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Fagor CNC 8070
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Programming manual
CNC 8070
CNC VARIABLES
Alphabetical listing of variables
14.
(SOFT V02.0X)
407
(V.)[n].MPA.MANNEGSW.Xn Maximum negative travel with G201......................................................... Page 370
(V.)[n].MPA.MANPOSSW.Xn Maximum positive travel with G201 .......................................................... Page 370
(V.)[n].MPA.MAXFLWE[g].Xn Maximum following error when moving .................................................... Page 372
(V.)[n].MPA.MAXMANACC.Xn Maximum acceleration in JOG mode........................................................ Page 370
(V.)[n].MPA.MAXMANFEED.Xn Maximum feed in continuous JOG............................................................ Page 370
(V.)[n].MPA.MAXOVR.Xn Maximum override (%).............................................................................. Page 369
(V.)[n].MPA.MAXVOLT[g].Xn Analog voltage for G00FEED ................................................................... Page 371
(V.)[n].MPA.MINANOUT[g].Xn Minimum analog output ............................................................................ Page 373
(V.)[n].MPA.MINFLWE[g].Xn Maximum following error when stopped ................................................... Page 372
(V.)[n].MPA.MINOVR.Xn Minimum override (%)............................................................................... Page 369
(V.)[n].MPA.MODCOMP.Xn Module compensation .............................................................................. Page 368
(V.)[n].MPA.MODERR[g].Xn Module error. Number of increments ........................................................ Page 373
(V.)[n].MPA.MODLOWLIM[g].XnModule's lower limit .................................................................................. Page 373
(V.)[n].MPA.MODNROT[g].Xn Module error. Number of turns.................................................................. Page 373
(V.)[n].MPA.MODUPLIM[g].Xn Module's upper limit.................................................................................. Page 373
(V.)[n].MPA.MPGFILTER.Xn Filter time for the handwheel .................................................................... Page 370
(V.)[n].MPA.MPGRESOL[i].Xn Dial resolution at the [i] position................................................................ Page 370
(V.)[n].MPA.NEGERROR[i].Xn Error of point [i] in the negative direction ................................................. Page 370
(V.)[n].MPA.NEGLIMIT.Xn Negative software limit.............................................................................. Page 369
(V.)[n].MPA.NORBWIDTH[i].Xn Normal bandwidth..................................................................................... Page 370
(V.)[n].MPA.NPARSETS.Xn Number of work sets................................................................................. Page 370
(V.)[n].MPA.NPOINTS.Xn Number of points in the table.................................................................... Page 370
(V.)[n].MPA.NPULSES[g].Xn Number of encoder pulses ....................................................................... Page 371
(V.)[n].MPA.NPULSES2[g].Xn Number of encoder pulses (2nd feedback)............................................... Page 371
(V.)[n].MPA.OPMODEP.Xn Sercos drive operating mode.................................................................... Page 368
(V.)[n].MPA.ORDER[i].Xn Filter order ................................................................................................ Page 370
(V.)[n].MPA.OUTPUTREV[g].Xn Turns of the machine axis......................................................................... Page 371
(V.)[n].MPA.OUTPUTREV2[g].XnTurns of the machine axis (2nd feedback)............................................... Page 371
(V.)[n].MPA.PITCH[g].Xn Leadscrew pitch........................................................................................ Page 371
(V.)[n].MPA.PITCH2[g].Xn Leadscrew pitch (2nd feedback)............................................................... Page 371
(V.)[n].MPA.PLCOINC.Xn PLC offset increment per cycle................................................................. Page 369
(V.)[n].MPA.POLARM3[g].Xn Analog voltage sign M3 ............................................................................ Page 373
(V.)[n].MPA.POLARM4[g].Xn Analog voltage sign M4 ............................................................................ Page 373
(V.)[n].MPA.POSERROR[i].Xn Error of point [i] in the positive direction................................................... Page 370
(V.)[n].MPA.POSFEED.Xn Positioning feedrate .................................................................................. Page 369
(V.)[n].MPA.POSITION[i].Xn Master axis position for point [i] ............................................................... Page 370
(V.)[n].MPA.POSLIMIT.Xn Positive software limit ............................................................................... Page 369
