62
Technical Data
CG Drives & Automation 01-6142-01r0
8.8
Control signals
Table 34
Terminal X1
Name:
Function (Default):
Signal:
Type:
1
+10 V
+10 VDC Supply voltage
+10 VDC, max 10 mA
output
2
AnIn1
Level sensor
0 -10 VDC or 0/4–20 mA
bipolar: -10 - +10 VDC or -20 - +20 mA
analogue input
3
AnIn2
Off
0 -10 VDC or 0/4–20 mA
bipolar: -10 - +10 VDC or -20 - +20 mA
analogue input
4
AnIn3
Off
0 -10 VDC or 0/4–20 mA
bipolar: -10 - +10 VDC or -20 - +20 mA
analogue input
5
AnIn4
Off
0 -10 VDC or 0/4–20 mA
bipolar: -10 - +10 VDC or -20 - +20 mA
analogue input
6
-10 V
-10VDC Supply voltage
-10 VDC, max 10 mA
output
7
Common
Signal ground
0V
output
8
DigIn 1
Auto run
0-8/24 VDC
digital input
9
DigIn 2
Forced run
0-8/24 VDC
digital input
10
DigIn 3
FlowLinkIn
0-8/24 VDC
digital input
11
+24 V
+24VDC Supply voltage
+24 VDC, 100 mA
output
12
Common
Signal ground
0 V
output
13
AnOut 1
Min speed to max speed
0 ±10 VDC or 0/4– +20 mA
analogue output
14
AnOut 2
0 to max torque
0 ±10 VDC or 0/4– +20 mA
analogue output
15
Common
Signal ground
0 V
output
16
DigIn 4
Off
0-8/24 VDC
digital input
17
DigIn 5
Off
0-8/24 VDC
digital input
18
DigIn 6
Overflow level switch (optional)
0-8/24 VDC
digital input
19
DigIn 7
Off
0-8/24 VDC
digital input
20
DigOut 1
Ready
24 VDC, 100 mA
digital output
21
DigOut 2
FlowLinkOut
24 VDC, 100 mA
digital output
22
DigIn 8
Reset
0-8/24 VDC
digital input
Terminal X2
31
N/C 1
Relay 1 output
Trip, active when the
AC drive is in a TRIP condition
N/C is opened when the relay is active
(valid for all relays)
N/O is closed when the relay is active
(valid for all relays)
potential free change over
0.1 – 2 A
U
max
= 250 VAC or 42 VDC
relay output
32
COM 1
33
N/O 1
41
N/C 2
Relay 2 Output
Run, active when the AC drive is
started, also active during sleep
mode.
potential free change over
0.1 – 2 A
U
max
= 250 VAC or 42 VDC
relay output
42
COM 2
43
N/O 2
Terminal X3
51
COM 3
Relay 3 Output
Off
potential free change over
0.1 – 2 A
U
max
= 250 VAC or 42 VDC
relay output
52
N/O 3
NOTE: Possible potentiometer value in range of 1 k
Ω
to 10 k
Ω
(¼ Watt) linear, where we advice to use a linear 1 k
Ω
/ ¼ W
type potentiometer for best control linearity.