204
G CODES
96-8000
June 1999
To force the default cylindrical surface diameter to be in sync with the Settings page Rotary Axis Diameter,
which may be desirable if the current default cylindrical surface diameter status is unknown, the following G107
command can be used:
G107 A0 Q0
This command will reset the A-axis default cylindrical surface diameter to zero, which forces the Settings page
value to be used as the default for that axis.
R
- This parameter specifies the radius of the rotary axis. If Q has already been specified, the R will be
ignored. Except as noted above, the conditions and/or restrictions associated with the use of this parameter
are exactly the same as the Q parameter.
2)
The above parameters can be entered in any order.
3)
Pressing the RESET key will always turn off any Cylindrical Mapping that is currently in effect,
regardless of the status of Setting 56. Cylindrical Mapping will also be turned off automatically
whenever the G-Code program ends, but only if Setting 56 is set to ON. If Setting 56 is set to
OFF, any Cylindrical Mapping that is in effect when the program ends will remain in effect.
4)
A G107 code issued without any parameters will turn off any cylindrical mapping currently in effect.
This should normally be done before a program ends. If Setting 56 is set to OFF however, it may
be desirable not to turn Cylindrical Mapping off, so that the mapping established can be used by
other programs.
5)
Re-issuing a G107 with either the same or a different linear axis specification will turn off any
cylindrical mapping that is currently in effect, before the new mapping is initiated.
6)
Issuing a G107 code with only a rotary axis specification and either a Q or an R will only change
the default diameter for the specified rotary axis; it will not turn on or off any cylindrical mapping.
Note:
Due to the fact that a rotary axiss maximum acceleration (as parameterized
in steps/seconds/second in the parameters page) is different from a linear
axiss maximum acceleration, there is a maximum achievable Feed Rate that
can be programmed for a Circular Interpolated Move, when one of the Circular
axes has been Cylindrically Mapped. Refer to the next section for a description
of FEED RATE ALTERATION.
FEED RATE ALTERATION TO ENSURE CONCURRENT AXIS MOTION
The actual FeedRate achieved in any interpolated motion in the CNC Mill is limited by the maximum speed
achievable in each axis of motion. The FeedRate may be lowered from its programmed value if that value would
cause the Mill to command an axis to move
faster
than its parameterized maximum speed.
This means that the actual FeedRate achieved may be less than or equal to the programmed FeedRate,
ensuring that all axes of interpolated motion move concurrently. When this condition occurs, the warning LIM
will be displayed on the screen immediately to the left of the FEED display.
Note also that the
MAX FEED RATE EXCEEDED
alarm will still be issued if the programmed feed rate exceeds
parameter 59 MAX FEEDRATE, (currently 300 ipm), but ONLY if the mill is not in Inverse Time mode.
Summary of Contents for VF Series
Page 1: ...1 INSTALLATION June 1999 96 8000 INSTALLATION FOR THE VF SERIES MILL ...
Page 4: ...4 INSTALLATION June 1999 96 8000 MACHINE FOOTPRINTS Dimensions are in inches ...
Page 5: ...5 INSTALLATION June 1999 96 8000 ...
Page 6: ...6 INSTALLATION June 1999 96 8000 ...
Page 20: ...2 0 INSTALLATION June 1999 96 8000 ANCHOR PATTERN VF 0 E 1 2 ...
Page 21: ...2 1 INSTALLATION June 1999 96 8000 MACHINE FOOTPRINT VF 0 E 1 2 ...
Page 22: ...2 2 INSTALLATION June 1999 96 8000 ANCHOR PATTERN VF 3 4 ...
Page 23: ...2 3 INSTALLATION June 1999 96 8000 MACHINE FOOTPRINT VF 3 4 ...
Page 24: ...2 4 INSTALLATION June 1999 96 8000 ANCHOR PATTERN VF 5 ...
Page 25: ...2 5 INSTALLATION June 1999 96 8000 MACHINE FOOTPRINT VF 5 ...
Page 27: ...2 7 INSTALLATION June 1999 96 8000 MACHINE FOOTPRINT VF 6 ...
Page 28: ...2 8 INSTALLATION June 1999 96 8000 MACHINE FOOTPRINT VF 7 ...
