HEIDENHAIN TNC 620 (81760x-02) User Manual
Page 637

Functions of the TNC 620 and the iTNC 530 compared
18.5
18
TNC 620 | User's Manual
HEIDENHAIN Conversational Programming | 2/2015
637
Comparison: Touch probe cycles in the Manual
Operation and El. Handwheel modes
Cycle
TNC 620
iTNC 530
Touch-probe table for managing 3-D touch probes
X
–
Calibrating the effective length
X, option 17
X
Calibrating the effective radius
X, option 17
X
Measuring a basic rotation using a line
X, option 17
X
Set the datum in any axis
X, option 17
X
Setting a corner as datum
X, option 17
X
Setting a circle center as datum
X, option 17
X
Setting a center line as datum
X, option 17
X
Measuring a basic rotation using two holes/cylindrical studs
X, option 17
X
Setting the datum using four holes/cylindrical studs
X, option 17
X
Setting the circle center using three holes/cylindrical studs
X, option 17
X
Support of mechanical touch probes by manually capturing the current
position
By soft key
By hard key
Writing measured values in preset table
X, option 17
X
Writing measured values in datum tables
X, option 17
X
Comparison: Touch probe cycles for automatic
workpiece inspection
Cycle
TNC 620
iTNC 530
0, reference plane
X, option 17
X
1, polar datum
X, option 17
X
2, calibrating TS
–
X
3, measuring
X, option 17
X
4, measuring in 3-D
X, option 17
X
9, calibrating TS length
–
X
30, calibrating TT
X, option 17
X
31, measuring tool length
X, option 17
X
32, measuring tool radius
X, option 17
X
33, measuring tool length and radius
X, option 17
X
400, basic rotation
X, option 17
X
401, basic rotation from two holes
X, option 17
X
402, basic rotation from two studs
X, option 17
X
403, compensating a basic rotation via a rotary axis
X, option 17
X
404, setting a basic rotation
X, option 17
X
405, compensating workpiece misalignment by rotating the C axis
X, option 17
X
408, slot center datum
X, option 17
X
409, ridge center datum
X, option 17
X