MITSUBISHI IGBT MODULES
CM600HU-24H
HIGH POWER SWITCHING USE INSULATED TYPE
2 - M4 NUTS E H
A B K L
2 - M8 NUTS N(4 - Mounting Holes) F
J G C D E G E C CM
TC Measured Point
P
M
Description: Mitsubishi IGBT Modules are designed for use in switching applications. Each module consists of one IGBT in a single configuration with a reverse-connected 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 VCE(sat) Discrete Super-Fast Recovery Free-Wheel Diode High Frequency Operation Isolated Baseplate for Easy Heat Sinking Applications: AC Motor Control Motion/Servo Control UPS Welding Power Supplies
E
C
E G
Outline Drawing and Circuit Diagram
Dimensions A B C D E F G
Inches 4.33 3.66±0.01 3.15 2.44±0.01 0.53 0.37 0.57
Millimeters 110.0 93.0±0.25 80.0 62.0±0.25 13.5 9.5 14.5
Dimensions H J K L M N P
Inches 0.96 0.22 1.14 0.85
Millimeters 24.5 5.5 29.0 21.5 34 +1.0/-0.5 6.5 Dia.
Ordering Information: Example: Select the complete module number you desire from the table - i.e. CM600HU-24H is a 1200V (VCES), 600 Ampere Single IGBT Module.
Type CM Current Rating Amperes 600 VCES Volts (x 50) 24
1.34 +0.04/-0.02 0.26 Dia.
1.02 +0.04/-0.02 26 +1.0/-0.5
Sep.1998
MITSUBISHI IGBT MODULES
CM600HU-24H
HIGH POWER SWITCHING USE INSULATED TYPE Absolute Maximum Ratings, Tj = 25 °C unless otherwise specified
Ratings Junction Temperature Storage Temperature Collector-Emitter Voltage (G-E SHORT) Gate-Emitter Voltage (C-E SHORT) Collector Current (Tc = 25°C) Peak Collector Current (Tj ≤ 150°C) Emitter Current** (Tc = 25°C) Peak Emitter Current** Maximum Collector Dissipation (Tc = 25°C) Mounting Torque, M8 Main Terminal Mounting Torque, M6 Mounting Mounting Torque, M4 Terminal Weight Isolation Voltage (Main Terminal to Baseplate, AC 1 min.) Symbol Tj Tstg VCES VGES IC ICM IE IEM Pc – – – – Viso CM600HU-24H -40 to 150 -40 to 125 1200 ±20 600 1200* 600 1200* 3100 8.8~10.8 3.5~4.5 1.3~1.7 600 2500 Units °C °C Volts Volts Amperes Amperes Amperes Amperes Watts N·m N·m N·m Grams Vrms
* Pulse width and repetition rate should be such that the device junction temperature (Tj) does not exceed Tj(max) rating. **Represents characteristics of the anti-parallel, emitter-to-collector free-wheel diode (FWDi).
Static Electrical Characteristics, Tj = 25 °C unless otherwise specified
Characteristics Collector-Cutoff Current Gate Leakage Voltage Gate-Emitter Threshold Voltage Collector-Emitter Saturation Voltage Symbol ICES IGES VGE(th) VCE(sat) QG VEC Test Conditions VCE = VCES, VGE = 0V VGE = VGES, VCE = 0V IC = 60mA, VCE = 10V IC = 600A, VGE = 15V, Tj = 25°C IC = 600A, VGE = 15V, Tj = 125°C Total Gate Charge Emitter-Collector Voltage* VCC = 600V, IC = 600A, VGE = 15V IE = 600A, VGE = 0V Min. – – 4.5 – – – – Typ. – – 6 2.9 2.85 2250 – Max. 2 0.5 7.5 3.7 – – 3.2 Units mA µA Volts Volts Volts nC Volts
* Pulse width and repetition rate should be such that the device junction temperature (Tj) does not exceed Tj(max) rating.
