Application Macros
15-2
0
605C Frequency Inverter
PRESET 2
OUTPUT 1 [389]
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OUTPUT 2 [373]
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PRESET 4
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[518] SELECT INPUT
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PRESET 6
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[540] SELECT INPUT
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PRESET 8
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[562] SELECT INPUT
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PRESET 1
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PRESET 3
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INPUT 0
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[398] SELECT INPUT
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[390] INPUT 0
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[397] INPUT 7
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PRESET 5
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INPUT 0
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[529] SELECT INPUT
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[528] INPUT 7
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PRESET 7
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INPUT 0
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[551] SELECT INPUT
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[549] INPUT 6
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[550] INPUT 7
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VALUE FUNC 1
OUTPUT [133]
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[131] INPUT B
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[132] INPUT C
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IF[C]-A
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VALUE FUNC 3
OUTPUT [143]
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IF[C] -A
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VALUE FUNC 5
OUTPUT [153]
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IF[C] -A
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VALUE FUNC 7
OUTTPUT [163]
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VALUE FUNC 9
OUTPUT [173]
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VALUE FUNC 2
OUTPUT [138]
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INPUT A
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[136]
INPUT B
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[137]
INPUT C
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IF[C] -A
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[139]
TYPE
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VALUE FUNC 4
OUTPUT [148]
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INPUT A
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[146]
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[147]
INPUT C
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IF[C] -A
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[149]
TYPE
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VALUE FUNC 6
OUTPUT [158]
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[157]
INPUT C
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IF[C] -A
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[159]
TYPE
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VALUE FUNC 8
OUTTPUT [168]
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INPUT C
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IF[C] -A
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[169]
TYPE
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VALUE FUNC 10
OUTPUT [178]
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INPUT A
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[176]
INPUT B
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[177]
INPUT C
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IF[C] -A
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[179]
TYPE
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LOGIC FUNC 9
OUTPUT [223]
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FALSE
FALSE – [220] INPUT A
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FALSE
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[221] INPUT B
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FALSE
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[222] INPUT C
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NOT [A]
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[224] TYPE
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LOGIC FUNC 1
OUTPUT [183]
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FALSE – [180] INPUT A
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FALSE
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[181] INPUT B
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FALSE
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[182] INPUT C
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[184] TYPE
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LOGIC FUNC 3
OUTPUT [193]
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FALSE – [190] INPUT A
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FALSE
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[191] INPUT B
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[192] INPUT C
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LOGIC FUNC 5
OUTPUT [203]
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[201] INPUT B
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[202] INPUT C
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NOT [A]
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[204] TYPE
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LOGIC FUNC 7
OUTPUT [213]
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[211] INPUT B
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[212] INPUT C
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NOT [A]
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[214] TYPE
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LOGIC FUNC 2
OUTPUT [188]
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[187] INPUT C
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NOT [A]
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[189] TYPE
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LOGIC FUNC 4
OUTPUT [198]
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[197] INPUT C
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NOT [A]
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LOGIC FUNC 6
OUTPUT [208]
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FALSE – [205] INPUT A
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FALSE
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[206] INPUT B
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[207] INPUT C
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NOT [A]
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[209] TYPE
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LOGIC FUNC 8
OUTPUT [218]
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FALSE – [215] INPUT A
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FALSE
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[216] INPUT B
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FALSE
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[217] INPUT C
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NOT [A]
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[219] TYPE
