Digital Temperature Controller

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1 Digital Temperature Controller Large White Display That's Easier to Read. Easy to Use, from odel Selection to Setup and Operation. New Plug-in odels That Are Convenient for aintenance and Replacement as replacing temperature controllers is possible without changing wiring. New odels That ount to DIN Track and Are Ideal for HI/PLC Connections. And Programmable odels to Support a Wider Range of Applications. Digital Temperature Controller E5 C Series E5CC E5CC-U E5EC DIN mm page 2 DIN mm page 2 E5AC DIN mm page 2 E5DC 22.5 mm wide ounts to DIN Track page 36 Programmable Temperature Controller (Digital Controller) E5@C-T Series E5CC-T E5EC-T DIN mm page 5 DIN mm page 66 E5AC-T DIN mm page 66

2 Digital Temperature Controller E5CC/E5CC-U (48 48 mm) Large White Display That s Easier to Read. Easy to Use, from odel Selection to Setup and Operation. A Complete Range of I/O Capacities, Functions, and Performance. Handles ore Applications. The white display with a height of 5.2 mm improves visibility. High-speed sampling at 5 ms. odels are available with up to 3 auxiliary outputs, up to 4 event inputs, a transfer output, and a remote input to cover a wide range of applications. E5CC: Short body with depth of only 6 mm. Refer to your OR website for the most recent information on applicable safety standards. Set up the Controller without wiring the power supply by Refer to Safety Precautions on page 9. connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the C-Thermo (sold separately). Easy connections to a PLC with programless communications. Use component communications to link Temperature Controllers to each other. ain I/O Functions mm E5CC mm E5CC-U Sensor Input Universal input Thermocouple Pt Analog current/voltage E5CC/E5CC-U Dual displays: /SV 4-digit displays Indication Accuracy Thermocouple input: ±.3% of Pt input: ±.2% of Analog input: ±.2% of FS Sampling Period 5 ms Event Inputs None 2 4 Remote Input None PF (shift) Key Temperature status display Simple programming Independent heating and cooling PID control Changed parameter display Display brightness setting Control Output Relay output Voltage output (for driving SSR) Linear current output Control Output 2 None Voltage output (for driving SSR) Auxiliary Outputs None 2 3 Transfer Output None Serial Communications None RS-485 This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C Digital Temperature Controllers User s anual (Cat. No. H74) E5@C Digital Temperature Controllers Communications anual (Cat. No. H75) 2

3 odel Number Legend and Standard odels odel Number Legend odels with Screw Terminals 5 -@@@ (Example: E5CC-R3A5-) A B C D E F E5CC/E5CC-U odel A B C D E F Control outputs and 2 No. of auxiliary outputs Power supply voltage Terminal type Input type Options eaning E5CC mm Control output Control output 2 R Relay output None Q Voltage output (for driving SSR) None * *3 C Linear current output *2 None QQ Voltage output (for driving SSR) CQ Linear current output *2 3 3 (one common) A to 24 VAC D 24 VAC/DC 5 Screw terminals (with cover) Universal input HB alarm and HS alarm Communications Event inputs Voltage output (for driving SSR) Voltage output (for driving SSR) Remote Transfer Input output * * 3 2 (for 3-phase RS heaters) * RS Provided Provided. -- *. Options with HB and HS alarms ( and 3) cannot be selected if a linear current output is selected for the control output. *2. The control output cannot be used as a transfer output. *3. Option 4 can be selected only when "C" is selected for the control outputs. Heating and Cooling Control Using Heating and Cooling Control A Control Output Assignment If there is no control output 2, an auxiliary output is used as the cooling control output. If there is a control output 2, the two control outputs are used for heating and cooling. (It does not matter which output is used for heating and which output is used for cooling.) B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. 3

4 E5CC/E5CC-U odel Number Legend U-@@@ (Example: E5CC-RWAU-) odel E5CC A B C D E F A B C D E F Control outputs and 2 No. of auxiliary outputs Power supply voltage Terminal type Input type Options eaning mm Control output Control output 2 RW Relay output (DT) None Q Voltage output (for driving SSR) None C Linear current output* None None 2 2 (one common) * The control output cannot be used as a transfer output. List of odels A D U HB alarm and HS alarm Communications to 24 VAC 24 VAC/DC Plug-in model Universal input Event inputs Remote Input Transfer output Control output Relay output Voltage output (for driving SSR) Linear current output No. of auxiliary outputs HB alarm and HS alarm Options odel odel No. of event inputs Communications Power supply voltage to 24 VAC E5CC-RWAU- E5CC-RWAU- E5CC-RW2AU- E5CC-QAU- E5CC-QAU- E5CC-Q2AU- E5CC-CAU- E5CC-CAU- E5CC-C2AU- Power supply voltage 24 VAC/DC E5CC-RWDU- E5CC-RWDU- E5CC-RW2DU- E5CC-QDU- E5CC-QDU- E5CC-Q2DU- E5CC-CDU- E5CC-CDU- E5CC-C2DU- Heating and Cooling Control Using Heating and Cooling Control A Control Output Assignment An auxiliary output is used as the cooling control output. B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. 4

5 E5CC/E5CC-U Optional Products (Order Separately) USB-Serial Conversion Cable odel E58-CIFQ2 Terminal Covers (for E5CC) odel E53-COV7 E53-COV23 Note: The Terminal Covers E53-COV23 are provided only with E5CC. The E53-COV cannot be used. Refer to page 4 for the mounted dimensions. Waterproof Packing odel Y92S-P8 Note: The Waterproof Packing is provided only with E5CC Controllers. The E5CC-U cannot be waterproofed even if the Waterproof Packing is attached. Front Covers Type Hard Front Cover Soft Front Cover C-Thermo Support Software odel Y92A-48H Y92A-48D odel EST2-2C-V4 Note: C-Thermo version 4.5 or higher is required for the E5CC. C-Thermo version 4.6 or higher is required for the E5CC-U. For the system requirements for the C-Thermo, refer to information on the EST2-2C-V4 on the OR website ( Current Transformers (CTs) Hole diameter odel 5.8 mm E54-CT 2. mm E54-CT3 Adapter odel Y92F-45 Note: Use this Adapter when the panel has already been prepared for an E5B@ Controller. Waterproof Cover odel Y92A-48N ounting Adapter odel Y92F-49 Note: This ounting Adapter is provided with the Digital Temperature Controller. DIN Track ounting Adapter odel Y92F-52 Sockets (for E5CC-U) Type Front-connecting Socket Front-connecting Socket with Finger Protection Back-connecting Socket Terminal Cover for Back-connecting socket with Finger Protection odel P2CF- P2CF--E P3GA- Y92A-48G 5

