Digital Temperature Controller (Simple Type) (48 × 48 mm)
last update: December 1, 2023
Power supply voltage | A in model number: 100 to 240 VAC, 50/60 Hz
D in model number: 24 VAC, 50/60 Hz; 24 VDC |
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Operating voltage range | 85% to 110% of rated supply voltage | |
Power consumption | Models with option selection of 000:5.2 VA max. at 100 to 240 VAC, and 3.1 VA max. at
24 VAC or 1.6 W max. at 24 VDC All other models: 6.5 VA max. at 100 to 240 VAC, and 4.1 VA max. at 24 VAC or 2.3 W max. at 24 VDC |
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Sensor input | Temperature input
Thermocouple: K, J, T, E, L, U, N, R, S, B, C/W, or PL II Platinum resistance thermometer: Pt100 or JPt100 Infrared temperature sensor (ES1B): 10 to 70°C, 60 to 120°C, 115 to 165°C, or 140 to 260°C Analog input 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 | Current input: 150 Ω max., Voltage input: 1 MΩ min.
(Use a 1:1 connection when connecting the ES2-HB-N/THB-N.) |
|
Control method | ON/OFF control or 2-PID control (with auto-tuning) | |
Control
output |
Relay output | E5CC-800:
SPST-NO, 250 VAC, 3 A (resistive load), electrical life: 100,000 operations, minimum applicable load: 5 V, 10 mA E5CC-U-800: SPDT, 250 VAC, 3 A (resistive load), electrical life: 100,000 operations, minimum applicable load: 5 V, 10 mA |
Voltage output
(for driving SSR) |
Output voltage: 12 VDC ± 20% (PNP), max. load current: 21 mA, with short-circuit
protection circuit |
|
Linear current
output |
4 to 20 mA DC/0 to 20 mA DC, load: 500 Ω max., resolution: approx. 10,000 | |
Auxiliary
output |
Number of outputs | 2 |
Output
specifications |
SPST-NO relay outputs, 250 VAC, Models with 2 outputs: 3 A (resistive load),
Electrical life: 100,000 operations, Minimum applicable load: 10 mA at 5 V |
|
Event
input |
Number of inputs | 2 or 4 (depends on model) |
External contact
input specifications |
Contact input: ON: 1 kΩ max., OFF: 100 kΩ 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 | ||
Setting method | Digital setting using front panel keys | |
Indication method | 11-segment digital display and individual indicators
Character height: PV: 15.2 mm, SV: 7.1 mm |
|
Multi SP | Up to eight set points (SP0 to SP7) can be saved and selected using event inputs, key
operations, or serial communications. |
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Other functions | Manual output, heating/cooling control, loop burnout alarm, SP ramp, other alarm
functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 40% AT, 100% AT, MV limiter, input digital filter, self tuning, PV input shift, run/stop, protection functions, temperature status display, moving average of input value |
|
Ambient operating
temperature |
-10 to 55°C (with no condensation or icing),
for 3-year warranty: -10 to 50°C (with no condensation or icing) |
|
Ambient operating humidity | 25% to 85% | |
Storage temperature | -25 to 65°C (with no condensation or icing) | |
Altitude | 2,000 m max. | |
Recommended fuse | T2A, 250 VAC, time lag, low shut-off capacity | |
Installation environment | Installation Category II, Pollution Class 2 (IEC 61010-1 compliant) |
Note: There are no optional functions for the E5CC-U-800. Refer to Model Number Legend on Lineup.
Input type | Current | Voltage | |||
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Input specification | 4 to 20 mA | 0 to 20 mA | 1 to 5 V | 0 to 5 V | 0 to 10 V |
Setting range | 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 |
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Set value | 25 | 26 | 27 | 28 | 29 |
Each alarm can be independently set to one of the following 19 alarm types. The default is 2: Upper limit. (see note.)
Auxiliary outputs are allocated for alarms. ON delays and OFF delays (0 to 999 s) can also be specified.