Dynamic Electrical Characteristics, Tj = 25 °C unless otherwise specified
Characteristics Input Capacitance Output Capacitance Reverse Transfer Capacitance Resistive Load Switch Times Turn-on Delay Time Rise Time Turn-off Delay Time Fall Time Symbol Cies Coes Cres td(on) tr td(off) tf trr Qrr VCC = 600V, IC = 600A, VGE1 = VGE2 = 15V, RG = 2.1Ω, Resistive Load Switching Operation IE = 600A, diE/dt = -1200A/µs IE = 600A, diE/dt = -1200A/µs VCE = 10V, VGE = 0V Test Conditions Min. – – – – – – – – – Typ. – – – – – – – – 3.3 Max. 90 31.5 18 300 700 450 350 300 – Units nF nF nF ns ns ns ns ns µC
Diode Reverse Recovery Time Diode Reverse Recovery Charge
Thermal and Mechanical Characteristics, Tj = 25 °C unless otherwise specified
Characteristics Thermal Resistance, Junction to Case Thermal Resistance, Junction to Case Contact Thermal Resistance Symbol Rth(j-c)Q Rth(j-c)D Rth(c-f) Test Conditions Per IGBT Module Per FWDi Module Per Module, Thermal Grease Applied Min. – – – Typ. – – 0.015 Max. 0.04 0.06 – Units °C/W °C/W °C/W
Sep.1998
MITSUBISHI IGBT MODULES
CM600HU-24H
HIGH POWER SWITCHING USE INSULATED TYPE
OUTPUT CHARACTERISTICS (TYPICAL)
TRANSFER CHARACTERISTICS (TYPICAL)
COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (TYPICAL)
1200
COLLECTOR CURRENT, IC, (AMPERES)
960 720
VGE = 20V 11
960
COLLECTOR-EMITTER SATURATION VOLTAGE, VCE(sat), (VOLTS)
Tj = 25oC
1200
15
5
VCE = 10V Tj = 25°C Tj = 125°C VGE = 15V Tj = 25°C Tj = 125°C
12
COLLECTOR CURRENT, IC, (AMPERES)
4 3 2 1
720
480 240
10
480 240 0
9 8
0 0 2 4 6 8 10
COLLECTOR-EMITTER VOLTAGE, VCE, (VOLTS)
0 0 4 8 12 16 20 0 240 480 720 960 1200
GATE-EMITTER VOLTAGE, VGE, (VOLTS) COLLECTOR-CURRENT, IC, (AMPERES)
COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (TYPICAL)
FREE-WHEEL DIODE FORWARD CHARACTERISTICS (TYPICAL)
CAPACITANCE VS. VCE (TYPICAL)
10
COLLECTOR-EMITTER SATURATION VOLTAGE, VCE(sat), (VOLTS)
104
Tj = 25°C
102
Tj = 25°C
CAPACITANCE, Cies, Coes, Cres, (nF)
8 6 4 2
EMITTER CURRENT, IE, (AMPERES)
IC = 1200A
Cies
IC = 600A
103
101
Coes
102
100
Cres VGE = 0V
IC = 240A
0 0 4 8 12 16 20
GATE-EMITTER VOLTAGE, VGE, (VOLTS)
101 1.0
1.5
2.0
2.5
3.0
3.5
10-1 10-1
100
101
102
EMITTER-COLLECTOR VOLTAGE, VEC, (VOLTS)
COLLECTOR-EMITTER VOLTAGE, VCE, (VOLTS)
HALF-BRIDGE SWITCHING CHARACTERISTICS (TYPICAL)
REVERSE RECOVERY CHARACTERISTICS (TYPICAL) di/dt = -1200A/µsec Tj = 25°C Irr
REVERSE RECOVERY CURRENT, Irr, (AMPERES)
GATE CHARGE, VGE
103
td(off)
REVERSE RECOVERY TIME, trr, (ns)
103
102
20
GATE-EMITTER VOLTAGE, VGE, (VOLTS)
IC = 600A VCC = 400V
16 12 8 4
VCC = 600V
SWITCHING TIME, (ns)
tf td(on)
102
tr
102
trr
101
VCC = 600V VGE = ±15V RG = 2.1 Ω Tj = 125°C
101 101
102
COLLECTOR CURRENT, IC, (AMPERES)
103
101 101
102
EMITTER CURRENT, IE, (AMPERES)
100 103
0 0 800 1600 2400 3200
GATE CHARGE, QG, (nC)
Sep.1998
MITSUBISHI IGBT MODULES
CM600HU-24H
HIGH POWER SWITCHING USE INSULATED TYPE
NORMALIZED TRANSIENT THERMAL IMPEDANCE, Zth(j-c) Zth = Rth • (NORMALIZED VALUE)
10-3 101
10-2
10-1
100
101
NORMALIZED TRANSIENT THERMAL IMPEDANCE, Zth(j-c) Zth = Rth • (NORMALIZED VALUE)
TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (IGBT)
TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (FWDi)
10-3 101
10-2
10-1
100
101
100
Single Pulse TC = 25°C Per Unit Base = Rth(j-c) = 0.04°C/W
100
Single Pulse TC = 25°C Per Unit Base = Rth(j-c) = 0.06°C/W
10-1
10-1
10-1
10-1
10-2
10-2
10-2
10-2
10-3 10-5
TIME, (s)
10-4
10-3 10-3
10-3 10-5
TIME, (s)
10-4
10-3 10-3
Sep.1998