6 E5CC/E5CC-U Specifications Ratings Power supply voltage Operating voltage range Power consumption Sensor input Input impedance Control method Control output Auxiliary output Event input Transfer output Setting method Remote input Indication method ulti Bank switching Other functions A in model number: to 24 VAC, 5/6 Hz D in model number: 24 VAC, 5/6 Hz; 24 VDC 85% to % of rated supply voltage odels with option selection of :5.2 VA max. at to 24 VAC, and 3. VA max. at 24 VAC or.6 W max. at 24 VDC All other models: 6.5 VA max. at to 24 VAC, and 4. VA max. at 24 VAC or 2.3 W max. at 24 VDC Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt or JPt Infrared temperature sensor (ESB): to 7 C, 6 to 2 C, 5 to 65 C, or 4 to 26 C Analog input Current input: 4 to 2 ma or to 2 ma Voltage input: to 5 V, to 5 V, or to V Current input: 5 Ω max., Voltage input: Ω min. (Use a : connection when connecting the ES2-HB/THB.) / control or 2-PID control (with auto-tuning) E5CC: ST-NO, 25 VAC, 3 A (resistive load), electrical life:, operations, minimum applicable load: 5 V, ma (reference value) * Relay output E5CC-U: DT, 25 VAC, 3 A (resistive load), electrical life:, operations, minimum applicable load: 5 V, ma (reference value) Voltage output Output voltage: 2 VDC ±2% (PNP), max. load current: 2 ma, with short-circuit protection circuit (for driving SSR) Linear current output 4 to 2 ma DC/ to 2 ma DC, load: 5 Ω max., resolution: approx.,* E5CC: 3 Number of outputs E5CC-U: or 2 (depends on model) ST-NO relay outputs, 25 VAC, odels with or 2 outputs: 3 A (resistive load), or odels with 3 Output specifications outputs: 2 A (resistive load), Electrical life:, operations, inimum applicable load: ma at 5 V (reference value) Number of inputs 2 or 4 (depends on model) External contact input specifications Number of outputs Output specifications Ambient operating temperature Contact input: : kω max., : kω min. Non-contact input: : Residual voltage:.5 V max., : Leakage current:. ma max. Current flow: Approx. 7 ma per contact (only on models with a transfer output) Current output: 4 to 2 ma DC, load: 5 Ω max., resolution: approx., Linear voltage output: to 5 VDC, load: kω min., resolution: Approx., Digital setting using front panel keys Current input: 4 to 2 ma DC or to 2 ma DC (input impedance: 5 Ω max.) Voltage input: to 5 V, to 5 V, or to V (input impedance: Ω min.) -segment digital display and individual indicators Character height: : 5.2 mm, SV: 7. mm Up to eight set points ( to 7) can be saved and selected using event inputs, key operations, or serial communications. None anual output, heating/cooling control, loop burnout alarm, ramp, other alarm functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 4% AT, % AT, V limiter, input digital filter, self tuning, robust tuning, input shift, run/stop, protection functions, extraction of square root, V change rate limit, logic operations, temperature status display, simple programming, moving average of input value, and display brightness setting - to 55 C (with no condensation or icing), for 3-year warranty: - to 5 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, m max. Recommended fuse T2A, 25 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 6- compliant) * You cannot select a relay output or linear current output for control output 2. Note: There are no optional functions for the E5CC-U. Refer to odel Number Legend and List of odels on page 4. 6

7 E5CC/E5CC-U Input Ranges Thermocouple/Platinum Resistance Thermometer (Universal inputs) Sensor type Sensor specification Temperature range ( C) Platinum resistance thermometer Thermocouple Pt JPt K J T E L U N R S B W PLII Infrared temperature sensor Set value Shaded settings are the default settings. to 7 C 6 to 2 C 5 to 65 C 4 to 26 C The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C , IEC L: Fe-CuNi, DIN U: Cu-CuNi, DIN W: W5Re/W26Re, AST E JPt: JIS C , JIS C Pt: JIS C , IEC 675 PL II: According to Platinel II electromotive force charts from BASF (previously Engelhard) Analog input Input type Current Voltage Input specification 4 to 2 ma to 2 ma to 5 V to 5 V to V Usable in the following ranges by scaling: Setting range -999 to 9999, to 999.9, to or to Set value