Set
value |
Alarm type | Alarm output operation | Description of function | |
---|---|---|---|---|
When alarm
value X is positive |
When alarm
value X is negative |
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0 | Alarm function
OFF |
Output OFF | No alarm | |
1 | Upper- and
lower-limit *1 |
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*2 | Set the upward deviation in the set point for the
alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is outside this deviation range. |
2
(default) |
Upper-limit |
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Set the upward deviation in the set point by setting
the alarm value (X). The alarm is ON when the PV is higher than the SP by the deviation or more. |
3 | Lower-limit |
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Set the downward deviation in the set point by
setting the alarm value (X). The alarm is ON when the PV is lower than the SP by the deviation or more. |
4 | Upper- and
lower-limit range *1 |
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*3 | Set the upward deviation in the set point for the
alarm upper limit (H) and the lower deviation in the set point for the alarm lower limit (L). The alarm is ON when the PV is inside this deviation range. |
5 | Upper- and
lower-limit with standby sequence *1 |
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*4 | A standby sequence is added to the upper- and
lower-limit alarm (1). *6 |
6 | Upper-limit
with standby sequence |
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A standby sequence is added to the upper-limit
alarm (2). *6 |
7 | Lower-limit
with tandby sequence |
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A standby sequence is added to the lower-limit
alarm (3). *6 |
8 | Absolute-value
upper-limit |
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The alarm will turn ON if the process value is larger
than the alarm value (X) regardless of the set point. |
9 | Absolute-value
lower-limit |
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The alarm will turn ON if the process value is smaller
than the alarm value (X) regardless of the set point. |
10 | Absolute-value
upper-limit with standby sequence |
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A standby sequence is added to the absolute-value
upper-limit alarm (8). *6 |
11 | Absolute-value
lower-limit with standby sequence |
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A standby sequence is added to the absolute-value
lower-limit alarm (9). *6 |
12 | LBA (alarm 1
type only) |
- | *7 | |
13 | PV change
rate alarm |
- | *8 | |
14 | SP absolute
value upper limit alarm |
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This alarm type turns ON the alarm when the set
point (SP) is higher than the alarm value (X). |
15 | SP absolute
value lower limit alarm |
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This alarm type turns ON the alarm when the set
point (SP) is lower than the alarm value (X). |
16 | MV absolute
value upper limit alarm *9 |
Standard Control
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Standard Control
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This alarm type turns ON the alarm when the
manipulated variable (MV) is higher than the alarm value (X). |
Heating/Cooling
Control (Heating MV) ![]() |
Heating/Cooling
Control (Heating MV) Always ON |
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17 | MV absolute
value lower limit alarm *9 |
Standard Control
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Standard Control
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This alarm type turns ON the alarm when the
manipulated variable (MV) is lower than the alarm value (X). |
Heating/Cooling
Control (Cooling MV) ![]() |
Heating/Cooling
Control (Cooling MV) Always ON |
Indication accuracy
(at the ambient temperature of 23°C) |
E5CC-800
Thermocouple: (±0.3% of PV or ±1°C, whichever is greater) ±1 digit max. *1 Platinum resistance thermometer: (±0.2% of PV or ±0.8°C, whichever is greater) ±1 digit Analog input: ±0.2% FS ±1 digit max. CT input: ±5% FS ±1 digit max. E5CC-U-800 Thermocouple: (±1% of PV or ±2°C, whichever is greater) ±1 digit max. *1 Platinum resistance thermometer: (±0.2% of PV or ±0.8°C, whichever is greater) ±1 digit Analog input: ±0.2% FS ±1 digit max. |
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Simple transfer output
accuracy |
±0.3% FS max.*2 | |
Influence of
temperature *3 |
Thermocouple input (R, S, B, C/W, PL II): (±1% of PV or ±10°C, whichever is greater) ±1
digit max. Other thermocouple input: (±1% of PV or ±4°C, whichever is greater) ±1 digit max. *4 Platinum resistance thermometer: (±1% of PV or ±2°C, whichever is greater) ±1 digit max. Analog input: ±1%FS ±1 digit max. CT input: ±5%FS ±1 digit max. |
|
Influence of voltage *3 | ||
Influence of EMS.
(at EN 61326-1) |
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Input sampling period | 50 ms | |
Hysteresis | Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F)
Analog input: 0.01% to 99.99% FS (in units of 0.01% FS) |
|
Proportional band (P) | Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F)
Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) |
|
Integral time (I) | 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *5 | |
Derivative time (D) | 0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *5 | |
Proportional band (P)
for cooling |
Temperature input: 0.1 to 999.9°C or °F (in units of 0.1°C or °F)
Analog input: 0.1% to 999.9% FS (in units of 0.1% FS) |
|
Integral time (I) for
cooling |
0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *5 | |
Derivative time (D) for
cooling |
0 to 9999 s (in units of 1 s), 0.0 to 999.9 s (in units of 0.1 s) *5 | |
Control period | 0.1, 0.2, 0.5, 1 to 99 s (in units of 1 s) | |
Manual reset value | 0.0 to 100.0% (in units of 0.1%) | |
Alarm setting range | -1999 to 9999 (decimal point position depends on input type) | |
Affect of signal source
resistance |
Thermocouple: 0.1°C/Ω max. (100 Ωmax.)
