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 Basic-type Digital Temperature Controller
E5GN
(48 x 24 mm)
CSM_E5GN_DS_E_5_1
New 48 x 24-mm Basic Temperature Controller with Enhanced Functions and Performance. Improved Indication Accuracy and Preventive Maintenance Function.
* Indication Accuracy E5GN--@-C E5GN Thermocouple input: 0.3% of PV (previous models: 0.5%) Models with Screw Terminal Models with Screwless Clamp Terminal Blocks Blocks Pt input: 0.2% of PV (previous models: 0.5%) 48 x 24 mm 48 x 24 mm Analog input: 0.2% FS (previous models: 0.5%) * Models are available with screw terminal blocks or screwless clamp terminal blocks. * A PV/SV-status display function can be set to automatically Refer to Safety Precautions for E5@N/E5@N-H. alternate between displaying the status of the Temperature Controller (auto/manual, RUN/STOP, and alarms) and the PV or SV. Refer to Operation for E5@N/E5@N-H for operating * Preventive maintenance for relays in the Temperature Controller procedures. using a Control Output ON/OFF Counter. * Switch the PV display between three colors. * Compatible with Support Software (CX-Thermo version 4.2 or higher). * Eleven-segment displays. * Models are available with one or two alarm outputs.
Main I/O Functions
Event Inputs * None * Two Sensor Inputs * Universal thermocouple/Pt inputs (Models with temperature inputs) * Analog current/voltage inputs (Models with analog inputs) Indication Accuracy * Thermocouple input: 0.3% of PV * Pt input: 0.2% of PV * Analog input: 0.2% FS Sampling Period * 250 ms
E5GN
Dual Display: PV and SV 4-digit Display * Auto/manual switching * Temperature Controller status display * Simple program function * Control output ON/OFF count alarm * PV change rate alarm * Models also available with RS-232C communications * Models also available with RS-485 communications
Auxiliary Outputs * None * One * Two
Control Output 1 * Relay output * Voltage output (for driving SSR) * Current output
This datasheet is provided as a guideline for selecting products. Be sure to refer to the following user manuals for application precautions and other information required for operation before attempting to use the product. E5CN/E5AN/E5EN/E5GN Digital Temperature Controllers User's Manual Basic Type (Cat. No. H156) E5CN/E5AN/E5EN/E5GN Digital Temperature Controllers Communications Manual Basic Type (Cat. No. H158)
1
E5GN
Lineup
Temperature input Screw terminal block Analog input 1 control output 1 control output
0, 1, or 2 auxiliary outputs 0, 1, or 2 auxiliary outputs 0, 1, or 2 auxiliary outputs 0, 1, or 2 auxiliary outputs
E5GN
Basic Type
Temperature input Screwless clamp terminal block Analog input
1 control output 1 control output
Note: Models with one control output and one or two auxiliary outputs can be used for heating/cooling control.
Model Number Structure
Model Number Legend
Controllers
4. Input Type T: Universal thermocouple/platinum resistance thermometer input L: Analog current/voltage input 5. Power Supply Voltage Blank: 100 to 240 VAC D: 24 VAC/VDC 6. Terminal Type Blank: Models with screw terminal block C: Models with screwless clamp terminal block 7. Case Color Blank: Black
E5GN-@@@@@-@-@-@
12345 6 7 8
1. Control Output 1 R: Relay output Q: Voltage output (for driving SSR) C: Linear current output 2. Auxiliary Outputs Blank: None 1: One output 2: Two outputs
3. Option 8. Communications Protocol Blank: None Blank: None 01: RS-232C communications FLK: CompoWay/F communications 03: RS-485 communications B: Two event inputs H: Heater burnout/Heater short/Heater overcurrent detection (CT1) Note: Models cannot be made for all combinations of options that are possible in the model number legend. Confirm model availability in Ordering Information before ordering. * Auxiliary outputs are relay outputs that can be used to output alarms or processing results.
2
E5GN
Ordering Information
Controllers with Screw Terminal Blocks
Models with Temperature Inputs
Models with One Control Output and a 100 to 240-VAC Power Supply
Control output Control mode *1 No. of auxiliary outputs --Detection of heater burnout, SSR failure, and heater overcurrent Previous model No. of event inputs Transfer output *2 Communications Thermocouple input E5GN-RTC ----RS-232C RS-485 --Detection for single-phase heaters 2 --Standard Black 1 Voltage output (for driving SSR) --------2 RS-232C RS-485 --Detection for single-phase heaters 2 ------Current output Standard or heating/ cooling 2 1 ----Transfer output using control output RS-485 --RS-232C RS-485 --RS-485 ----Resistance thermometer input E5GN-RP ----New model
Case color
Standard
--2
E5GN-RT E5GN-R1T E5GN-R1BT E5GNR101T-FLK E5GNR103T-FLK E5GN-R2T E5GN-R2HT E5GN-R2BT E5GNR203T-FLK E5GN-QT E5GN-Q1T E5GN-Q1BT E5GNQ101T-FLK E5GNQ103T-FLK E5GN-Q2T E5GN-Q2HT E5GN-Q2BT E5GNQ203T-FLK E5GN-C1T E5GN-C1BT E5GNC101T-FLK E5GNC103T-FLK
E5GN-R1TC E5GN-R1P
1
---
Relay output
Standard or heating/ cooling 2
E5GN E5GN -R03TC-FLK -R03P-FLK ----------E5GN-QP -----
---
------E5GN-QTC
---
E5GN-Q1TC E5GN-Q1P -----
Standard or heating/ cooling 2
E5GN E5GN -Q03TC-FLK -Q03P-FLK -------------------
---
---------------
*1. If heating/cooling control mode is used, an auxiliary output is used as a control output for the cooling side. The number of auxiliary outputs that can be used will decrease by one. Also, the signal for the control output for the cooling side will be a relay output. *2. A current control output can be used as the transfer output. In that case, an auxiliary output is used as the control output. (This is not possible for models without an auxiliary output.) The control output will be a relay output. The number of auxiliary outputs that can be used will decrease by one.