(V.)[n].MPA.PROBEAXIS.Xn Probing axis.............................................................................................. Page 369
(V.)[n].MPA.PROBEDELAY Delay for the "probe 1" signal ................................................................... Page 369
(V.)[n].MPA.PROBEDELAY Delay for the "probe 2" signal ................................................................... Page 369
(V.)[n].MPA.PROBEFEED.Xn Probing feedrate ....................................................................................... Page 369
(V.)[n].MPA.PROBERANGE.Xn Maximum braking distance....................................................................... Page 369
(V.)[n].MPA.PROGAIN[g].Xn Proportional gain ...................................................................................... Page 372
(V.)[n].MPA.REFDIREC.Xn Home search direction.............................................................................. Page 369
(V.)[n].MPA.REFFEED1[g].Xn Fast home searching feedrate .................................................................. Page 372
(V.)[n].MPA.REFFEED2[g].Xn Slow home searching feedrate ................................................................. Page 372
(V.)[n].MPA.REFNEED.Xn Mandatory home search.......................................................................... Page 370
(V.)[n].MPA.REFPULSE[g].Xn Type of I0 pulse ........................................................................................ Page 372
(V.)[n].MPA.REFSHIFT[g].Xn Offset of the reference point (home)......................................................... Page 372
(V.)[n].MPA.REFVALUE[g].Xn Home position........................................................................................... Page 372
(V.)[n].MPA.REPOSFEED.Xn Maximum repositioning feedrate............................................................... Page 369
(V.)[n].MPA.SERVOOFF[g].Xn Offset compensation................................................................................. Page 373
(V.)[n].MPA.SHARE[i].Xn % of signal going through the filter ........................................................... Page 370
(V.)[n].MPA.SHORTESTWAY.XnVia shortest way ....................................................................................... Page 368
(V.)[n].MPA.SINMAGNI[g].Xn Sinusoidal multiplying factor ..................................................................... Page 371
(V.)[n].MPA.SPDLSTOP.Xn M2, M30 and Reset stop the spindle ........................................................ Page 369
(V.)[n].MPA.SPDLTIME.Xn Estimated time for an S function............................................................... Page 369
(V.)[n].MPA.SREVM05.Xn G84. Reversal stops the spindle............................................................... Page 369
(V.)[n].MPA.STEPOVR.Xn Override step ............................................................................................ Page 369
(V.)[n].MPA.SWLIMITTOL.Xn Software limit tolerance ............................................................................ Page 369
(V.)[n].MPA.SZERO[g].Xn Speed considered "0 rpm"........................................................................ Page 373
(V.)[n].MPA.TENDENCY.Xn Activation of tendency test........................................................................ Page 369
(V.)[n].MPA.TYPE[i].Xn Type of filter .............................................................................................. Page 370
(V.)[n].MPA.TYPLSCRW.Xn Type of compensation............................................................................... Page 370
(V.)[n].MPA.UNIDIR.Xn Unidirectional rotation............................................................................... Page 368
(V.)[n].MPA.UPSPDLIM.Xn Upper "rpm OK" percentage..................................................................... Page 369
(V.)[n].MPG.ALIGNC "C" axis in diametrical machining ............................................................. Page 366
(V.)[n].MPG.ANTIME Anticipation time ....................................................................................... Page 366
(V.)[n].MPG.CAXNAME Axis working as "C" axis (by default) ........................................................ Page 366
(V.)[n].MPG.CHAXISNAMEx Name of the "n" logic axis......................................................................... Page 366
(V.)[n].MPG.CHNAXIS Number of axes of the channel................................................................. Page 366
(V.)[n].MPG.CHNSPDL Number of spindles of the channel........................................................... Page 366
(V.)[n].MPG.CHSPDLNAMEx Name of the "x" spindle ............................................................................ Page 366
(V.)[n].MPG.CHTYPE Channel type ............................................................................................ Page 366
(V.)[n].MPG.CIRINERR Absolute radius error ................................................................................ Page 366

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