EasyManua.ls Logo

Fagor CNC 8070 - Alphabetical Listing of Variables

Fagor CNC 8070
556 pages
To Next Page IconTo Next Page
To Next Page IconTo Next Page
To Previous Page IconTo Previous Page
To Previous Page IconTo Previous Page
Loading...



Programming manual
CNC 8070
CNC VARIABLES
Alphabetical listing of variables
14.
(SOFT V02.0X)
403
14.20 Alphabetical listing of variables
(V.)[n].A.ACCEL.Xn Real instantaneous acceleration value..................................................... Page 399
(V.)[n].A.ACFGAIN.Xn Active percentage of AC-forward .............................................................. Page 395
(V.)[n].A.ACTCH.Xn Current channel of the axis or of the spindle ............................................ Page 397
(V.)[n].A.ACTIVSET.Xn Active axis or spindle set .......................................................................... Page 397
(V.)[n].A.ADDMANOF.Xn Distance moved with G201...................................................................... Page 393
(V.)[n].A.APOS.Xn Part coordinates. Real of the tool base .................................................... Page 387
(V.)[n].A.ASINUS.Xn Fraction of the A signal ............................................................................. Page 398
(V.)[n].A.ATIPMEAS.Xn Measured value. Tool tip coordinates ....................................................... Page 393
(V.)[n].A.ATIPPOS.Xn Part coordinates. Real of the tool tip ........................................................ Page 387
(V.)[n].A.ATIPTPOS.Xn Part coordinates. Theoretical of the tool tip .............................................. Page 387
(V.)[n].A.ATPOS.Xn Part coordinates. Theoretical of the tool base .......................................... Page 387
(V.)[n].A.BSINUS.Xn Fraction of the B signal ............................................................................. Page 398
(V.)[n].A.CNCMMODE.Xn At the switch for the Xn axis ..................................................................... Page 385
(V.)[n].A.CNCSSO.Sn % S at the switch ...................................................................................... Page 390
(V.)[n].A.COUNTER.Xn Feedback pulses....................................................................................... Page 398
(V.)[n].A.COUNTERST.Xn Counter status .......................................................................................... Page 398
(V.)[n].A.CSS.Sn Active CSS................................................................................................ Page 390
(V.)[n].A.DIST.Xn Distance traveled by the axis or spindle ................................................... Page 402
(V.)[n].A.FEED.Xn Real instantaneous feedrate value ........................................................... Page 399
(V.)[n].A.FFGAIN.Xn Active percentage of feed-forward............................................................ Page 395
(V.)[n].A.FIX.Xn Offset of current fixture for Xn axis ........................................................... Page 380
(V.)[n].A.FIXT[i].Xn Offset of [i] fixture for the Xn axis.............................................................. Page 380
(V.)[n].A.FLWE.Sn Spindle following error .............................................................................. Page 388
(V.)[n].A.FLWE.Xn Following error of the axis......................................................................... Page 387
(V.)[n].A.FRO.Xn % F active by axis..................................................................................... Page 389
(V.)[n].A.FTEO.Xn Velocity command for Sercos ................................................................... Page 399
(V.)[n].A.GEARADJ.Xn Fine adjustment of the gear ratio for the synchronization movement ....... Page 396
(V.)[n].A.HEADOF.Xn Dimension of the kinematics..................................................................... Page 397
(V.)[n].A.INPOS.Xn Axis or spindle in position ......................................................................... Page 402
(V.)[n].A.IORG.Xn Offset for the independent axis................................................................. Page 396
(V.)[n].A.IPPOS.Xn Coordinate programmed for the independent axis ................................... Page 396
(V.)[n].A.IPRGF.Xn Feedrate programmed in the independent axis ........................................ Page 396
(V.)[n].A.ITPOS.Xn Theoretical coordinate of the independent axis........................................ Page 396
(V.)[n].A.JERK.Xn Real instantaneous jerk value .................................................................. Page 399
(V.)[n].A.MANMODE.Xn Active for the Xn axis................................................................................ Page 385
