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Mitsubishi F700 Series User Manual

Mitsubishi F700 Series
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162
Energy saving operation and energy saving monitor
(5) Power estimated value of commercial power supply operation (Pr. 892, Pr. 893, Pr. 894)
Select the commercial power supply operation pattern from among the four patterns of discharge damper control
(fan), inlet damper control (fan), valve control (pump) and commercial power supply drive, and set it to Pr. 894
Control selection during commercial power-supply operation.
Set the motor capacity (pump capacity) in Pr. 893 Energy saving monitor reference (motor capacity).
The power consumption rate (%) during commercial power supply operation is estimated from the operation
pattern and the ratio of speed to rating (current output frequency/Pr. 3 Base frequency) in the following chart.
From the motor capacity set in Pr. 893 and Pr. 892 Load factor, the power estimated value (kW) during commercial
power supply operation is found by the following formula.
Power estimated value (kW) during commercial power supply operation
= Pr. 893 (kW)  
REMARKS
Since the speed does not increase above the power supply frequency in commercial power supply operation, it becomes
constant when the output frequency rises to or above Pr. 3 Base frequency.
0
10
20
30
40
50
60
70
80
90
100
110
0 102030405060708090100110
Ratio of speed to rating [%]
Discharge side
damper control
(fan)
Inlet damper control
(fan)
Valve control
(pump)
Commercial power-supply drive
Power consumption [%]
Power consumption (%)
100
Pr. 892 (%)
100

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Mitsubishi F700 Series Specifications

General IconGeneral
Humidity95% RH or less (non-condensing)
Control MethodV/F control
Protection FeaturesOvercurrent, overvoltage, undervoltage, overheat, short circuit
Communication OptionsRS-485
Operating Temperature-10°C to +50°C
Storage Temperature-20°C to +65°C
AltitudeUp to 1000m above sea level
Overload Capacity150% for 60 seconds
Cooling MethodForced air cooling
Power Range0.75 to 630 kW (1 to 845 hp)
Output Voltage3-phase 200 to 240 VAC, 380 to 500 VAC (matching input voltage)

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