
177
asynchronous
motor 1
parameter, the current closed-loop control in the IF
control mode is enabled; and when the frequency is
higher than that, the current closed-loop control in the
IF control mode is disabled.
Setting range: 0.00–20.00 Hz
P04.45
Enable/disable IF
mode for
asynchronous
motor 2
0: Disabled
1: Enabled
0
◎
P04.46
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%
120.0%
○
P04.47
Proportional
coefficient in IF
mode for
asynchronous
motor 2
When IF control is adopted for asynchronous motor 2,
this parameter is used to set the proportional coefficient
of the output current closed-loop control.
Setting range: 0–5000
650
○
P04.48
Integral coefficient
in IF mode for
asynchronous
motor 2
When IF control is adopted for asynchronous motor 2,
this parameter is used to set the inetgral coefficient of
the output current closed-loop control.
Setting range: 0–5000
350
○
P04.49
Frequency
threshold for
switching off IF
mode for
asynchronous
motor 2
When IF control is adopted for asynchronous motor 2,
this parameter is used to set the frequency threshold
for switching off the output current closed-loop control.
When the frequency is lower than the value of this
parameter, the current closed-loop control in the IF
control mode is enabled; and when the frequency is
higher than that, the current closed-loop control in the
IF control mode is disabled.
Setting range: 0.00–20.00 Hz
10.00Hz
○
P04.50 Reserved
variable
0–65535
0
●
P04.51 Reserved
variable
0–65535
0
●
P05 group Input terminals
P05.00 HDI
input
type
0x00–0x11
Ones: HDIA input type
0: HDIA is high-speed pulse input
1: HDIA is digital input
0
◎
Содержание MSI350 Series
Страница 1: ...MSI350 SERIES INVERTER USER MANUAL...
Страница 2: ...2...
Страница 34: ...34 4 2 6 Vertical installation Fig 4 5 Vertical installation...
Страница 38: ...38 Fig 4 10 3PH 380V 30 37kW Fig 4 11 3PH 380V 45 110kW Fig 4 12 660V 22 45kW...
Страница 39: ...39 Fig 4 13 660V 55 132kW Fig 4 14 380V 132 200kW and 660V 160 220kW...
Страница 40: ...40 Fig 4 15 380V 220 315kW and 660V 250 355kW...
Страница 71: ...71...
Страница 83: ...83 When selecting customized V F curve function users can set the reference channels and...
Страница 90: ...90...
Страница 96: ...96...
Страница 101: ...101...
Страница 147: ...147...
Страница 260: ...260 7 6 Analysis on common faults 7 6 1 Motor fails to work...
Страница 261: ...261 7 6 2 Motor vibrates...
Страница 262: ...262 7 6 3 Overvoltage...
Страница 263: ...263 7 6 4 Undervoltage...
Страница 264: ...264 7 6 5 Unusual heating of motor...
Страница 265: ...265 7 6 6 Inverter overheating...
Страница 266: ...266 7 6 7 Motor stalls during ACC...
Страница 267: ...267 7 6 8 Overcurrent...
Страница 318: ...318 The following figure shows the external wiring of the extension card used in combination with a push pull encoder...
Страница 336: ...336 A 6 5 PROFINET communication card EC TX509...
Страница 339: ...339 A 7 Programmable extension card function description A 7 1 Programmable extension card EC PC501 00...
Страница 380: ...380...
Страница 386: ...386...
Страница 387: ...387...
Страница 388: ...388...