Danfoss VLT AutomationDrive FC 302 Operating Manual page 99

90–315 kw, enclosure size d1h–d8h
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Specifications
®
VLT
AutomationDrive FC 302
High/normal overload
(High overload=150% current during 60 s.
Normal overload=110% current during 60 s)
Typical shaft output at 230 V [kW]
Typical shaft output at 230 V [hp]
Enclosure size
Output current (3-phase)
Continuous (at 230 V) [A]
Intermittent (60 s overload) (at 230 V) [A]
Continuous kVA (at 230 V) [kVA]
Maximum input current
Continuous (at 230 V) [A]
Maximum number and size of cables per phase
Mains, motor, brake, and load share [mm
Maximum external mains fuses [A]
Estimated power loss at 230 V [W]
Efficiency
3)
Output frequency [Hz]
Heat sink overtemperature trip [°C (°F)]
Control card overtemperature trip [°C (°F)]
Table 10.2 Electrical Data for Enclosures D2h/D4h, Mains Supply 3x200–240 V AC
1) For fuse ratings, see chapter 10.7 Fuses and Circuit Breakers.
2) 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 drive. Applies for
dimensioning of drive cooling. If the switching frequency is higher than the default setting, the power losses can increase. LCP and typical control
card power consumptions are included. For power loss data according to EN 50598-2, refer to www.danfoss.com/vltenergyefficiency. 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.
3) Measured using 5 m (16.4 ft) shielded motor cables at rated load and rated frequency. Efficiency measured at nominal current. For energy
efficiency class, see chapter 10.4 Ambient Conditions. For part load losses, see www.danfoss.com/vltenergyefficiency.
MG34U502
Operating Guide
N75K
HO
75
100
240
360
96
231
2x185 (2x400 mcm) 2x185 (2x400 mcm) 2x185 (2x400 mcm) 2x185 (2x400 mcm)
2
(AWG)]
1)
400
2), 3)
1990
2623
0.97
0–590
110 (230)
80 (176)
Danfoss A/S © 09/2018 All rights reserved.
N90K
NO
HO
NO
90
90
110
120
120
150
D2h/D4h
302
302
361
332
453
397
120
120
144
291
291
348
550
2613
3284
3195
0.97
0–590
110 (230)
80 (176)
± 15% (tolerance relates to variety in voltage and cable conditions). These
N110
N150
HO
NO
HO
NO
110
150
150
160
150
200
200
215
361
443
443
535
542
487
665
589
144
176
176
213
348
427
427
516
630
800
4117
4103
5209
0.97
0.97
0–590
0–590
110 (230)
110 (230)
80 (176)
80 (176)
10
10
97

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