ACR Electronics FPR-10 PROGRAMMER Manuel Page 196

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Parker Hannifin
196 Programmer’s Guide
Example 3
The following example configures an eight axis ACR8010 board
for two closed-loop servos with two commutator and two
open-loop steppers (one DAC output module and one stepper
output module):
CONFIG ENC4 DAC4 STEPPER4 NONE
ATTACH AXIS0 ENC0 CMT0 ENC0
ATTACH AXIS1 ENC2 CMT1 ENC2
ATTACH AXIS4 STEPPER4 STEPPER4
ATTACH AXIS5 STEPPER5 STEPPER5
ATTACH AXIS6 STEPPER6 STEPPER6
ATTACH AXIS7 STEPPER7 STEPPER7
AXIS2 OFF
AXIS3 OFF
CMT0 ENC0 ENC1
CMT0 DAC0 DAC1
CMT1 ENC2 ENC3
CMT1 DAC2 DAC3
Example 4
The following example configures a four axis ACR1500 with four
on-board stepper outputs or a four axis ACR2000 with one
stepper output module for four open-loop steppers. Also
included on the board is an analog input module (ADC input
module).
NOTE: On the ACR1500 and ACR2000 card, the attach axis
statements for AXIS4 through AXIS7 must be left in the
default configuration to ensure proper operation.
CONFIG NONE STEPPER4 NONE ADC8
ATTACH AXIS0 STEPPER0 STEPPER0
ATTACH AXIS1 STEPPER1 STEPPER1
ATTACH AXIS2 STEPPER2 STEPPER2
ATTACH AXIS3 STEPPER3 STEPPER3
ESAVE
Example 5
The following example configures a two axis ACR1200 with two
on-board stepper outputs or a four axis ACR2000 with one
stepper output module for four open-loop steppers. Also
included on the board is an analog input module (ADC input
module).
NOTE: On the ACR1500 and ACR2000 card, the attach axis
statements for AXIS4 through AXIS7 must be left in the
default configuration to ensure proper operation.
CONFIG NONE STEPPER4 NONE ADC8
ATTACH AXIS0 STEPPER0 STEPPER0
ATTACH AXIS1 STEPPER1 STEPPER1
ATTACH AXIS2 STEPPER2 STEPPER2
ATTACH AXIS3 STEPPER3 STEPPER3
ESAVE
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