3
E5GN
Models with One Control Output and a 24-VAC/VDC Power Supply
Control output Control mode *1 No. of auxiliary outputs --Detection of heater burnout, SSR failure, and heater overcurrent Previous model No. of event inputs Transfer output *2 Communications Thermocouple input E5GN-RTC ----RS-232C RS-485 --Detection for single-phase heaters 2 --Standard --------2 Black 1 Voltage output (for driving SSR) --RS-232C RS-485 --Detection for single-phase heaters 2 ------Current output Standard or heating/ cooling 2 1 ----Transfer output using control output RS-485 --RS-232C RS-485 --------------------------RS-485 ----Resistance thermometer input E5GN-RP ----New model
Case color
Standard
--2
E5GN-RTD E5GN-R1TD E5GN-R1BTD E5GN -R101TD-FLK E5GN -R103TD-FLK E5GN-R2TD E5GN-R2HTD E5GN-R2BTD E5GN -R203TD-FLK E5GN-QTD E5GN-Q1TD E5GNQ1BTD E5GNQ101TD-FLK E5GN -Q103TD-FLK E5GN-Q2TD E5GNQ2HTD E5GNQ2BTD E5GN -Q203TD-FLK E5GN-C1TD E5GN-C1BTD E5GN -C101TD-FLK E5GN -C103TD-FLK
E5GN-R1TC E5GN-R1P
1
---
Relay output
Standard or heating/ cooling 2
E5GN E5GN -R03TC-FLK -R03P-FLK ----------E5GN-QP
---
------E5GN-QTC
E5GN-Q1TC E5GN-Q1P -----
Standard or heating/ cooling
E5GN E5GN -Q03TC-FLK -Q03P-FLK ---------
---
-----
2
*1. If heating/cooling control mode is used, an auxiliary output is used as a control output for the cooling side. The number of auxiliary outputs that can be used will decrease by one. Also, the signal for the control output for the cooling side will be a relay output. *2. A current control output can be used as the transfer output. In that case, an auxiliary output is used as the control output. (This is not possible for models without an auxiliary output.) The control output will be a relay output. The number of auxiliary outputs that can be used will decrease by one.
4
E5GN
Models with Analog Inputs
Models with One Control Output and a 100 to 240-VAC Power Supply
Control output Control mode *1 No. of auxiliary outputs Detection of heater burnout, SSR failure, and heater overcurrent Previous model No. of event inputs Transfer output *2 CommuniThermocoucations ple input Resistance thermometer input ----New model
Case color
Relay output Voltage output (for driving SSR) Current output --Standard or heating/ cooling 1 ----Transfer output using control output --RS-485
-----
E5GNR103L-FLK E5GNQ103L-FLK
Black
---
---
E5GN-C1L
Note: Models with analog inputs do not display the temperature unit. *1. If heating/cooling control mode is used, an auxiliary output is used as a control output for the cooling side. The number of auxiliary outputs that can be used will decrease by one. Also, the signal for the control output for the cooling side will be a relay output. *2. A current control output can be used as the transfer output. In that case, an auxiliary output is used as the control output. (This is not possible for models without an auxiliary output.) The control output will be a relay output. The number of auxiliary outputs that can be used will decrease by one.
Models with One Control Output and a 24-VAC/VDC Power Supply
Control output Control mode *1 No. of auxiliary outputs Detection of heater burnout, SSR failure, and heater overcurrent Previous model No. of event inputs Transfer output *2 CommuniThermocoucations ple input Resistance thermometer input ----New model
Case color
Relay output Voltage output (for driving SSR) Current output Standard or heating/ cooling --1 ----Transfer output using control output --RS-485
-----
E5GNR103LD-FLK E5GN -Q103LD-FLK
Black
---
---
E5GN-C1LD
*1. If heating/cooling control mode is used, an auxiliary output is used as a control output for the cooling side. The number of auxiliary outputs that can be used will decrease by one. Also, the signal for the control output for the cooling side will be a relay output. *2. A current control output can be used as the transfer output. In that case, an auxiliary output is used as the control output. (This is not possible for models without an auxiliary output.) The control output will be a relay output. The number of auxiliary outputs that can be used will decrease by one.