8 E5CC/E5CC-U Alarm Types Each alarm can be independently set to one of the following 9 alarm types. The default is 2: Upper limit. (see note.) Auxiliary outputs are allocated for alarms. delays and delays ( to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm is set to a heater alarm (HA) and the Alarm Type parameter is not displayed. To use alarm, set the output assignment to alarm. Set value Alarm type Alarm output operation When alarm value is positive When alarm value is negative Description of function Alarm function Output No alarm Set the upward deviation in the set point for the alarm upper Upper- and lower-limit * L H limit (H) and the lower deviation in the set point for the alarm *2 lower limit (L). The alarm is when the is outside this deviation range. 2 (default) Upper-limit 3 Lower-limit Upper- and lower-limit range * Upper- and lower-limit with standby sequence * Upper-limit with standby sequence Lower-limit with standby sequence Absolute-value upper-limit 9 Absolute-value lower-limit Absolute-value upper-limit with standby sequence Absolute-value lower-limit with standby sequence 2 LBA (alarm type only) - *7 3 change rate alarm - * absolute-value upper-limit alarm absolute-value lower-limit alarm V absolute-value upper-limit alarm *9 V absolute-value lower-limit alarm *9 R absolute-value upper-limit alarm * R absolute-value lower-limit alarm * *5 Standard Control Heating/Cooling Control (Heating V) Standard Control L L H H *3 *4 Standard Control Heating/Cooling Control (Heating V) Always Standard Control Heating/Cooling Control (Cooling V) Heating/Cooling Control (Cooling V) V V V V R R Always V V R R Set the upward deviation in the set point by setting the alarm value (). The alarm is when the is higher than the by the deviation or more. Set the downward deviation in the set point by setting the alarm value (). The alarm is when the is lower than the by the deviation or more. 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 when the is inside this deviation range. A standby sequence is added to the upper- and lower-limit alarm (). *6 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 if the process value is larger than the alarm value () regardless of the set point. The alarm will turn if the process value is smaller than the alarm value () regardless of the set point. A standby sequence is added to the absolute-value upperlimit alarm (8). *6 A standby sequence is added to the absolute-value lowerlimit alarm (9). *6 This alarm type turns the alarm when the set point () is higher than the alarm value (). This alarm type turns the alarm when the set point () is lower than the alarm value (). This alarm type turns the alarm when the manipulated variable (V) is higher than the alarm value (). This alarm type turns the alarm when the manipulated variable (V) is lower than the alarm value (). This alarm type turns the alarm when the remote (R) is higher than the alarm value (). This alarm type turns the alarm when the remote (R) is lower than the alarm value (). 8

9 E5CC/E5CC-U * With set values, 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:, Upper- and lower-limit alarm Case Case 2 Case 3 (Always ) H<, L< L H L H H L H<, L> H<, L> H>, L< H L H L H < L H > L H>, L< H L H L *3 Set value: 4, Upper- and lower-limit range Case Case 2 Case 3 (Always ) L H L H H L H<, L> H>, L< H < L H > L H<, L< H<, L> H L H L H L H>, L< H L *4 Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above *2 Case and 2 Always when the upper-limit and lower-limit hysteresis overlaps. Case 3: Always *5. Set value: 5, Upper- and lower-limit with standby sequence Always when the upper-limit and lower-limit hysteresis overlaps. *6 Refer to the E5@C Digital Temperature Controllers User's anual (Cat. No. H74) for information on the operation of the standby sequence. *7 Refer to the E5@C Digital Temperature Controllers User's anual (Cat. No.H74) for information on the loop burnout alarm (LBA). *8 Refer to the E5@C Digital Temperature Controllers User's anual (Cat. No. H74) for information on the change rate alarm. *9 When heating/cooling control is performed, the V absolute upper limit alarm functions only for the heating operation and the V absolute lower limit alarm functions only for the cooling operation. * This value is displayed only when a remote input is used. It functions in both Local ode and Remote ode. Remote input is supported only for the E5CC. 9

10 E5CC/E5CC-U Characteristics Indication accuracy (at the ambient temperature of 23 C) Transfer output accuracy Remote Input Type Influence of temperature *2 Influence of voltage *2 Input sampling period Hysteresis Proportional band (P) E5CC Thermocouple: (±.3% of indication value or ± C, whichever is greater) ± digit max. * Platinum resistance thermometer: (±.2% of indication value or ±.8 C, whichever is greater) ± digit Analog input: ±.2% FS ± digit max. CT input: ±5% FS ± digit max. E5CC-U Thermocouple: (±% of indication value or ±2 C, whichever is greater) ± digit max. * Platinum resistance thermometer: (±.2% of indication value or ±.8 C, whichever is greater) ± digit Analog input: ±.2% FS ± digit max. ±.3% FS max. ±.2% FS ± digit max. Thermocouple input (R, S, B, W, PL II): (±% of indication value or ± C, whichever is greater) ± digit max. Other thermocouple input: (±% of indication value or ±4 C, whichever is greater) ± digit max. *3 Platinum resistance thermometer: (±% of indication value or ±2 C, whichever is greater) ± digit max. Analog input: ±%FS ± digit max. CT input: ±5% FS ± digit max. Remote input: ±% FS ± digit max. 5 ms Temperature input:. to C or F (in units of. C or F) Analog input:.% to 99.99% FS (in units of.% FS) Temperature input:. to C or F (in units of. C or F) Analog input:.% to 999.9% FS (in units of.% FS) Integral time (I) to 9999 s (in units of s),. to s (in units of. s) *4 Derivative time (D) to 9999 s (in units of s),. to s (in units of. s) *4 Proportional band (P) for cooling Temperature input:. to C or F (in units of. C or F) Analog input:.% to 999.9% FS (in units of.% FS) Integral time (I) for cooling to 9999 s (in units of s),. to s (in units of. s) *4 Derivative time (D) for cooling to 9999 s (in units of s),. to s (in units of. s) *4 Control period.,.2,.5, to 99 s (in units of s) anual reset value. to.% (in units of.%) Alarm setting range -999 to 9999 (decimal point position depends on input type) Influence of signal source resistance Thermocouple:. C/Ω max. ( Ωmax.) Platinum resistance thermometer:. C/Ω max. ( Ω max.) Insulation resistance 2 Ω min. (at 5 VDC) Dielectric strength 3, VAC, 5/6 Hz for min between terminals of different charge Vibration alfunction to 55 Hz, 2 m/s 2 for min each in, Y, and Z directions Resistance to 55 Hz, 2 m/s 2 for 2 hrs each in, Y, and Z directions Shock alfunction m/s 2, 3 times each in, Y, and Z directions Resistance 3 m/s 2, 3 times each in, Y, and Z directions Weight E5CC: Controller: Approx. 2 g, Adapter: Approx. g E5CC-U: Controller: Approx. g, Adapter: Approx. g Degree of protection E5CC: Front panel: IP66, Rear case: IP2, Terminals: IP E5CC-U: Front panel: IP5, Rear case: IP2, Terminals: IP emory protection Non-volatile memory (number of writes:,, times) Setup Tool E5CC: C-Thermo version 4.5 or higher E5CC-U: C-Thermo version 4.6 or higher Setup Tool port E5CC/E5CC-U top panel: An E58-CIFQ2 USB-Serial Conversion Cable is used to connect to a USB port on the computer. *5 Standards Approved standards UL 6-*6, KOSHA certified (some models) *7, Korean Radio Waves Act (Act 564) Conformed standards EN 6- (IEC 6-): Pollution Degree 2, overvoltage category II, Lloyd's standards *8 EI: EN6326 Radiated Interference Electromagnetic Field Strength: EN 55 Group, class A Noise Terminal Voltage:, class A EN 55 Group ES: EN 6326 EC ESD Immunity: EN Electromagnetic Field Immunity: EN Burst Noise Immunity: EN Conducted Disturbance Immunity: EN Surge Immunity: EN Voltage Dip/Interrupting Immunity: EN 6-4- * The indication accuracy of K thermocouples in the -2 to 3 C range, T and N thermocouples at a temperature of - C max., and U and L thermocouples at any temperatures is ±2 C ± digit max. The indication accuracy of the B thermocouple at a temperature of 4 C max. is not specified. The indication accuracy of B thermocouples at a temperature of 4 to 8 C is ±3 C max. The indication accuracy of the R and S thermocouples at a temperature of 2 C max. is ±3 C ± digit max. The indication accuracy of W thermocouples is (±.3% of or ±3 C, whichever is greater) ± digit max. The indication accuracy of PL II thermocouples is ±.3% of or ±2 C, whichever is greater, ± digit max. *2 Ambient temperature: - C to 23 C to 55 C, Voltage range: -5% to % of rated voltage *3 K thermocouple at - C max.: ± C max. *4 The unit is determined by the setting of the Integral/Derivative Time Unit parameter. *5 External communications (RS-485) and USB-serial conversion cable communications can be used at the same time. *6 The E5CC-U plug-in model is certified for UL listing only when used together with the OR P2CF- or P2CF--E Socket. The P3GA- is not certified for UL listing. *7 Access the following website for information on certified models. *8 Refer to information on maritime standards in Shipping Standards on page 92 for compliance with Lloyd's Standards. The E5CC-U is scheduled to obtain certification in January, 24.

