Learning Advanced Features
61
Basic Tasks
Description
Ref.
voltage.
Accelerating start
Accelerating start is the typical method to start motor
operation. The typical application configures the motor to
accelerate to a target frequency in response to a run
command. There may be other start or acceleration
conditions defined.
p.96
Start after DC braking
Configures the inverter to perform DC braking before the
motor starts rotating. This configuration is used when the
motor will be rotating before the start command is supplied
to the inverter.
p.96
Deceleration stop
Deceleration stop is the typical method used to stop a
motor. The motor decelerates to 0Hz and stops on a stop
command. There may be other stop or deceleration
conditions defined.
p.97
Stopping by DC braking
Configures the inverter to apply DC braking during motor
deceleration. The frequency at which DC braking occurs
must be defined. When the motor reaches the defined
frequency, DC braking is applied.
p.97
Free-run stop
Configures the inverter to turn off output to the motor
using a stop command. The motor will free-run until it
slows down and stops.
p.98
Power braking
Configures the inverter to provide optimal motor
deceleration without tripping the over-voltage protection.
p.99
Start/maximum frequency
configuration
Configures the frequency reference limits by defining a
start frequency and a maximum frequency.
p.100
Upper/lower frequency limit
configuration
Configures the frequency reference limits by defining an
upper limit and a lower limit.
p.100
Frequency jump
Configures the inverter to avoid running a motor in
mechanically resonating frequencies.
p.101
2
nd
Operation Configuration
Used to configure a second set of control and speed
reference sources (i.e. local/remote) and switch between
them using a digital input terminal.
p.102
Multi-function input terminal
control configuration
Configure the digital input terminals. Add time delays
(On/Off delay),logic (NO/NC operation) and view status.
p.103
P2P communication
configuration
Configures the inverter to share input and output devices
with other inverters.
p.105
Multi-keypad configuration
Enables the user to monitor multiple inverters with one
monitoring device.
p.106
User sequence configuration
Enables the user to implement simple sequences using
various function blocks.
p.108
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