Platinum resistance thermometer: 0.1°C/Ω max. (10 Ω max.) |
|
Insulation resistance | 20 MΩ min. (at 500 VDC) | |
Dielectric strength | 3,000 VAC, 50/60 Hz for 1 min between terminals of different charge | |
Vibration | Malfunction | 10 to 55 Hz, 20 m/s2 for 10 min each in X, Y, and Z directions |
Resistance | 10 to 55 Hz, 20 m/s2 for 2 hrs each in X, Y, and Z directions | |
Shock | Malfunction | 100 m/s2, 3 times each in X, Y, and Z directions |
Resistance | 300 m/s2, 3 times each in X, Y, and Z directions | |
Weight | E5CC-800: Controller: Approx. 120 g, Mounting Bracket: Approx. 10 g
E5CC-U-800: Controller: Approx. 100 g, Mounting Bracket: Approx. 10 g |
|
Degree of protection | E5CC-800: Front panel: IP66, Rear case: IP20, Terminals: IP00
E5CC-U-800: Front panel: IP50, Rear case: IP20, Terminals: IP00 |
|
Memory protection | Non-volatile memory (number of writes: 1,000,000 times) | |
Standards | Approved
standards |
cULus: UL 61010-1/CSA C22.2 No.61010-1 *6,
Korean wireless regulations (Radio law: KC Mark) (Some models only.) *7,Lloyd's standards *8 |
Conformed
standards |
EN 61010-1 (IEC 61010-1), RCM | |
EMC | EMI: EN 61326-1 *8
Radiated Interference Electromagnetic Field Strength: EN 55011 Group 1, class A Noise Terminal Voltage: EN 55011 Group 1, class A EMS: EN 61326-1 *8 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 Voltage Dip/Interrupting Immunity: EN 61000-4-11 |
*1 The indication accuracy of K thermocouples in the -200 to 1300°C range, T and N thermocouples at a temperature of
-100°C max., and U and L thermocouples at any temperatures is ±2°C ±1 digit max. The indication accuracy of the
B thermocouple at a temperature of 400°C max. is not specified. The indication accuracy of B thermocouples at a
temperature of 400 to 800° is ±3°C max. The indication accuracy of the R and S thermocouples at a temperature of
200°C max. is ±3°C ±1 digit max. The indication accuracy of C/W thermocouples is (±0.3% of PV or ±3°C, whichever
is greater) ±1 digit max. The indication accuracy of PL II thermocouples is ±0.3% of PV or ±2°C, whichever is
greater, ±1 digit max.
*2 However, the precision between 0 and 4 mA for a 0 to 20 mA output is ±1% FS max.
*3 Ambient temperature: -10°C to 23°C to 55°C, Voltage range: -15% to 10% of rated voltage
*4 K thermocouple at -100°C max.: ±10°C max.
*5 The unit is determined by the setting of the Integral/Derivative Time Unit parameter.
*6 The E5CC-U-800 plug-in model is certified for UL listing only when used together with the OMRON P2CF-11 or
P2CF-11-E socket.
The P3GA-11 is not certified for UL listing.
*7 Access the following website for information on certified models.
http://www.ia.omron.com/support/models/index.html
*8 Refer to information on maritime standards in Shipping Standards on catalog for compliance with Lloyd's Standards.
*9 Industrial electromagnetic environment (EN/IEC 61326-1 Table 2)
Transmission line connection method | RS-485: Multidrop |
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Communications | RS-485 (two-wire, half duplex) |
Synchronization method | Start-stop synchronization |
Protocol | CompoWay/F, or Modbus |
Baud rate * | 9600, 19200, 38400, or 57600 bps |
Transmission code | ASCII |
Data bit length * | 7 or 8 bits |
Stop bit length * | 1 or 2 bits |
Error detection | Vertical parity (none, even, odd)
Block check character (BCC) with CompoWay/F or CRC-16 Modbus |
Flow control | None |
Interface | RS-485 |
Retry function | None |
Communications buffer | 217 bytes |
Communications response wait time | 0 to 99 ms
Default: 20 ms |
Programless
communications *1 |
You can use the memory in the PLC to read and write E5[]C parameters, start and stop
operation, etc. The E5[]C automatically performs communications with PLCs. No communications programming is required. Number of connected Temperature Controllers: 32 max. (Up to 16 for the FX Series) Applicable PLCs OMRON PLCs CS Series, CJ Series, CP Series, NJ Series, or NX1P Mitsubishi Electric PLCs MELSEC Q Series, L Series, FX3 Series, or iQ-R Series KEYENCE PLCs KEYENCE KV Series |
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Component
Communications *1 |
When Digital Temperature Controllers are connected, set points and RUN/STOP commands can
be sent from the Digital Temperature Controller that is set as the master to the Digital Temperature Controllers that are set as slaves. Slope and offsets can be set for the set point. Number of connected Digital Temperature Controllers: 32 max. (including master) |
Copying *2 | When Digital Temperature Controllers are connected, the parameters can be copied from the
Digital Temperature Controller that is set as the master to the Digital Temperature Controllers that are set as slaves. |
E54-CT1
E54-CT3 |
E54-CT1L
E54-CT3L |
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Dielectric strength | 1,000 VAC for 1 min | 1,500 VAC for 1 min |
Vibration resistance | 50 Hz, 98 m/s2 | |
Weight | E54-CT1: Approx. 11.5 g,
E54-CT3: Approx. 50 g |
E54-CT1: Approx. 14 g,
E54-CT3: Approx. 57 g |
Accessories | E54-CT3 Only
Armatures (2) Plugs (2) |
None |
CT input (for heater current detection) | Models with detection for single-phase heaters: One input
Models with detection for single-phase or three-phase heaters: Two inputs |
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Maximum heater current | 50 A AC |
Input current indication accuracy | ± 5% FS ± 1 digit max. |
Heater burnout alarm setting range *1 | 0.1 to 49.9 A (in units of 0.1 A)
Minimum detection ON time: 100 ms *3 |
SSR failure alarm setting range *2 | 0.1 to 49.9 A (in units of 0.1 A)
Minimum detection OFF time: 100 ms *4 |
last update: December 1, 2023