6MBP15RH [FUJI]

Intelligent Power Module ( RH-Series ); 智能功率模块( RH系列)
6MBP15RH
型号: 6MBP15RH
厂家: FUJI ELECTRIC    FUJI ELECTRIC
描述:

Intelligent Power Module ( RH-Series )
智能功率模块( RH系列)

文件: 总4页 (文件大小:172K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
IGBT IPM  
600V  
6MBP 15RH-060  
6×15A  
Intelligent Power Module ( RH-Series )  
n Outline Drawing  
n Maximum Ratings and Characteristics  
Absolute Maximum Ratings ( Tc=25°C)  
Items  
Symbols  
Ratings  
Units  
Min.  
0
Max.  
450  
500  
400  
600  
15  
30  
15  
40  
20  
DC Bus Voltage  
DC Bus Voltage (surge)  
VDC  
VDC(Surge)  
VSC  
VCES  
IC  
ICP  
-IC  
PC  
VCC  
IIN  
VALM  
IALM  
0
V
A
DC Bus Voltage (short operating)  
Collector-Emitter Voltage  
Inverter  
Collector  
Current  
Collector Power Dissipation  
Voltage of Power Supply for Driver  
Input Signal Current  
0
Continuous  
1ms  
Duty=44.1%  
One Transistor  
W
V
mA  
V
-0.3  
0
1
VCC  
15  
Alarm Signal Voltage  
Alarm Signal Current  
mA  
Junction Temperature  
Operating Temperature  
Storage Temperature  
TJ  
TOP  
Tstg  
150  
100  
125  
-20  
-40  
°C  
Isolation Voltage  
Screw Torque  
A.C. 1min.  
Viso  
Mounting (M4)  
2500  
2.0  
V
Nm  
Electrical Characteristics of Power Circuit ( at Tj=25°C, VCC=15V )  
Items  
Symbols  
Conditions  
VCE=600V, Input Terminal Open  
IC=15A  
Min.  
Min.  
Typ.  
Max.  
1.0  
2.7  
Units  
mA  
V
Collector Current At Off Signal Input  
Collector-Emitter Saturation Voltage  
Forward Voltage of FWD  
ICES  
VCE(Sat)  
VF  
-IC=15A  
3.5  
V
Electrical Characteristics of Control Circuit ( at Tj=25°C, VCC=15V )  
Items  
Symbols  
Conditions  
fSW=0~15kHz, TC=-20~100°C  
fSW=0~15kHz, TC=-20~100°C  
On  
Typ.  
2.0  
4.0  
1.35  
1.60  
8.0  
Max.  
5.0  
10.0  
1.70  
1.95  
Units  
Current of P-Line Side Driver (One Unit)  
Current of N-Line Side Driver (Three Units)  
ICCP  
ICCN  
mA  
1.00  
1.25  
VIN(th)  
Input Signal Threshold Voltage  
Off  
V
Input Zener Voltage  
VZ  
RIN=20kW  
IGBT Chips Over Heating Protec. Temp. Level  
Hysteresis  
Inverter Collector Current Protection Level  
Over Current Detecting Time  
Alarm Signal Hold Time  
Over Current Detecting Resistance Value  
Under Voltage Protection Level  
Hysteresis  
TjOH  
TjH  
IOC  
tDOC  
tALM  
ROC  
VUV  
VH  
Surface Of IGBT Chip  
150  
21  
°C  
20  
27  
5.0  
2.0  
7.5  
N-Side, (N1-N2 open)  
Tj=25°C  
33  
7.0  
A
µs  
ms  
mW  
1.0  
11.0  
0.2  
12.5  
0.8  
V
Dynamic Characteristics ( at TC=Tj=125°C, VCC=15V )  
Items  
Symbols  
Conditions  
Min.  
Typ.  
Max.  
Units  
tON  
IC=15A, VDC=300V  
0.5  
Switching Time  
tOFF  
tRR  
3.5  
0.5  
µs  
IF=15A, VDC=300V  
Thermal Characteristics  
Items  
Symbols  
Rth(j-c)  
Conditions  
Inverter IGBT  
Min.  
Typ.  
Max.  
3.1  
Units  
Thermal Resistance  
Rth(j-c)  
Diode  
5.4  
°C/W  
Rth(c-f)  
With Thermal Compound  
0.05  
 
IGBT IPM  
600V  
6MBP 15RH-060  
6×15A  
n Equivalent Circuit  
Drivers include following functions  
À Over-current protection circuit  
Á Amplifier for driver  
 Under-voltage protection circuit  
à IGBT Chip overheating protection  
IGBT IPM  
600V  
6MBP 15RH-060  
6×15A  
n Inverter  
Collector Current vs. Collector-Emitter Voltage  
VCC=15V, Tj=25°C  
Collector Current vs. Collector-Emitter Voltage  
VCC=15V, Tj=125°C  
30  
25  
20  
15  
10  
5
30  
25  
20  
15  
10  
5
0
0
0
1
2
3
4
0
1
2
3
4
Collector-Emitter Voltage  
:
VCE [V]  
Collector-Emitter Voltage  
:
VCE [V]  
Transient Thermal Resistance  
FWD  
Forward Voltage vs. Forward Current  
30  
101  
100  
10-1  
25°C  
Tj=125°C  
25  
20  
15  
10  
5
IGBT  
0
0
1
2
3
4
10-2  
10-1  
Pulse Width PW [sec]  
100  
Forward Voltage  
: VF [V]  
:
Switching Loss vs. Collector Current  
VDC=300V, VCC=15V, Tj=25°C  
Switching Loss vs. Collector Current  
VDC=300V, VCC=15V, Tj=125°C  
2,0  
1,5  
1,0  
0,5  
0,0  
2,0  
1,5  
1,0  
0,5  
0,0  
Eon  
Eoff  
Eon  
Eoff  
Err  
Err  
0
5
10  
15  
20  
25  
0
5
10  
15  
20  
25  
IGBT IPM  
600V  
6MBP 15RH-060  
6×15A  
n Outline Drawing  
Weight: 50g  
Specification is subject to change without notice  
January 99  

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