Goodrive350 series high-performance multifunction VFD
Function
code
Rated power of
P02.15
synchronous motor 1
Rated frequency of
P02.16
synchronous motor 1
Number of pole pairs of
P02.17
synchronous motor 1
Rated voltage of
P02.18
synchronous motor 1
Rated current of
P02.19
synchronous motor 1
Function of multi-function
P05.01–
digital input terminal
P05.06
(S1–S4, HDIA, HDIB)
P07.01
P07.02
QUICK/JOG key function
5.5.3 Vector control
Asynchronous motors are featured with high order, non-linear, strong coupling and multi-variables,
which makes it very difficult to control asynchronous motors during actual application. The vector
control theory aims to solve this problem through measuring and controlling the stator current vector
of asynchronous motor, and decomposing the stator current vector into exciting current (current
component which generates internal magnet field) and torque current (current component which
generates torque) based on field orientation principle, and then controlling the amplitude value and
phase position of these two components (namely, control the stator current vector of motor) to realize
decoupling control of exciting current and torque current, thus achieving high-performance speed
regulation of asynchronous motor.
The VFD carries built-in speed sensor-less vector control algorithm, which can be used to drive the
Name
0.1–3000.0kW
0.01Hz–P00.03 (Max. output frequency)
1–50
0–1200V
0.8–6000.0A
36: Command switches to keypad
37: Command switches to terminal
38: Command switches to communication
Reserved
/
Range: 0x00–0x27
Ones: QUICK/JOG key function selection
0: No function
1: Jogging
2: Reserved
3: Switching between forward/reverse
rotation
4: Clear UP/DOWN setting
5: Coast to stop
6: Switch running command reference mode
by sequence
7: Reserved
Tens: Reserved
Description
-54-
Basic operation guidelines
Default
value
Depends
on model
50.00Hz
2
Depends
on model
Depends
on model
/
/
0x01
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