5
E5GN
Controllers with Screwless Clamp Terminal Blocks
Models with Temperature Inputs
Models with One Control Output and a 100 to 240-VAC Power Supply
Control output Control mode *1 No. of auxiliary outputs --Detection of heater No. of event burnout, inputs SSR failure, and heater overcurrent --2 1 --RS-232C RS-485 Relay output Standard or heating/ cooling 2 --Detection for singlephase heaters 2 --Standard Black 1 Voltage Standard or output (for driving SSR) heating/ cooling 2 --------2 RS-232C RS-485 --Detection for singlephase heaters 2 ------Current output Standard or heating/ cooling 2 1 --Transfer output using control output RS-485 --RS-232C RS-485 --RS-485 --Previous model Transfer output *2 Communic ations Thermocouple input E5GN-RTC ------Resistance thermometer input E5GN-RP ----New model
Case color
Standard
E5GN-RT-C E5GN-R1T-C E5GN-R1BT-C E5GN -R101T-C-FLK E5GN -R103T-C-FLK E5GN-R2T-C E5GN-R2HT-C E5GN-R2BT-C E5GN -R203T-C-FLK E5GN-QT-C E5GN-Q1T-C E5GN-Q1BT-C E5GN -Q101T-C-FLK E5GN -Q103T-C-FLK E5GN-Q2T-C E5GN-Q2HT-C E5GN-Q2BT-C E5GN -Q203T-C-FLK E5GN-C1T-C E5GN-C1BT-C E5GN -C101T-C-FLK E5GN -C103T-C-FLK
E5GN-R1TC E5GN-R1P
E5GN E5GN -R03TC-FLK -R03P-FLK ----------E5GN-QP -----
---
------E5GN-QTC
---
E5GN-Q1TC E5GN-Q1P -----
E5GN E5GN -Q03TC-FLK -Q03P-FLK -------------------
---
---------------
*1. If heating/cooling control mode is used, an auxiliary output is used as a control output for the cooling side. The number of auxiliary outputs that can be used will decrease by one. Also, the signal for the control output for the cooling side will be a relay output. *2. A current control output can be used as the transfer output. In that case, an auxiliary output is used as the control output. (This is not possible for models without an auxiliary output.) The control output will be a relay output. The number of auxiliary outputs that can be used will decrease by one.
6
E5GN
Models with One Control Output and a 24-VAC/VDC Power Supply
Detection of heater burnout, SSR failure, and heater overcurren t --2 1 --RS-232C RS-485 Relay output Standard or heating/ cooling 2 --Detection for singlephase heaters 2 --Standard Black 1 Voltage output (for driving SSR) --------2 RS-232C RS-485 Standard or heating/ cooling 2 --Detection for singlephase heaters 2 ------Current output Standard or heating/ cooling 2 1 ----Transfer output using control output RS-485 --RS-232C RS-485 --RS-485 --Previous model No. of event inputs
Case color
Control output
Control mode *1
No. of auxiliary outputs
Transfer output *2
Communic ations
Thermocouple input
Resistance thermometer input
New model
Standard
---
E5GN-RTC -------
E5GN-RP -----
E5GN-RTD-C E5GN-R1TD-C E5GN-R1BTD-C E5GN -R101TD-C-FLK E5GN -R103TD-C-FLK E5GN-R2TD-C E5GN-R2HTD-C E5GN-R2BTD-C E5GN -R203TD-C-FLK E5GN-QTD-C E5GN-Q1TD-C E5GN-Q1BTD-C E5GN -Q101TD-C-FLK E5GN -Q103TD-C-FLK E5GN-Q2TD-C E5GN-Q2HTD-C E5GN-Q2BTD-C E5GN -Q203TD-C-FLK E5GN-C1TD-C E5GN-C1BTD-C E5GN -C101TD-C-FLK E5GN -C103TD-C-FLK
E5GN-R1TC E5GN-R1P
E5GN E5GN -R03TC-FLK -R03P-FLK ----------E5GN-QP -----
---
------E5GN-QTC
---
E5GN-Q1TC E5GN-Q1P -----
E5GN E5GN -Q03TC-FLK -Q03P-FLK -------------------
---
---------------
*1. If heating/cooling control mode is used, an auxiliary output is used as a control output for the cooling side. The number of auxiliary outputs that can be used will decrease by one. Also, the signal for the control output for the cooling side will be a relay output. *2. A current control output can be used as the transfer output. In that case, an auxiliary output is used as the control output. (This is not possible for models without an auxiliary output.) The control output will be a relay output. The number of auxiliary outputs that can be used will decrease by one.
7
E5GN
Models with Analog Inputs
Models with One Control Output and a 100 to 240-VAC Power Supply
Control output Control mode *1 No. of auxiliary outputs Detection of heater burnout, SSR failure, and heater overcurrent --Previous model No. of event inputs Transfer output *2 Communi cations Thermocouple input Resistance thermometer input New model
Case color
Black
Current output
Standard or heating/ cooling
1
---
Transfer output using control output
---
---
---
E5GN-C1L-C
Note: Models with analog inputs do not display the temperature unit. *1. If heating/cooling control mode is used, an auxiliary output is used as a control output for the cooling side. The number of auxiliary outputs that can be used will decrease by one. Also, the signal for the control output for the cooling side will be a relay output. *2. A current control output can be used as the transfer output. In that case, an auxiliary output is used as the control output. (This is not possible for models without an auxiliary output.) The control output will be a relay output. The number of auxiliary outputs that can be used will decrease by one.
Models with One Control Output and a 24-VAC/VDC Power Supply
Control output Control mode *1 No. of auxiliary outputs Detection of heater burnout, SSR failure, and heater overcurrent --Previous model No. of event inputs Transfer output *2 Communi cations Thermocouple input Resistance thermometer input
Case color
New model
Black
Current output
Standard or heating/ cooling
1
---
Transfer output using control output
---
---
---
E5GN-C1LDC
*1. If heating/cooling control mode is used, an auxiliary output is used as a control output for the cooling side. The number of auxiliary outputs that can be used will decrease by one. Also, the signal for the control output for the cooling side will be a relay output. *2. A current control output can be used as the transfer output. In that case, an auxiliary output is used as the control output. (This is not possible for models without an auxiliary output.) The control output will be a relay output. The number of auxiliary outputs that can be used will decrease by one.
Accessories (Order Separately)
USB-Serial Conversion Cable
Model E58-CIFQ1
Waterproof Packing
Model Y92S-32
Current Transformers (CTs)
Hole diameter 5.8 dia. 12.0 dia. Model E54-CT1 E54-CT3
CX-Thermo Support Software
Model EST2-2C-MV4 Note: The E5GN is supported by CX-Thermo version 4.2 and higher.
