SINAMICS G120
Standard inverters 0.37 kW to 250 kW (0.5 hp to 400 hp)
PM250 Power Modules –
7.5 kW to 75 kW (10 hp to 100 hp)
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Siemens D 11.1 · 2009
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Selection and ordering data
To ensure that a suitable Power Module is selected, the following
currents should be used for applications:
• rated output current for applications with light overload
(LO)
• base load current for applications with high overload (HO)
With reference to the rated output current, the modules support
at least 2-pole to 6-pole low-voltage motors, e.g. the new 1LE1
motor series (please refer to the Appendix for further informa-
tion). The rated power is merely a guide value. For a description
of the overload performance, please refer to the general techni-
cal specifications of the Power Modules.
Rated power
1)
Rated output
current
2)
I
rated
Power
based on the
base load
current
3)
Base load
current
3)
I
H
Frame size SINAMICS G120
PM250 Power Module
without integrated
line filter
SINAMICS G120
PM250 Power Module
with integrated
class A line filter
kW hp A kW hp A Order No. Order No.
380 … 480 V 3 AC
7.5 10 18 5.5 7.5 13.2 FSC – 6SL3225-0BE25-5AA0
11.0 15 25 7.5 10 19 FSC – 6SL3225-0BE27-5AA0
15.0 20 32 11.0 15 26 FSC – 6SL3225-0BE31-1AA0
18.5 25 38 15.0 20 32 FSD 6SL3225-0BE31-5UA0 6SL3225-0BE31-5AA0
22 30 45 18.5 25 38 FSD 6SL3225-0BE31-8UA0 6SL3225-0BE31-8AA0
30 40 60 22 30 45 FSD 6SL3225-0BE32-2UA0 6SL3225-0BE32-2AA0
37 50 75 30 40 60 FSE 6SL3225-0BE33-0UA0 6SL3225-0BE33-0AA0
45 60 90 37 50 75 FSE 6SL3225-0BE33-7UA0 6SL3225-0BE33-7AA0
55 75 110 45 60 90 FSF 6SL3225-0BE34-5UA0 6SL3225-0BE34-5AA0
75 100 145 55 75 110 FSF 6SL3225-0BE35-5UA0 6SL3225-0BE35-5AA0
90 125 178 75 100 145 FSF 6SL3225-0BE37-5UA0 6SL3225-0BE37-5AA0
new
new
new
new
new
new
new
new
1)
Rated power based on the rated output current I
rated
. The rated output
current I
rated
is based on the duty cycle for light overload (LO).
2)
The rated output current I
rated
is based on the duty cycle for light overload
(LO). These current values are valid for 400 V and are stamped on the
rating plate of the Power Module.
3)
The base load current I
H
is based on the duty cycle for high overload (HO).