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Fuji Inverters > FRENIC Mini
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Three-phase series (200V)
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| Item |
Specifications |
| Input power source |
Three-phase
200V |
Type(FRN  C1S-2 ) |
FRN0.1
C1S-2 |
FRN0.2
C1S-2 |
FRN0.4
C1S-2 |
FRN0.75
C1S-2 |
FRN1.5
C1S-2 |
FRN2.2
C1S-2 |
FRN3.7
C1S-2 |
| Nominal applied
motor[kW](*1) |
0.1 |
0.2 |
0.4 |
0.75 |
1.5 |
2.2 |
3.7 |
| Output ratings |
Rated capacity[kVA](*2) |
0.3 |
0.57 |
1.1 |
1.9 |
3.0 |
4.1 |
6.4 |
| Rated voltage[V](*3) |
Three-phase, 200V/50Hz,
200V, 220V, 230V/60Hz |
| Rated current[A](*4) |
0.8
(0.7) |
1.5
(1.4) |
3.0
(2.5) |
5.0
(4.2) |
8.0
(7.0) |
11.0
(10.0) |
17.0
(16.5) |
| Overload capability |
150% of rated current
for 1min, 200% of rated current for 0.5s |
| Rated frequency[Hz] |
50, 60Hz |
| Input ratings |
Phases, voltage,
frequency |
Three-phase, 200 to
240V, 50/60Hz |
| Voltage/frequency
variations |
Voltage: +10 to -15%
(Voltage unbalance *10) : 2% or less)
Frequency: +5 to -5% |
| Momentary voltage dip
capability(*5) |
When the input voltage
is 165V or more, the inverter continues operation.
If it drops below 165V, the inverter operates for
15ms. |
| Rated current [A](*6) |
(with DCR) |
0.57 |
0.93 |
1.6 |
3.0 |
5.7 |
8.3 |
14.0 |
| (without DCR) |
1.1 |
1.8 |
3.1 |
5.3 |
9.5 |
13.2 |
22.2 |
| Required power supply
capacity[kVA](*7) |
0.2 |
0.3 |
0.6 |
1.1 |
2.0 |
2.9 |
4.9 |
| Braking |
Torque[%](*8) |
150 |
100 |
50 |
30 |
| Torque[%](*9) |
- |
150 |
| DC injection braking |
Starting frequency: 0.0
to 60.0Hz, Braking time: 0.0 to 30.0s,Braking level:
0 to 100% of rated current |
| Enclosure (IEC60529) |
IP 20 |
| Cooling method |
Natural cooling |
Fan cooling |
| Weight / Mass[kg] |
0.6 |
0.6 |
0.7 |
0.8 |
1.6 |
1.6 |
2.3 |
|

Three-phase series (400V)
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|
| Item |
Specifications |
| Input power source |
Three-phase
400V |
Type(FRN  C1S-4 ) |
FRN0.4
C1S-4 |
FRN0.75
C1S-4 |
FRN1.5
C1S-4 |
FRN2.2
C1S-4 |
FRN3.7C1S-4
FRN4.0C1S-4 |
| Nominal applied
motor[kW](*1) |
0.4 |
0.75 |
1.5 |
2.2 |
3.7,4.0 |
| Output ratings |
Rated capacity[kVA](*2) |
1.1 |
1.9 |
2.8 |
4.1 |
6.8 |
| Rated voltage[V](*3) |
Three-phase, 380, 400,
415V/50Hz, 380, 400, 440, 460V/60Hz |
| Rated current[A](*4) |
1.5 |
2.5 |
3.7 |
5.5 |
9.0 |
| Overload capability |
150% of rated current
for 1min, 200% of rated current for 0.5s |
| Rated frequency[Hz] |
50, 60Hz |
| Input ratings |
Phases, voltage,
frequency |
Three-phase, 380 to
480V, 50/60Hz |
| Voltage/frequency
variations |
Voltage: +10 to -15%
(Voltage unbalance *10) : 2% or less)
Frequency: +5 to -5% |
| Momentary voltage dip
capability(*5) |
When the input voltage
is 300V or more, the inverter continues operation.
If it drops below 300V, the inverter operates for
15ms. |
| Rated current [A](*6) |
(with DCR) |
0.85 |
1.6 |
3.0 |
4.4 |
7.3 |
| (without DCR) |
1.7 |
3.1 |
5.9 |
8.2 |
13.0 |
| Required power supply
capacity[kVA](*7) |
0.6 |
1.1 |
2.0 |
2.9 |
4.9 |
| Braking |
Torque[%](*8) |
100 |
50 |
30 |
| Torque[%](*9) |
150 |
| DC injection braking |
Starting frequency: 0.0
to 60.0Hz, Braking time: 0.0 to 30.0s,Braking level:
0 to 100% of rated current |
| Enclosure (IEC60529) |
IP 20 |
| Cooling method |
Natural cooling |
Fan cooling |
| Weight / Mass[kg] |
1.1 |
1.2 |
1.6 |
1.6 |
2.3 |
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| * |
A box ( )
in the above tables replaces A, E or J depending on
destination. |
| (*1) |
Fuji's 4-pole standard motor |
| (*2) |
Inverter output capacity (kVA) at 220V in
200V series, 440V in 400V series |
| (*3) |
Output voltage cannot exceed the power
supply voltage. |
| (*4) |
Use the inverter at the current given in (
) or below when the carrier frequency setting is higher
than 4kHz (F26 : 4 to 15) or the ambient temperature is 40°C
or higher. |
| (*5) |
Tested under the standard load condition
(85% load for nominal applied motor). |
| (*6) |
Calculated under Fuji-specified conditions. |
| (*7) |
Obtained when a DC REACTOR (option) is
used. |
| (*8) |
Average braking torque obtained with AVR
control OFF (Varies with the efficiency of the motor.) |
| (*9) |
Average braking torque obtained by use of
external braking resistor (standard type available as
option) |
| (*10) |
Voltage unbalance [%] = Max voltage [V] -
Min voltage [V] /Three-phase average voltage [V] X67
(IEC 61800-3 (5.2.3))
If this value is 2 to 3%, use AC REACTOR (ACR). |
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