Goodrive350 IP55 High-ingress Protection Series VFD Basic Operation Instructions
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Reactive current
closed-loop integral time in
synchronous motor VF
control
When the synchronous motor VF control
mode is enabled, this parameter is used to
set the integral coefficient of the reactive
current closed-loop control.
Setting range: 0–3000
Reactive current
closed-loop output limit in
synchronous motor VF
control
When the synchronous motor VF control
mode is enabled, this parameter is used to
set the output limit of the reactive current
closed-loop control. A greater value indicates
a higher reactive closed-loop compensation
voltage and higher output power of the motor.
In general, you do not need to modify this
parameter.
Setting range: 0–16000
Enable/disable IF mode for
asynchronous motor 1
Current setting in IF mode
for asynchronous motor 1
When IF control is adopted for asynchronous
motor 1, this parameter is used to set the
output current. The value is a percentage in
relative to the rated current of the motor.
Setting range: 0.0–200.0%
Proportional coefficient in IF
mode for asynchronous
motor 1
When IF control is adopted for asynchronous
motor 1, this parameter is used to set the
proportional coefficient of the output current
closed-loop control.
Setting range: 0–5000
Integral coefficient in IF
mode for asynchronous
motor 1
When IF control is adopted for asynchronous
motor 1, this parameter is used to set the
integral coefficient of the output current
closed-loop control.
Setting range: 0–5000
Starting frequency point for
switching off IF mode for
asynchronous motor 1
Enable/disable IF mode for
asynchronous motor 2
Current setting in IF mode
for asynchronous motor 2
When IF control is adopted for asynchronous
motor 2, this parameter is used to set the
output current. The value is a percentage in
relative to the rated current of the motor.
Setting range: 0.0–200.0%