8
E5GN
Specifications
Ratings
Power supply voltage Operating voltage range E5GN Screw terminal block E5GN-@-C Screwless clamp terminal block No D in model number: 100 to 240 VAC, 50/60 Hz D in model number: 24 VAC, 50/60 Hz; 24 VDC 85% to 110% of rated supply voltage 100 to 240 VAC: 5.5 VA (max.) 24 VAC/VDC: 3 VA/2 W (max.) 100 to 240 VAC: 5.5 VA (max.) 24 VAC/VDC: 3 VA/2 W (max.) Models with temperature inputs Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt100 or JPt100 Infrared temperature sensor: 10 to 70C, 60 to 120C, 115 to 165C, or 140 to 260C Voltage input: 0 to 50 mV Models with analog inputs Current input: 4 to 20 mA or 0 to 20 mA Voltage input: 1 to 5 V, 0 to 5 V, or 0 to 10 V Input impedance Control method Relay output Control outputs Voltage output (for driving SSR) Current output Auxiliary outputs Output specifications Number of inputs Event inputs External contact input specifications Current input: 150 max., Voltage input: 1 M min. (Use a 1:1 connection when connecting the ES2-HB.) ON/OFF control or 2-PID control (with auto-tuning) SPST-NO, 250 VAC, 2 A (resistive load), electrical life: 100,000 operations, minimum applicable load: 5 V, 10 mA Output voltage: 12 VDC 15% (PNP), max. load current: 21 mA, with short-circuit protection circuit 4 to 20 mA DC/0 to 20 mA DC, load: 500 max., resolution: approx. 10,000 Relay output: SPST-NO, 250 VAC, 2 A (resistive load), electrical life: 100,000 operations, minimum applicable load: 5 V, 10 mA 2 Contact input: ON: 1 k max., OFF: 100 k min. Non-contact input: ON: Residual voltage: 1.5 V max., OFF: Leakage current: 0.1 mA max. Current flow: Approx. 7 mA per contact Digital setting using front panel keys 11-segment digital display and individual indicators (7-segment display also possible) Character height: PV: 7.5 mm, SV: 3.6 mm Up to four set points (SP0 to SP3) can be saved and selected using event inputs, key operations, or serial communications. Not supported Manual output, heating/cooling control, loop burnout alarm, SP ramp, other alarm functions, heater burnout detection, 40% AT, 100% AT, MV limiter, input digital filter, self-tuning, temperature input shift, run/stop, protection functions, control output ON/OFF counter, extraction of square root, MV change rate limit, logic operations, PV/SV status display, simple program, automatic cooling coefficient adjustment 25% to 85% -25 to 65C (with no condensation or icing)
Power consumption
Sensor input
Number of outputs 1 or 2 max. (Depends on the model.)
Setting method Indication method Multi SP Bank switching Other functions
Ambient operating temperature -10 to 55C (with no condensation or icing), for 3-year warranty: -10 to 50C Ambient operating humidity Storage temperature
9
E5GN
Input Ranges
Thermocouple/Platinum Resistance Thermometer (Universal Inputs)
Input Type Name Platinum resistance thermometer Pt100 JPt100 K J T Thermocouple PL II Infrared temperature sensor N R S B W
2300 1800 1700 1700
Analog input 0 to 50 mV
E
L
U
10 to 70C
60 to 120 C
115 to 165 C
140 to 260 C
2300 1800 1700 1600 1500 1400 1300 1200 1100 1000 900 800 700 600 500 400 300 200 100 0 -100.0 -200.0 -200 -199.9 100.0 0.0 -199.9 100.0 500.0 500.0 500.0 400.0 400 400.0 400 400.0 600 850 850 850 1300 1300
1300
Usable in the following ranges by scaling: -1999 to 9999 or -199.9 to 999.9
260 120 90 100 0 0 0 0 0 0 0 0 165
Temperature range (C)
0.0 -20.0 -100 -20.0 -200 -200 -199.9 -200 -100 -200 -199.9 -200
Setting number
0
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
24
25
19
20
21
22
23
Shaded settings are the default settings. The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C 1602-1995, IEC 584-1 L: Fe-CuNi, DIN 43710-1985 U: Cu-CuNi, DIN 43710-1985 W: W5Re/W26Re, ASTM E988-1990 JPt100: JIS C 1604-1989, JIS C 1606-1989 Pt100: JIS C 1604-1997, IEC 751 PL II: According to Platinel II electromotive force charts from BASF (previously Engelhard)
Models with Analog Inputs
Input Type Input specification Setting range Setting number Current 4 to 20 mA 0 to 20 mA 1 to 5 V Voltage 0 to 5 V 0 to 10 V
Usable in the following ranges by scaling: -1999 to 9999, -199.9 to 999.9, -19.99 to 99.99 or -1.999 to 9.999 0 1 2 3 4
Shaded settings are the default settings.
