Detailed Description
2.1 Various interface signals and functions (A2)
Basic logic functions: NC/PLC interface signals (Z1)
44
Function Manual, 11/2006, 6FC5397-0BP10-2BA0
DB31, ...
DBX61.3
Followup mode active
Edge evaluation: no
Signal(s) updated: cyclic
Signal state 1 or
edge change
0 → 1
The control signals that the followup mode for the axis/spindle is not active.
Prerequisites for this are:
•
The controller enable for the drive has been withdrawn (either by the PLC with "controller enable
" = 0 signal or inside the control for faults; refer to the references)
•
Follow-up operation is selected (either by the PLC with IS "follow-up operation" = 1 signal or in
the control, e.g. when withdrawing the controller enable from an axis that is moving)
The position setpoint continually tracks the actual value while the follow-up mode is active.
Zero speed and clamping monitoring are not active.
Signal state 0 or
edge change
1 → 0
The control signals that followup mode for the axis/spindle is not active.
Zero speed and clamping monitoring are active.
This means that the above specified prerequisites are not fulfilled.
In the "hold" state, the interface signal:
DB31, ... DBX61.3 (follow-up mode active)
is 0.
Special cases,
errors, ....
Notice:
A delete distancetogo is triggered internally in the control on transition from "Follow up" to "Hold" (IS
"Followup mode" = 0) or in the closed-loop control mode (IS "Controller enable" = 1).
Corresponding to .... DB31, ... DBX2.1 (controller enable)
DB31, ... DBX1.4 (follow-up mode!)
Additional references /DA/ Diagnostics Guide
DB31, ...
DBX61.4
Axis/spindle stops
Edge evaluation: no
Signal(s) updated: cyclic
Signal state 1 or
edge change
0 → 1
The current speed of the axis or the actual number of rotations of the spindle lies under the limit
given by the machine data:
MD36060 $MA_STANDSTILL_VELO_TOL
(Maximum speed/number of rotations for signal "Axis/Spindle stationary").
Signal state 0 or
edge change
1 → 0
The actual velocity of the axis or the actual spindle speed is greater than the value specified in the
MD (standstill/zero speed range).
If a travel command is present, e.g. for a spindle, then the signal is always = 0 - even if the actual
speed lies below that specified in MD36060.
When the interface signal:
DB31, ... DBX61.4 (axis/spindle stationary)
is signaled and there is no closed-loop position control active for the spindle, then at the MMC, an
actual speed of zero is displayed and with the system variable $AA_S[n] zero is read.
Application
example(s)
Enable signal for opening a protective device (e.g. open door).
The workpiece chuck or the tool clamping device is only opened when the spindle is stationary.
The oscillation mode can be switched-in during gear stage change after the spindle has been
braked down to standstill.
The tool clamping device must have been closed before the spindle can be accelerated.
Corresponding to .... MD36060 $MA_STANDSTILL_VELO_TOL
(maximum velocity/speed for signal "Axis/spindle stationary")
Summary of Contents for SINUMERIK 840D sl
Page 282: ...Index Basic logic functions Acceleration B2 64 Function Manual 11 2006 6FC5397 0BP10 2BA0 ...
Page 388: ...Basic logic functions Travel to fixed stop F1 Function Manual 11 2006 6FC5397 0BP10 2BA0 52 ...
Page 962: ...Index Basic logic functions Emergency Stop N2 20 Function Manual 11 2006 6FC5397 0BP10 2BA0 ...
Page 1704: ...Constraints Basic logic functions Spindles S1 94 Function Manual 11 2006 6FC5397 0BP10 2BA0 ...
Page 1716: ...Index Basic logic functions Spindles S1 106 Function Manual 11 2006 6FC5397 0BP10 2BA0 ...
Page 1996: ...Index Basic logic functions Tool Offset W1 208 Function Manual 11 2006 6FC5397 0BP10 2BA0 ...
Page 2150: ...Table of contents Basic logic functions Appendix 4 Function Manual 11 2006 6FC5397 0BP10 2BA0 ...
Page 2184: ...Glossary Basic logic functions Appendix 38 Function Manual 11 2006 6FC5397 0BP10 2BA0 ...