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LOGIC FUNC 10
OUTPUT [228]
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FALSE
FALSE – [225] INPUT A
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FALSE
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[226] INPUT B
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FALSE
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[227] INPUT C
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NOT [A]
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[229] TYPE
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DEMULTIPLEXER
OUTPUT 0 [657]
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FALSE
OUTPUT 1 [658]
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FALSE
OUTPUT 2 [659]
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FALSE
OUTPUT 3 [660]
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FALSE
OUTPUT 4 [661]
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FALSE
OUTPUT 5 [662]
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FALSE
OUTPUT 6 [663]
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FALSE
OUTPUT 7 [664]
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FALSE
OUTPUT 8 [665]
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FALSE
OUTPUT 9 [666]
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FALSE
OUTPUT 10 [667]
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FALSE
OUTPUT 11 [668]
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FALSE
OUTPUT 12 [669]
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FALSE
OUTPUT 13 [670]
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FALSE
OUTPUT 14 [671]
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FALSE
OUTPUT 15 [672]
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FALSE
0000
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[599] INPUT
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MULTIPLEXER
OUTPUT [598]
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0000
FALSE – [641] INPUT 0
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FALSE
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[642] INPUT 1
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FALSE
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[643] INPUT 2
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FALSE
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[644] INPUT 3
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FALSE
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[645] INPUT 4
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FALSE
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[646] INPUT 5
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FALSE
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[647] INPUT 6
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FALSE
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[648] INPUT 7
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FALSE
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[649] INPUT 8
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FALSE
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[650] INPUT 9
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FALSE
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[651] INPUT 10
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FALSE
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[652] INPUT 11
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FALSE
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[653] INPUT 12
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FALSE
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[654] INPUT 13
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FALSE
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[655] INPUT 14
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FALSE
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[656] INPUT 15
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SETPOINT FUNCS
MISCELLANEOUS
ANALOG INPUT 1
VALUE [ 16] – 0.00 %
BREAK [ 18] – FALSE
100.00 % – [ 14] SCALE
–
0.00 % – [ 15] OFFSET
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0..+10 V – [ 13] TYPE
–
FALSE – [ 12] BREAK ENABLE
–
0.00 % – [ 17] BREAK VALUE
–
ANALOG INPUT 2
VALUE [ 25] – 0.00 %
BREAK [ 27] – FALSE
100.00 % – [ 23] SCALE
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0.00 % – [ 24] OFFSET
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0..+10 V – [ 22] TYPE
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FALSE – [ 21] BREAK ENABLE
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0.00 % – [ 26] BREAK VALUE
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ANALOG INPUT 3
VALUE [715] – 0.00 %
BREAK [717] – FALSE
100.00 % – [713] SCALE
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0.00 % – [714] OFFSET
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0..20 mA – [712] TYPE
–
FALSE – [711] BREAK ENABLE
–
0.00 % – [716] BREAK VALUE
–
ANALOG INPUT 4
VALUE [722] – 0.00 %
BREAK [724] – FALSE
100.00 % – [720] SCALE
–
0.00 % – [721] OFFSET
–
0..+10 V – [719] TYPE
–
FALSE – [718] BREAK ENABLE
–
0.00 % – [723] BREAK VALUE
–
ANALOG DIGIN 1
VALUE [ 90] – FALSE
FALSE – [ 89] INVERT
–
70.00 % – [ 91] LEVEL
–
10.00 % – [ 92] HYSTERISIS
–
ANALOG DIGIN 2
VALUE
[95] – FALSE
FALSE – [94] INVERT
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70.00 % – [96] LEVEL
–
10.00 % – [97] HYSTERISIS
–
ANALOG OUTPUT 1
0.00 % – [ 45] VALUE
–
100.00 %
–
[ 46] SCALE
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0.00 %
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[ 47] OFFSET
–
TRUE
–
[ 48] ABS
–
0..+10 V
–
[ 49] TYPE
–
ANALOG OUTPUT 2
0.00 % – [731] VALUE
–
100.00 %
–
[732] SCALE
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0.00 %
–
[733] OFFSET
–
FALSE
–
[734] ABS
–
-10..+10 V
–
[735] TYPE
–
DIGITAL INPUT 1
VALUE [ 31]
–
FALSE
FALSE – [ 30] INVERT
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DIGITAL INPUT 3
VALUE [ 37]
–
FALSE
FALSE – [ 36] INVERT
–
DIGITAL INPUT 5
VALUE [ 43]
–
FALSE
FALSE – [ 42] INVERT
–
DIGITAL INPUT 2
VALUE
[ 34]
–
FALSE
FALSE – [ 33] INVERT
–
DIGITAL INPUT 4
VALUE
[ 40]
–
FALSE
FALSE – [ 39] INVERT
–
DIGITAL INPUT 7
VALUE [728]
–
FALSE
FALSE – [727] INVERT
–
DIGITAL INPUT 6
VALUE [726]
–
FALSE
FALSE – [725] INVERT
–
DIGITAL INPUT 8
VALUE [730]
–
FALSE
FALSE – [729] INVERT
–
DIGITAL OUTPUT 1
FALSE – [ 52] VALUE
–
FALSE
–
[ 51] INVERT
–
DIGITAL OUTPUT 2
FALSE – [ 55] VALUE
–
FALSE
–
[ 54] INVERT
–
DIGITAL OUTPUT 3
FALSE – [737] VALUE
–
FALSE
–
[736] INVERT
–
INPUTS & OUTPUTS
ENCODER
SPEED Hz [568] – 0.0 Hz
SPEED RPM [569] – 0 n/min
SPEED % [749] – 0.00%
POSITION [748] – 0
QUADRATURE – [565] MODE
–
FALSE – [747] RESET
–
1000
–
[566] LINES
–
FALSE
–
[567] INVERT
–
10.0V
–
[761] SUPPLY
–
Macro User Blocks
Some of these blocks may already be in use by the macros.
Summary of Contents for 605C
Page 16: ...1 4 Getting Started 605C Frequency Inverter ...
Page 22: ...2 6 An Overview of the Inverter 605C Frequency Inverter ...
Page 50: ...4 14 Operating the Inverter 605C Frequency Inverter ...
Page 66: ...5 16 The Operator Station 605C Frequency Inverter ...
Page 156: ...8 2 Routine Maintenance and Repair 605C Frequency Inverter ...
Page 184: ...10 22 Parameter Specification 605C Frequency Inverter ...
Page 212: ...13 6 Application Notes 605C Frequency Inverter ...
Page 214: ...14 2 Serial Communications 605C Frequency Inverter ...
Page 236: ......