10
E5GN
Alarm Outputs
Each alarm can be independently set to one of the following 13 alarm types. The default is 2: Upper limit. Auxiliary outputs are allocated for alarms. ON delays and OFF delays (0 to 999 s) can also be specified. Note: For models with heater burnout, SSR failure, and heater overcurrent detection, alarm 1 will be an OR output of the alarm selected from the following alarm types and the alarms for heater burnout, SSR failure, and heater overcurrent. To output only a heater burnout alarm, SSR failure alarm, and heater overcurrent alarm for alarm 1, set the alarm type to 0 (i.e., no alarm function). Alarm output operation Set value 0 1 *1 Alarm type Alarm function OFF Upper- and lower-limit When alarm value When alarm value X is positive X is negative Output OFF
ON OFF LH SP X SP X SP LH SP LH SP ON OFF ON OFF
Description of function No alarm
*2
X SP X SP
Set the deviation in the set point by setting the alarm upper limit (H) and alarm lower limit (L). Set the upward deviation in the set point by setting the alarm value (X). Set the downward deviation in the set point by setting the alarm value (X). Set the deviation in the set point by setting the alarm upper limit (H) and alarm lower limit (L). A standby sequence is added to the upper- and lower-limit alarm (1). *6
X SP X SP X 0 X 0 X 0 X 0
2
Upper-limit
ON OFF
3
Lower-limit
ON OFF
4 *1
Upper- and lower-limit range
ON OFF
*3
5 *1
Upper- and lower-limit with standby sequence
ON OFF
*4
*5
ON OFF X SP X SP X 0 ON OFF
6
Upper-limit with standby sequence
A standby sequence is added to the upper-limit alarm (2). *6 A standby sequence is added to the lower-limit alarm (3). *6 The alarm will turn ON if the process value is larger than the alarm value (X) regardless of the set point. The alarm will turn ON if the process value is smaller than the alarm value (X) regardless of the set point. A standby sequence is added to the absolute-value upper-limit alarm (8). *6 A standby sequence is added to the absolute-value lower-limit alarm (9). *6 *7 *8
7
Lower-limit with standby sequence
ON OFF
ON OFF
8 9
Absolute-value upper-limit Absolute-value lower-limit Absolute-value upper-limit with standby sequence Absolute-value lower-limit with standby sequence LBA (alarm 1 type only) PV change rate alarm
ON OFF
ON OFF ON OFF
ON OFF
X 0 X 0 X 0
10
ON OFF
ON OFF
11 12 13
ON OFF
ON OFF
-----
*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." *2. Set value: 1, Upper- and lower-limit alarm
Case 1 Case 2 Case 3 (Always ON)
H < 0, L < 0
L
H SP
SP L H H > 0, L < 0 H > L H
H
SP L SP SP H
L H < 0, L > 0 H L L H > 0, L < 0 H L
H < 0, L > 0 H < L
*3. Set value: 4, Upper- and lower-limit range
Case 1 Case 2 Case 3 (Always OFF)
*5. Set value: 5, Upper- and lower-limit with standby sequence Always OFF when the upper-limit and lower-limit hysteresis overlaps. *6. Refer to the E5CN/E5AN/E5EN/E5GN Digital Temperature Controllers User's Manual Basic Type (Cat. No. H156) for information on the operation of the standby sequence. *7. Refer to the E5CN/E5AN/E5EN/E5GN Digital Temperature Controllers User's Manual Basic Type (Cat. No. H156) for information on the loop burnout alarm (LBA). *8. Refer to the E5CN/E5AN/E5EN/E5GN Digital Temperature Controllers User's Manual Basic Type (Cat. No. H156) for information on the PV change rate alarm.
H < 0, L < 0 L H SP SP L H H H SP L SP SP H L L H < 0, L > 0 H L H > 0, L < 0 H L H < 0, L > 0 H < L H > 0, L < 0 H > L
*4. Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above * Case 1 and 2 Always OFF when the upper-limit and lower-limit hysteresis overlaps. * Case 3: Always OFF
11
E5GN
Characteristics
Thermocouple: *1 (0.3% of indicated value or 1C, whichever is greater) 1 digit max. Platinum resistance thermometer input: (0.2% of indicated value or 0.8C, whichever is greater) 1 digit max. Analog input: 0.2% FS 1 digit max. CT input: 5% FS 1 digit max. Thermocouple input (R, S, B, W, PL II): (1% of PV or 10C, whichever is greater) 1 digit max. Other thermocouple input: *3 (1% of PV or 4C, whichever is greater) 1 digit max. Platinum resistance thermometer input: (1% of PV or 2C, whichever is greater) 1 digit max. Analog input: (1%FS) 1 digit max. 250 ms Models with thermocouple/platinum resistance thermometer input (universal input): 0.1 to 999.9 EU (in units of 0.1 EU) *4 Models with analog input: 0.01 to 99.99% FS (in units of 0.01% FS) Models with thermocouple/platinum resistance thermometer input (universal input): 0.1 to 999.9 EU (in units of 0.1 EU) *4 Models with analog input: 0.1 to 999.9% FS (in units of 0.1% FS) 0 to 3999 s (in units of 1 s) 0 to 3999 s (in units of 1 s) *5 0.5, 1 to 99 s (in units of 1 s) 0.0 to 100.0% (in units of 0.1%) -1999 to 9999 (decimal point position depends on input type) Thermocouple: 0.1C/ max. (100 max.) Platinum resistance thermometer: 0.1C/ max. (10 max.) 20 M min. (at 500 VDC) 2,300 VAC, 50 or 60 Hz for 1 min (between terminals with different charge) 10 to 55 Hz, 20 m/s2 for 10 min each in X, Y, and Z directions 10 to 55 Hz, 0.75-mm single amplitude for 2 hrs each in X, Y, and Z directions 100 m/s2, 3 times each in X, Y, and Z directions 300 m/s2, 3 times each in X, Y, and Z directions Controller: Approx. 90 g, Mounting Bracket: Approx. 10 g Front panel: IP66, Rear case: IP20, Terminals: IP00 Non-volatile memory (number of writes: 1,000,000 times) CX-Thermo version 4.2 or higher Provided on the side of the E5GN. Connect this port to the computer when using the Setup Tool. An E58-CIFQ1 USB-Serial Conversion Cable is required to connect the computer to the port on the side of the E5GN. *6 UL 61010-1, CSA C22.2 No. 1010-1 EN 61010-1 (IEC 61010-1): Pollution level 2, overcurrent category II EMI: EN 61326 Radiated Interference Electromagnetic Field Strength: EN 55011 Group 1, class A Noise Terminal Voltage: EN 55011 Group 1, class A EMS: EN 61326 ESD Immunity: EN 61000-4-2 Electromagnetic Field Immunity: EN 61000-4-3 Burst Noise Immunity: EN 61000-4-4 Conducted Disturbance Immunity: EN 61000-4-6 Surge Immunity: EN 61000-4-5 Power Frequency Magnetic Field Immunity: EN 61000-4-8 Voltage Dip/Interrupting Immunity: EN 61000-4-11
