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CM50DY-28H
Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
A
B
C
M
D
(3 TYP.)
R
H
E
C2E1
Outline Drawing and Circuit Diagram
Dimensions Inches Millimeters
A 3.70 94.0
B 3.150±0.01 80.0±0.25
C 1.57 40.0
D 1.34 34.0
E 1.22 Max. 31.0 Max.
F 0.90 23.0
G 0.85 21.5
H 0.79 20.0
J 0.71 18.0
FF
E2C2E1
N
L
E2
Dimensions Inches Millimeters
K 0.67 17.0
L 0.63 16.0
M 0.51 13.0
N 0.47 12.0
P 0.28 7.0
Q 0.256 Dia. Dia. 6.5
R 0.16 4.0
S M5 Metric M5
K
C1
S - M5 THD
(3 TYP.)
R
H
Q - DIA.
(2 TYP.)
E2
J
E1
G1 G2
R
.110 TAB
P
G
G2
E2
C1
E1
G1
Dual IGBTMOD™
H-Series Module
50 Amperes/ 1400 Volts
Description:
Powerex IGBTMOD™ Modules
are designed for use in switching
applications. Each module consists
of two IGBT Transistors in a
half-bridge configuration with each
transistor having a reverseconnected super-fast recovery
free-wheel diode. All components
and interconnects are isolated
from the heat sinking baseplate,
offering simplified system assembly
and thermal management.
Features:
□ Low Drive Power
□ Low V
□ Discrete Super-Fast Recovery
□ High Frequency Operation
□ Isolated Baseplate for Easy
Applications:
□ AC Motor Control
□ Motion/Servo Control
□ UPS
□ Welding Power Supplies
□ Laser Power Supplies
Ordering Information:
Example: Select the complete part
module number you desire from
the table below
-i.e. CM50DY-28H is a
1400V-(V
IGBTMOD™ Power Module.
Type Current Rating V
CM 50 28
CE(sat)
(135ns) Free-Wheel Diode
(20-25kHz)
Heat Sinking
), 50 Ampere Dual
CES
Amperes Volts (x 50)
CES
277

Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
CM50DY-28H
Dual IGBTMOD™ H-Series Module
50 Amperes/1400 Volts
Absolute Maximum Ratings, Tj = 25 °C unless otherwise specified
Ratings Symbol CM50DY-28H Units
Junction Temperature T
Storage T emperature T
Collector-Emitter Voltage (G-E SHORT) V
Gate-Emitter Voltage (C-E SHORT) V
Collector Current I
Peak Collector Current I
Diode Forward Current I
Diode Forward Pulse Current I
Power Dissipation P
j
stg
CES
GES
C
CM
F
FM
d
Max. Mounting Torque M5 Terminal Screws – 17 in-lb
Max. Mounting Torque M6 Mounting Screws – 26 in-lb
Module Weight (Typical) – 190 Grams
V Isolation V
* Pulse width and repetition rate should be such that device junction temperature does not exceed the device rating.
RMS
–40 to 150 °C
–40 to 125 °C
1400 Volts
±20 Volts
50 Amperes
100* Amperes
50 Amperes
100* Amperes
400 Watts
2500 Volts
Static Electrical Characteristics, Tj = 25 °C unless otherwise specified
Characteristics Symbol Test Conditions Min. Typ. Max. Units
Collector-Cutoff Current I
Gate Leakage Current I
Gate-Emitter Threshold V oltage V
Collector-Emitter Saturation Voltage V
CES
GES
GE(th)
CE(sat)
VCE = V
VGE = V
, VGE = 0V – – 1.0 mA
CES
, VCE = 0V – – 0.5
GES
IC = 5mA, VCE = 10V 5.0 6.5 8.0 Volts
IC = 50A, VGE = 15V – 3.1 4.2** Volts
µ
A
IC = 50A, VGE = 15V, Tj = 150°C – 2.95 – Volts
Total Gate Charge Q
Diode Forward Voltage V
** Pulse width and repetition rate should be such that device junction temperature rise is negligible.
G
FM
VCC = 800V, IC = 50A, VGE = 15V – 255 – nC
IE = 50A, VGE = 0V – – 3.8 Volts
Dynamic Electrical Characteristics, Tj = 25 °C unless otherwise specified
Characteristics Symbol Test Conditions Min. Typ. Max. Units
Input Capacitance C
Output Capacitance C
Reverse Transfer Capacitance C
Resistive Turn-on Delay Time t
d(on)
Load Rise Time t
Switching Turn-off Delay Time t
d(off)
Times Fall Time t
Diode Reverse Recovery Time t
Diode Reverse Recovery Charge Q
ies
oes
res
r
f
rr
rr
VGE = 0V, VCE = 10V, f = 1MHz – – 3.5 nF
VCC = 800V, IC = 50A, – – 250 ns
V
= V
GE1
= 15V, RG = 6.3Ω – – 150 ns
GE2
IE = 50A, diE/dt = –100A/µs – – 300 ns
IE = 50A, diE/dt = –100A/µs – 0.5 –
–– 10nF
– – 2.0 nF
– – 100 ns
– – 500 ns
µ
C
Thermal and Mechanical Characteristics, Tj = 25 °C unless otherwise specified
Characteristics Symbol Test Conditions Min. Typ. Max. Units
Thermal Resistance, Junction to Case R
Thermal Resistance, Junction to Case R
Contact Thermal Resistance R
th(j-c)
th(j-c)
th(c-f)
Per Module, Thermal Grease Applied – – 0.075 °C/W
Per IGBT – – 0.31 °C/W
Per FWDi – – 0.70 °C/W
278

Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
CM50DY-28H
Dual IGBTMOD™ H-Series Module
50 Amperes/1400 Volts
OUTPUT CHARACTERISTICS
(TYPICAL)
100
80
, (AMPERES)
C
60
40
20
COLLECTOR CURRENT, I
0
0246810
SATURATION VOLTAGE CHARACTERISTICS
15
Tj = 25oC
VGE = 20V
COLLECTOR-EMITTER VOLTAGE, VCE, (VOLTS)
COLLECTOR-EMITTER
(TYPICAL)
12
13
11
10
9
7
8
10
Tj = 25°C
8
, (VOLTS)
CE(sat)
6
IC = 100A
IC = 50A
4
COLLECTOR-EMITTER
2
SATURATION VOLTAGE, V
0
048121620
GATE-EMITTER VOLTAGE, VGE, (VOLTS)
HALF-BRIDGE
SWITCHING CHARACTERISTICS
4
10
3
10
2
10
SWITCHING TIME, (ns)
1
10
0
10
0
10
COLLECTOR CURRENT, IC, (AMPERES)
t
d(off)
t
d(on)
t
f
t
r
(TYPICAL)
10
1
IC = 20A
VCC = 800V
= ±15V
V
GE
= 6.3Ω
R
G
= 125°C
T
j
TRANSFER CHARACTERISTICS
(TYPICAL)
100
VCE = 10V
Tj = 25°C
= 125°C
80
, (AMPERES)
C
60
T
j
40
20
COLLECTOR CURRENT, I
0
048121620
GATE-EMITTER VOLTAGE, VGE, (VOLTS)
FREE-WHEEL DIODE
FORWARD CHARACTERISTICS
I
rr
t
rr
(TYPICAL)
3.5
(TYPICAL)
2
10
Tj = 25°C
, (AMPERES)
E
1
10
EMITTER CURRENT, I
0
10
1.0 1.5 2.0 2.5 3.0 4.0
EMITTER-COLLECTOR VOLTAGE, VEC, (VOLTS)
REVERSE RECOVERY CHARACTERISTICS
3
10
, (ns)
rr
2
10
1
10
0
10
SATURATION VOLTAGE CHARACTERISTICS
5
4
, (VOLTS)
CE(sat)
3
2
COLLECTOR-EMITTER
1
SATURATION VOLTAGE, V
0
020406080
2
10
1
, (nF)
10
res
, C
oes
, C
ies
0
10
-1
10
CAPACITANCE, C
-2
10
10
20
16
, (AMPERES)
, (VOLTS)
rr
GE
12
COLLECTOR-EMITTER
(TYPICAL)
VGE = 15V
Tj = 25°C
= 125°C
T
j
COLLECTOR-CURRENT, IC, (AMPERES)
CAPACITANCE VS. V
(TYPICAL)
VGE = 0V
f = 1MHz
-1
COLLECTOR-EMITTER VOLTAGE, VCE, (VOLTS)
IC = 50A
0
10
GATE CHARGE, V
VCC = 600V
CE
1
10
GE
VCC = 800V
100
C
ies
C
oes
C
res
2
10
8
REVERSE RECOVERY TIME, t
di/dt = -100A/µsec
T
= 25°C
j
1
2
10
10
0
10
EMITTER CURRENT, IE, (AMPERES)
1
10
10
2
10
4
GATE-EMITTER VOLTAGE, V
REVERSE RECOVERY CURRENT, I
-1
0
0 100
200 400
GATE CHARGE, QG, (nC)
300
279

Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
CM50DY-28H
Dual IGBTMOD™ H-Series Module
50 Amperes/1400 Volts
TRANSIENT THERMAL
IMPEDANCE CHARACTERISTICS
-3
10
1
10
th(j-c)
NORMALIZED TRANSIENT THERMAL IMPEDANCE, Z
Single Pulse
= 25°C
T
C
Per Unit Base = R
0
10
-1
10
• (NORMALIZED VALUE)
th
-2
= R
10
th
Z
-3
10
(IGBT)
-2
10
-1
10
10
TIME, (s) TIME, (s)
th(j-c)
-5
10
= 0.31°C/W
10
TRANSIENT THERMAL
IMPEDANCE CHARACTERISTICS
0
-4
1
10
-1
10
-2
10
-3
10
-3
10
-3
10
1
10
th(j-c)
NORMALIZED TRANSIENT THERMAL IMPEDANCE, Z
Single Pulse
= 25°C
T
C
Per Unit Base = R
0
10
-1
10
• (NORMALIZED VALUE)
th
-2
= R
10
th
Z
-3
10
(FWDi)
-2
10
10
th(j-c)
10
-1
= 0.7°C/W
-5
0
10
-4
10
1
10
-1
10
-2
10
-3
10
-3
10
280