Page 31: ...3 1 INSTALLATION June 1999 96 8000 MACHINE FOOTPRINT VF 8 ...
Page 32: ...3 2 INSTALLATION June 1999 96 8000 MACHINE FOOTPRINT VF 9 ...
Page 138: ...138 OPERATION 96 8000 June 1999 THIS PAGE INTENTIONALLY LEFT BLANK ...
Page 153: ...96 8000 CUTTER COMPENSATION 153 June 1999 ...
Page 154: ...154 CUTTER COMPENSATION 96 8000 June 1999 ...
Page 156: ...156 CUTTER COMPENSATION 96 8000 June 1999 CUTTER COMPENSATION ENTRY Yasnac ...
Page 157: ...96 8000 CUTTER COMPENSATION 157 June 1999 CUTTER COMPENSATION ENTRY Fanuc style ...
Page 220: ...220 M CODES 96 8000 June 1999 THIS PAGE INTENTIONALLY LEFT BLANK ...
Page 270: ...270 SETTINGS June 1999 96 8000 THIS PAGE INTENTIONALLY LEFT BLANK ...
Page 306: ...306 PARAMETERS June 1999 96 8000 THIS PAGE INTENTIONALLY LEFT BLANK ...
Page 332: ...332 ALARMS June 1999 96 8000 THIS PAGE INTENTIONALLY LEFT BLANK ...
Page 416: ...416 OPTIONS 96 8000 June 1999 ...
Page 433: ...96 8000 433 OPTIONS June 1999 Recovery from an E Stop initiated during a pallet change ...
Page 435: ...96 8000 435 OPTIONS June 1999 APC DIMENSIONS VF 3 4 WITH APC FOOTPRINT ...
Page 437: ...96 8000 437 OPTIONS June 1999 APC PALLET CLEARANCES ...
Page 443: ...TECHNICAL REFERENCE 443 June 1999 96 8000 SIDE MOUNT TOOL CHANGER RECOVERY FLOW CHART ...
Page 477: ...Assembly Drawings June 1999 477 96 8000 ASSEMBLY DRAWINGS ...
Page 478: ...Assembly Drawings June 1999 478 96 8000 VF O 1 Base ...
Page 479: ...Assembly Drawings June 1999 479 96 8000 VF O 1 Column ...
Page 480: ...Assembly Drawings June 1999 480 96 8000 VF O 1 Saddle ...
Page 481: ...Assembly Drawings June 1999 481 96 8000 VF 3 Base ...
Page 482: ...Assembly Drawings June 1999 482 96 8000 VF 3 Column ...
Page 483: ...Assembly Drawings June 1999 483 96 8000 VF 3 Saddle ...
Page 484: ...Assembly Drawings June 1999 484 96 8000 VF 6 Base ...
Page 485: ...Assembly Drawings June 1999 485 96 8000 VF 6 Column ...
Page 486: ...Assembly Drawings June 1999 486 96 8000 VF 6 Saddle ...
Page 487: ...Assembly Drawings June 1999 487 96 8000 VF 8 Base ...
Page 488: ...Assembly Drawings June 1999 488 96 8000 VF 8 Column ...
Page 489: ...Assembly Drawings June 1999 489 96 8000 VF 8 Saddle ...
Page 490: ...Assembly Drawings June 1999 490 96 8000 VF 10 Base ...
Page 491: ...Assembly Drawings June 1999 491 96 8000 VF 10 Column ...
Page 493: ...Assembly Drawings June 1999 493 96 8000 VF 10 Column ...
Page 495: ...Assembly Drawings June 1999 495 96 8000 Tool Changer Assembly VF 3 4 ...
Page 496: ...Assembly Drawings June 1999 496 96 8000 Tool Changer Assembly VF 3 4 ...
Page 497: ...Assembly Drawings June 1999 497 96 8000 Tool Changer Assembly VF 6 10 ...
Page 498: ...Assembly Drawings June 1999 498 96 8000 Tool Changer Assembly VF 6 10 ...
Page 499: ...Assembly Drawings June 1999 499 96 8000 50 Taper Tool Changer Assembly ...