Indication accuracy
Influence of temperature *2
Influence of voltage *2 Input sampling period Hysteresis Proportional band (P) Integral time (I) Derivative time (D) Control period Manual reset value Alarm setting range Affect of signal source resistance Insulation resistance Dielectric strength Vibration resistance Shock resistance Weight Degree of protection Memory protection Setup Tool Setup Tool port Approved standards Conformed standards Malfunction Destruction Malfunction Destruction
Standards
EMC
*1. The indication accuracy of K thermocouples in the -200 to 1300C range, T and N thermocouples at a temperature of -100C max., and U and L thermocouples at any temperatures is 2C 1 digit max. The indication accuracy of the B thermocouple at a temperature of 400C max. is not specified. The indication accuracy of B thermocouples in the 400 to 800C range is 3C max. The indication accuracy of the R and S thermocouples at a temperature of 200C max. is 3C 1 digit max. The indication accuracy of W thermocouples is 0.3 of PV or 3C, whichever is greater, 1 digit max. The indication accuracy of PL II thermocouples is 0.3 of PV or 2C, whichever is greater, 1 digit max. *2. Ambient temperature: -10C to 23C to 55C, Voltage range: -15% to 10% of rated voltage *3. K thermocouple at -100C max.: 10 max. *4. "EU" stands for Engineering Unit and is used as the unit after scaling. For a temperature sensor, the EU is C or F. *5. When robust tuning (RT) is ON, the differential time is 0.0 to 999.9 (in units of 0.1 s). *6. External serial communications (RS-232C or RS-485) and cable communications for the Setup Tool can be used at the same time.
12
E5GN
USB-Serial Conversion Cable
Applicable OS Applicable software Applicable models Windows 2000, XP, or Vista CX-Thermo version 4 or higher E5AN/E5EN/E5CN/E5CN-U/E5AN-H/ E5EN-H/E5CN-H/E5GN 38400 bps Computer: USB (type A plug) Temperature Controller: Setup Tool port (on bottom of Controller) Bus power (Supplied from USB host controller.) 5 VDC 70 mA 0 to 55C (with no condensation or icing) 10% to 80% -20 to 60C (with no condensation or icing) 10% to 80% 2,000 m max.
Current Transformer (Order Separately) Ratings
Dielectric strength 1,000 VAC for 1 min E54-CT1: Approx. 11.5 g, E54-CT3: Approx. 50 g Armatures (2) Plugs (2) Vibration resistance 50 Hz, 98 m/s2 Weight Accessories (E54-CT3 only)
USB interface standard Conforms to USB Specification 1.1. DTE speed Connector specifications Power supply Power supply voltage Current consumption Ambient operating temperature Ambient operating humidity Storage temperature Storage humidity Altitude
Heater Burnout Alarms, SSR Failure Alarms, and Heater Overcurrent Alarms
CT input (for heater current detection) Input current indication accuracy Heater burnout alarm setting range *1 SSR failure alarm setting range *2 Models with detection for single-phase heaters: One input
Maximum heater current 50 A AC 5% FS 1 digit max. 0.1 to 49.9 A (in units of 0.1 A) Minimum detection ON time: 100 ms 0.1 to 49.9 A (in units of 0.1 A) Minimum detection OFF time: 100 ms
Weight Approx. 100 g Note: A driver must be installed in the personal computer. Refer to installation information in the operation manual for the Conversion Cable.
Communications Specifications
Transmission line RS-485: Multipoint connection method RS-232C: Point-to-point Communications Synchronization method Protocol Baud rate RS-485 (two-wire, half duplex), RS-232C Start-stop synchronization CompoWay/F, SYSWAY, or Modbus 1200, 2400, 4800, 9600, 19200, 38400, or 57600 bps 7 or 8 bits 1 or 2 bits Vertical parity (none, even, odd) Frame check sequence (FCS) with SYSWAY Block check character (BCC) with CompoWay/F or CRC-16 Modbus None RS-485, RS-232C None 217 bytes
Heater overcurrent 0.1 to 49.9 A (in units of 0.1 A) alarm setting range *3 Minimum detection ON time: 100 ms *1. For heater burnout alarms, the heater current will be measured when the control output is ON, and the output assigned to the alarm 1 function will turn ON if the heater current is lower than the set value (i.e., heater burnout detection current value). *2. For SSR failure alarms, the heater current will be measured when the control output is OFF, and the output assigned to the alarm 1 function will turn ON if the heater current is higher than the set value (i.e., SSR failure detection current value). *3. For heater overcurrent alarms, the heater current will be measured when the control output is ON, and the output assigned to the alarm 1 function will turn ON if the heater current is higher than the set value (i.e., heater overcurrent detection current value).
