MD380 User Manual Desc
ription of Function Codes
- 159 -
The multi-point V/F curve is set based on the motor's load characteristic. The relationship
between voltages and frequencies is:
V1 < V2 < V3, F1 < F2 < F3
At low frequency, higher voltage may cause overheat or even burnt out of the motor and
overcurrent stall or overcurrent protection of the AC drive.
Figure 6-5 Setting of multi-point V/F curve
Frequency %
Voltage
%
V3
Fb
F1
V1
Vb: Rated motor voltage
V1-V3: 1st, 2nd and 3rd voltage
percentages of multi-point V/F
Fb: Rated motor running frequency
F2
F3
V2
Vb
F1-F3: 1st, 2nd and 3rd frequency
percentages of multi-point V/F
Function Code
Parameter Name
Setting Range
Default
F3-09
V/F slip compensation gain
0.0%–200.0%
0.0%
This parameter is valid only for the asynchronous motor.
It can compensate the rotational speed slip of the asynchronous motor when the load of the
motor increases, stabilizing the motor speed in case of load change. If this parameter is set
to 100%, it indicates that the compensation when the motor bears rated load is the rated
motor slip. The rated motor slip is automatically obtained by the AC drive through calculation
based on the rated motor frequency and rated motor rotational speed in group F1.
Generally, if the motor rotational speed is different from the target speed, slightly adjust this
parameter.
Function Code
Parameter Name
Setting Range
Default
F3-10
V/F over-excitation gain
0–200
64
During deceleration of the AC drive, over-excitation can restrain rise of the bus voltage,
preventing the overvoltage fault. The larger the over-excitation is, the better the restraining
result is.
Increase the over-excitation gain if the AC drive is liable to overvoltage error during
deceleration. However, too large over-excitation gain may lead to an increase in the output
current. Set F3-09 to a proper value in actual applications.
Set the over-excitation gain to 0 in the applications where the inertia is small and the bus
voltage will not rise during motor deceleration or where there is a braking resistor.
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Summary of Contents for MD380 Series
Page 8: ...efesotomasyon com...
Page 9: ...1 Safety Information and Precautions efesotomasyon com...
Page 16: ...Safety Information and Precautions MD380 User Manual 16 efesotomasyon com...
Page 17: ...2 Product Information efesotomasyon com...
Page 28: ...Product Information MD380 User Manual 28 efesotomasyon com...
Page 29: ...3 Mechanical and Electrical Installation efesotomasyon com...
Page 46: ...Mechanical and Electrical Installation MD380 User Manual 46 efesotomasyon com...
Page 47: ...4 Operation Display and Application Examples efesotomasyon com...
Page 82: ...Operation Display and Application Examples MD380 User Manual 82 efesotomasyon com...
Page 83: ...5 Function Code Table efesotomasyon com...
Page 138: ...Function Code Table MD380 User Manual 138 efesotomasyon com...
Page 139: ...6 Description of Function Codes efesotomasyon com...
Page 249: ...7 EMC efesotomasyon com...
Page 261: ...8 Selection and Dimensions efesotomasyon com...
Page 293: ...9 Maintenance and Troubleshooting efesotomasyon com...