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01/02 AWB8230-1415GB
Overview
55
BOK
44
External brake
enable signal
confirmation
Confirmation of an external motor brake’s Enable signal, for example on lifts, which the DV6
frequency inverter uses to monitor the brake’s operating state.
ORT
45
Direction of rotation
Only with optional DE6-IOM-ENC module
LAC
46
Ramp function off
Only with optional DE6-IOM-ENC module
PCLR
47
Erase positioning
deviations
Only with optional DE6-IOM-ENC module
STAT
48
Setpoint definition
through module
Only with optional module
NO
no
–
No function
Non-programmable digital inputs
FW
–
FWD = clockwise
operation (start/stop)
Input FW(D) closed: motor starts up clockwise.
Input FW(D) open: controlled motor deceleration from clockwise operation.
FW(D) and REV inputs closed simultaneously: controlled motor deceleration to stop.
P24
–
24 V
H
for digital inputs
24 V
H
potential for digital inputs 1 to 8
Frequency setpoint input
h
–
10 V setpoint voltage for
external potentiometer
R
: 1 to 10 k
O
Resolution: 12-bit
O
–
Analog input for setpoint
frequency through
voltage signal
(0 to 10 V
H
)
Input impedance: 10 k
O
I
F
20 mA
Resolution: 12-bit
O2
–
Analog input for setpoint
frequency through
voltage signal
(–10 to +10 V
H
)
Input impedance: 10 k
O
I
F
20 mA
Resolution: 12-bit
OI
–
Analog input for setpoint
frequency through
current signal
(4 to 20 mA)
The OI input for a setpoint value from 4 to 20 mA is used only
when the digital input configured as the AT input is closed.
Load resistor: 250
O
Resolution: 12-bit
L
–
0 V reference potential
for setpoint inputs
If no digital input is configured as an AT input, the setpoint values O and OI are added together.
Analog outputs
FM
–
Frequency output
You can assign the following variables to outputs AM, AMI and FM:
Output frequency, motor current, torque, output voltage, input power, ramp frequency and
thermal load ratio
AM
–
Voltage output
(0 to 10 V, 8-bit)
AMI
–
Current output
(4 to 20 mA, 8-bit)
L
–
0 V
0 V reference potential for the analog output
Name
Value
1)
Function
Description
L
OI
O
H
PES
L
OI
O
–
+
PES
L
O2
PES
–10 V...+10 V
0 V
L
OI
–
+
PES
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