Mitsubishi Electric FR-V500 Series Instruction Manual page 6

Vector inverter
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1.1.2
Selection of peripheral devices
Check the motor applicable to the inverter you purchased. Appropriate peripheral devices need to be selected
according to the motor capacity. Refer to the list below and prepare appropriate peripheral devices.
200V class
Motor
Applicable
Output
Inverter
(kW)
Type
*1
1.5
FR-V520-1.5K
2.2
FR-V520-2.2K
3.7
FR-V520-3.7K
5.5
FR-V520-5.5K
7.5
FR-V520-7.5K
11
FR-V520-11K
15
FR-V520-15K
18.5
FR-V520-18.5K
22
FR-V520-22K
30
FR-V520-30K
37
FR-V520-37K
45
FR-V520-45K
55
FR-V520-55K
400V class
Motor
Applicable
Output
Inverter
(kW)
Type
*1
1.5
FR-V540-1.5K
2.2
FR-V540-2.2K
3.7
FR-V540-3.7K
5.5
FR-V540-5.5K
7.5
FR-V540-7.5K
11
FR-V540-11K
15
FR-V540-15K
18.5
FR-V540-18.5K
22
FR-V540-22K
30
FR-V540-30K
37
FR-V540-37K
45
FR-V540-45K
55
FR-V540-55K
*1 Select the MCCB according to the inverter power supply capacity.
Install one MCCB per inverter.
For installations in the United States or Canada, use the fuse certified by the UL and cUL.
(Refer to page 115.)
*2 When the breaker on the inverter primary 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.
Moulded Case Circuit
Breaker
(MCCB)
or Earth Leakage Circuit
*1*2
Breaker (ELB
)
With power factor
Standard
improving reactor
30AF 15A
30AF 15A
30AF 20A
30AF 15A
30AF 30A
30AF 30A
50AF 50A
50AF 40A
100AF 60A
50AF 50A
100AF 75A
100AF 75A
225AF 125A
100AF 100A
225AF 150A
225AF 125A
225AF 175A
225AF 150A
225AF 225A
225AF 175A
400AF 250A
225AF 225A
400AF 300A
400AF 300A
400AF 400A
400AF 350A
Moulded Case Circuit
Breaker
(MCCB)
or Earth Leakage Circuit
*1*2
Breaker (ELB
)
With power factor
Standard
improving reactor
30AF 10A
30AF 10A
30AF 15A
30AF 10A
30AF 20A
30AF 15A
30AF 30A
30AF 20A
30AF 30A
30AF 30A
50AF 50A
50AF 40A
100AF 60A
50AF 50A
100AF 75A
100AF 60A
100AF 100A
100AF 75A
225AF 125A
100AF 100A
225AF 150A
225AF 125A
225AF 175A
225AF 150A
225AF 200A
225AF 175A
3
Basic configuration and connection
of peripheral devices
Power Factor
Power Factor
Improving AC
Improving DC
Reactor
Reactor
FR-HAL/BAL-1.5K
FR-HEL/BEL-1.5K
FR-HAL/BAL-2.2K
FR-HEL/BEL-2.2K
FR-HAL/BAL-3.7K
FR-HEL/BEL-3.7K
FR-HAL/BAL-5.5K
FR-HEL/BEL-5.5K
FR-HAL/BAL-7.5K
FR-HEL/BEL-7.5K
FR-HAL/BAL-11K
FR-HEL/BEL-11K
FR-HAL/BAL-15K
FR-HEL/BEL-15K
FR-HAL/BAL-22K
FR-HEL/BEL-18.5K
FR-HAL/BAL-22K
FR-HEL/BEL-22K
FR-HAL/BAL-30K
FR-HEL/BEL-30K
FR-HAL/BAL-37K
FR-HEL/BEL-37K
FR-HAL/BAL-45K
FR-HEL/BEL-45K
FR-HAL/BAL-55K
FR-HEL/BEL-55K
Power Factor
Power Factor
Improving AC
Improving DC
Reactor
Reactor
FR-HAL/BAL-H1.5K FR-HEL/BEL-H1.5K
FR-HAL/BAL-H2.2K FR-HEL/BEL-H2.2K
FR-HAL/BAL-H3.7K FR-HEL/BEL-H3.7K
FR-HAL/BAL-H5.5K FR-HEL/BEL-H5.5K
FR-HAL/BAL-H7.5K FR-HEL/BEL-H7.5K
FR-HAL/BAL-H11K FR-HEL/BEL-H11K
FR-HAL/BAL-H15K FR-HEL/BEL-H15K
FR-HAL/BAL-H22K FR-HEL/BEL-H18.5K S-N50
FR-HAL/BAL-H22K FR-HEL/BEL-H22K
FR-HAL/BAL-H30K FR-HEL/BEL-H30K
FR-HAL/BAL-H37K FR-HEL/BEL-H37K
FR-HAL/BAL-H45K FR-HEL/BEL-H45K
FR-HAL/BAL-H55K FR-HEL/BEL-H55K
Magnetic
Contac-
tor (MC)
S-N10
S-N10
S-N20, N21
S-N25
S-N35
S-N50
S-N65
S-N80
S-N95
S-N125
S-N150
S-N180
S-N220
Magnetic
Contac-
tor (MC)
S-N10
S-N10
S-N20, N21
S-N20, N21
S-N20, N21
S-N25
S-N35
S-N50
S-N65
S-N80
S-N95
S-N125
MCCB
INV
IM
MCCB
INV
IM
1

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