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2 pr eset ting aut o matically – HEIDENHAIN iTNC 530 (340 49x-04) Touch Probe Cycles User Manual

Page 76

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76

3 Touch Probe Cycles for Automatic Workpiece Inspection

3.2 Pr

eset

ting aut

o

matically

DATUM FROM INSIDE OF RECTANGLE
(touch probe cycle 410, DIN/ISO: G410)

Touch probe cycle 410 finds the center of a rectangular pocket and
defines its center as datum. If desired, the TNC can also enter the
coordinates into a datum table or the preset table.

1

The TNC positions the touch probe to the starting points at rapid
traverse (value from MP6150 or MP6361) following the positioning
logic (see “Running touch probe cycles” on page 26) to the
starting point

1

. The TNC calculates the probe starting points from

the data in the cycle and the safety clearance from MP6140.

2

Then the touch probe moves to the entered measuring height and
probes the first touch point at the probing feed rate (MP6120 or
MP6360).

3

Then the touch probe moves either paraxially at the measuring
height or linearly at the clearance height to the next starting point

2

and probes the second touch point.

4

The TNC positions the probe to starting point

3

and then to starting

point

4

to probe the third and fourth touch points.

5

Finally the TNC returns the touch probe to the clearance height and
processes the determined datum depending on the cycle
parameters Q303 and Q305. (see “Saving the calculated datum”
on page 69)

6

If desired, the TNC subsequently measures the datum in the touch
probe axis in a separate probing and saves the actual values in the
following Q parameters.

X

Y

1

2

3

4

Parameter number

Meaning

Q151

Actual value of center in reference axis

Q152

Actual value of center in minor axis

Q154

Actual value of length in the reference axis

Q155

Actual value of length in the minor axis

Before programming, note the following

To prevent a collision between touch probe and
workpiece, enter low estimates for the lengths of the 1st
and 2nd sides.

If the dimensions of the pocket and the safety clearance
do not permit pre-positioning in the proximity of the touch
points, the TNC always starts probing from the center of
the pocket. In this case the touch probe does not return to
the clearance height between the four measuring points.

Before a cycle definition you must have programmed a
tool call to define the touch probe axis.