SKiiP 232 GDL 120 - 410 CTV (E/A)
Absolute Maximum Ratings
Symbol
Conditions
1)
IGBT & Inverse Diode
V
CES
Operating DC link voltage
V
CC 9)
T
heatsink
= 25
°C
I
C
3)
IGBT & Diode
T
j
AC, 1 min.
V
isol 4)
T
heatsink
= 25
°C
I
F
T
heatsink
= 25
°C;
t
p
< 1 ms
I
FM
t
p
= 10 ms; sin.; T
j
= 150 °C
I
FSM
I
2
t (Diode) t
p
= 10 ms; T
j
= 150 °C
Values
1200
900
200
– 40 ... + 150
3000
5)
200
400
1450
10,5
typ.
–
0,3
15
2,5(3)
2,9(3,5)
0,8
15
150
1,0
100
0,6
1,0
80
60 / 98
1,9 (1,8)
2,1(2,05)
8
1,4 / 0,9
11 / 6
1,9(1,8)
2,1(2,05)
0,9
6,0
0,13
0,35(0,35)
115
0,036
250
60
115
920
–
–
0597
Units
V
V
A
°C
V
A
A
A
kA
2
s
max. Units
–
V
–
mA
–
mA
–
V
–
V
–
nF
–
nH
–
ns
–
µs
–
ns
–
µs
–
µs
–
ns
–
mJ
–
–
–
–
–
–
–
–
–
–
–
120
–
255
–
120
940
6
10
V
V
mJ
V
mΩ
V
V
V
mΩ
K/W
K/W
°C
K/W
A
A
°C
V
Nm
Nm
SKiiPPACK
®
SK integrated
intelligent Power PACK
3-phase bridge with
brake chopper
SKiiP 232 GDL 120
+Driver 410 CTV(E/A)
7,13)
Preliminary Data
Case S5
Characteristics
Conditions
1)
min.
Driver without power supply
≥
V
CES
V
GE
= 0
–
T
j
= 25 °C
½
–
V
CE
= V
CES
T
j
= 125 °C
V
CEsat
I
C
= 150 A
T
j
= 25 (125) °C
–
½
I
C
= 200 A
T
j
= 25 (125) °C
–
V
CEsat
C
CHC
per SKiiPPACK AC side
–
Top (Bottom)
–
L
CE
t
d(on)
–
I
C
= 200 A
–
t
d(on)Driver
T
j
= 125 °C
V
CC
=
t
r
–
½
600 V
–
t
d(off)
½
inductive load
t
d(off)Driver
–
–
t
f
E
on
+ E
off
V
CC
= 600 V / 900 V
–
Inverse Diode
2)
- inverter
V
F
= V
EC
I
F
= 150 A
T
j
= 25 (125)
°C
–
½
–
I
F
= 200 A
T
j
= 25 (125)
°C
E
on
+ E
off
I
F
= 200 A;T
j
=125 °C
–
2)
IGBT / Inverse Diode
V
TO
T
j
= 125 °C
–
T
j
= 125
°C
–
r
T
Diode
2)
- brake chopper (BC)
I
F
= 150 A
T
j
= 25 (125)
°C
–
V
F
=V
EC
I
F
= 200 A
T
j
= 25 (125)
°C
–
T
j
= 125 °C
–
V
TO
r
T
T
j
= 125
°C
–
Thermal Characteristics
per IGBT
–
R
thjh
per diode inverter (BC)
–
R
thjh
T
tp 12)
Over temperature protection
110
P16/360 F; v
air
= 279 m
3
/ h
–
R
thha 6)
SKiiPPACK protection
Short circuit protection
245
I
TRIPSC
I
TRIPLG
Ground fault protection
–
Overtemperature protection
110
T
TRIP
U
DCTRIP 13)
U
DC
-protection
900
Mechanical Data
Mdc
for DC terminals, SI Units
4
Mac
for AC terminals, SI Units
8
Symbol
V
(BR)CES
I
CES
Features
•
Low thermal impedance
•
Optimal thermal management
with integrated heatsink
•
Pressure contact technology
with increased power cycling
capability, compact design
•
Low stray inductance
•
High power, small losses
•
Overtemp. protection
•
Short circuit protection, due to
evalutation of current sensor
signals
•
Isolated power supply
1)
2)
3)
4)
5)
6)
7)
9)
12)
13)
T
heatsink
= 25 °C, unless
otherwise specified
CAL = Controlled Axial Lifetime
Technology (soft and fast)
without driver
Driver input to DC link/AC output
or DC link/AC output to heatsink
3,5 kV (AC; on request)
other heatsink on request
C - integrated current sensors
T - Temperature protection
V - 15 V or 24 V power supply
(E/A) voltage levels V
DC br.chopper
with SK-DC link (low inductance)
thermal reference for R
thjh
; R
thha
option available for driver
U - DC-link voltage sense
©
by SEMIKRON
B 7 – 29
SKiiPPACK
®
SK integrated
intelligent Power PACK
3-phase bridge with
brake chopper
SKiiP 232 GDL 120
+ Driver 410 CTV (E/A)
3,5)
Preliminary Driver Data
SKiiP 232 GDL 120 - 410 CTV (E/A)
Driver for 3-phase bridge and brake chopper
3-phase brake
bridge chopper
Symbol Conditions
Values
Units
supply voltage primary
18
V
V
S1
supply voltage primary
30
V
V
S2 1)
output peak current max.
