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COMBIVERT F5-A, -E, -H
© KEB, 2012-10
Motor data and controller adjustments of the synchronous motor
6
Current control with
0: measured cur-
rent *
Current control to model currents
64: estimated
currents
7
EMC adaption
0: off
Adapts the EMC at upper speed
128: On *
8
Current offset adap-
tion
0: Off *
Adapts the current offset during operation
256: An
9
Controlled operation
0: Off *
Switching off the model during start ramp
512: An
10
Band-stop filter
0: Off *
Activates the harmonic absorber for operation with sine-
wave filter
1024: An
11
Deviation controller
0: Off *
Deviation of model currents to measured currents
2048: An
12
Voltage output for HF
applications
0: Off *
Activates double voltage output
4096: An
13
HF detection
0: Off *
Determines rotor and system position when switching on.
8192: An
14
HF injection
0: Off *
Determines the rotor position continuously at low speed.
16348: An
* Default values
Standstill current and stabilisation current (nn.01, nn.10)
The currents nn.01 "stabilisation current" and nn.10 "standstill current" can be switched off with bit 0 of nn.00.
The starting phase with activated currents runs more steady. In such a way this adjustment should not be
changed!
The values are limited to ½ of the HSR current In.18 if the rated motor current is higher than the inverter rated
current.
Stator resistance adaption
The stator resistance changing by temperature influences can affect the behavior at low speed as well as the
start. The RS adaptation adjusts the stator resistance and stabilizes the motor model therefore.
The I-part of the adaptation can be adjusted with nn.06 "rs adaption factor". The rs adaptation becomes active
with ru.17 "active current" > nn.01.
EMC adaption
The EMC changing by load and temperature influences is adjusted at upper speed.
The adaption becomes active at actual speed ru.07 > ¼ of the rated speed dr.24 and improves the accuracy
of the actual torque display ru.12.
Observer
The observer
amplifies the influence of the measured currents in the model.
The most effects become notice-
able in the upper speed range.
The value must be increased if current oscillations occur at e.g. applications with high frequency.
The observer factor can be adjusted with nn.07 "observer factor".
Summary of Contents for COMBIVERT F5-A
Page 1: ...KEB COMBIVERT F5 A E H 4 4 APPLICATION MANUAL Mat No Rev 00F5AEA K440 1A...
Page 2: ...Page 1 1 2 COMBIVERT F5 A E H KEB 2008 02 Table of contents...
Page 4: ...Page 1 1 4 COMBIVERT F5 A E H KEB 2008 02 Table of contents...
Page 14: ...Page 1 1 14 COMBIVERT F5 A E H KEB 2008 02 Table of contents...
Page 20: ...Page 2 1 6 COMBIVERT F5 A E H KEB 2012 10 Product Overview...
Page 28: ...Page 3 1 8 COMBIVERT F5 A E H KEB 2012 10 Control Units...
Page 34: ...Page 4 1 6 COMBIVERT F5 A E H KEB 2012 10 Fundamentals...
Page 40: ...Page 4 2 6 COMBIVERT F5 A E H KEB 2012 10 Password input...
Page 42: ...Page 5 1 2 COMBIVERT F5 A E H KEB 2012 10 Selection of Operating Mode...
Page 46: ...Page 5 1 6 COMBIVERT F5 A E H KEB 2012 10 Selection of Operating Mode...
Page 70: ...Page 6 2 20 COMBIVERT F5 A E H KEB 2012 10 Start up...
Page 140: ...Page 7 3 44 COMBIVERT F5 A E H KEB 2012 10 Digital in and outputs...
Page 238: ...Page 7 7 12 COMBIVERT F5 A E H KEB 2012 10 Speed control...
Page 254: ...Page 7 8 16 COMBIVERT F5 A E H KEB 2012 10 Torque display and limiting...
Page 260: ...Page 7 9 6 COMBIVERT F5 A E H KEB 2012 10 Torque control...
Page 292: ...Page 7 11 26 COMBIVERT F5 A E H KEB 2012 10 Speed measurement...
Page 432: ...Page 7 14 14 COMBIVERT F5 A E H KEB 2012 10 Parameter sets...
Page 466: ...Page 7 15 34 COMBIVERT F5 A E H KEB 2012 10 Special functions...
Page 478: ...Page 7 16 12 COMBIVERT F5 A E H KEB 2012 10 CP Parameter definition...
Page 488: ...Page 8 1 10 COMBIVERT F5 A E H KEB 2012 10 Troubleshooting...
Page 496: ...Page 9 1 8 COMBIVERT F5 A E H KEB 2012 10 General design...
Page 538: ...Page 11 1 28 COMBIVERT F5 A E H KEB 2012 10 Parameter...
Page 540: ...Page 12 1 2 COMBIVERT F5 A E H KEB 2008 02 Annex 12 1 1 Index 12 1 3...