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11.3 Molded Case Circuit Breaker (MCCB), Residual-current-operated Protective Device
(RCD)/Earth Leakage Circuit Breaker (ELCB) and Magnetic Contactor (MC)
11-12
Table 11.3-1 Rated Current of Molded Case Circuit Breaker (MCCB), Residual-Current-Operated Protective
Device (RCD)/ Earth Leakage Circuit Breaker (ELCB) and Magnetic Contactor (MC) (continued)
HHD mode (kW rating motor)
Power supply
voltage
Nominal
applied
motor
(kW)
Inverter type
MCCB, RCD/ELCB rated
current (A)
Magnetic contactor (MC)
Input circuit
Output
circuit
DC reactors (DCRs)
DC reactors (DCRs)
w/ DCR
w/o DCR
w/ DCR
w/o DCR
Three-phase
200V
0.1
FRN0001E2■
-2
5
5
SC-05
SC-05
SC-05
0.2
FRN0002E2■
-2
0.4
FRN0004E2■
-2
0.75
FRN0006E2■
-2
10
1.5
FRN0010E2■
-2
10
15
2.2
FRN0012E2■
-2
20
3.7
FRN0020E2■
-2
20
30
SC-4-0
5.5
FRN0030E2
■
-2
30
50
SC-4-0
SC-5-1
SC-4-0
7.5
FRN0040E2
■
-2
40
75
SC-5-1
SC-N1
SC-N1
11
FRN0056E2
■
-2
50
100
SC-N1
SC-N2S
15
FRN0069E2
■
-2
75
125
SC-N2
SC-N3
SC-N2
18.5
FRN0088E2■
-2
100
150
SC-N2S
SC-N4
SC-N2S
22
FRN0115E2■
-2
175
SC-N5
SC-N3
Three-phase
400V
0.4
FRN0002E2■
-4
5
5
SC-05
SC-05
SC-05
0.75
FRN0004E2■
-4
1.5
FRN0006E2■
-4
10
2.2
FRN0007E2■
-4
10
15
3.7
FRN0012E2■
-4
20
5.5
FRN0022E2
■
-4
15
30
7.5
FRN0029E2
■
-4
20
40
SC-4-0
11
FRN0037E2
■
-4
30
50
SC-4-0
SC-N1
SC-4-0
15
FRN0044E2
■
-4
40
60
SC-5-1
SC-5-1
18.5
FRN0059E2
■
-4
75
SC-N1
SC-N2
SC-N1
22
FRN0072E2
■
-4
50
100
SC-N2S
30
FRN0085E2
■
-4
75
125
SC-N2
SC-N3
SC-N2
37
FRN0105E2
■
-4
100
SC-N2S
SC-N4
SC-N2S
45
FRN0139E2
■
-4
150
SC-N3
SC-N3
55
FRN0168E2
■
-4
125
200
SC-N5
SC-N4
75
FRN0203E2
■
-4
175
-
SC-N4
-
SC-N5
90
FRN0240E2
■
-4
200
SC-N7
SC-N7
110
FRN0290E2
■
-4
250
SC-N8
SC-N8
132
FRN0361E2
■
-4
300
160
FRN0415E2
■
-4
350
SC-N11
SC-N11
200
FRN0520E2
■
-4
500
SC-N12
SC-N12
220
FRN0590E2
■
-4
Single-phase
200V
0.1
FRN0001E2■
-7
5
5
SC-05
SC-05
SC-05
0.2
FRN0002E2■
-7
0.4
FRN0003
E2■
-7
10
0.75
FRN0005
E2■
-7
10
15
1.5
FRN0008
E2■
-7
15
20
2.2
FRN0011
E2■
-7
20
30
SC-5-1
Note:
A box (■) in the above table replaces S (Basic type) or E
(EMC filter built-in type) depending on the enclosure.
A box (
) in the above table replaces GA, GB or C depending on the model.
•
Install the MCCB or RCD/ELCB at the input side of the inverter. They cannot be installed at the output side of
the inverter.
•
The above table lists the rated current of MCCBs and RCD/ELCBs to be used in the power control panel with an
internal temperature of lower than 50°C (122°F). The rated current is factored by a correction coefficient of 0.85
as the RCDs’/MCCBs’ and ELCBs’ original rated current is specified when using them in a surrounding
temperature of 40°C (104°F) or lower. Select an MCCB and/or RCD/ELCB suitable for the actual short-circuit
breaking capacity needed for your power systems.
•
For the selection of the MC type, it is assumed that the 600 V HIV (allowable surrounding temperature: 75°C
(167°F)) wires for the power input/output of the inverter are used. If an MC type for another class of wires is
selected, the wire size suitable for the terminal size of both the inverter and the MC type should be taken into
account.
•
Use ELCBs with overcurrent protection.
•
To protect your power systems from secondary accidents caused by the broken inverter, use an MCCB and/or
RCD/ELCB with the rated current listed in the above table. Do not use an MCCB or RCD/ELCB with a rating
higher than that listed.
Содержание FRENIC-Ace series
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