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Ec.01
———
Ec.11
EC.14 (gear factor slave)
———————————————
EC.15 (gear factor master)
number increments master x
x
The inverse direction of rotation of the slave to the master drive is reached by a negative value for
Ec.14.
Example (adjustments for figure 7.12.3.3 position normalization):
"Normal" speed-controlled operation is programmed in the master, the synchronous module is not activated.
For the slave, encoder channel 1 serves as speed feedback and encoder channel 2 as master position infor-
mation. Both loads shall be moved angular-synchronous, but in opposite direction of rotation.
Adjustment in the slave:
-
PS.00 "Posi / synchronous mode" = synchronous mode
-
CS.01 "Actual source" = channel 1
-
PS.01 „Actual position source“ = channel 2
-
PS.06 "KP for positioning / synchronous" ≠ 0
-
EC.14 "Gear 2 numerator" = -1500
-
EC.15 "Gear 2 denominator" = 525
Typically, an approach to reference point is executed for the slave drive before starting synchronous running,
in order to get the reference between position display of the slave drive and the mechanics of the application.
The reference between master and slave position is done only with activation of the synchronous module.
During activation the master position (= ru.56 "set position") is set equal to the slave position (= ru.54 "actual
position").
7.12.3.4
Synchronous mode / selection of operating mode
The operating mode synchronous mode is selected via parameters PS.00 bit 0...3 or via the control word (Sy.43
or Sy.50)
PS.00: Posi / synchronous mode
Bit
Meaning
Value
Explanation
0..3
Posi-/synchro-
nous mode
0: off
no special operation selected
1: Synchronous
mode
Selection of operating mode "synchronous mode"
2...6
Without function for synchronous mode
7: via control word
The operating modes (synchronous running, positioning mode
or contouring control) are selected via the control word (Sy.43
or Sy.50).
If PS.00 bit 0...3 contains the value 7:
Page 7.12 - 18
COMBIVERT F5-A, -E, -H
© KEB, 2012-10
Posi- and synchronous operating
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...