
B-65285EN/03 START-UP PROCEDURE 3.START-UP PROCEDURE
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3.2 CONNECTING THE POWER
3.2.1 Checking the Voltage and Capacity of the Power
Before connecting the power, you should measure the AC power
voltage.
Table 3.2.1(a) Action for the AC power (200-V input type)
AC power
voltage
Nominal
voltage
Action
170 to 264 V 200 to 240 V
These power lines can be connected directly
to the system.
Note) If the voltage is below the rated value,
the rated output may not be obtained.
264 V or more 380 to 550 V
This power line must be connected through
an insulation transformer to step down the
voltage to 200 V.
Table 3.2.1(b) Action for the AC power (400-V input type)
AC power
voltage
Nominal
voltage
Action
340 to 528 V 400 to 480 V
These power lines can be connected directly
to the system.
Note) If the voltage is below the rated value,
the rated output may not be obtained.
Table 3.2.1 (c) and (b) list the input power specification for the power
supply module. Use a power source with sufficient capacity so that the
system will not malfunction due to a voltage drop even at a time of peak
load.
Table 3.2.1 (b) AC power voltage specifications (200-V input type)
Model
PSM
-5.5i
PSM
-11i
PSM
-15i
PSM
-26i
PSM
-30i
PSM
-37i
PSM
-55i
Nominal voltage rating 200 to 240 VAC -15%,+10%
Power source frequency 50/60 Hz ±1 Hz
Power source capacity (for the
main circuit) [kVA]
9 172237445379
Power source capacity (for the
control circuit) [kVA]
0.7
Table 3.2.1 (b) AC power voltage specifications (200-V input type)
Model
PSM
-11HVi
PSM
-18HVi
PSM
-30HVi
PSM
-45HVi
PSM
-75HVi
PSM
-100HVi
Nominal voltage rating
(for the main circuit)
400 to 480VAC -15%,+10%
Nominal voltage rating
(for the control circuit)
200 to 240VAC -15%,+10%
Power source frequency 50/60Hz ±1Hz
Power source capacity (for the
main circuit) [kVA]
17 26 44 64 107 143
Power source capacity (for the
control circuit) [kVA]
0.7