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2-5
Table 2.6 Recommended Wire Sizes
*1
Recommended wire size (mm
2
)
Main circuit
Main circuit power input
[L1/R, L2/S, L3/T]
[L1/L, L2/N]
Grounding [
G]
Power suppl
y volt
age
Nomi-
nal
applied
motor
(kW)
Inverter type
w/ DCR
*2
w/o DCR
Inverter
output
[U, V, W]
DCR
[P1, P (+)]
Braking
resistor
[P (+), DB]
Control
circuit
0.1
FRN0001C2S-2
0.2
FRN0002C2S-2
–
0.4
FRN0004C2S-2
0.75
FRN0006C2S-2
1.5
FRN0010C2S-2
2.2
FRN0012C2S-2
2.0 / 2.0
(2.5)
2.0 / 2.0
(2.5)
2.0 / 2.0
(2.5)
T
hree-phase 200 V
3.7
FRN0020C2S-2
2.0 / 2.0
(2.5)
2.0 / 5.5
(2.5)
2.0 / 3.5
(2.5)
2.0 / 3.5
(2.5)
2.0 / 2.0
(2.5)
0.4
FRN0002C2S-4
0.75
FRN0004C2S-4
1.5
FRN0005C2S-4
2.2
FRN0007C2S-4
T
hree-phase 400 V
3.7
(4.0)*
FRN0011C2S-4
2.0 / 2.0
(2.5)
2.0 / 2.0
(2.5)
2.0 / 2.0
(2.5)
2.0 / 2.0
(2.5)
2.0 / 2.0
(2.5)
0.1
FRN0001C2S-7
0.2
FRN0002C2S-7
–
0.4
FRN0004C2S-7
0.75
FRN0006C2S-7
2.0 / 2.0
(2.5)
1.5
FRN0010C2S-7
2.0 / 2.0
(2.5)
2.0 / 3.5
(4.0)
2.0 / 2.0
(2.5)
Si
ngl
e-phase 200 V
2.2
FRN0012C2S-7
2.0 / 3.5
(4.0)
3.5 / 5.5
(6.0)
2.0 / 2.0
(2.5)
2.0 / 3.5
(4.0)
2.0 / 2.0
(2.5)
0.5
DCR: DC reactor
Note: A box (
) in the above table replaces A, C, E, or U depending on the shipping destination. For
three-phase 200 V class series of inverters, it replaces A or U.
* 4.0 kW for the EU. The inverter type is FRN0011C2S-4E.
*1 Use crimp terminals covered with an insulated sheath or insulating tube. Recommended wire sizes are
for HIV/IV (PVC in the EU).
*2 Wire sizes are calculated on the basis of input RMS current under the condition that the power supply
capacity and impedance are 500 kVA and 5%, respectively.
*3 Insert the DC reactor (DCR) in either of the primary power input lines. Refer to Chapter 10 for more
details.