11 E5CC/E5CC-U USB-Serial Conversion Cable Applicable OS Windows P, Vista, or 7 Applicable software C-Thermo version 4.5 or higher (Version 4.6 or higher is required for the E5CC-U.) Applicable models E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.. DTE speed 384 bps Connector specifications Power supply Power supply voltage Current consumption Output voltage Output current Computer: USB (type A plug) Digital Temperature Controller: Special serial connector Bus power (Supplied from USB host controller.)* 5 VDC 45 ma max. 4.7±.2 VDC (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) 25 ma max. (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Ambient operating temperature to 55 C (with no condensation or icing) Ambient operating % to 8% humidity Storage temperature -2 to 6 C (with no condensation or icing) Storage humidity % to 8% Altitude 2, m max. Weight Approx. 2 g Windows is a registered trademark of icrosoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction anual included with the Cable for the installation procedure. Communications Specifications Transmission line connection method RS-485: ultidrop Communications RS-485 (two-wire, half duplex) Synchronization method Start-stop synchronization Protocol CompoWay/F, or odbus Baud rate* 96, 92, 384, or 576 bps Transmission code ASCII Data bit length* 7 or 8 bits Stop bit length* or 2 bits Vertical parity (none, even, odd) Error detection Block check character (BCC) with CompoWay/F or CRC-6 odbus Flow control None Interface RS-485 Retry function None Communications buffer 27 bytes Communications to 99 ms response wait time Default: 2 ms * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions Programless communications * 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 6 for the F Series) Applicable PLCs OR PLCs CS Series, CJ Series, or CP Series itsubishi Electric PLCs ELSEC Q Series, L Series, or F Series (compatible with the F2 or F3 (excluding the FS)) KEYENCE PLCs KEYENCE KV Series Component Communications * Copying *2 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 sets can be set for the set point. Number of connected Digital Temperature Controllers: 32 max. (including master) 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. ELSEC is a registered trademark of itsubishi Electric Corporation. KEYENCE is a registered trademark of Keyence Corporation. * A Temperature Controller with version. or higher is required. A Temperature Controller with version 2. or higher is required for the F Series or the KV Series. *2 Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Dielectric strength, VAC for min Vibration resistance 5 Hz, 98 m/s 2 Weight E54-CT: Approx..5 g, E54-CT3: Approx. 5 g Accessories Armatures (2) (E54-CT3 only) Plugs (2) Heater Burnout Alarms and SSR Failure Alarms CT input (for heater current detection) aximum heater current Input current indication accuracy Heater burnout alarm setting range * SSR failure alarm setting range *2 odels with detection for singlephase heaters: One input odels with detection for singlephase or three-phase heaters: Two inputs 5 A AC ±5% FS ± digit max.. to 49.9 A (in units of. A) inimum detection time: ms *3. to 49.9 A (in units of. A) inimum detection time: ms *4 * For heater burnout alarms, the heater current will be measured when the control output is, and the output will turn if the heater current is lower than the set value (i.e., heater burnout detection current value). *2 For SSR failure alarms, the heatercurrent will be measured when the control output is, and the output will turn if the heater current is higher than the set value (i.e., SSR failure detection current value). *3 The value is 3 ms for a control period of. s or.2 s. *4 The value is 35 ms for a control period of. s or.2 s. Electrical Life Expectancy Curve for Relays (Reference Values) Life ( 4 operations) E5CC 25 VAC, 3 VDC (resistive load) cosφ = Switching current (A)

