C&H Technology PS22A76 User Manual
Page 9

PS22A76
Intellimod™ Module
Dual-In-Line Intelligent Power Module
25 Amperes/1200 Volts
Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272
8
Rev. 08/09
V
CC
= 600V
V
D
= V
DB
= 15V
V
IN
= 0V ↔ 5V
L = 1mH
T
j
= 25°C
T
j
= 125°C
COLLECTOR RECOVERY CURRENT, -I
C
, (AMPERES)
REVERSE RECOVERY CURRENT, I
rr
, (AMPERES)
REVERSE RECOVERY TIME, t
rr
, (s)
COLLECTOR RECOVERY CURRENT, -I
C
, (AMPERES)
REVERSE RECOVERY CHARACTERISTICS
(TYPICAL - N-SIDE)
COLLECTOR RECOVERY CURRENT, -I
C
, (AMPERES)
EMITTER-COLLECTOR VOLTAGE, V
EC
, (VOLTS)
FREE-WHEEL DIODE
FORWARD CHARACTERISTICS
(TYPICAL)
V
IN
= 5V
T
j
= 25°C
T
j
= 125°C
COLLECTOR-CURRENT, I
C
, (AMPERES)
COLLECTOR-EMITTER
SATURATION VOLTAGE, V
CE(sat)
, (VOLTS
)
COLLECTOR-EMITTER
SATURATION VOLTAGE CHARACTERISTICS
(TYPICAL)
0
40
60
V
D
= V
DB
= 15V
V
IN
= 5V
T
j
= 25°C
T
j
= 125°C
20
3.5
3.0
2.0
2.5
1.5
1.0
0.5
0
0
40
60
20
3.0
2.0
2.5
1.5
1.0
0.5
0
REVERSE RECOVERY CHARACTERISTICS
(TYPICAL - N-SIDE)
10
0
10
1
10
2
10
-1
COLLECTOR CURRENT, I
C
, (AMPERES)
SWITCHING TIME, t
off
, (
µs)
SWITCHING TIME (OFF) VS.
COLLECTOR CURRENT
(TYPICAL - N-SIDE)
10
0
10
1
10
0
10
1
10
2
10
0
10
1
10
2
10
0
10
1
10
2
10
-1
COLLECTOR CURRENT, I
C
, (AMPERES)
SWITCHING TIME, t
on
, (
µs)
SWITCHING TIME (ON) VS.
COLLECTOR CURRENT
(TYPICAL - N-SIDE)
10
0
10
1
10
0
10
1
10
2
10
-2
10
-1
10
0
10
0
10
1
10
2
10
-2
COLLECTOR CURRENT, I
C
, (AMPERES)
SWITCHING TIME, t
c(on)
, (
µs)
SWITCHING TIME (ON) VS.
COLLECTOR CURRENT
(TYPICAL - N-SIDE)
10
-1
10
0
10
1
10
-2
10
-1
10
0
10
1
10
-1
10
0
10
1
10
2
10
0
10
1
10
2
COLLECTOR CURRENT, I
C
, (AMPERES)
SWITCHING TIME, t
c(off)
, (
µs)
SWITCHING TIME (OFF) VS.
COLLECTOR CURRENT
(TYPICAL - N-SIDE)
10
0
10
1
10
2
COLLECTOR CURRENT, I
C
, (AMPERES)
SWITCHING LOSS, P
SW(on)
, (mJ/PULSE)
SWITCHING LOSS (ON) VS.
COLLECTOR CURRENT
(TYPICAL - N-SIDE)
V
CC
= 600V
V
D
= V
DB
= 15V
V
IN
= 0V ↔ 5V
L = 1mH
T
j
= 25°C
T
j
= 125°C
V
CC
= 600V
V
D
= V
DB
= 15V
V
IN
= 0V ↔ 5V
L = 1mH
T
j
= 25°C
T
j
= 125°C
V
CC
= 600V
V
D
= V
DB
= 15V
V
IN
= 0V ↔ 5V
L = 1mH
T
j
= 25°C
T
j
= 125°C
V
CC
= 600V
V
D
= V
DB
= 15V
V
IN
= 0V ↔ 5V
L = 1mH
T
j
= 25°C
T
j
= 125°C
V
CC
= 600V
V
D
= V
DB
= 15V
V
IN
= 0V ↔ 5V
L = 1mH
T
j
= 25°C
T
j
= 125°C
V
CC
= 600V
V
D
= V
DB
= 15V
V
IN
= 0V ↔ 5V
L = 1mH
T
j
= 25°C
T
j
= 125°C