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Fieldbus Configuration file – PI and PI PLASMA - Full
All controls are available - 10010604
AnyBus Configuration – 10010604 v1.04
PI – Full Configuration
10010604.doc
Page 1 of 3
Notes regarding representation of numbers and range of values
1) ALL numbers are UNSIGNED, 1 or 2 bytes (8 or 16 bits). Control bits can be accessed at bit level.
2) The values for each parameter have to be according to the welding machine in use: they will be ignored if
out of range.
INPUT BYTES to RCI
2
Byte#
Bit#
Name – Description – Example
1 – 2
1 – 16
Welding Current
Set the welding current [Ampere*10]. (Example 420A
Æ
4200)
3 – 4
17 – 32
Wire speed
Set the speed of wire for the CWF specified on selected welding program of Pi. [mm/min]
Example: 1,5 m/min
Æ
1500
5 – 6
33 – 48
Plasma Gas Flow Rate
Set the PLASMA gas flow rate. [Litres/min*100] (Example: 1,5 Litres/min
Æ
150)
7 – 8
49 – 64
Slow Pulsation - Pulse Time Hi
Time for which the current stays at high level in slow pulse mode. [1 unit = 10mSec]
Example: 1,2sec
Æ
120
9 – 10
65 – 80
Slow Pulsation – Pulse Time Lo
Time for which the current stays at low level in slow pulse mode [1 unit = 10mSec]
Example: 0,7sec
Æ
70
11
81 – 88
Slow Pulsation Base Current %
Level of Base current as Percent of Set current in slow pulse mode. [1 unit = 1%]
Example: 35%
Æ
35
12
89 – 96
Fast Pulsation Base Current %
Level of Base current as Percent of Set current in fast pulse mode. [1 unit = 1%]
Example: 30%
Æ
30
13 – 14
97 – 112
Fast Pulsation Pulse Frequency
Value of pulsation frequency in fast pulse mode. [1 unit = 1Hertz]
Example: 300 Hz
Æ
300
15 – 16
113 – 128
AC Tig Frequency
Value of AC frequency. [1 unit = 1Hertz]
Example: 100 Hz
Æ
100
17
129 - 136
AC Tig Time Balance %
Value of Duty Cycle. The higher the parameter, the lower the cleaning. [1 unit = 1%]
Example: 65%
Æ
65
18
137 – 144
AC Tig Current Amplitude Balance %
Value of positive wave as percent of welding current. [1 unit = 1%]
The higher the parameter, the higher the cleaning.
Example: 75%
Æ
75
19
145 – 152
Pregas Time
Time of Gas preflow in TIG, done if gas was previously OFF [1 unit = 100mSec]
Example: 0,5sec
Æ
5
20
153 – 160
Start Current %
Value of initial current for slope up in TIG (DC and AC) [1 unit = 1%]
Example: 40%
Æ
40
21
161 – 168
Slope Up Time
Slope up time in TIG (DC and AC) [1 unit = 100mSec]
Example: 4,5sec
Æ
45
22
169 – 176
Slope Down Time
Slope down time in TIG (DC and AC) [1 unit = 100mSec]
Example: 3,0sec
Æ
30
23
177 – 184
Stop Current %(Final Current%)
Value of final current for slope down in TIG (DC and AC) [1 unit = 1%]
Example: 20%
Æ
20
24
185 – 192
Post Gas Time
Time of Gas postflow in TIG, [1 unit = 100mSec]
Example: 5,0sec
Æ
50