Motion Coordinator
Technical Reference Manual
Trio BASIC Commands 8-29
Motion and Axis Commands
Note:
The datuming input set with the
DATUM_IN
is active low so is set when the input is
OFF. This is similar to the
FWD
,
REV
and
FHOLD
inputs which are designed to be “fail-
safe”.
Example:
DATUM_IN=10
DATUM(5)
DEC
Type:
Axis Command
Syntax:
DEC(rate)
Description:
Sets the deceleration rate for an axis. The
DEC()
command is provided to maintain
compatibility with older controllers. The Axis Parameter
DECEL
provides the same
functionality and is preferred.
Parameters:
Note:
ACC()
sets both the acceleration and deceleration rates.
DEC()
sets only the decel-
eration rate.
5
The axis moves at programmed speed forward until the datum switch is
reached. The axis then reverses at creep speed until the datum switch is
reset. It then continues in reverse looking for the Z marker on the
motor. The demand position where the Z input was seen is then set to
zero and the measured position corrected so as to maintain the following
error.
6
The axis moves at programmed speed reverse until the datum switch is
reached. The axis then moves forward at creep speed until the datum
switch is reset. It then continues forward looking for the Z marker on
the motor. The demand position where the Z input was seen is then set to
zero and the measured position corrected so as to maintain the following
error.
Seq.
Description
rate:
The units of the parameter are dependant on the unit conversion fac-
tor. The deceleration factor is entered in UNITS/SEC/SEC.
Summary of Contents for Motion Coordinator Euro 205
Page 4: ......
Page 11: ...C H A P T E R CHAPTER0INTRODUCTION...
Page 12: ......
Page 27: ...C H A P T E R CHAPTER0HARDWARE OVERVIEW...
Page 28: ......
Page 35: ...Motion Coordinator Technical Reference Manual Hardware Overview 2 9 Motion Coordinator MC202...
Page 75: ...C H A P T E R CHAPTER0INSTALLATION...
Page 76: ......
Page 88: ...3 14 Installation EMC Considerations Trio Motion Technology...
Page 89: ...C H A P T E R CHAPTER0DAUGHTER BOARDS...
Page 90: ......
Page 126: ...4 38 Daughter Boards Profibus Daughter Board Trio Motion Technology...
Page 127: ...C H A P T E R CHAPTER0EXPANSION MODULES...
Page 128: ......
Page 158: ...5 32 Expansion Modules Communications Adaptors Trio Motion Technology...
Page 159: ...C H A P T E R CHAPTER0SYSTEM SETUP AND DIAGNOSTICS...
Page 160: ......
Page 173: ...C H A P T E R CHAPTER 0PROGRAMMING...
Page 174: ...7 2 Programming Trio Motion Technology...
Page 190: ...7 18 Programming Command Line Interface Trio Motion Technology...
Page 191: ...C H A P T E R CHAPTER0TRIO BASIC COMMANDS...
Page 192: ......
Page 200: ...8 10 Trio BASIC Commands Trio Motion Technology VERIFY 8 178 VFF_GAIN 8 178 VP_SPEED 8 179...
Page 254: ...8 64 Trio BASIC Commands Input Output Commands Trio Motion Technology...
Page 372: ...8 182Trio BASIC Commands Axis Parameters Trio Motion Technology...
Page 373: ...C H A P T E R CHAPTER 0PROGRAMMING EXAMPLES...
Page 374: ......
Page 389: ...C H A P T E R CHAPTER0SUPPORT SOFTWARE...
Page 390: ......
Page 472: ...10 84Support Software Project Autoloader Trio Motion Technology...
Page 473: ...C H A P T E R CHAPTER0FIBRE OPTIC NETWORK...
Page 474: ......
Page 486: ...11 14Fibre Optic Network Network Specification Trio Motion Technology...
Page 487: ...C H A P T E R CHAPTER0USING THE TRIO ACTIVEX CONTROL...
Page 488: ......
Page 518: ...12 32Using the Trio ActiveX Control Events Trio Motion Technology...
Page 519: ...C H A P T E R CHAPTER0COMMUNICATIONS PROTOCOLS...
Page 520: ......
Page 551: ...A P P E N D I X CHAPTER 0REFERENCE...
Page 552: ......