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05.05
Parameter list
SIEMENS AG 6RX1700-0AD76
11-39
SIMOREG DC Master Operating Instructions
PNU
Description
Value range
[Unit]
Steps
No. indices
Factory
setting
Type
See
Change
(Access /
Status)
P257
FDS
(G166)
Standstill field
Value to which the field current is reduced when "Automatic field current
reduction" function is parameterized (by means of P082=2) or with signal-
driven selection of "Standstill excitation" function (selected in P692).
0.0 to 100.0
[%]
0.1% of P102
Ind: 4
FS=0.0
Type: O2
P052 = 3
P051 = 40
Online
P258
FDS
(G166)
Delay time with automatic field current reduction
Delay after which the field current is reduced to the value set in parameter
P257 with automatic or signal-driven "Field current reduction" function when
the drive is stopped after operating state o7.0 or higher is reached.
0.0 to 60.0
[s]
0.1s
Ind: 4
FS=10.0
Type: O2
P052 = 3
P051 = 40
Online
P260
FDS
(G166)
Filter time for setpoint for field current precontrol
[SW 1.9 and later]
Filtering of the field current setpoint at the input of the precontrol for the field
current controller.
The purpose of this filter is to decouple the field current precontrol from the
field current controller.
0 to 10000
[ms]
1ms
Ind: 4
FS=0
Type: O2
P052 = 3
P051 = 40
on-line
P261
FDS
(G166)
Filter time for setpoint for field current controller
[SW 1.9 and later]
Filtering of the field current setpoint at the input of the field current
controller.
The purpose of this filter is to decouple the field current precontrol from the
field current controller.
0 to 10000
[ms]
1ms
Ind: 4
FS=0
Type: O2
P052 = 3
P051 = 40
on-line
P263
*
FDS
(G166)
Input quantity for motor flux calculation
0
The input quantity for the motor flux calculation is the field
current controller actual value according to P612 (K0265), to be
used in connection with a fully compensated DC machine
1
The input quantity for the motor flux calculation is the precontrol
output for the EMF controller (K0293)
(exception: Field current controller setpoint (K0268) with active
standstill field or with disabled field pulses), to be used in
connection with an non-compensated DC machine. The EMF
controller must be active when this setting is selected (EMF
controller compensates the armature reaction).
2
The input quantity for the motor flux calculation is the field
current controller setpoint (K0268). Advantage: Quantities
derived from the setpoint are generally "steadier" than those
derived from actual values.
0 to 2
1
Ind: 4
FS=1
Type: O2
P052 = 3
P051 = 40
Offline
P264
*
FDS
(G166)
Set field current controller P component to zero
0
Set controller P component to zero (i.e. to obtain pure I
controller)
1
Controller P component is active
0 to 1
1
Ind: 4
FS=1
Type: O2
P052 = 3
P051 = 40
Offline
P265
*
BDS
(G167)
Source for selection of external field current monitoring signal
[SW 1.9 and later]
Selection of the binector to supply the field monitoring signal when an
external field device is used.
(status "1" = field current is o.k., If > If-min)
The converter waits for this signal in state o5.0 as part of the power ON
routine. If the signal disappears during operation, the drive is shut down with
fault message F005, fault value 4.
0 = binector B0000
1 = binector B0001
etc.
All binector numbers
1
Ind: 2
FS=1
Type: L2
P052 = 3
P051 = 40
off-line
Summary of Contents for 6RA7013-6DV62
Page 10: ...Contents 05 05 0 8 Siemens AG 6RX1700 0AD76 SIMOREG DC Master Operating Instructions ...
Page 158: ...Connections 05 05 6 72 Siemens AG 6RX1700 0AD76 SIMOREG DC Master Operating Instructions ...
Page 648: ...Parameter list 05 05 11 184 SIEMENS AG 6RX1700 0AD76 SIMOREG DC Master Operating Instructions ...
Page 720: ...Maintenance 05 05 13 10 SIEMENS AG 6RX1700 0AD76 SIMOREG DC Master Operating Instructions ...
Page 728: ...Applications 01 04 17 2 SIEMENS AG 6RX1700 0AD76 SIMOREG DC Master Operating Instructions ...
Page 730: ...Appendix 05 05 18 2 SIEMENS AG 6RX1700 0AD76 SIMOREG DC Master Operating Instructions ...
Page 732: ...Appendix 05 05 18 4 SIEMENS AG 6RX1700 0AD76 SIMOREG DC Master Operating Instructions ...
Page 733: ......