Page 500: ...Assembly Drawings June 1999 500 96 8000 50 Taper Tool Changer Assembly ...
Page 501: ...Assembly Drawings June 1999 501 96 8000 20 Pocket Tool Changer VF O 1 2 ...
Page 502: ...Assembly Drawings June 1999 502 96 8000 20 Pocket Tool Changer VF O 1 2 ...
Page 504: ...Assembly Drawings June 1999 504 96 8000 32 Tool Carousel Assembly Assembly CT VF 3 10 ...
Page 505: ...Assembly Drawings June 1999 505 96 8000 50 Taper Carousel Assembly CT VF 6 10 ...
Page 506: ...Assembly Drawings June 1999 506 96 8000 VF 1 11 Gearbox Assembly 15 HP ...
Page 507: ...Assembly Drawings June 1999 507 96 8000 VF 1 11 Gearbox Assembly 15 HP ...
Page 508: ...Assembly Drawings June 1999 508 96 8000 VF 1 11 Gearbox Assembly HT10K ...
Page 509: ...Assembly Drawings June 1999 509 96 8000 VF 1 11 Gearbox Assembly HT10K ...
Page 510: ...Assembly Drawings June 1999 510 96 8000 VF 1 11 Gearbox Assembly HT10K TSC ...
Page 512: ...Assembly Drawings June 1999 512 96 8000 Spindle Assembly 7 5 ...
Page 513: ...Assembly Drawings June 1999 513 96 8000 Spindle Assembly 7 5K TSCHP ...
Page 514: ...Assembly Drawings June 1999 514 96 8000 10K Spindle Assembly ...
Page 515: ...Assembly Drawings June 1999 515 96 8000 10K 12K Spindle Assembly ...
Page 517: ...Assembly Drawings June 1999 517 96 8000 Spindle Assembly VF0 10K TSCHP ...
Page 518: ...Assembly Drawings June 1999 518 96 8000 Tool Release Piston Assembly ...
Page 520: ...Assembly Drawings June 1999 520 96 8000 50 Taper Tool Release Piston ...
Page 521: ...Assembly Drawings June 1999 521 96 8000 50 Taper Tool Release Piston ...
Page 522: ...Assembly Drawings June 1999 522 96 8000 TSCHP Tool Release Piston Assembly ...
Page 523: ...Assembly Drawings June 1999 523 96 8000 TSCHP Tool Release Piston Assembly ...
Page 524: ...Assembly Drawings June 1999 524 96 8000 32mmBall Screw Assembly ...
Page 526: ...Assembly Drawings June 1999 526 96 8000 50mm Ball Screw Assembly ...
Page 527: ...Assembly Drawings June 1999 527 96 8000 30 1215 Coupling Assembly ...
Page 528: ...Assembly Drawings June 1999 528 96 8000 30 1219 Coupling Assembly ...
Page 530: ...Assembly Drawings June 1999 530 96 8000 30 1220P Coupling Assembly ...
Page 531: ...Assembly Drawings June 1999 531 96 8000 30 1225 Coupling Assembly ...
Page 532: ...Assembly Drawings June 1999 532 96 8000 APC Assembly ...
Page 533: ...Assembly Drawings June 1999 533 96 8000 APC Assembly ...
Page 534: ...Assembly Drawings June 1999 534 96 8000 APC Assembly ...
Page 535: ...Assembly Drawings June 1999 535 96 8000 VR Series Head Assembly ...
Page 536: ...Assembly Drawings June 1999 536 96 8000 VR Series Head Assembly ...
Page 537: ...Assembly Drawings June 1999 537 96 8000 VF Series Hydraulic Couterbalance System ...
Page 538: ...538 ELECTRICAL DIAGRAMS June 1999 96 8000 ELECTRICAL WIRING DIAGRAMS ...
Page 539: ...539 ELECTRICAL DIAGRAMS June 1999 96 8000 ...
Page 540: ...540 ELECTRICAL DIAGRAMS June 1999 96 8000 ...
Page 541: ...541 ELECTRICAL DIAGRAMS June 1999 96 8000 ...
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Page 562: ...562 ELECTRICAL DIAGRAMS June 1999 96 8000 ...