DC bus voltage
DC bus voltage (Surge)
DC bus voltage (Short operating)
Collector-Emitter voltage
Collector current DC
1ms
Duty=49.6%
Collector power dissipation One transistor
Junction temperature
Input voltage of power supply for pre-driver
Input signal voltage
Input singal current
Alarm signal voltage
Alarm signal current
Storage temperature
Operating case temperature
Isolating voltage (Terminal to base, 50/60Hz sine wave 1min.)
Screw torque
6MBP20RH060 IGBT Modules
IGBT-IPM R series 600V / 20A / 6 in one-pac kage
Absolute maximum ratings (Tc=25˚C unless otherwise specified)
Features
• Low power loss and soft switching
• High performance and high reliability IGBT with overheating
protection
• Higher reliability because of a big decrease in number of parts in
built-in control circuit
Applications
• Inverter for motor drive
• AC and DC servo drive amplifier
• UPS (Uninterruptible power supply)
Maximum ratings and characteristics
Item Symbol Rating Unit
VDC
VDC (surge)
VSC
VCES
IC
ICP
–IC
PC
Tj
VCC
Vin
Iin
VALM
IALM
Tstg
Tcop
Viso
Mounting (M4)
450
500
400
600
20
40
20
63
150
–0.3 to 20
Vz
1
Vcc
15
–40 to 125
–20 to 100
AC 2500
2.0
V
V
V
V
A
A
A
W
˚C
V
V
mA
V
mA
˚C
˚C
V
N • m
Electrical characteristics of power circuit (Tc=Tj=25˚C, Vcc=15V)
Symbol
ICES
VCE (sat)
VF
Condition
VCE=600V, Vin open
Ic=20A
–Ic=20A
Min.
Max.
1.0
2.7
3.5
Unit
mA
V
V
Typ.
Item
Collector current at off signal input
Collector-Emitter saturation voltage
Forward voltage of FWD
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Min.
0.5
Symbol
ton
toff
trr
Unit
µs
µs
µs
IGBT Modules
6MBP20RH060
Switching characteristics (Tc=Tj=25˚C, Vcc=15V)
Item Condition
Ic=20A, VDC=300V
Inductive-Load
Max.
3.5
0.5
Typ.
Switching time (IGBT) See Fig. 3
Switching time (FWD)
Fig.1 Definition of OC delay time
Fig.2 Definition of tsc
Fig.3 Definition of switching time
DC bus voltage
Operating power supply voltage range of pre-drive
Switching frequency
Flatness of heat sink
Mounting screw torque (M4)
Junction to case thermal resistance
Case to fin thermal resistance with compound
Item Symbol
Rth (j-c)
Rth (j-c)
Rth (c-f)
Max.
2.0
3.6
Unit
˚C/W
˚C/W
˚C/W
Typ.
0.05
Thermal characteristics (Tc=Tj=25˚C, Vcc=15V)
IGBT
FWD
Symbol
VDC
VCC
fsw
Item Unit
V
V
kHz
µm
N • m
Typ.
15
Min.
200
13.5
1
–100
1.3
Max.
400
16.5
20
100
1.7
Recommendable value
Min.
Power supply current of P-line pre-driver (one unit)
Power supply current of N-line pre-driver
Input signal threshold voltage
Input zener voltage
IGBT chips overheat protection temperature level
Hysteresis
Collector current protection level
OC detecting resistance value
Protection delay time
Undervoltage protection level
Hysteresis
Alarm signal hold time
mA
mA
V
V
V
˚C
˚C
A
mV
m
µs
V
V
ms
1.00
1.25
150
30
190
11.0
0.2
1.0
2.0
4.0
1.35
1.60
8.0
20
37
200
5.4
5.0
2.0
5.0
10.0
1.70
1.95
44
210
7.0
12.5
0.8
Electrical characteristics of control circuit (Tc=Tj=25˚C, Vcc=15V)
Item Symbol Condition Min. Typ. Max. Unit
ICCP
ICCN
VIn (th)
VZ
TjoH
TjH
IOC
VOC
ROC
tDOC
VUV
VH
tALM
Vin=H
Vin=H
Turn-on
Turn-off
Rin=20k
Surface of IGBT
N-side, (N1-N2 open)
Between N1 and N2
Tj=25˚C Fig. 1, Fig. 2
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64
±1
50.8
±0.8
60
±0.3
57.6
±0.8
16.5
±0.8
31.5
±0.8
2-ø4.5
±0.3
46.5
±1
10
±0.5
0.6
16.5
±0.5
70
±1
2
±0.1
2
±0.1
P
1 10 154 7
U V W N1 N2
2.542.54
4.1
8.212.3 12.313.8 13.8
0.3
7.62 7.62 7.62
Shows theory dimensions
0.6
5
8
Block diagram
IGBT Modules
6MBP20RH060
Outline drawings, mm
Pre-driver 1 includes following functions. (P-side)
• Amplifier for drive
• Power supply undervoltage protection
• IGBT chip overheating protection
Pre-driver 2 includes following functions. (N-side)
• Amplifier for drive
• Power supply undervoltage protection
• IGBT chip overheating protection
• Overcurrent protection
• Alarm signal output
Mass
: 50g
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IGBT Modules
6MBP20RH060
Characteristics (Representative)
Collector current vs. Collector-emitter voltage Collector current vs. Collector-emitter voltage
Switching losses vs. Collector current Switching losses vs. Collector current
Switching time vs. Collector current Switching time vs. Collector current
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IGBT Modules
6MBP20RH060
Forward voltage vs. Forward current Forward voltage vs. Forward current
Transient thermal resistance Power supply current vs. Switching frequency
Overcurrent protection vs. Case temperature
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