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IPM-R3. 7MBP50RTB060 Datasheet

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IPM-R3. 7MBP50RTB060 Datasheet
















7MBP50RTB060 IPM-R3. Datasheet pdf. Equivalent













Part

7MBP50RTB060

Description

IPM-R3



Feature


7MBP50RTB060 IPM-R3 series Features · T emperature protection provided by direc tly detecting the junction temperature of the IGBTs · Low power loss and soft switching · High performance and high reliability IGBT with overheating prot ection · Higher reliability because of a big decrease in number of parts in b uilt-in control circuit www.DataSheet4 U.com 600V / 50A 7 in.
Manufacture

Fuji Electric

Datasheet
Download 7MBP50RTB060 Datasheet


Fuji Electric 7MBP50RTB060

7MBP50RTB060; one-package Maximum ratings and charac teristics Absolute maximum ratings(at T c=25°C unless otherwise specified) Ite m Symbol Min. Bus voltage (between term inal P and N) Collector-Emitter voltage Collector current Inverter Rating Max . 450 500 400 600 50 100 50 144 30 60 3 0 144 20 Vcc+0.5 3 Vcc 20 150 100 125 A C2.5 3.5 *9 3.5 *9 Unit V V V V A A A W A A A W V V mA V .


Fuji Electric 7MBP50RTB060

mA °C °C °C kV N·m N·m VDC DC VDC( surge) Surge Shortoperating V SC VCES * 1 DC IC 1ms ICP Duty=76.1% -IC *2 Colle ctor power dissipation One transistor P C *3 Collector current DC IC 1ms ICP Fo rward Current of Diode IF Collector pow er dissipation One transistor PC *3 Inp ut voltage of power supply for Pre-Driv er VCC *4 Input signal voltage Vin *5 I nput signal current Iin.


Fuji Electric 7MBP50RTB060

Alarm signal voltage VALM *6 Alarm sign al current IALM *7 Junction temperature Tj Operating case temperature Top Stor age temperature Tstg Isolating voltage (Case-Terminal) Viso *8 Screw torque Mo unting (M5) Terminal (M5) Brake Note 0 0 200 0 -0.5 -0.5 -0.5 -20 -40 - Fig. 1 Measurement of case temperature *1 : Vces shall be applied to the input vol tage between termi.





Part

7MBP50RTB060

Description

IPM-R3



Feature


7MBP50RTB060 IPM-R3 series Features · T emperature protection provided by direc tly detecting the junction temperature of the IGBTs · Low power loss and soft switching · High performance and high reliability IGBT with overheating prot ection · Higher reliability because of a big decrease in number of parts in b uilt-in control circuit www.DataSheet4 U.com 600V / 50A 7 in.
Manufacture

Fuji Electric

Datasheet
Download 7MBP50RTB060 Datasheet




 7MBP50RTB060
www.DataSheet4U.com
7MBP50RTB060
IPM-R3 series
600V / 50A 7 in one-package
Features
· Temperature protection provided by directly detecting the junction
temperature of the IGBTs
· 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
Maximum ratings and characteristics
Absolute maximum ratings(at Tc=25°C unless otherwise specified)
Item
Symbol
DC VDC
Bus voltage
Surge
VDC(surge)
(between terminal P and N)
Shortoperating VSC
Collector-Emitter voltage
VCES *1
Collector current
DC IC
1ms
ICP
Duty=76.1% -IC *2
Collector power dissipation One transistor PC *3
Collector current
DC IC
1ms
ICP
Forward Current of Diode
IF
Collector power dissipation One transistor PC *3
Input voltage of power supply for Pre-Driver VCC *4
Input signal voltage
Vin *5
Input signal current
Iin
Alarm signal voltage
VALM *6
Alarm signal current
IALM *7
Junction temperature
Tj
Operating case temperature
Top
Storage temperature
Tstg
Isolating voltage (Case-Terminal)
Viso *8
Screw torque
Mounting (M5)
Terminal (M5)
Rating
Unit
Min.
Max.
0
0
200
0
-
-
-
-
-
-
-
-
-0.5
-0.5
-
-0.5
-
-
-20
-40
-
-
-
450
500
400
600
50
100
50
144
30
60
30
144
20
Vcc+0.5
3
Vcc
20
150
100
125
AC2.5
3.5 *9
3.5 *9
V
V
V
V
A
A
A
W
A
A
A
W
V
V
mA
V
mA
°C
°C
°C
kV
N·m
N·m
Fig.1 Measurement of case temperature
Note
*1 : Vces shall be applied to the input voltage between terminal P and U or V or W or DB,
N and U or V or W or DB.
*2 : 125°C/FWD Rth(j-c)/(Ic x VF MAX)=125/1.263/(50 x 2.6)x100=76.1%
*3 : Pc=125°C/IGBT Rth(j-c)=125/0.87=144W [Inverter]
Pc=125°C/IGBT Rth(j-c)=125/0.87=144W [Break]
*4 : Vcc shall be applied to the input voltage between terminal No. 3 and 1, 6 and 4, 9 and 7, 11 and 10.
*5 : Vin shall be applied to the input voltage between terminal No. 2 and 1, 5 and 4, 8 and 7, 12,13,14,15 and 10.
*6 : VALM shall be spplied to the voltage between terminal No. 16 and 10.
*7 : IALM shall be applied to the input current to terminal No. 16.
*8 : 50Hz/60Hz sine wave 1 minute.
*9 : Recommendable Value : 2.5 to 3.0 N·m
Weight
Item
Weight
*9 : (For 1 device, Case is under the device)
Symbol
Wt
Min.
-
Typ.
450
Max.
-
Unit
g




