Fundamentals, File Management | Fundamentals
4
HEIDENHAIN | TNC 620 | Conversational Programming User's Manual | 10/2017
141
Reference systems
For the control to traverse an axis according to a defined path it
requires a
reference system
.
A paraxially mounted linear encoder on a machine tool serves
as a simple reference system for linear axes. The linear encoder
represents a
number ray
, a unidimensional coordinate system.
To approach a point on the
plane
, the control requires two axes and
therefore a reference system with two dimensions.
To approach a point in the
space
, the control requires three axes
and therefore a reference system with three dimensions. If these
three axes are configured perpendicular to each other this creates a
so-called
three-dimensional Cartesian coordinate system
.
According to the right-hand rule the fingertips point in
the positive directions of the three main axes.
For a point to be uniquely determined in space, a
coordinate origin
is needed in addition to the configuration of the three dimensions.
The common intersection serves as the coordinate origin in a 3-D
coordinate system. This intersection has the coordinates
X+0
,
Y+0
and
Z+0
.
The control must differentiate between various reference systems
for it to always perform a tool change at the same position for
example, or carry out a machining operation always related to the
current workpiece position.
The control differentiates between the following reference
systems:
Machine coordinate system M-CS:
M
achine
C
oordinate
S
ystem
Basic coordinate system B-CS:
B
asic
C
oordinate
S
ystem
Workpiece coordinate system W-CS:
W
orkpiece
C
oordinate
S
ystem
Working plane coordinate system WPL-CS:
W
orking
Pl
ane
C
oordinate
S
ystem
Input coordinate system I-CS:
I
nput
C
oordinate
S
ystem
Tool coordinate system T-CS:
T
ool
C
oordinate
S
ystem
All reference systems build up on each other. They are
subject to the kinematic chain of the specific machine
tool.
The machine coordinate system is the reference
system.
X
∆
Содержание TNC 620 E
Страница 4: ......
Страница 5: ...Fundamentals...
Страница 34: ...Contents 34 HEIDENHAIN TNC 620 Conversational Programming User s Manual 10 2017...
Страница 63: ...1 First Steps with the TNC 620...
Страница 86: ......
Страница 87: ...2 Introduction...
Страница 123: ...3 Operating the Touchscreen...
Страница 139: ...4 Fundamentals File Management...
Страница 199: ...5 Programming Aids...
Страница 228: ......
Страница 229: ...6 Tools...
Страница 271: ...7 Programming Contours...
Страница 323: ...8 Data Transfer from CAD Files...
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Страница 345: ...9 Subprograms and Program Section Repeats...
Страница 364: ......
Страница 365: ...10 Programming Q Parameters...
Страница 467: ...11 Miscellaneous Functions...
Страница 489: ...12 Special Functions...
Страница 532: ......
Страница 533: ...13 Multiple Axis Machining...
Страница 596: ......
Страница 597: ...14 Pallet Management...
Страница 610: ......
Страница 611: ...15 Batch Process Manager...
Страница 619: ...16 Manual Operation and Setup...
Страница 693: ...17 Positioning with Manual Data Input...
Страница 698: ......
Страница 699: ...18 Test Run and Program Run...
Страница 737: ...19 MOD Functions...
Страница 774: ......
Страница 775: ...20 Tables and Overviews...
Страница 839: ...HEIDENHAIN TNC 620 Conversational Programming User s Manual 10 2017 839 To the datum table 661 Z ZIP archive 189...