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Mitsubishi F700 Series User Manual

Mitsubishi F700 Series
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84
V/F pattern
4.5.2 Load pattern selection (Pr. 14)
You can select the optimum output characteristic (V/F characteristic) for the application and load characteristics.
Parameter
Number
Name Initial Value Setting Range Description
14 Load pattern selection 1
0 For constant-torque load
1 For variable-torque loads
The above parameters can be set when Pr. 160 User group read selection = "0". (Refer to page 185)
(1) For constant-torque load (setting "0")
At or less than the base frequency voltage, the output voltage varies linearly with the
output frequency.
Set this value when driving the load whose load torque is constant if the speed varies,
e.g. conveyor, cart or roll drive.
(2) For variable-torque load (setting "1", initial value)
At or less than the base frequency voltage, the output voltage varies with the output
frequency in a square curve.
Set this value when driving the load whose load torque varies in proportion to the
square of the speed, e.g. fan or pump.
Parameters referred to
Pr. 3 Base frequency Refer to page 82
100%
Output voltage
Pr.3 Base frequency
Output frequency (Hz)
POINT
If the load is a fan or pump, select "For rated torque load (setting "0")" in any of the
following cases.
When a blower of large moment of inertia (J) is accelerated in a short time
For constant-torque load such as rotary pump or gear pump
When load torque increases at low speed, e.g. screw pump
100%
Output voltage
Pr.3 Base frequency
Output frequency (Hz)

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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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