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COMBIVERT F5-A, -E, -H
© KEB, 2012-10
Start-up
9.
Calculation of motor-dependent data
Even if the motor data dr.06 to dr.10 are unknown, the motor-
dependent data (e.g.
dr.18 field weak. speed) must be cal
-
culated here.
⇒
Fr.10 load motor-dep. parameter = 2: act. DC link voltage
10.
Identification of the equivalent circuit data
The equivalent circuit data dr.06...dr.10 can be automatically
determined by the KEB COMBIVERT.
The following must be considered:
• The motor must be in no-load operation for identification
of the main inductance. As standard the motor rotates with
dr.17: „speed for max torque“. The speed limits (oP-Parame-
ter/chapter 7.4.5) must be programmed accordingly if this is
not permissible.
• The direction of rotation is clockwise, the acceleration time
is preset by dr.49: „Lh.ident. acc/dec time“
• The speeed controller must be parameterized for acce
-
leration (dynamics not necessary => select small value for
cS.09: KI speed)
• The brake control mode must be activated
(corresponding to KEB factory setting)
• After successful measurement
ru.00 = 127 (drive data cal-
culated/Cddr) is displayed.
The identification is started with:
⇒
dr.48 = 8: complete AutoIdentification !with rotation!
Close control release (X2A.16) for starting the identification
and open it after the measurement.
Attention:
Depending on the used motor the iden-
tification takes some minutes. Noises
in the motor can occur caused by high
frequency test signals. The sequence of
the identification can be tracked in para
-
meter dr.62 „state motor ident.“.
Since the drive is not optimally parame-
terized, a flat acceleration ramp (
dr.49)
should be selected for the identification
to avoid overload of the motor
Note:
If the measurement is interrupted with
an error, ru.00 = 60 (error! drive data /
E.Cdd) is displayed.
Read chapter 7.6 for further data of the
identification.
11.
Adjustment of specific data
⇒
dS.02 current decoupling = 1: on
⇒
uF.15 hardw. curr. lim. mode = 0: off
⇒
uF.18 deadtime comp. mode = 3: automatically
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...