PM300RLA060 MITSUBISHI, PM300RLA060 Datasheet

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PM300RLA060

Manufacturer Part Number
PM300RLA060
Description
FLAT-BASE TYPE INSULATED PACKAGE
Manufacturer
MITSUBISHI
Datasheet

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
PM300RLA060
Quantity:
560
Part Number:
PM300RLA060
Manufacturer:
MIT
Quantity:
20 000
APPLICATION
General purpose inverter, servo drives and other motor controls
8- 5.5
MOUNTING HOLES
PM450CLA060
PACKAGE OUTLINES
12-M6 NUTS
3.75
11
6
3.22
9.08
14
13
14
12
17
12
1
53.75
21
6- 2.5
3-2.54
50
15
31.84
16
22
17
18
0.5
50
12
17
11
2
19
3-2.54
20
3.22
28
21
22
12
17
10
3
21
3-2.54
50
23
31.84
24
172
22
162
50
25
26
24-
0.5
50
12
17
9
4
27
3-2.54
28
0.64
3.22
28
29
30
12
17
8
5
21
3-2.54
50
31.84
31
32
53.75
22
33
34
0.5
12
17
7
6
35
3-2.54
36
MITSUBISHI <INTELLIGENT POWER MODULES>
FEATURE
a) Adopting new 5th generation IGBT (CSTBT) chip, which
b) I adopt the over-temperature conservation by Tj detection of
• 3 450A, 600V Current-sense IGBT type inverter
• Monolithic gate drive & protection logic
• Detection, protection & status indication circuits for, short-
• Acoustic noise-less 37kW class inverter application
• UL Recognized
performance is improved by 1 m fine rule process.
For example, typical V
CSTBT chip, and error output is possible from all each con-
servation upper and lower arm of IPM.
circuit, over-temperature & under-voltage (Fo available from
all arm devices)
Terminal code
1. N
2. P
3. N
4. P
5. N
6. P
PM450CLA060
10. V
11. U
12. U
7. W
8. W
9. V
13. VUPC
14. UPFO
15. UP
16. VUP1
17. VUNC
18. UNFO
Yellow Card No.E80276(N)
ce
(sat)=1.8V @Tj=125 C
INSULATED PACKAGE
File No.E80271
19. UN
20. VUN1
21. VVPC
22. VPFO
23. VP
24. VVP1
(SCREWING DEPTH)
2
FLAT-BASE TYPE
(24)
17
12
Dimensions in mm
+1.0
–0.5
6
25. VVNC
26. VNFO
27. VN
28. VVN1
29. VWPC
30. WPFO
31. WP
32. VWP1
33. VWNC
34. WNFO
35. WN
36. VWN1
Jul. 2005

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PM300RLA060 Summary of contents

Page 1

... MITSUBISHI <INTELLIGENT POWER MODULES> PM450CLA060 FEATURE a) Adopting new 5th generation IGBT (CSTBT) chip, which performance is improved fine rule process. For example, typical adopt the over-temperature conservation by Tj detection of CSTBT chip, and error output is possible from all each con- servation upper and lower arm of IPM. • ...

Page 2

INTERNAL FUNCTIONS BLOCK DIAGRAM WN1 WNC NFO WPC PFO 1.5k 1.5k Gnd In Fo Vcc Gnd In Fo Vcc Gnd Si Out OT Gnd Si Out N W MAXIMUM RATINGS (Tj = ...

Page 3

TOTAL SYSTEM Symbol Parameter Supply Voltage Protected by V CC(PROT Supply Voltage (Surge) CC(surge) Storage Temperature T stg V Isolation Voltage iso THERMAL RESISTANCES Symbol Parameter R Junction to case Thermal th(j-c)Q R Resistances th(j-c)F R th(c-f) Contact ...

Page 4

CONTROL PART Symbol Parameter I Circuit Current D V Input ON Threshold Voltage th(ON) Input OFF Threshold Voltage V th(OFF) Short Circuit Trip Level SC Short Circuit Current Delay t off(SC) Time OT Over Temperature Protection OT r Supply Circuit ...

Page 5

PRECAUTIONS FOR TESTING 1. Before appling any control supply voltage (V sponding supply voltage and each input signal should be kept off state. After this, the specified ON and OFF level setting for each input signal should be done. 2. ...

Page 6

≥0 NOTES FOR STABLE AND SAFE OPERATION ; • Design the PCB pattern to minimize wiring length between opto-coupler and IPM’s input terminal, and ...

Page 7

PERFORMANCE CURVES OUTPUT CHARACTERISTICS (TYPICAL) 500 400 V = 17V D 300 200 100 0 0 0.5 1 1.5 COLLECTOR-EMITTER VOLTAGE V COLLECTOR-EMITTER SATURATION VOLTAGE (VS CHARACTERISTICS D ...

Page 8

DIODE FORWARD CHARACTERISTICS (TYPICAL 15V 125 0.5 1 1.5 2 2.5 ...

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