Hz), sine
VR = 0 V
VR = 400 V; f = 1 MHz
TVJ = 25°C
424.4 kA²s
27
Data according to IEC 60747and per semiconductor unless otherwise specified
pF
20191204d
MDMA380P1600KC
Package
Ratings
Y1
Symbol
I RMS
Definition
Conditions
RMS current
per terminal
min.
TVJ
virtual junction temperature
T op
operation temperature
Tstg
storage temperature
-40
typ.
max.
600
Unit
A
-40
150
°C
-40
125
°C
125
°C
680
Weight
g
MD
mounting torque
4.5
7
Nm
MT
terminal torque
11
13
Nm
d Spp/App
terminal to terminal
creepage distance on surface | striking distance through air
terminal to backside
d Spb/Apb
VISOL
t = 1 second
isolation voltage
t = 1 minute
Production
Index (PI)
Date Code
(DC)
50/60 Hz, RMS; IISOL ≤ 1 mA
16.0
mm
16.0
mm
4800
V
4000
V
Part description
M
D
M
A
380
P
1600
KC
Circuit
yywwAA
Part Number
Lot.No: xxxxxx
=
=
=
=
=
=
=
=
Module
Diode
Standard Rectifier
(up to 1800V)
Current Rating [A]
Phase leg
Reverse Voltage [V]
Y1-CU
Data Matrix: part no. (1-19), DC + PI (20-25), lot.no.# (26-31),
blank (32), serial no.# (33-36)
Ordering
Standard
Ordering Number
MDMA380P1600KC
Similar Part
MDNA380P2200KC
Equivalent Circuits for Simulation
I
V0
R0
Marking on Product
MDMA380P1600KC
Package
Y1-CU
* on die level
Delivery Mode
Box
Code No.
512611
Voltage class
2200
T VJ = 150°C
Rectifier
V 0 max
threshold voltage
0.75
V
R0 max
slope resistance *
0.34
mΩ
IXYS reserves the right to change limits, conditions and dimensions.
© 2019 IXYS all rights reserved
Quantity
3
Data according to IEC 60747and per semiconductor unless otherwise specified
20191204d
MDMA380P1600KC
Outlines Y1
43
10
32 +0
-1,9
52 +0
-1,4
49
2
15 ±1
3x M8
35
28.5
1
2
38
50
22.5
45 67
18
20
3
6.2
80
92
115
2
IXYS reserves the right to change limits, conditions and dimensions.
© 2019 IXYS all rights reserved
1
3
Data according to IEC 60747and per semiconductor unless otherwise specified
20191204d
MDMA380P1600KC
Rectifier
600
106
10000
500
VR = 0 V
8000
400
TVJ = 45°C
IFSM
6000
IF
300
I 2t
[A]
[A]
TVJ = 150°C
TVJ = 45°C
2
[A s]
4000
200
TVJ = 150°C
TVJ = 25°C
TVJ = 125°C
TVJ = 150°C
100
2000
50 Hz, 80%VRRM
105
0
0.5
1.0
1.5
0.001
0.01
0.1
1
1
2
t [s]
VF [V]
4 5 6 7 8 910
2
Fig. 2 Surge overload current
vs. time per diode
Fig. 1 Forward current versus
voltage drop per diode
3
t [ms]
Fig. 3 I t versus time per diode
700
450
400
300
Ptot250
600
RthHA =
DC =
1
0.5
0.4
0.33
0.17
0.08
350
0.04 K/W
0.06 K/W
0.08 K/W
0.10 K/W
0.20 K/W
0.40K/W
200
DC =
1
0.5
0.4
0.33
0.17
0.08
500
400
IF(AV)M
300
[W]
[A]
150
200
100
100
50
0
0
0
100
200
300
400
0
IF(AV)M [A]
50
100
150
0
50
100
150
TC [°C]
Tamb [°C]
Fig. 5 Max. forward current vs.
case temperature per diode
Fig. 4 Power dissipation vs. forward current
and ambient temperature per diode
0.12
0.10
ZthJC
Constants for ZthJC calculation:
0.08
[K/W]
0.06
0.04
0.02
i
Rthi (K/W)
ti (s)
1
0.005
0.0005
2
0.029
0.0980
3
0.068
0.4500
4
0.008
3.0000
0.00
1
10
100
1000
10000
t [ms]
Fig. 6 Transient thermal impedance junction to case vs. time per diode
IXYS reserves the right to change limits, conditions and dimensions.
© 2019 IXYS all rights reserved
Data according to IEC 60747and per semiconductor unless otherwise specified
20191204d
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