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Rockwell Automation Publication 2080-UM002K-EN-E - March 2019
Chapter 7
Motion Control
Scenario 1: Moving part at right (positive) side of home switch before
homing starts
The homing motion sequence for this scenario is as follows:
1.
Moving part moves to the left side (negative direction);
2.
When home switch is detected, the moving part decelerates to stop;
3.
Moving part moves back (positive direction) in creep velocity to detect
home switch On
→
Off edge;
4.
Once home switch On
→
Off is detected, record the position as
mechanical home position, and decelerate to stop;
5.
Move to the configured home position. The mechanical home position
recorded during moving back sequence, plus the home offset configured
for the axis in the Connected Components Workbench software.
Scenario 2: Moving part is in between Lower Limit and Home switch before
homing starts
The homing motion sequence for this scenario is as follows:
1.
Moving part moves to its left side (negative direction);
2.
When lower limit switch is detected, the moving part decelerates to stop,
or stop immediately, according to limit switch hard stop configuration;
3.
Moving part moves back (in positive direction) in creep velocity to detect
home switch On
→
Off edge;
4.
Once home switch On
→
Off edge is detected, record the position as
mechanical home position, and decelerate to stop;
5.
Move to the configured home position. The mechanical home position
recorded during moving back sequence, plus the home offset configured
for the axis in the Connected Components Workbench software.
Scenario 3: Moving part on Lower Limit or Home switch before homing starts
The homing motion sequence for this scenario is as follows:
1.
Moving part moves to its right side (in positive direction) in creep velocity
to detect home switch On
→
Off edge;
2.
Once home switch On
→
Off edge is detected, record the position as
mechanical home position, and decelerate to stop;
TIP
If Lower Limit switch is not configured, or not wired, the homing motion
fails, and moves continuously to the left until the drive or moving part
fails to move.
Содержание Micro830
Страница 6: ...vi Rockwell Automation Publication 2080 UM002K EN E March 2019 Preface Notes ...
Страница 24: ...10 Rockwell Automation Publication 2080 UM002K EN E March 2019 Chapter 1 Hardware Overview Notes ...
Страница 70: ...56 Rockwell Automation Publication 2080 UM002K EN E March 2019 Chapter 4 Wire Your Controller Notes ...
Страница 88: ...74 Rockwell Automation Publication 2080 UM002K EN E March 2019 Chapter 5 Communication Connections Notes ...
Страница 190: ...176 Rockwell Automation Publication 2080 UM002K EN E March 2019 Chapter 9 Controller Security Notes ...
Страница 254: ...240 Rockwell Automation Publication 2080 UM002K EN E March 2019 Appendix A Specifications Notes ...
Страница 273: ...Rockwell Automation Publication 2080 UM002K EN E March 2019 259 Quickstarts Appendix C ...
Страница 300: ...286 Rockwell Automation Publication 2080 UM002K EN E March 2019 Appendix C Quickstarts Notes ...
Страница 330: ...316 Rockwell Automation Publication 2080 UM002K EN E March 2019 Appendix E Troubleshooting Notes ...
Страница 344: ...330 Rockwell Automation Publication 2080 UM002K EN E March 2019 Appendix F PID Function Blocks Notes ...
Страница 352: ...Rockwell Automation Publication 2080 UM002K EN E March 2019 338 Index Notes ...
Страница 353: ...Rockwell Automation Publication 2080 UM002K EN E March 2019 339 ...