3-11
3.7 General Wiring Diagram
L1(L)
L2
L3(N)
T1
T2
T3
P
BR
3Ø Induction motor
E
+10V: Power for Analog Input
(max. 20mA)
AI1: Multi-Function Analog Input
AI2: Multi-Function Analog Input
S1
External
Analog
Inputs
Digital Input
Section
+
-
Ground
< 100
Ω
Analog
Output
AO
AGND
Analog Outputs
0
– 10 VDC
S2
S3
S4
S5
E510
Multi-
Functional
Digital Inputs
Preset Speed 3
Preset Speed 2
Preset Speed 1
FWD / STOP
REV / STOP
Factory Default
L1(R) L2(S)
L3(T)
Magnetic
Contactor
MCCB
AC
Reactor
Fast Acting
Fuses
AC Input Voltage
Braking Resistor
COM (NPN)
AGND: Analog Signal Common
0V
0 ~ 20mA
0 ~ 10V
P
P
(R1A)
(R1C)
(R1B)
NC
NO
Multi-Function
Relay Output
Contact rating:
250 VAC < 1.0A
30 VDC < 1.0A
R2A
R2B
*2
S6
Reset
+24V (PNP)
E (Ground)
E (Ground)
E (Ground)
NO
Relay Output
Relay Output
SF
SG
E
Output Disable
NPN
PNP
JP1
AI1
AV1
JP2
AI2
AV2
JP3
*3
*4
*5
*1
RS485
CON 2
Pin 1 to Pin 8
1:Data+
2:Data-
3:Data+
4:RXD0
5:TXD0
6:Data-
7:5V
8:GND
Twisted-pair shielded wire
P
Shielded wire
Control circuit
Main circuit
Notes:
*1: Use L1 (L) and L3 (N) for single phase input
*2: Use jumper JP1 to select between Sink (NPN, with 24VG common) or Source (PNP, with +24V
common) for multi-function digital input terminals S1~S6.
*3: Use jumper JP2 to switch between voltage and current input for Multi-function analog input 1 (AI1).
*4: Use jumper JP3 to switch between voltage and current input for Multi-function analog input 1 (AI2).
*5: Run Permissive input SF and SG is a normally open input. This input should be open to enable the
inverter output. To activate this input place a jumper wire between SF and SG.
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