E5GN
E5GN
SPECIFICATION SETTING
(AFTER TURNING ON POWER)
Initial Setting Level
This level is used for setting basic specifications of the
Temperature Controller. Using this level, set the input type for
selecting the input to be connected such as the thermocouple or
platinum resistance thermometer and set the range of set point
and the alarm mode.
Power ON
Operation level
Adjustment level
key
Less than 1 second
key
3 second min.
key
1 second min.
Communications
setting level
key
Less than 1 second
Control stops.
Initial setting
level
key
1 second min.
Password input
set value “-169”
Password input
set value “1201”
Advanced function
setting level
Calibration level
Protect level
key
1 second min.
+
*3
The move from the operation level to the initial setting level,
press
key for three seconds or more.
The initial setting level is not displayed when
“initial/communications protection” is set to “2.” This initial setting
level can be used when “initial setting/communications
protection” is set to “0” or “1.
The “scaling upper limit,” “scaling lower limit,” and “decimal point”
parameters are displayed when an analog voltage input is
selected as the input type.
Initial setting level
Input type
Scaling upper limit
Scaling lower limit
Decimal point
Set point upper limit
Set point lower limit
PID / ON/OFF
Standard/heating and
cooling
ST
Control period (heat)
Control period (cool)
Direct/reverse operation
Alarm 1 type
Alarm 2 type
Move to advanced
function setting level
Temperature unit
: ON/OFF control
: PID control
: Standard
: Heating/cooling
: Enabled
: Disabled
: Reverse
operation
: Direct
operation
To return to the operation level, press the key for longer than
one second
*
Not displayed as default setting.
Note: 1. Displayed only with models provided with an alarm
function.
2. Displayed only with the E5CN provided with a two-
point alarm function.
3. Advanced function setting level is for E5CN models
only.
E5GN
E5GN
INPUT TYPE
Using a Thermocouple Input Type
When using a thermocouple input type, follow the specifications listed in the following table.
Input type
Specifications Set Value Input Temperature Range
Thermocouple K
0 --200 to 1300 (°C) /--300 to 2300 (°F)
1 --20.0 to 500.0 (°C) /0.0 to 900.0 (°F)
J
2 --100 to 850 (°C) /--100 to 1500 (°F)
3 --20.0 to 400.0 (°C) /0.0 to 750.0 (°F)
T 4 --200 to 400 (°C) /--300 to 700 (°F)
E 5 0to600(°C) /0 to 1100 (°F)
L 6 --100 to 850 (°C) /--100 to 1500 (°F)
U 7 --200 to 400 (°C) /--300 to 700 (°F)
N 8 --200 to 1300 (°C) /--300 to 2300 (°F)
R 9 0 to 1700 (°C) /0 to 3000 (°F)
S 10 0 to 1700 (°C) /0 to 3000 (°F)
B 11 100 to 1800 (°C) /300 to 3200 (°F)
Non-contact temperature sensor ES1A
K10to70 C
12 0to90(°C) /0 to 190 (°F)
K60to120 C
13 0to120(°C) /0 to 240 (°F)
K115 to 165 C
14 0to165(°C) /0 to 320 (°F)
K160 to 260 C
15 0to260(°C) /0 to 500 (°F)
Analog input 0to50mV 16 One of following ranges depending on the
results of scaling: 1999 to 9999, 199.9 to
999.9
Note: The initial settings are: 0: --200 to 1300 C/--300 to 2300 F.
Using a Platinum Resistance Thermometer Input Type
When using the platinum resistance thermometer input type, follow the specifications listed in the following table.
Input type
Specifications Set Value Input Temperature Range
Platinum resistance thermometer Pt100
0 --200 to 850 (°C) /--300 to 1500 (°F)
1 --199.9 to 500.0 (°C)/--199.9 to 900.0 (°F)
2 0.0 to 100.0 (°C) /0.0 to 210.0 (°F)
JPt100
3 --199.9 to 500.0 (°C)/--199.9 to 900.0 (°F)
4 0.0 to 100.0 (°C) /0.0 to 210.0 (°F)
Note: 1. The initial settings are: 0: Pt100 --200 to 850 C/--300 to 1500 F.
2. The ES1A Non-contact Temperature Sensor will be available soon.
E5GN
E5GN
ALARM 1 AND ALARM 2
For the alarm 1 and alarm 2, select alarm types out of the 12 alarm types listed in the following table.
Set Value
Alarm Type
Alarm Output Operation
y
When X is positive When X is negative
0 Alarm function OFF Output OFF
1
*1
Upper- and lower-limit (deviation)
*2
2 Upper-limit (deviation)
3 Lower-limit (deviation)
4
*1
Upper- and lower-limit range
(deviation)
*3
5
*1
Upper- and lower-limit with standby
sequence (deviation)
*4
6 Upper-limit with standby sequence
(deviation)
7 Lower-limit with standby sequence
(deviation)
8 Absolute-value upper-limit
9 Absolute-value lower-limit
10 Absolute-value upper-limit with
standby sequence
11 Absolute-value lower-limit with
standby sequence
*1: With set values 1, 4 and 5, the upper and lower limit values
can be set independently for each alarm type and are expressed
as “L” and “H.”
Following operations are for cases when an alarm set point is “X”
or negative.
*2: Set value: 1, upper- and lower-limit alarm
Case 1 Case 2 Case 3 (Always ON)
*3: Set value: 4, upper- and lower-limit range
Case 1 Case 2 Case 3 (Always OFF)
*4: Set value: 5, upper- and lower-limit with standby sequence
Case 1 Case 2
Same as for the upper- and lower-limit
alarm. However, when the upper limit
and lower limit hysteresis overlaps:
Always OFF
Example
Example: When the alarm is set ON at 110 C/ F or higher.
When an alarm type
other than the absolute-
value alarm is selected
(For alarm types 1 to 7)
The alarm value is set as a
deviation from the set point.
When the absolute-
value alarm is
selected
(For alarm types 8 to 11)
The alarm value is set as
an absolute value from the
alarm value of 0 C/F.
Alarm value
Set point
100
°
C/
°
F
Alarm value
0
°
C/
°
F

E5GN-Q1P AC100-240

Mfr. #:
Manufacturer:
Omron Automation and Safety
Description:
Controllers Temperature Control
Lifecycle:
New from this manufacturer.
Delivery:
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