±
10
±
1,5
A
I
outmax
output average current
±
50
±
90
mA
I
outAV
switching frequency max.
20
5
kHz
f
swmax
dv/dt
rate of rise and fall of voltage
75
50
kV/µs
(secondary to primary side)
V
isol IO
Isol. test volt. IN/OUT
3
kV~
(RMS; 1 min)
V
isol 12
Isol. test volt. OUT1-OUT2
1,5
kV=
– 25 ... + 85
°C
T
op
, T
stg
operating / stor. temperature
Absolute Maximum Ratings
remark
Characteristics
(Ta = 25 °C)
Symbol
V
S1
V
S2 1)
V
UVS
V
UVS 1)
I
S01
I
S02 1)
I
S1
I
S2 1)
Conditions
supply voltage primary
supply voltage primary
supply undervolt. monitoring
supply undervolt. monitoring
sup.current pr.side (standby)
sup.current pr.side (standby)
sup. current pr.side (max)
at f
swmax
sup. current pr.side (max)
at f
swmax
input thresh. volt. (high) min
input thresh. volt. (low) max.
turn-on output gate voltage
turn-off output gate voltage
propagation delay time on
propagation delay time off
dead time of interlock
VCE-thresh. st. monitoring
logic low output voltage
logic high output voltage
Input voltage RESET Low
Input voltage RESET High
logic low input volt. Chop. ext. ON
logic high input volt.Chop. ext. ON
Features
3-phase bridge
•
CMOS compatible inputs
•
Short circuit protection by eva-
luation of current sensor signals
•
Drive interlock top/bottom
•
Isolation by transformers
•
Supply undervoltage protection
•
Overtemperature protection
•
U
DC
-monitoring (option)
Features
brake chopper
•
Short circuit protection by V
CE
monitoring and soft switch off
•
Self controlled switching
•
Supply undervoltage protection
•
Overtemperature protection
1)
2)
3)
Values
15,0
±
4 %
24,0
13,5
19,5
16
340
67
250
67
700 +
77
3
⋅
I
AC
1000
3
⋅
I
AC
1350
6)
Units remark
V
+25%/-15%
V
V
V
mA
mA
mA
510 +
6)
77
mA
V
iT+
V
iT-
V
GE(on)
V
GE(off)
t
d(on)
t
d(off)
t
TD
V
CEstat
V
OL 2)
V
oH 2)
V
RESET L
V
RESET H
V
iL
V
iH
t
pdon-error
t
p RESET
T
TRIP
I
AOmax
11,2
5,4
15
–7
1,0
1,0
2,2
-
< 0,6
0
< 20
< 25
5
V
V
V
V
µs
µs
µs
V
typ.
typ.
typ.
typ.
15 mA sink
2,5mA sink
4)
5)
6)
24 V - power supply
Open collector output, external
pull-up resistor necessary
C - integrated current sensors
T - Temperature protection
V - 15 V or 24 V power supply
(E/A) voltage levels V
DC br. chopper
E - EUROPE (400 V
RMS
)
A - USA (460 V
RMS
)
3,5 kV
AC
(on request)
option available for driver
U - DC-link voltage sense
I
AC
- AC-current per phase
propag. delay time-on error
min. pulse width error
memory RESET
max. temperature
max. output current
< 0,6
max. 30
<2
> 12
<5
> 11,5
1
< 60
8
300
115
±
5
±
5
10
9
-
-
V
V
V
V
V
µs
µs
ms
°C
mA
V
V
> 5 mA
< 1 mA
pin 13/20/
22/24/26
10 V=
125 % Ic
9V = 900V;
using opt."U"
U
ITRIPSC
overcurrent trip level
U
DCTRIP
overvoltage trip level
B 7 – 30
0597
©
by SEMIKRON