POWEREX CM100DY-28H Datasheet

CM100DY-28H
Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
A
H
C2E1
C
C2E1
Outline Drawing and Circuit Diagram
Dimensions Inches Millimeters
J 0.63 16.0
K
P - DIA. (2 TYP.)
J
D
Q
B
E
N
E
R - M5 THD (3 TYP.)
JJ
N
E2
Dimensions Inches Millimeters
H
C1E2
G1 E1 E2 G2
L
M
K 0.51 13.0
L 0.47 12.0 M 0.30 7.5 N 0.28 7.0
P 0.256 Dia. Dia. 6.5 Q 0.26 6.5 R M5 Metric M5
S 0.16 4.0
S
G
S
.110 TAB
F
G2 E2
C1
E1 G1
Dual IGBTMOD™ H-Series Module
100 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 PowerLow VDiscrete Super-Fast Recovery
High Frequency OperationIsolated Baseplate for Easy
Applications:
AC Motor ControlMotion/Servo ControlUPSWelding Power SuppliesLaser Power Supplies
Ordering Information:
Example: Select the complete part module number you desire from the table below -i.e. CM100DY-28H is a 1400V (V Dual IGBTMOD™ Power Module.
Type Current Rating V
CM 100 28
CE(sat)
(135ns) Free Wheel Diode (20-25kHz) Heat Sinking
), 100 Ampere
CES
Amperes Volts (x 50)
CES
1
Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
CM100DY-28H Dual IGBTMOD™ H-Series Module
100 Amperes/1400 Volts
Absolute Maximum Ratings, Tj = 25 °C unless otherwise specified
Ratings Symbol CM100DY-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
j
stg CES GES
C
CM
Emitter Current IE* 100 Amperes Emitter Current-Pulse IEM* 200** Amperes Maximum Collector Dissipation P
c
Max. Mounting Torque M5 Terminal Screws 17 in-lb Max. Mounting Torque M6 Mounting Screws 26 in-lb Module Weight (Typical) 270 Grams V Isolation V
* IE, VEC, Trr, Qrr & diE/dt represent characteristics of the anti-parallel, emitter to collector free-wheel diode (FWDi). ** Pulse width and repetition rate should be such that the device junction temp. (Tj) does not exceed T *** Junction temperature (Tj) should not increase beyond 150°C.
j(max)
rating.
RMS
–40 to 150 °C –40 to 125 °C
1400 Volts
±20 Volts 100 Amperes
200** Amperes
780*** 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
µ
IC = 10mA, VCE = 10V 5.0 6.5 8.0 Volts
IC = 100A, VGE = 15V 3.1 4.2* Volts
A
IC = 100A, VGE = 15V, Tj = 125°C 2.95 Volts
Total Gate Charge Q
* Pulse width and repetition rate should be such that device junction temperature rise is negligible.
G
VCC = 800V, IC = 100A, VGE = 15V 510 nC
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 Emitter-Collector Voltage V Diode Reverse Recovery Charge Q
ies
oes
res
r
f
rr
EC
rr
VGE = 0V, VCE = 10V 7 nF
VCC = 800V, IC = 100A, 400 ns
V
= V
GE1
= 15V, RG = 3.1 300 ns
GE2
IE = 100A, diE/dt = –300A/µs 300 ns
IE = 100A, VGE = 0V 3.8 V
IE = 100A, diE/dt = –300A/µs 1.0
20 nF
4 nF – 250 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 0.13 °C/W
Per IGBT 0.16 °C/W
Per FWDi 0.35 °C/W
2
Loading...
+ 2 hidden pages