 7MBP50RTB060
www.DataSheet4U.com
7MBP50RTB060
IGBT-IPM
Electrical characteristics (at Tc=Tj=25°C, Vcc=15V unless otherwise specified.)
Main circuit
Item
Symbol
Condition
Min.
Collector current at off signal input
Collector-Emitter saturation voltage
Forward voltage of FWD
ICES
VCE(sat)
VF
VCE=600V Vin terminal open.
Ic=50A
Terminal
Chip
Ic=50A
Terminal
Chip
-
-
-
-
-
Collector current at off signal input
Collector-Emitter saturation voltage
ICES
VCE(sat)
VCE=600V Vin terminal open.
Ic=30A
Terminal
Chip
-
-
-
Forward voltage of Diode
VF -Ic=30A
Terminal
Chip
-
-
Turn-on time
Turn-off time
Reverse recovery time
Maximum Avalanche Energy
ton VDC=300V,Tj=125°C
1.2
toff IC=50A Fig.1, Fig.6
-
trr
VDC=300V, IC=50A Fig.1, Fig.6
-
PAV Internal wiring inductance=50nH 30
(A non-repetition)
Main circuit wiring inductace=54nH
Typ.
-
-
2.0
-
1.6
-
-
1.75
-
1.9
-
-
-
-
Max.
1.0
2.5
-
2.6
-
1.0
2.2
-
3.3
-
-
3.6
0.3
-
Unit
mA
V
V
mA
V
V
V
µs
mJ
Control circuit
Item
Supply current of P-line side pre-driver(one unit)
Supply current of N-line side pre-driver
Input signal threshold voltage (on/off)
Symbol
Iccp
ICCN
Vin(th)
Input zener voltage
Alarm signal hold time
VZ
tALM
Limiting resistor for alarm
RALM
Condition
Switching Trequency : 0 to 15kHz
Tc=-20 to 125°C Fig.7
ON
OFF
Rin=20k ohm
Tc=-20°C Fig.2
Tc=25°C Fig.2
Tc=125°C Fig.2
Min. Typ. Max. Unit
- - 18 mA
- - 65 mA
1.00 1.35 1.70 V
1.25 1.60 1.95 V
-
8.0 -
V
1.1 -
- ms
- 2.0 - ms
- - 4.0 ms
1425 1500 1575 ohm
Protection Section ( Vcc=15V)
Item
Over Current Protection Level of Inverter circuit
Over Current Protection Level of brake circuit
Over Current Protection Delay time
SC Protection Delay time
IGBT Chip Over Heating
Over Heating Protection Hysteresis
Over Heating Protection Temperature Level
Over Heating Protection Hysteresis
Under Voltage Protection Level
Under Voltage Protection Hysteresis
Symbol
IOC
tDOC
tSC
TjOH
TjH
TCOH
TCH
VUV
VH
Condition
Tj=125°C
Tj=125°C
Tj=125°C
Tj=125°C Fig.4
surface of IGBT chips
VDC=0V, Ic=0A, Case temperature
Thermal characteristics( Tc=25°C)
Item
Junction to Case thermal resistance
INV
Case to fin thermal resistance with compound
Brake
IGBT
FWD
IGBT
Symbol
Rth(j-c)
Rth(j-c)
Rth(j-c)
Rth(c-f)
Min.
-
-
-
-
Min.
75
45
-
-
150
-
110
-
11.0
0.2
Typ.
-
-
5
-
20
-
20
-
0.5
Max. Unit
-A
-
-
8
--
-
125
-
A
µs
µs
°C
°C
°C
12.5 V
-
Typ.
-
-
-
0.05
Max.
0.87
1.263
0.87
-
Unit
°C/W
°C/W
°C/W
°C/W
Noise Immunity ( VDC=300V, Vcc=15V, Test Circuit Fig.5)
Item
Common mode rectangular noise
Common mode lightning surge
Condition
Pulse width 1µs, polarity ±,10minuets
Judge : no over-current, no miss operating
Rise time 1.2µs, Fall time 50µs
Interval 20s, 10 times
Judge : no over-current, no miss operating
Min.
±2.0
Typ.
-
±5.0 -
Max.
-
Unit
kV
- kV
Recommendable value
Item
DC Bus Voltage
Operating Supply Voltage of Pre-Driver
Screw torque (M5)
Symbol
VDC
VCC
-
Min.
-
13.5
2.5
Typ.
-
15.0
-
Max.
400
16.5
3.0
Unit
V
V
Nm




 7MBP50RTB060
www.DataSheet4U.com
7MBP50RTB060
IGBT-IPM
Vin
Vin(th)
Ic
trr
90%
ton
on
90%
50%
Vin(th)
10%
toff
Figure 1. Switching Time Waveform Definitions
/Vin
Vge (Inside IPM)
on
Gate on
off
Gate off
Fault (Inside IPM) normal
off
on
/ALM
alarm
tALM>Max.
tALM>Max.
Fault : Over-current, Over-heat or Under-voltage
Figure 2. Input / Output Timing Diagram
2ms(typ.)
tALM
tsc
Ic Ic
Ic
IALM
IALM
IALM
Figure. 4 Definition of tsc
VccU
20k
DC VinU
15V
Sw1
GNDU
Vcc
20k
DC VinX
15V
Sw2
GND
P CT
U
V+
AC200V
W
N
4700p
Noise
Earth
Cooling
Fin
Figure 5. Noise Test Circuit
Vcc P
DC
15V
HCPL-
4504
20k IPM
Vin
L
+
Ic
DC
300V
GND
N
Figure 6. Switching Characteristics Test Circuit
Icc Vcc P
DC
15V
P.G
+8V fsw
I PM
Vin
GND
U
V
W
N
Figure 7. Icc Test Circuit




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