8 Specifications
8.1 Electrical Data, 200–240 V and 3x115Y/200–139Y/240 V
Table 43: Mains Supply 3x200–240 V AC and 3x115Y/200–139Y/240 V AC, Normal Overload 110% for 1 minute, P1K1–P3K7
Typical shaft output [kW]
Typical shaft output at 208 V [hp]
Continuous (3x200–240 V) [A]
Intermittent (3x200–240 V) [A]
Continuous kVA (208 V AC) [kVA]
Continuous (3x200–240 V) [A]
Intermittent (3x200–240 V) [A]
A2/A3 with mains disconnect [kA
rms
]
A4/A5 with mains disconnect [kA
rms
]
Without mains disconnect [kA
rms
]
Power losses and efficiency
Estimated power loss at rated maximum load [W]
(2)
1
A2+A3 may be converted to IP21 using a conversion kit.
2
The typical power loss is at normal load conditions and expected to be within ±15% (tolerance relates to variety in voltage and cable conditions).
Values are based on a typical motor efficiency. Lower efficiency motors also add to the power loss in the drive and conversely. If the switching fre-
quency is raised from nominal, the power losses may rise significantly. LCP and typical control card power consumptions are included. Further op-
tions and customer load may add up to 30 W to the losses. (Though typically only 4 W extra for a fully loaded control card or options for slot A or slot
B, each). Although measurements are made with state-of-the-art equipment, some measurement inaccuracy must be allowed for (±5%).
3
Measured using 5 m (16.4 ft) shielded motor cables at rated load and rated frequency.
Table 44: Mains Supply 3x200–240 V AC and 3x115Y/200–139Y/240 V AC, Normal Overload 110% for 1 minute, P5K5–P15K
Typical shaft output [kW]
Typical shaft output at 208 V [hp]
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Specifications
VLT HVAC Drive FC 102
Operating Guide