12 E5CC/E5CC-U External Connections E5CC Control output Relay output 25 VAC, 3A (resistive load) Voltage output (for driving SSR) 2 VDC, 2 ma Linear current output to 2 ma DC 4 to 2 ma DC Load: 5 Ω max. () Control outputs, 2 Control output 2 Voltage output (for driving SSR) 2 VDC, 2 ma Auxiliary outputs to 3 Relay outputs odels with 3 auxiliary outputs: 25 VAC, 2 A (resistive load) R Q C QQ odels with odels with odels with 2 Voltage Output Linear Voltage Outputs (for Driving SSR) Current Output (for Driving SSR) odels with Relay Output 2 3 OUT R OUT Q OUT C OUT + Q Q OUT2 E5CC-@@ 5 () (2) (3) (4) (5) (6) Terminal type The E5CC 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. CQ odels with 2 Outputs: Linear Current Output and Voltage (for Driving SSR) OUT + C Q OUT2 (2) Auxiliary Outputs Auxiliary outputs, 2, 3 7 Auxiliary output 3 8 Auxiliary output 2 9 Auxiliary output (5) Sensor (Temperature/Analog) Input TC Pt I V A B ma B - V (6) Options Event Inputs and 2, and CT 3 4 EV EV2 5 6 CT Communications (RS-485), CT, and CT2 B(+) 3 RS A(-) 5 6 CT CO 7 CT2 8 4 Communications (RS-485), and Event Inputs 3 and 4 B(+) 3 RS A(-) 5 EV3 EV Event Inputs to EV 5 EV2 6 7 EV3 8 EV4 (3) Input Power Supply to 24 VAC 24 VAC/DC Event Inputs and 2, and Transfer Output 3 4 EV 5 EV V I - (no polarity) 7 Event Inputs and 2, and Remote Input 3 4 EV 5 EV2 + 6 V + ma 7-8 E5CC-U The E5CC-U 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. E5CC- U- Control output Auxiliary outputs and 2 Relay output 25 VAC, 3 A (resistive load) Control output Voltage output (for driving SSR) 2 VDC, 2 ma Linear current output 4 to 2 ma DC to 2 ma DC Load: 5 Ω max. Relay output (three terminals used) DT, 25 VAC, 3 A (resistive load) ma I + V V + Control output + Pt A Sensor (temperature/analog) input Control output : Q odels with Voltage Output (for Driving SSR) Output Q + TC B B C odels with Linear Current Output Output C + Auxiliary output Auxiliary output 2: Control output (cooling side) Input power supply to 24 VAC 24 VAC/DC (no polarity) Output R RW odels with Relay Output Note:. 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 EC standards, the cable that connects the sensor must be 3 m or less. If the cable length exceeds 3 m, compliance with EC standards will not be possible. 4. Connect 3 crimped terminals. Connect 3.5 crimped terminals for the E5CC-U. 2

13 E5CC/E5CC-U Isolation/Insulation Block Diagrams E5CC odels with 3 Auxiliary Outputs Sensor input, CT inputs, and remote input Communications and event inputs Power supply Voltage output (for driving SSR), linear current output, and transfer output Relay output Auxiliary outputs, 2, 3 : Reinforced insulation : Functional isolation Note: Auxiliary outputs to 3 are not insulated. E5CC-U odels with 2 Auxiliary Outputs Sensor input Power supply Voltage output (for driving SSR) and linear current output Relay output Auxiliary outputs and 2 : Reinforced insulation : Functional isolation Nomenclature E5CC E5CC-U Temperature unit Operation indicators Front panel No. display Top View of E5CC Top View of E5CC-U or specified parameter No. 2 display or specified parameter value Use the U D Keys to set the parameter. Press O Key once to go to Adjustment Level. Press O Key for at least 3 seconds to go to Initial Setting Level. Use S Key to change the digit (default setting). Use the Key to change to another parameter. Top-panel Setup Tool port 3

14 E5CC/E5CC-U Dimensions Controllers (Unit: mm) E5CC Waterproof Packing (Accessory) ounting Adapter (Accessory) Terminal Cover (E53-COV7) (Sold separately) The Setup Tool port is on the top of the Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller. Panel Cutout ounted Separately Group ounted (48 number of units - 2.5) +. Recommended panel thickness is to 5 mm Group mounting is not possible in the vertical direction. (aintain the specified mounting space between Controllers.) 6 min. 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. To attach the USB-Serial Conversion Cable to the control panel, use a panel thickness of to 2.5 mm. E5CC-U ounting Adapter (Accessory) The Setup Tool port is on the top of the Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller. Panel Cutout ounted Separately Group ounted (48 number of units - 2.5) +. 6 min. Recommended panel thickness is to 5 mm Group mounting is not possible in the vertical direction. (aintain 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. To attach the USB-Serial Conversion Cable to the control panel, use a panel thickness of to 2.5 mm

15 Accessories (Order Separately) E5CC/E5CC-U USB-Serial Conversion Cable E58-CIFQ2 (2) LED (RD) USB connector (type A plug) LED (PWR) LED (SD) Serial connector Terminal Covers 48 Terminal Covers E53-COV7 E53-COV23 (Three Covers provided.) Terminal Cover (E53-COV23) Terminal Cover (for the P3GA- Back-connecting Socket) Y92A-48G Twelve, 6.4-dia. 34 Y92A-48G UP P C Note: You can attach the P3GA- Back-connecting Socket for finger protection. Waterproof Packing Y92S-P8 (for DIN 48 48) The Waterproof Packing is provided only with the E5CC. 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 three years as a rough standard.) The Waterproof Packing does not need to be attached if a waterproof structure is not required. The E5CC-U cannot be waterproofed even if the Waterproof Packing is attached. 5

16 E5CC/E5CC-U Current Transformers E54-CT E54-CT dia..5 Two, 3.5 dia dia. 2 dia Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT aximum continuous heater current: 5 A (5/6 Hz) Number of windings: 4±2 Winding resistance: 8±2 Ω Output voltage (Eo) V (r.m.s.) V mv μv Frequency: 5 Hz kω Ω RL=Ω 3% % Distortion factor % 4 4 ma,a Thru-current (Io) A (r.m.s.) E54-CT3 Accessories Armature Approx. 3 dia. Plug 8 5 Two, 3 (depth: 4) 3 Connection Example Armature Plug Lead Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 aximum continuous heater current: 2 A (5/6 Hz) (aximum continuous heater current for an OR Digital Temperature Controller is 5 A.) Number of windings: 4±2 Winding resistance: 8±.8 Ω V Frequency: 5 Hz Output voltage (Eo) V (r.m.s.) mv kω 5Ω Ω 5Ω RL=Ω Distortion factor % 3% % Approx. 6 dia. (22) μv ma,a Thru-current (Io) A (r.m.s.) 6