Transmission code ASCII Data bit length * Stop bit length * Error detection Flow control Interface Retry function Communications buffer
Electrical Life Expectancy Curve for Relays (Reference Values)
Life (x 104 operations) 500 300 200 100 50 30 20 10 5 3 2 1 0.1 0.2 0.3 0.5 1 2 3 5 10 Switching current (A)
E5GN 250 VAC, 30 VDC (resistive load) cos = 1
Communications 0 to 99 ms response wait time Default: 20 ms * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level.
13
E5GN
External Connections
* A voltage output (control output, for driving SSR) is not electrically insulated from the internal circuits. When using a grounding thermocouple, do not connect any of the control output terminals to ground. (If the control output terminals are connected to ground, errors will occur in the measured temperature values as a result of leakage current.)
E5GN
Controllers
Control output 1 The E5@N-@@@T@ is set for a K thermocouple (input type of 5) by default. If a difference sensor is used, an input error (s.err) will occur. Check the setting of the input type parameter. A (-)
DO NOT USE
Relay output 250 VAC, 2 A (resistive load) Voltage output (for driving SSR) 12 VDC, 21 mA Current output 0 to 20 mA DC 4 to 20 mA DC Load: 500 max. Auxiliary outputs 1 and 2 Relay outputs 250 VAC, 2 A (resistive load)
B (+) RS-485 communications RS-232C communications SD
RD
SG
+
mA
DO NOT USE
A heater burnout alarm, heater short alarm, heater overcurrent alarm, or input error is sent to the output to which the alarm 1 function is assigned. Analog input
CT
CT input
DO NOT USE
DO NOT USE
V
?
+ B
A
EV2
B
?
Event input 7 * 100 to 240 VAC * 24 VAC/VDC (no polarity) 1 8 2
Universal TC/Pt input +
EV1
9 3
10 4
11 5
12 6
Input power supply
+ Control output 1
Auxiliary output 1
Terminal Arrangement
Auxiliary output 2 connection screws
Models with Screw Terminal Blocks
7 8 9 10 11 12
Models with Screwless Clamp Terminal Blocks
7 8 9 10 11 12
13
14
Auxiliary output 2
1
2
3
4
5
6
1
2
3
4
5
6
Wiring
E5GN Models with Screw Terminal Blocks (M3 Screws) E5GN-@-C Models with Screwless Clamp Terminal Blocks
M3 Screw Terminal Blocks * Crimp terminal shape: Forked or round * Tightening torque for all terminals: 0.5 N*m
5.8 mm max.
Models with Screwless Clamp Terminal Blocks * Wire stripping: 10 mm * Ferrules: 8 to 12 mm
0.8 to 1.4 mm
10 mm 5.8 mm max.
8 to 12 mm
14
E5GN
Nomenclature
E5GN
The front panel is the same for the E5GN.
No.1 display
Temperature unit
Operation indicators
Operation indicators
No. 2 display
Level Key
Mode Key
Down Key
Up Key
Dimensions
E5GN Models with Screw Terminal Blocks
35 24 48 2 99 44.8
(Unit: mm)
35
22
22
Flush Mounting Adapter (Provided) Waterproof Packing (Provided)
Panel Cutout Group Mounted Mounted Separately
45
+0.6 0
(48 x number of units - 2.5)
+1.0 0
22.2
+0.3 0
40 min.
Group mounting does not allow waterproofing.
* Recommended panel thickness is 1 to 5 mm. * Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) * To mount the Controller so that it is waterproof, insert the waterproof packing onto the Controller. * When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications.
22.2
+0.3 0
E5GN-@-C Models with Screwless Clamp Terminal Blocks
48
2
100
44.8
35
24
35
22
22
Flush Mounting Adapter (Provided) Waterproof Packing (Provided)
Panel Cutout Group Mounted Mounted Separately
45
+0.6 0
(48 x number of units - 2.5)
+1.0 0
22.2
+0.3 0
* Recommended panel thickness is 1 to 5 mm. * Group mounting is not possible in the vertical direction. (Maintain the specified mounting space between Controllers.) * When two or more Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications.
40 min.
+0.3 0
Group mounting does not allow waterproofing.
22.2
Accessories (Order Separately)
USB-Serial Conversion Cable
E58-CIFQ1
250 (2,100) LED indicator (SD) 1,765
USB connector (type A plug)
LED indicator (RD)
Serial connector
15
E5GN
Waterproof Packing
Y92S-32 (for DIN 48 x 24)
Order the Waterproof Packing separately if it becomes lost or damaged. The Waterproof Packing can be used to achieve an IP66 degree of protection. (Deterioration, shrinking, or hardening of the waterproof packing may occur depending on the operating environment. Therefore, periodic replacement is recommended to ensure the level of waterproofing specified in IP66. The time for periodic replacement depends on the operating environment. Be sure to confirm this point at your site. Consider one year a rough standard. OMRON shall not be liable for the level of water resistance if the customer does not perform periodic replacement.) The Waterproof Packing does not need to be attached if a waterproof structure is not required.
Current Transformers
E54-CT1
21 15 5.8 dia. 7.5 2.8
E54-CT1 Thru-current (Io) vs. Output Voltage (Eo) (Reference Values)
Maximum continuous heater current: 50 A (50/60 Hz) Number of windings: 4002 Winding resistance: 182
Output voltage (Eo) V (r.m.s.) 100 V 10 50 Hz
25
3 10.5 40 Two, 3.5 dia. 10 30
1 k Distortion factor 10% 3% 1%
1
100 mV 100 RL = 10
10
E54-CT3
30 12 dia.
2.36 dia.
1 100 V 10 1
9
10
100 mA
1
10
100 1,000 A
40 x 40
Thru-current (Io) A (r.m.s.)
