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PM450CLA060
P1-P3
P4-P6
P7-P8
MITSUBISHI <INTELLIGENT POWER MODULES>
PM450CLA060
FLA
T
-BASE TYPE
INSULA
TED P
ACKAGE
Jul. 2005
T
j
= 25
°
C
V
D
= 15V
t
c(off)
t
c(on)
t
off
t
on
15V
13V
V
D
= 17V
E
SW(off)
E
SW(off)
E
SW(on)
E
SW(on)
E
SW(on)
E
SW(off)
OUTPUT CHARACTERISTICS
(TYPICAL)
COLLECTOR CURRENT I
C
(A)
COLLECTOR-EMITTER VOLTAGE V
CE
(V)
COLLECTOR-EMITTER
SATURATION VOLTAGE V
CE (sat)
(V)
CONTROL SUPPLY VOLTAGE V
D
(V)
SWITCHING TIME t
c(on)
, t
c(off)
(
µ
s)
COLLECTOR CURRENT I
C
(A)
COLLECTOR-EMITTER
SATURATION VOLTAGE V
CE (sat)
(V)
COLLECTOR CURRENT I
C
(A)
T
j
= 25
°
C
V
D
= 15V
T
j
= 25
°
C
T
j
= 125
°
C
SWITCHING TIME t
on
, t
off
(
µ
s)
COLLECTOR CURRENT I
C
(A)
I
C
= 450A
T
j
= 25
°
C
T
j
= 125
°
C
V
CC
= 300V
V
D
= 15V
T
j
= 25
°
C
T
j
= 125
°
C
Inductive load
V
CC
= 300V
V
D
= 15V
T
j
= 25
°
C
T
j
= 125
°
C
Inductive load
COLLECTOR CURRENT I
C
(A)
V
CC
= 300V
V
D
= 15V
T
j
= 25
°
C
T
j
= 125
°
C
Inductive load
COLLECTOR-EMITTER SATURATION
VOLTAGE (VS. V
D
) CHARACTERISTICS
(TYPICAL)
SWITCHING TIME CHARACTERISTICS
(TYPICAL)
COLLECTOR-EMITTER SATURATION
VOLTAGE (VS. Ic) CHARACTERISTICS
(TYPICAL)
SWITCHING TIME CHARACTERISTICS
(TYPICAL)
SWITCHING LOSS CHARACTERISTICS
(TYPICAL)
SWITCHING LOSS E
SW(on)
, E
SW(off)
(mJ/pulse)
3
10
–
1
10
2
10
0
10
1
7
4
5
2
3
7
4
5
2
3
7
4
5
2
23
5
7
10
2
23
5
7
10
3
44
500
400
200
300
100
0
01
0.5
1.5
2.5
2
2.5
2
1.5
1
0.5
0
0
100
200
400
300
500
2.5
2
1.5
1
0.5
0
18
13
12
15
14
17
16
10
–
1
10
1
7
5
3
2
10
1
23
5
7
10
2
10
0
7
5
3
2
23
5
7
10
3
4
4
44
10
–
1
10
1
7
5
3
2
10
1
10
1
23
5
7
10
2
10
0
7
5
3
2
23
5
7
10
3
4
4
44
PERFORMANCE CURVES
MITSUBISHI <INTELLIGENT POWER MODULES>
PM450CLA060
FLA
T
-BASE TYPE
INSULA
TED P
ACKAGE
Jul. 2005
EMITTER-COLLECTOR VOLTAGE V
EC
(V)
DIODE FORWARD CHARACTERISTICS
(TYPICAL)
V
D
= 15V
T
j
= 25
°
C
T
j
= 125
°
C
DIODE REVERSE RECOVERY CHARACTERISTICS
(TYPICAL)
COLLECTOR RECOVERY CURRENT
–
I
C
(A)
REVERSE RECOVERY TIME t
rr
(
µ
s)
REVERSE RECOVERY CURRENT l
rr
(A)
V
CC
= 300V
V
D
= 15V
T
j
= 25
°
C
T
j
= 125
°
C
Inductive load
COLLECTOR RECOVERY CURRENT
–
I
C
(A)
TRANSIENT THERMAL
IMPEDANCE CHARACTERISTICS
(IGBT PART)
NORMALIZED TRANSIENT
THERMAL IMPEDANCE Z
th (
j
–
c)
TIME
(s)
Single Pulse
Per unit base = R
th(
j
–
c)Q
= 0.12
°
C/
W
10
1
10
3
7
5
3
2
0
10
2
7
5
3
2
1
1.5
0.5
2
3
2.5
4
4
10
–
3
10
0
7
5
3
2
10
–
2
7
5
3
2
10
–
1
7
5
3
2
10
–
3
23
5
7
10
–
2
23
5
7
10
–
1
10
–
5
23
5
7
10
–
4
23
5
7
23
5
7
10
0
23
5
7
10
1
TRANSIENT THERMAL
IMPEDANCE CHARACTERISTICS
(FWDi PART)
NORMALIZED TRANSIENT
THERMAL IMPEDANCE Z
th (
j
–
c)
TIME
(s)
Single Pulse
Per unit base = R
th(
j
–
c)F
= 0.19
°
C/
W
10
–
3
10
0
7
5
3
2
10
–
2
7
5
3
2
10
–
1
7
5
3
2
10
–
3
23
5
7
10
–
2
23
5
7
10
–
1
10
–
5
23
5
7
10
–
4
2
3
57
2
3
57
10
0
23
5
7
10
1
3
10
1
23
5
7
10
2
23
5
7
10
3
44
10
–
2
10
1
10
–
1
10
0
7
4
5
2
3
7
4
5
2
3
7
4
5
2
3
7
4
5
2
3
7
4
5
2
3
7
4
5
2
10
0
10
3
10
1
10
2
t
rr
I
rr
0
10
20
30
40
50
60
25
0
51
0
1
5
2
0
CIRCUIT CURRENT I
D
(mA)
CARRIER FREQUENCY f
c
(kHz)
I
D
VS. f
c
CHARACTERISTICS
(TYPICAL)
P-side or N-side
V
D
= 15V
T
j
= 25
°
C
P1-P3
P4-P6
P7-P8
PM450CLA060
Mfr. #:
Buy PM450CLA060
Manufacturer:
Description:
MOD IPM L-SER 6PAC 600V 450A
Lifecycle:
New from this manufacturer.
Delivery:
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PM450CLA060