5 - 46
MELSEC-Q
5 DATA USED FOR POSITIONING CONTROL
1 : Stopper method 1)
(1) Start machine OPR.
(Start movement at the " Pr.46 OPR speed" in the
" Pr.44 OPR direction".)
(2) Detect the near-point dog ON, and start deceleration.
(3) Decelerate to " Pr.47 Creep speed", and move with the
creep speed.
(At this time " Pr.54 OPR torque limit value" is required. If
the torque is not limited, the servomotor could be
damaged in step (4).)
(4) The axis contacts against the stopper at " Pr.47 Creep
speed", and then stops.
(5) When the near-point dog turns ON and the " Pr.49 OPR
dwell time" is passed, the pulse output from the QD75
stops, and the machine OPR is completed.
2 : Stopper method 2)
(1) Start machine OPR.
(Start movement at the " Pr.46 OPR speed" in the
" Pr.44 OPR direction".)
(2) Detect the near-point dog ON, and start deceleration.
(3) Decelerate to " Pr.47 Creep speed", and move with the
creep speed.
(At this time " Pr.54 OPR torque limit value" is required. If
the torque is not limited, the servomotor could be damaged
in step (4).)
(4) The axis contacts against the stopper at " Pr.47 Creep
speed", and then stops.
(5) After stopping, the pulse output from the QD75 stops with
the zero signal (signal that is output on detection of contact
with the stopper. Input externally), and the machine OPR is
completed.
3 : Stopper method 3)
(1) Start machine OPR.
(Start movement at the " Pr.47 Creep speed" in the
" Pr.44 OPR direction". At this time " Pr.54 OPR torque
limit value" is required. If the torque is not limited, the
servomotor could be damaged in step (2).)
(2) The axis contacts against the stopper at " Pr.47 Creep
speed", and then stops.
(3) After stopping, the pulse output from the QD75 stops with
the zero signal (signal that is output on detection of contact
with the stopper. Input externally), and the machine OPR is
completed.
t
V
(1)
(2)
(3)
Zero signal
Creep speed
Pr.47
Stop with stopper
t
V
(1)
(2)
(3)
(4)
(5)
Near-point dog OFF
OPR speed
Pr.46
Creep speed
Pr.47
Range to forcibly stop
the servomotor
rotation with the stopper.
Dwell time counting
Dwell time up
ON
t
V
ON
(1)
(2)
(3) (4)
(5)
Near-point dog
Zero signal
OPR speed
Pr.46
Pr.47
Creep speed
Stop with stopper
OFF
Summary of Contents for D75D4
Page 2: ......
Page 22: ...A 20 MEMO ...
Page 24: ...MEMO ...
Page 41: ...1 17 MELSEC Q 1 PRODUCT OUTLINE MEMO ...
Page 48: ...1 24 MELSEC Q 1 PRODUCT OUTLINE MEMO ...
Page 58: ...2 10 MELSEC Q 2 SYSTEM CONFIGURATION MEMO ...
Page 65: ...3 7 MELSEC Q 3 SPECIFICATIONS AND FUNCTIONS ...
Page 139: ...5 35 MELSEC Q 5 DATA USED FOR POSITIONING CONTROL MEMO ...
Page 238: ...5 134 MELSEC Q 5 DATA USED FOR POSITIONING CONTROL MEMO ...
Page 251: ...6 13 MELSEC Q 6 SEQUENCE PROGRAM USED FOR POSITIONING CONTROL ...
Page 254: ...6 16 MELSEC Q 6 SEQUENCE PROGRAM USED FOR POSITIONING CONTROL ...
Page 255: ...6 17 MELSEC Q 6 SEQUENCE PROGRAM USED FOR POSITIONING CONTROL ...
Page 256: ...6 18 MELSEC Q 6 SEQUENCE PROGRAM USED FOR POSITIONING CONTROL ...
Page 259: ...6 21 MELSEC Q 6 SEQUENCE PROGRAM USED FOR POSITIONING CONTROL ...
Page 260: ...6 22 MELSEC Q 6 SEQUENCE PROGRAM USED FOR POSITIONING CONTROL ...
Page 292: ...7 8 MELSEC Q 7 MEMORY CONFIGURATION AND DATA PROCESS ...
Page 294: ...7 10 MELSEC Q 7 MEMORY CONFIGURATION AND DATA PROCESS ...
Page 298: ...MEMO ...
Page 462: ...9 140 MELSEC Q 9 MAJOR POSITIONING CONTROL MEMO ...
Page 490: ...10 28 MELSEC Q 10 HIGH LEVEL POSITIONING CONTROL MEMO ...
Page 524: ...11 34 MELSEC Q 11 MANUAL CONTROL Creating the program ...
Page 666: ...14 24 MELSEC Q 14 DEDICATED INSTRUCTIONS MEMO ...
Page 675: ...15 9 MELSEC Q 15 TROUBLESHOOTING MEMO ...
Page 716: ...15 50 MELSEC Q 15 TROUBLESHOOTING MEMO ...
Page 725: ...Appendix 9 MELSEC Q APPENDICES MEMO ...
Page 878: ...Appendix 162 MELSEC Q APPENDICES 6 QD75D4N 90 23 27 4 12 98 4 46 Unit mm ...
Page 879: ...Appendix 163 MELSEC Q APPENDICES 7 QD75P1 QD75P2 QD75P4 27 4 23 98 90 4 46 unit mm ...
Page 880: ...Appendix 164 MELSEC Q APPENDICES 8 QD75D1 QD75D2 QD75D4 27 4 23 90 12 98 4 46 unit mm ...
Page 893: ...WARRANTY ...
Page 895: ......