RTC
®
5 PC Interface Board
Rev. 1.9 e
10 Commands And Functions
536
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Normal
List Command
timed_jump_rel_3d
Function
moves the output point (of the laser focus) for the specified jump duration along a 3D
vector from the current position to the specified position (relative coordinate values)
within a three-dimensional process volume.
Restriction
If the 3D option is not enabled or no 3D correction table has been assigned (see
), then the command will have the same effect as
However, microvectorization will be calculated like a 3D command and hence will
influence the effective jump speed in the XY plane.
Call
timed_jump_rel_3d( dX, dY, dZ, T )
Parameters
dX,dY,dZ
relative coordinates of the jump vector end point in
bits
as signed 32-bit
values; allowed range:
• for
X
and
Y
: [–8388608 … 8388607] (out-of-range values will be edge-
clipped). The complete value range [–8388608 … 8388607] is only usable
as a virtual image field e.g. for (enabled) Processing-on-the-fly applica-
tions. The current coordinates will be clipped to [–524288 … 524287] (real
image field size) during runtime directly prior to use of the correction table.
• for
Z
: [–32768 … 32767] (out-of-range values will be edge-clipped).
T
duration of the complete jump vector in
microseconds
(as a 64-bit IEEE
floating point value); allowed range: [0 … 167772160]; the parameter will be
rounded to an integer-multiple of 10; out-of-range values will be clipped.
If
T
< 5, then
timed_jump_rel_3d
behaves like
.
Comments
• The coordinates for the jump vector’s end point are to be supplied as relative coordi-
nates with respect to the current position. Otherwise, the command is identical to
(see the comments there, exception:
T
< 5, see above).
RTC
®
4
RTC
®
5 new command
In RTC
®
4 compatibility mode, the RTC
®
5 multiplies the specified value for the X and Y
coordinates by 16 (the permissible range of values is correspondingly reduced). The value
range for Z coordinates is identical for the RTC
®
5 mode and the RTC
®
4 compatibility
mode.
References