(V.)[n].A.MANOF.Xn Distance moved with G200 or inspection ................................................ Page 393
(V.)[n].A.MEAS.Xn Measured value. Tool base coordinates ................................................... Page 393
(V.)[n].A.MEASIN.Xn Coordinate that includes measurement offset .......................................... Page 393
(V.)[n].A.MEASOF.Xn Difference with respect to programmed point ........................................... Page 393
(V.)[n].A.MEASOK.Xn Probing finished........................................................................................ Page 393
(V.)[n].A.NEGLIMIT.Xn Negative software limit.............................................................................. Page 397
(V.)[n].A.ORG.Xn Offset of current origin for the Xn axis ...................................................... Page 379
(V.)[n].A.ORGT[i].Xn Offset of [i] origin for the Xn axis .............................................................. Page 379
(V.)[n].A.PLCACFGAIN.Xn % of AC-forward programmed from the PLC ............................................ Page 399
(V.)[n].A.PLCFFGAIN.Xn % of feed-forward programmed from the PLC.......................................... Page 399
(V.)[n].A.PLCMMODE.Xn By PLC for the Xn axis.............................................................................. Page 385
(V.)[n].A.PLCOF.Xn Offset of PLC origin for the Xn axis .......................................................... Page 379
(V.)[n].A.PLCPROGAIN.Xn Proportional gain programmed from the PLC........................................... Page 399
(V.)[n].A.POS.Sn Real spindle position ................................................................................ Page 388
(V.)[n].A.POS.Xn Machine coordinates. Real of the tool base ............................................. Page 387
(V.)[n].A.POSINC.Xn Real position increment of the current sampling period ........................... Page 399
(V.)[n].A.POSLIMIT.Xn Positive software limit ............................................................................... Page 397
(V.)[n].A.PPOS.Sn Programmed spindle position ................................................................... Page 388
(V.)[n].A.PPOS.Xn Programmed coordinates (of the tool tip) ................................................. Page 387
(V.)[n].A.PRELOAD.Xn Preload ..................................................................................................... Page 399
(V.)[n].A.PREVPOSINC.Xn Real position increment of the previous sampling period ......................... Page 399
(V.)[n].A.PRGCSS.Sn CSS by program ....................................................................................... Page 390
(V.)[n].A.PRGS.Sn S by program in rpm ................................................................................. Page 390
(V.)[n].A.PRGSL.Sn S limit via program in Constant Surface Speed mode .............................. Page 390
(V.)[n].A.PRGSPOS.Sn Speed in M19 by program ........................................................................ Page 390
(V.)[n].A.PRGSSO.Sn % S by program ........................................................................................ Page 390
(V.)[n].A.RTNEGLIMIT.Xn Second negative software travel limit ....................................................... Page 397
(V.)[n].A.RTPOSLIMIT.Xn Second positive software travel limit......................................................... Page 397
(V.)[n].A.SLIMIT.Sn S limit active in Constant Surface Speed mode........................................ Page 390
(V.)[n].A.SPEED.Sn S active in rpm (G97)................................................................................ Page 390
(V.)[n].A.SPOS.Sn Active speed in M19 ................................................................................. Page 390
(V.)[n].A.SREAL.Sn Real spindle speed ................................................................................... Page 390
(V.)[n].A.SSO.Sn % S active at the CNC.............................................................................. Page 390
(V.)[n].A.SYNCPOSOFF.Xn Position offset for synchronization ............................................................ Page 396
(V.)[n].A.SYNCPOSW.Xn Maximum position difference to start correcting it .................................... Page 396
(V.)[n].A.SYNCTOUT.Xn Maximum time to establish synchronism .................................................. Page 396
(V.)[n].A.SYNCVEL.Xn Synchronization speed ............................................................................. Page 396

Table of Contents

Other manuals for Fagor CNC 8070

Related product manuals