E5EC/E5EC-B/E5AC
External Connections
E5EC/E5AC (Screw Terminal Blocks)
E5EC-@@ 4 @ 5 M - @ @ @
(1) (2) (3) (4) (5)
Control output 1
Control output 2
Relay output
Relay output
250 VAC, 5 A
250 VAC, 5 A
(resistive load)
(resistive load)
Voltage output
Voltage output
(for driving SSR)
(for driving SSR)
12 VDC, 40 mA
12 VDC, 21 mA
When There Is a
Linear current output
Control Output 2:
0 to 20 mA DC
21 mA
4 to 20 mA DC
Linear current output
Load: 500 Ω max.
0 to 20 mA DC
4 to 20 mA DC
Load: 500 Ω max.
(1) Control output
RX
QX
Models with
Models with 1
1 Relay Output
Voltage Output
(for Driving SSR)
OUT1
OUT1
3
3
+
R
Q
-
4
4
5
5
6
6
QQ
QR
Models with 2 Voltage
Models with Voltage Output (for
Driving SSR) and Relay Output
Outputs (for Driving SSR)
OUT1
3
3
+
Q
-
4
4
5
5
+
Q
-
6
6
OUT2
PR
RR
CC
Models with 2
Models with 2
Models with 2
Position-proportional
Linear Current
Relay Outputs
Relay Output
Outputs
Open
OUT1
3
3
R
R
4
4
5
5
R
R
6
6
OUT2
Close
CQ
Models with 2 Outputs: Linear Current Output
and Voltage (for Driving SSR)
OUT1
(2) Auxiliary Outputs
3
+
C
-
4
Auxiliary outputs 1, 2, 3, 4
5
+
Q
-
6
OUT2
50
(6)
↑
Terminal type
Auxiliary outputs 1, 2, 3, 4
Relay output
Models with 4 auxiliary
outputs: 250 VAC, 2 A
(resistive load)
CX
Models with 1
Linear Current Output
OUT1
3
+
(3) Input Power Supply
C
-
4
100 to 240 VAC
5
6
OUT1
+
1
Q
-
2
3
R
4
OUT2
5
6
7
8
OUT1
3
+
C
9
-
4
10
5
+
11
C
-
6
12
OUT2
7
Auxiliary output 4
8
Auxiliary output 3
9
10
Auxiliary output 2
(5) Sensor (Temperature/Analog) Input
11
Auxiliary output 1
12
E5AC-@@ 4 @ 5 M - @ @ @
(1) (2) (3) (4) (5)
↑
Terminal type
(6) Options
004
Communications
and 2 event inputs
B(+)
13
RS-485
14
A(-)
15
(-)
16
17
EV1
18
EV2
19
20
21
011
6 event Inputs, 1 CT input,
transfer output, and remote SP input
24 VAC/DC
1
1
2
2
(no polarity)
Transfer
output
25
13
26
14
Remote
27
15
SP input
28
16
29
17
013
30
18
6 event Inputs, transfer
output, and remote SP input
31
19
32
20
33
21
34
22
35
23
(-)
36
24
EV6
+
Transfer
output
Potentiometer Input
-
+
19
O
Remote
20
W
SP input
-
21
C
TC
Pt
I
V
A
+
22
22
22
22
B
mA
-
- 23
23
23
23
B
-
V
24
24
24
24
+
+
Note: 1. The application of the terminals depends on the model.
2. Do not wire the terminals that are shown with a gray background.
3. When complying with EMC standards, the cable that connects the
sensor must be 30 m or less. If the cable length exceeds 30 m,
compliance with EMC standards will not be possible.
4. Connect M3 crimped terminals.
5. Due to UL Listing requirements, use the E54-CT1L or E54-CT3L
Current Transformer with the factory wiring (internal wiring).
Use a UL category XOBA or XOBA7 current transformer that is UL
Listed for field wiring (external wiring) and not the factory wiring
(internal wiring).
(6)
The E5EC is set for a K-type thermocouple (input
type = 5) by default. An input error (s.err) will occur
if the input type setting does not agree with the
temperature sensor. Check the input type.
005
009
4 event inputs
Communications, 2 event
inputs, and 2 CT inputs
B(+)
(-)
13
13
RS-485
14
14
EV3
A(-)
15
15
EV4
(-)
16
(-)
16
17
17
EV1
EV1
18
18
EV2
EV2
19
19
CT1
20
20
COM
CT2
21
21
(-)
13
14
EV3
15
EV4
(-)
28
(-)
16
29
17
EV5
EV1
30
18
EV6
EV2
+
31
19
+
CT1
V
32
20
I
-
33
21
+
34
+
V
35
mA
-
36
014
Communications, 4 event Inputs,
transfer output, and remote SP input
(-)
13
14
EV3
15
EV4
28
(-)
(-)
16
29
17
EV5
EV5
EV1
30
18
EV6
EV2
+
31
19
+
+
V
Transfer
V
32
20
I
I
output
-
33
21
+
34
+
+
V
V
Remote
35
mA
mA
SP input
-
36
Use no-voltage inputs for the event inputs.
The polarity for non-contact inputs is given in parentheses.
010
4 event inputs
and 1 CT input
(-)
13
14
EV3
15
EV4
(-)
16
17
EV1
18
EV2
19
CT1
20
21
B(+)
13
RS-485
14
A(-)
15
28
16
(-)
29
17
EV1
30
18
EV2
31
19
32
20
33
21
34
35
36
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