17 E5CC/E5CC-U Adapter Y92F-45 Note:. Use this Adapter when the Front Panel has already been prepared for the 2. Only black is available. 3. You cannot use the E58-CIFQ2 USB-Serial Conversion Cable if you use the Y92F-45 Adapter. To use the USB-Serial Conversion Cable to make the settings, do so before you mount the Temperature Controller in the panel to 77.6 Fixture (Accessory) ounted to E5CC Panel ( to 8 mm) ounting Adapter Y92F-3 (Accessory) DIN Track ounting Adapter Y92F To back of the E5CC Note: This Adapter cannot be used together with the Terminal Cover. Remove the Terminal Cover to use the Adapter This Adapter is used to mount the E5CC to a DIN Track. If you use the Adapter, there is no need for a plate to mount in the panel or to drill mounting holes in 3.5 the panel. 6 ounted to E5CC

18 E5CC/E5CC-U Watertight Cover Y92A-48N 2.9 (2) 4 ounting Adapter Y92F-49 The ounting Adapter is provided with the Temperature Controller. Order this Adapter separately if it becomes lost or damaged Protective Cover Protective Cover Y92A-48D Note: This Protective Cover cannot be used Y92A-48H if the Waterproof Packing is installed. This Protective Cover is soft type. It is able to operate the controller with using this cover. This Protective Cover is hard type. Please use it for the mis-operation prevention etc. E5CC-U Wiring Socket Front-connecting Socket P2CF- Terminal Layout/Internal Connections Eleven, sems screws 7.8 (Top View) 7 max ounting Holes Two, 4.5 dia. mounting holes Two, 4.5-dia ±.2 holes 2 Note: Can also be mounted to a DIN track 4 5 max. 3.2 max. Note:. A model with finger protection (P2CF--E) is also available. 2. You cannot use the P2CF- or P2CF--E together with the Y92F-45. Back-connecting Socket P3GA- 27dia. 4 7 Eleven, 3.5 Terminal Layout/Internal Connections sems screws 3 (Bottom View) Note:. Using any other sockets will adversely affect accuracy. Use only the specified sockets. 2. A Protective Cover for finger protection (Y92A-48G) is also available. 3. You cannot use the P3GA- together with the Y92F-45. 8

19 EO 9

20 Digital Temperature Controller E5EC/E5AC (48 96 mm/96 96 mm) Large White Display That s Easier to Read. Easy to Use, from odel Selection to Setup and Operation. A Complete Range of I/O Capacities, Functions, and Performance. Handles ore Applications. A white LCD display with a height of approx. 8 mm for the E5EC and 25 mm for the E5AC improves visibility. Tool ports are provided both on the top panel and the front panel. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the C-Thermo (sold separately). Refer to your OR website for the most recent information on applicable safety standards. High-speed sampling at 5 ms. odels are available with up to 4 auxiliary outputs, up to 6 event inputs, a transfer output, and a remote input to cover a wide Refer to Safety Precautions on page 9. range of applications. Short body with depth of only 6 mm. Easy connections to a PLC with programless communications. Use component communications to link Temperature Controllers to each other. The new position-proportional control models allow you to control valves as well. ain I/O Functions mm E5EC mm E5AC Sensor Input Universal input Thermocouple Pt Analog current/voltage Indication Accuracy Thermocouple input: ±.3% of Pt input: ±.2% of Analog input: ±.2% of FS E5EC E5AC Three-level Display, SV, and V displayed at the same time. Control Output Relay output Voltage output (for driving SSR) Linear current output 4-digit displays Sampling Period 5 ms Event Inputs None Remote Input None Serial Communications None RS-485 PF (shift) Key Setup Tool port on front panel Temperature status display Simple programming Independent heating and cooling PID control Changed parameter display Display brightness setting Control Output 2 Voltage output (for driving SSR) Relay output Linear current output Auxiliary Outputs 4 Transfer Output None This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C Digital Temperature Controllers User s anual (Cat. No. H74) E5@C Digital Temperature Controllers Communications anual (Cat. No. H75) 2

21 odel Number Legend and Standard odels odel Number Legend odels with Screw Terminals 5 -@@@ (Example: E5EC-R4A5-) A B C D E F E5AC-@@ 5 -@@@ (Example: E5AC-R4A5-) A B C D E F E5EC/E5AC odel E5EC E5AC Option selection conditions * A B C D E F Control outputs and 2 No. of auxiliary outputs Power supply voltage Terminal type Input type Options eaning mm mm Control output Control output 2 R Relay output None Q Voltage output (for driving SSR) None *2 C Linear current output None QQ QR Voltage output (for driving SSR) Voltage output (for driving SSR) Voltage output (for driving SSR) Relay output RR Relay output Relay output *2 CC Linear current output Linear current output *2 CQ Linear current output Voltage output (for driving SSR) PR Position-proportional relay output Position-proportional relay output *3 4 4 (auxiliary outputs and 2 with same common and auxiliary outputs 3 and 4 with same common) A to 24 VAC D 24 VAC/DC 5 Screw terminals (with cover) Control outputs and 2 Universal input For R, Q, QQ, QR, RR, or CQ For C or CC For PR HB alarm and HS alarm Communications Event inputs Remote Transfer Input output Selectable Selectable Selectable Selectable Selectable 4 -- RS Selectable Selectable 9 2 (for 3-phase heaters) RS Selectable Selectable -- 6 Provided. Provided. Selectable Provided. Provided. Selectable Selectable 4 -- RS Provided. Provided. *. The options that can be selected depend on the type of control output. *2. The control output cannot be used as a transfer output. *3. A model with four auxiliary outputs must be selected. Heating and Cooling Control l Using Heating and Cooling Control A Control Output Assignment If there is no control output 2, an auxiliary output is used as the cooling control output. If there is a control output 2, the two control outputs are used for heating and cooling. (It does not matter which output is used for heating and which output is used for cooling.) B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. 2