Two, M3 (depth: 4)
E54-CT3 Thru-current (Io) vs. Output Voltage (Eo) (Reference Values)
Maximum continuous heater current: 120 A (50/60 Hz) (Maximum continuous heater current for the Temperature Controller is 50 A.) Number of windings: 4002 Winding resistance: 80.8
Output voltage (Eo) V (r.m.s.) 100 V 10 50 Hz 1 k 500
15
30
E54-CT3 Accessory
* Armature
Approx. 3 dia.
Connection Example
Armature Plug Lead
1
Distortion factor 10% 3% 1%
100 mV 100 50 RL = 10 1 100 V 10 1
18
10
* Plug
Approx. 6 dia.
(22)
10
100 mA
1
10
100 1,000 A
Thru-current (Io) A (r.m.s.)
16
Read and Understand This Catalog
Please read and understand this catalog before purchasing the products. Please consult your OMRON representative if you have any questions or comments.
Warranty and Limitations of Liability
WARRANTY
OMRON's exclusive warranty is that the products are free from defects in materials and workmanship for a period of one year (or other period if specified) from date of sale by OMRON. OMRON MAKES NO WARRANTY OR REPRESENTATION, EXPRESS OR IMPLIED, REGARDING NON-INFRINGEMENT, MERCHANTABILITY, OR FITNESS FOR PARTICULAR PURPOSE OF THE PRODUCTS. ANY BUYER OR USER ACKNOWLEDGES THAT THE BUYER OR USER ALONE HAS DETERMINED THAT THE PRODUCTS WILL SUITABLY MEET THE REQUIREMENTS OF THEIR INTENDED USE. OMRON DISCLAIMS ALL OTHER WARRANTIES, EXPRESS OR IMPLIED.
LIMITATIONS OF LIABILITY
OMRON SHALL NOT BE RESPONSIBLE FOR SPECIAL, INDIRECT, OR CONSEQUENTIAL DAMAGES, LOSS OF PROFITS OR COMMERCIAL LOSS IN ANY WAY CONNECTED WITH THE PRODUCTS, WHETHER SUCH CLAIM IS BASED ON CONTRACT, WARRANTY, NEGLIGENCE, OR STRICT LIABILITY. In no event shall the responsibility of OMRON for any act exceed the individual price of the product on which liability is asserted. IN NO EVENT SHALL OMRON BE RESPONSIBLE FOR WARRANTY, REPAIR, OR OTHER CLAIMS REGARDING THE PRODUCTS UNLESS OMRON'S ANALYSIS CONFIRMS THAT THE PRODUCTS WERE PROPERLY HANDLED, STORED, INSTALLED, AND MAINTAINED AND NOT SUBJECT TO CONTAMINATION, ABUSE, MISUSE, OR INAPPROPRIATE MODIFICATION OR REPAIR.
Application Considerations
SUITABILITY FOR USE
OMRON shall not be responsible for conformity with any standards, codes, or regulations that apply to the combination of products in the customer's application or use of the products. At the customer's request, OMRON will provide applicable third party certification documents identifying ratings and limitations of use that apply to the products. This information by itself is not sufficient for a complete determination of the suitability of the products in combination with the end product, machine, system, or other application or use. The following are some examples of applications for which particular attention must be given. This is not intended to be an exhaustive list of all possible uses of the products, nor is it intended to imply that the uses listed may be suitable for the products: * Outdoor use, uses involving potential chemical contamination or electrical interference, or conditions or uses not described in this catalog. * Nuclear energy control systems, combustion systems, railroad systems, aviation systems, medical equipment, amusement machines, vehicles, safety equipment, and installations subject to separate industry or government regulations. * Systems, machines, and equipment that could present a risk to life or property. Please know and observe all prohibitions of use applicable to the products. NEVER USE THE PRODUCTS FOR AN APPLICATION INVOLVING SERIOUS RISK TO LIFE OR PROPERTY WITHOUT ENSURING THAT THE SYSTEM AS A WHOLE HAS BEEN DESIGNED TO ADDRESS THE RISKS, AND THAT THE OMRON PRODUCTS ARE PROPERLY RATED AND INSTALLED FOR THE INTENDED USE WITHIN THE OVERALL EQUIPMENT OR SYSTEM.
PROGRAMMABLE PRODUCTS
OMRON shall not be responsible for the user's programming of a programmable product, or any consequence thereof.
Disclaimers
CHANGE IN SPECIFICATIONS
Product specifications and accessories may be changed at any time based on improvements and other reasons. It is our practice to change model numbers when published ratings or features are changed, or when significant construction changes are made. However, some specifications of the products may be changed without any notice. When in doubt, special model numbers may be assigned to fix or establish key specifications for your application on your request. Please consult with your OMRON representative at any time to confirm actual specifications of purchased products.
DIMENSIONS AND WEIGHTS
Dimensions and weights are nominal and are not to be used for manufacturing purposes, even when tolerances are shown.
PERFORMANCE DATA
Performance data given in this catalog is provided as a guide for the user in determining suitability and does not constitute a warranty. It may represent the result of OMRON's test conditions, and the users must correlate it to actual application requirements. Actual performance is subject to the OMRON Warranty and Limitations of Liability.
ERRORS AND OMISSIONS
The information in this document has been carefully checked and is believed to be accurate; however, no responsibility is assumed for clerical, typographical, or proofreading errors, or omissions.
2009.12 In the interest of product improvement, specifications are subject to change without notice.
Industrial Automation Company
http://www.ia.omron.com/
OMRON Corporation
(c)Copyright OMRON Corporation 2009 All Right Reserved.


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