Mitsubishi Electric FR-E720-0.4K Instruction Manual page 10

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Peripheral devices
2.1
Peripheral devices
Check the inverter model of the inverter you purchased. Appropriate peripheral devices must be selected according to the capacity.
Refer to the following list and prepare appropriate peripheral devices.
Applicable Inverter
Model
FR-E720-0.1K
FR-E720-0.2K
FR-E720-0.4K
FR-E720-0.75K
FR-E720-1.5K
FR-E720-2.2K
FR-E720-3.7K
FR-E720-5.5K
FR-E720-7.5K
FR-E720-11K
FR-E720-15K
FR-E740-0.4K
FR-E740-0.75K
FR-E740-1.5K
FR-E740-2.2K
FR-E740-3.7K
FR-E740-5.5K
FR-E740-7.5K
FR-E740-11K
FR-E740-15K
FR-E720S-0.1K
FR-E720S-0.2K
FR-E720S-0.4K
FR-E720S-0.75K
FR-E720S-1.5K
FR-E720S-2.2K
FR-E710W-0.1K
FR-E710W-0.2K
FR-E710W-0.4K
FR-E710W-0.75K

Select an MCCB according to the power supply capacity.
Install one MCCB per inverter.
For the use in the United States or Canada, refer to page 50, and select an appropriate fuse or molded case circuit
breaker (MCCB).

Magnetic contactor is selected based on the AC-1 class. The electrical durability of magnetic contactor is 500,000 times. When the magnetic contactor is
used for emergency stop during motor driving, the electrical durability is 25 times.
If using an MC for emergency stop during motor driving, select an MC regarding the inverter input side current as JEM 1038-AC-3 class rated current. When
using an MC on the inverter output side for commercial-power supply operation switching using a general-purpose motor, select an MC regarding the rated
motor current as JEM 1038-AC-3 class rated current.

When connecting a single-phase 100V power input inverter to a power transformer (50kVA or more), install a AC reactor (FR-HAL) so that the performance
is more reliable. (
Refer to Chapter 3 of the Instruction Manual (Applied).)

The power factor may be slightly lower.

Single-phase 100V power input model is not compatible with DC reactor.
NOTE
 When the inverter capacity is larger than the motor capacity, select an MCCB and a magnetic contactor according to
the inverter model and cable and reactor according to the motor output.
 When the breaker on the inverter input side trips, check for the wiring fault (short circuit), damage to internal parts of
the inverter, etc. Identify the cause of the trip, then remove the cause and power ON the breaker.
6
Molded Case Circuit Breaker
(MCCB)
Motor
or Earth Leakage Circuit Breaker
Output
(ELB)
(kW)
Reactor connection
without
0.1
5A
0.2
5A
0.4
5A
0.75
10A
1.5
15A
2.2
20A
3.7
30A
5.5
50A
7.5
60A
11
75A
15
125A
0.4
5A
0.75
5A
1.5
10A
2.2
15A
3.7
20A
5.5
30A
7.5
30A
11
50A
15
60A
0.1
5A
0.2
5A
0.4
10A
0.75
15A
1.5
20A
2.2
40A
0.1
10A
0.2
10A
0.4
15A
0.75
30A
Magnetic Contactor

(MC)
Reactor connection
with
without
5A
S-T10
5A
S-T10
5A
S-T10
10A
S-T10
15A
S-T10
15A
S-T10
30A
S-T21
40A
S-T35
50A
S-T35
75A
S-T35
100A
S-T50
5A
S-T10
5A
S-T10
10A
S-T10
10A
S-T10
15A
S-T10
20A
S-T21
30A
S-T21
40A
S-T21
50A
S-T35
5A
S-T10
5A
S-T10
10A
S-T10
10A
S-T10
20A
S-T10
30A
S-T21
5A
S-T10
10A
S-T10
15A
S-T10
20A
S-T10
Reactor

FR-HAL
FR-HEL
with
S-T10
0.4K
0.4K

S-T10
0.4K
0.4K
S-T10
0.4K
S-T10
0.75K
0.75K
S-T10
1.5K
S-T10
2.2K
S-T10
3.7K
S-T21
5.5K
S-T35
7.5K
S-T35
11K
S-T50
15K
S-T10
H0.4K
H0.4K
S-T10
H0.75K
H0.75K
S-T10
H1.5K
H1.5K
S-T10
H2.2K
H2.2K
S-T10
H3.7K
H3.7K
S-T12
H5.5K
H5.5K
S-T21
H7.5K
H7.5K
S-T21
H11K
H11K
S-T21
H15K
H15K

S-T10
0.4K
0.4K

S-T10
0.4K
0.4K

S-T10
0.75K
0.75K

S-T10
1.5K
1.5K

S-T10
2.2K
2.2K

S-T10
3.7K
3.7K

, 
S-T10
0.75K



S-T10
1.5K
,



S-T10
2.2K
,



S-T10
3.7K
,
MCCB
INV
MCCB
INV


0.4K
1.5K
2.2K
3.7K
5.5K
7.5K
11K
15K






IM
IM

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