22 E5EC/E5AC Optional Products (Order Separately) USB-Serial Conversion Cable odel E58-CIFQ2 Communications Conversion Cable odel E58-CIFQ2-E Note: Always use this product together with the E58-CIFQ2. This Cable is used to connect to the front-panel Setup Tool port. Terminal Covers odel E53-COV24 Note: The Terminal Covers E53-COV24 are provided with the Digital Temperature Controller. Waterproof Packing Current Transformers (CTs) Hole diameter odel 5.8 mm E54-CT 2. mm E54-CT3 C-Thermo Support Software odel EST2-2C-V4 Note: C-Thermo version 4.5 or higher is required for the E5EC. For the system requirements for the C-Thermo, refer to information on the EST2-2C-V4 on the OR website ( Applicable Controller odel E5EC Y92S-P9 E5AC Y92S-P Note: This Waterproof Packing is provided with the Digital Temperature Controller. Waterproof Cover Applicable Controller E5EC E5AC odel Y92A-49N Y92A-96N Front Port Cover odel Y92S-P7 Note: This Front Port Cover is provided with the Digital Temperature Controller. ounting Adapter odel Y92F-5 Note: This ounting Adapter is provided with the Digital Temperature Controller. 22

23 Specifications Ratings Power supply voltage Operating voltage range Power consumption Sensor input Input impedance Control method Control output Auxiliary output Event input Transfer output Remote input Relay output Potentiometer input Setting method Indication method Voltage output (for driving SSR) E5EC E5AC E5EC/E5AC A in model number: to 24 VAC, 5/6 Hz D in model number: 24 VAC, 5/6 Hz; 24 VDC 85% to % of rated supply voltage odels with option selection of :6.6 VA max. at to 24 VAC, and 4. VA max. at 24 VAC or 2.3 W max. at 24 VDC All other models: 8.3 VA max. at to 24 VAC, and 5.5 VA max. at 24 VAC or 3.2 W max. at 24 VDC odels with option selection of :7. VA max. at to 24 VAC, and 4.2 VA max. at 24 VAC or 2.4 W max. at 24 VDC All other models: 9. VA max. at to 24 VAC, and 5.6 VA max. at 24 VAC or 3.4 W max. at 24 VDC Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt or JPt Infrared temperature sensor (ESB): to 7 C, 6 to 2 C, 5 to 65 C, or 4 to 26 C Analog input Current input: 4 to 2 ma or to 2 ma Voltage input: to 5 V, to 5 V, or to V Current input: 5 Ω max., Voltage input: Ω min. (Use a : connection when connecting the ES2-HB/THB.) / or 2-PID control (with autotuning) ST-NO, 25 VAC, 5 A (resistive load), electrical life:, operations, minimum applicable load: 5 V, ma (reference value) Output voltage: 2 VDC ±2% (PNP), max. load current: 4 ma, with short-circuit protection circuit (The maximum load current is 2 ma for models with two control outputs.) Linear current output 4 to 2 ma DC/ to 2 ma DC, load: 5 Ω max., resolution: approx., Number of outputs 4 Output specifications ST-NO. relay outputs, 25 VAC, odels with 4 outputs: 2 A (resistive load), Electrical life:, operations, inimum applicable load: ma at 5 V (reference value) Number of inputs 2, 4 or 6 (depends on model) External contact input specifications Number of outputs Output specifications Contact input: : kω max., : kω min. Non-contact input: : Residual voltage:.5 V max., : Leakage current:. ma max. Current flow: Approx. 7 ma per contact (only on models with a transfer output) Current output: 4 to 2 ma DC, Load: 5 Ω max., Resolution: Approx., Linear voltage output: to 5 VDC, load: kω min., Resolution: Approx., Current input: 4 to 2 ma DC or to 2 ma DC (input impedance: 5 Ω max.) Voltage input: to 5 V, to 5 V, or to V (input impedance: Ω min.) Ω to kω Digital setting using front panel keys -segment digital display and individual indicators Character height: E5EC: : 8. mm, SV:. mm, V: 7.8 mm E5AC: : 25. mm, SV: 5. mm, V: 9.5 mm Three displays Contents: /SV/V, /SV/ulti-, or /SV/Remaining soak time Numbers of digits: 4 digits each for P, SV, and V displays ulti Up to eight set points ( to 7) can be saved and selected using event inputs, key operations, or serial communications. Bank switching None anual output, heating/cooling control, loop burnout alarm, ramp, other alarm functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 4% AT, % AT, V limiter, input digital Other functions filter, self tuning, robust tuning, input shift, run/stop, protection functions, extraction of square root, V change rate limit, logic operations, temperature status display, simple programming, moving average of input value, and display brightness setting Ambient operating temperature - to 55 C (with no condensation or icing), for 3-year warranty: - to 5 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, m max. Recommended fuse T2A, 25 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 6- compliant) 23

24 E5EC/E5AC Input Ranges Thermocouple/Platinum Resistance Thermometer (Universal inputs) Sensor type Sensor specification Temperature range ( C) Platinum resistance thermometer Thermocouple Pt JPt K J T E L U N R S B W PLII Infrared temperature sensor Set value Shaded settings are the default settings to 7 C 2 6 to 2 C 22 5 to 65 C 23 4 to 26 C 24 The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C , IEC L: Fe-CuNi, DIN U: Cu-CuNi, DIN W: W5Re/W26Re, AST E JPt: JIS C , JIS C Pt: JIS C , IEC 675 PL II: According to Platinel II electromotive force charts from BASF (previously Engelhard) Analog input Input type Current Voltage Input specification 4 to 2 ma to 2 ma to 5 V to 5 V to V Usable in the following ranges by scaling: Setting range -999 to 9999, to 999.9, to or to Set value

