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Specifications Standard specifications

Standard specifications

Three-phase 200V series

Item Specifications
Type
(FRNF1S-2J)
0.75 1.5 2.2 3.7 5.5 7.5 11 15 18.5 22 30 37 45 55 75 90 110
Nominal applied motor (kW) 0.75 1.5 2.2 3.7 5.5 7.5 11 15 18.5 22 30 37 45 55 75 90 110
Output ratings Rated capacity (kVA) *2 1.6 2.6 4.0 6.3 8.3 11 16 21 25 30 40 49 59 75 102 121 146
Rated voltage (V) *3 Three-phase, 200 to 240V (With AVR function)
Rated current (A)
*4,*10
4.2 7.0 10.6 16.7 23.8
(22.5)
31.8
(29)
45
(42)
58
(55)
73
(68)
85
(80)
114
(107)
140
(130)
170
(156)
211
(198)
276
(270)
322
(320)
390
(384)
Overload capability 120% of rated current for 1min
Rated frequency 50, 60Hz
Input ratings Phases,
voltage,
frequency
Main power supply Three-phase, 200 to 240V, 50/60Hz Three-phase, 200 to 220V/50Hz
Three-phase, 200 to 230V/60Hz
Auxiliary control
power input
Single-phase, 200 to 240V, 50/60Hz for the terminals
Single-phase, 200 to 220V/50Hz
Single-phase, 200 to 230V/60Hz
Auxiliary fan
power input
*9
- Single-phase, 200 to 220V/50Hz
Single-phase, 200 to 230V/60Hz
Voltage/frequency variations oltage: +10 to -15% (Voltage unbalance: 2% or less) *8, Frequency: +5 to -5%
Rated current (A) *5 (with DCR) 3.2 6.1 8.9 15 21.1 28.8 42.2 57.6 71.0 84.4 114 138 167 203 282 334 410
(without DCR) 5.3 9.5 13.2 22.2 31.5 42.7 60.7 80.1 97.0 112 151 185 225 270 - - -
Required power supply capacity (kVA) *6 1.2 2.2 3.1 5.3 7.4 10 15 20 25 30 40 48 58 71 98 116 142
Braking Torque (%) *7
20
10 to 15
DC injection braking Starting frequency: 0.0 to 60.0Hz, Braking time: 0.0 to 30.0s, Braking level: 0 to 60%
DC reactor (DCR) Option Standard
Applicable safety standards UL508C, C22.2 No.14, EN50178:1997 (Applying)
Enclosure (IEC60529) IP20, UL open type IP00, UL open type
Cooling method Natural cooling Fan cooling
Mass (kg) 3.1 3.2 3.3 3.4 3.4 5.8 6.0 6.9 9.5 9.7 11.5 23 33 34 41 75 120
*1 Fuji 4-pole standard motor
*2 Rated capacity is calculated by assuming the output rated voltage as 220V for three-phase 200V series.
*3 Output voltage cannot exceed the power supply voltage.
*4 An excessively low setting of the carrier frequency may result in the higher motor temperature or tripping of the inverter by its overcurrent limiter setting. Lower the continuous load or maximum load instead. (When setting the carrier frequency (F26) to 1kHz, reduce the load to 80% of its rating.)
*5 Trial calculation done on assumption that the power capacity is 500kVA (or 10 times the inverter capacity if the inverter capacity is larger than 50kVA) and the inverter is connected to the power supply of %X=5%.
*6 Obtained when a DC reactor (DCR) is used.
*7 Average braking torque (Varies with the efficiency of the motor.)
*8 Voltage unbalance (%) = ( MAX. voltage(V) - Min. voltage(V) ) / ( Therr-phase average voltage(V) ) x 67 (IEC61800-3 (5.2.3))
If this value is 2 to 3%, use an AC reactor (ACR option).
*9 Use [R1, T1] terminals for driving AC cooling fans of an inverter powered by the DC link bus, such as by a high power factor PWM converter. (In ordinary operation, the terminals are not used.)
*10 When using the inverter at an ambient temperature higher than 40°C and at a carrier frequency of 3kHz or over, select the inverter so that the current does not exceed the rated current specified in ( ) during continuous operation.

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