ABB ACS880 Firmware Manual page 258

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258 Parameters
No.
Name / Range /
Selection
14.71
AO force selection
b0
AO1
b1...15
Reserved
0000h...FFFFh
14.76
AO1 actual value
0.000 ... 22.000 mA
14.77
AO1 source
Zero
Motor speed used
Output frequency
Motor current
Motor torque
DC voltage
Power inu out
Speed ref ramp in
Speed ref ramp out
Speed ref used
Torq ref used
Freq ref used
Process PID out
Process PID fbk
Process PID act
Process PID dev
Other [value]
Force Pt100
excitation
Force KTY84
excitation
Description
(Visible when
14.1 Module 1 type
The value of the analog output can be overridden for
eg. testing purposes. A forced value parameter
AO1 force
data) is provided for the analog output, and
its value is applied whenever the corresponding bit in
this parameter is 1.
1 = Force mode: Force AO1 to value of parameter
AO1 force
data.
(Visible when
14.1 Module 1 type
Displays the value of AO1 in mA.
This parameter is read-only.
Value of AO1.
(Visible when
14.1 Module 1 type
Selects a signal to be connected to analog output AO1.
Alternatively, sets the output to excitation mode to
feed a constant current to a temperature sensor.
None
1.1 Motor speed used (page
1.6 Output frequency (page
1.7 Motor current (page
1.10 Motor torque (page
1.11 DC voltage (page
175).
1.14 Output power (page
23.1 Speed ref ramp input (page
23.2 Speed ref ramp output (page
24.1 Used speed reference (page
26.2 Torque reference used (page
28.2 Frequency ref ramp output (page
40.1 Process PID output actual (page
40.2 Process PID feedback actual (page
40.3 Process PID setpoint actual (page
40.4 Process PID deviation actual (page
See
Terms and abbreviations (page
The output is used to feed an excitation current to 1...3
Pt100 sensors. See section
protection (page
128).
The output is used to feed an excitation current to a
KTY84 sensor. See section
protection (page
128).
= FIO-11)
= FAIO-01)
= FAIO-01)
174).
174).
174).
174).
175).
311).
311).
318).
338).
347).
420).
420).
420).
420).
169).
Motor thermal
Motor thermal
Def / Type
FbEq 16b / 32b
- / uint16
(14.78
14.78
1 = 1
- / real32
1000 = 1 mA / 1000 =
1 mA
Zero / uint32
0
1
3
4
6
7
8
10
11
12
13
14
16
17
18
19
20
21

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