Danfoss VLT AutomationDrive FC 300 Design Manual page 60

90-1200 kw
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Selection
FC 302
High/Normal load*
Typical shaft output at 400 V [kW]
Typical shaft output at 460 V [HP]
Typical shaft output at 500 V [kW]
Enclosure IP21, IP54 without/with
options cabinet
Output current
4
4
Continuous (at 400 V) [A]
Intermittent (60 s overload)
(at 400 V) [A]
Continuous (at 460/500 V) [A]
Intermittent (60 s overload)
(at 460/500 V) [A]
Continuous kVA (at 400 V) [kVA]
Continuous kVA (at 460 V) [kVA]
Continuous kVA
(at 500 V) [kVA]
Maximum input current
Continuous (at 400 V) [A]
Continuous (at 460/500 V) [A]
Max. cable size,motor [mm
Max. cable size,mains F1/F2 [mm
(AWG)
1)
]
Max. cable size,mains F3/F4 [mm
1)
(AWG)
]
Max. cable size, loadsharing [mm
1)
(AWG)
]
Max. cable size, brake [mm
Max. external mains fuses [A]
Estimated power loss
3)4)
at 400 V [W]
Estimated power loss
at 460 V [W]
3) 4)
F3/F4 max. added losses A1 RFI, CB
or Disconnect, & contactor F3/F4
Max. panel options losses
Weight, enclosure IP21, IP54 [kg]
Weight, rectifier module [kg]
Weight, inverter module [kg]
Efficiency
4)
Output frequency
Heatsink overtemp. trip
Control card ambient trip
* High overload=160% torque during 60 s, Normal overload=110% torque during 60 s.
Table 4.3 Technical Specifications, F-frames, 380-500 V Mains Supply 3x380-500 V AC
1) American Wire Gauge.
2) For fuse ratings, see 7.2.1 Fuses.
3) Typical power loss is at normal conditions and expected to be within
values are based on a typical motor efficiency (IE/IE3 border line). Lower efficiency motors add to the power loss in the frequency converter. If the
switching frequency is raised from nominal, the power losses rise significantly. LCP and typical control card power consumptions are included.
Options and customer load can add up to 30 W to the losses, though usually a fully loaded control card and options for slots A and B each add
only 4 W.
4) Measured using 5 m screened motor cables at rated load and rated frequency.
58
®
VLT
AutomationDrive FC 300 Design Guide 90-1200 kW
P450
HO
NO
HO
450
500
500
600
650
650
530
560
560
F1/ F3
800
880
880
1200
968
1320
730
780
780
1095
858
1170
554
610
610
582
621
621
632
675
675
779
857
857
711
759
759
2
1)
(AWG)
]
2
2
2
2
(AWG)
1)
2)
1600
9031
10162
10146
8212
8876
8860
893
963
951
102
102
MG34S202 - Rev. 2013-08-19
P500
P560
NO
HO
NO
HO
560
560
630
630
750
750
900
900
630
630
710
710
F1/ F3
F1/ F3
990
990
1120
1120
1089
1485
1232
1680
890
890
1050
1050
979
1335
1155
1575
686
686
776
776
709
709
837
837
771
771
909
909
964
964
1090
1090
867
867
1022
1022
8x150 (8x300 mcm)
8x240 (8x500 mcm)
8x456 (8x900 mcm)
4x120 (4x250 mcm)
4x185 (4x350 mcm)
2000
11822 10649 12512 12490 14674 14244 17293 15466 19278
10424
9414
11595 11581 13213 13005 16229 14556 16624
1054
978
1093
1092
400
1017/1318
102
102
102
102
0.98
0-590 Hz
110 °C
85 °C
± 15% (tolerance relates to variety in voltage and cable conditions.) These
P630
P710
NO
HO
NO
HO
710
710
800
800
1000
1000
1200
1200
800
800
1000
1000
F1/ F3
F2/ F4
F2/ F4
1260
1260
1460
1460
1386
1890
1606
2190
1160
1160
1380
1380
1276
1740
1518
2070
873
873
1012
1012
924
924
1100
1100
1005
1005
1195
1195
1227
1227
1422
1422
1129
1129
1344
1344
12x150 (12x300 mcm)
6x185 (6x350 mcm)
2500
1230
2067
2280
2236
1260/1561
102
136
136
102
P800
NO
1000
1350
1100
1720
1892
1530
1683
1192
1219
1325
1675
1490
2541
136
102

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