CM150TL-24NF Powerex Inc, CM150TL-24NF Datasheet - Page 4

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CM150TL-24NF

Manufacturer Part Number
CM150TL-24NF
Description
IGBT MOD 6PAC 1200V 150A NF SER
Manufacturer
Powerex Inc
Series
IGBTMOD™r
Type
IGBT Moduler
Datasheet

Specifications of CM150TL-24NF

Configuration
Three Phase Inverter
Voltage - Collector Emitter Breakdown (max)
1200V
Vce(on) (max) @ Vge, Ic
3V @ 15V, 150A
Current - Collector (ic) (max)
150A
Current - Collector Cutoff (max)
1mA
Input Capacitance (cies) @ Vce
23nF @ 10V
Power - Max
890W
Input
Standard
Ntc Thermistor
No
Mounting Type
Chassis Mount
Package / Case
Module
Voltage
1200V
Current
150A
Circuit Configuration
6-Pac
Rohs Compliant
Yes
Recommended Gate Driver
VLA504
Recommended Dc To Dc Converter
VLA106-15242 or VLA106-24242
Interface Circuit Ref Design
BG2B-3015 x3
For Use With
BG2B-5015 - KIT DEV BOARD 2CN 5A FOR IGBTBG2B-3015 - KIT DEV BOARD 2CN 3A FOR IGBTBG2B-1515 - KIT DEV BOARD 1.5A FOR IGBTBG2A-NF - KIT DEV BOARD FOR IGBT
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Igbt Type
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CM150TL-24NF
Quantity:
726
Part Number:
CM150TL-24NF
Manufacturer:
MIT
Quantity:
20 000
4
Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com
CM150TL-24NF
Six IGBTMOD™ NF-Series Module
150 Amperes/1200 Volts
10
10
10
10
10
10
10
10
10
10
-1
-2
-3
3
2
1
2
1
0
0
10
10
10
REVERSE RECOVERY CHARACTERISTICS
1
0
-3
V
V
R
T
Inductive Load
Single Pulse
T
Per Unit Base =
R
R
j
CC
GE
G
C
IMPEDANCE CHARACTERISTICS
th(j-c)
th(j-c)
= 25°C
0.14°C/W
(IGBT)
0.23°C/W
(FWDi)
= 25°C
= 2.1Ω
EMITTER CURRENT, I
= 600V
= ±15V
10
=
=
TRANSIENT THERMAL
GATE RESISTANCE, R
SWITCHING LOSS VS.
GATE RESISTANCE
-2
(IGBT & FWDi)
(TYPICAL)
(TYPICAL)
TIME, (s)
10
10
10
10
-1
-5
2
1
V
V
I
T
Inductive Load
C Snubber at Bus
E
C
j
CC
GE
, (AMPERES)
= 125°C
= 150A
= 600V
= ±15V
G
, (Ω)
E
E
10
10
SW(on)
SW(off)
-4
0
I
t
rr
rr
10
10
10
10
3
2
-3
10
10
10
1
10
10
10
3
2
1
-1
-2
-3
10
10
10
20
16
12
8
4
0
2
1
0
10
REVERSE RECOVERY SWITCHING LOSS VS.
0
1
I
C
= 150A
200
EMITTER CURRENT, I
GATE CHARGE VS. V GE
GATE CHARGE, Q
EMITTER CURRENT
400
V
(TYPICAL)
CC
10
= 400V
2
600
V
V
R
T
Inductive Load
C Snubber at Bus
E
E
, (AMPERES)
G
CC
GE
j
G
rr
= 125°C
V
, (nC)
= 2.1Ω
CC
= 600V
= ±15V
800
= 600V
1000
10
3
10
10
10
10
10
10
2
1
0
2
1
0
10
REVERSE RECOVERY SWITCHING LOSS VS.
10
1
0
V
V
R
T
Inductive Load
C Snubber at Bus
j
CC
GE
G
E
= 125°C
COLLECTOR CURRENT, I
= 2.1Ω
rr
= 600V
= ±15V
COLLECTOR CURRENT
GATE RESISTANCE, R
SWITCHING LOSS VS.
GATE RESISTANCE
(TYPICAL)
(TYPICAL)
10
10
2
1
V
V
I
T
Inductive Load
C Snubber at Bus
E
j
C
CC
GE
= 150A
= 125°C
, (AMPERES)
G
= 600V
= ±15V
, (Ω)
01/10 Rev. 1
E
E
SW(on)
SW(off)
10
10
3
2

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