25 E5EC/E5AC Alarm Types Each alarm can be independently set to one of the following 9 alarm types. The default is 2: Upper limit. (see note.) Auxiliary outputs are allocated for alarms. delays and delays ( to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm is set to a heater alarm (HA) and the Alarm Type parameter is not displayed. To use alarm, set the output assignment to alarm. Set value Alarm type Alarm output operation When alarm value is positive When alarm value is negative Description of function Alarm function Output No alarm Set the upward deviation in the set point for the alarm upper Upper- and lower-limit * L H limit (H) and the lower deviation in the set point for the alarm *2 lower limit (L). The alarm is when the is outside this deviation range. 2 (default) Upper-limit 3 Lower-limit Upper- and lower-limit range * Upper- and lower-limit with standby sequence * Upper-limit with standby sequence Lower-limit with standby sequence Absolute-value upper-limit 9 Absolute-value lower-limit Absolute-value upper-limit with standby sequence Absolute-value lower-limit with standby sequence 2 LBA (alarm type only) - *7 3 change rate alarm - * absolute-value upper-limit alarm absolute-value lower-limit alarm V absolute-value upper-limit alarm *9 V absolute-value lower-limit alarm *9 R absolute-value upper-limit alarm * R absolute-value lower-limit alarm * *5 Standard Control Heating/Cooling Control (Heating V) Standard Control L L H H *3 *4 Standard Control Heating/Cooling Control (Heating V) Always Standard Control Heating/Cooling Control (Cooling V) Heating/Cooling Control (Cooling V) V V V V R R Always V V R R Set the upward deviation in the set point by setting the alarm value (). The alarm is when the is higher than the by the deviation or more. Set the downward deviation in the set point by setting the alarm value (). The alarm is when the is lower than the by the deviation or more. 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 when the is inside this deviation range. A standby sequence is added to the upper- and lower-limit alarm (). *6 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 if the process value is larger than the alarm value () regardless of the set point. The alarm will turn if the process value is smaller than the alarm value () regardless of the set point. A standby sequence is added to the absolute-value upperlimit alarm (8). *6 A standby sequence is added to the absolute-value lowerlimit alarm (9). *6 This alarm type turns the alarm when the set point () is higher than the alarm value (). This alarm type turns the alarm when the set point () is lower than the alarm value (). This alarm type turns the alarm when the manipulated variable (V) is higher than the alarm value (). This alarm type turns the alarm when the manipulated variable (V) is lower than the alarm value (). This alarm type turns the alarm when the remote (R) is higher than the alarm value (). This alarm type turns the alarm when the remote (R) is lower than the alarm value (). 25

26 E5EC/E5AC * With set values, 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:, Upper- and lower-limit alarm Case Case 2 Case 3 (Always ) H<, L< L H L H H L H<, L> H<, L> H>, L< H L H L H < L H > L H>, L< H L H L *3. Set value: 4, Upper- and lower-limit range Case Case 2 Case 3 (Always ) H<, L< L H L H H L H<, L> H>, L< H<, L> H < L H > L H L H L H L H>, L< H L *4. Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above *2 Case and 2 Always when the upper-limit and lower-limit hysteresis overlaps. Case 3: Always *5. Set value: 5, Upper- and lower-limit with standby sequence Always when the upper-limit and lower-limit hysteresis overlaps. *6. Refer to the E5@C Digital Temperature Controllers User's anual (Cat. No. H74) for information on the operation of the standby sequence. *7. Refer to the E5@C Digital Temperature Controllers User's anual (Cat. No. H74) for information on the loop burnout alarm (LBA). This setting cannot be used with a position-proportional model. *8. Refer to the E5@C Digital Temperature Controllers User's anual (Cat. No. H74) for information on the change rate alarm. *9. When heating/cooling control is performed, the V absolute upper limit alarm functions only for the heating operation and the V absolute lower limit alarm functions only for the cooling operation. *. This value is displayed only when a remote input is used. It functions in both Local ode and Remote ode. 26

27 E5EC/E5AC Characteristics Indication accuracy (at the ambient temperature of 23 C) Transfer output accuracy Remote Input Type Influence of temperature *2 Influence of voltage *2 Input sampling period Hysteresis Proportional band (P) Integral time (I) Thermocouple: (±.3% of indication value or ± C, whichever is greater) ± digit max. * Platinum resistance thermometer: (±.2% of indication value or ±.8 C, whichever is greater) ± digit Analog input: ±.2% FS ± digit max. CT input: ±5% FS ± digit max. Potentiometer input: ±5% FS ± digit max. ±.3% FS max. ±.2% FS ± digit max. Thermocouple input (R, S, B, W, PL II): (±% of indication value or ± C, whichever is greater) ± digit max. Other thermocouple input: (±% of indication value or ±4 C, whichever is greater) ± digit max. *3 Platinum resistance thermometer: (±% of indication value or ±2 C, whichever is greater) ± digit max. Analog input: ±%FS ± digit max. CT input: ±5% FS ± digit max. Remote input: ±% FS ± digit max. 5ms Temperature input:. to C or F (in units of. C or F) Analog input:.% to 99.99% FS (in units of.% FS) Temperature input:. to C or F (in units of. C or F) Analog input:. to 999.9% FS (in units of.% FS) Standard, heating/cooling, or Position-proportional (Close): to 9999 s (in units of s),. to s (in units of. s) Position-proportional (Floating): to 9999 s (in units of s),. to s (in units of. s)*4 Derivative time (D) to 9999 s (in units of s),. to s (in units of. s) *4 Proportional band (P) for cooling Temperature input:. to C or F (in units of. C or F) Analog input:. to 999.9% FS (in units of.% FS) Integral time (I) for cooling to 9999 s (in units of s),. to s (in units of. s) *4 Derivative time (D) for cooling to 9999 s (in units of s),. to s (in units of. s) *4 Control period.,.2,.5, to 99 s (in units of s) anual reset value. to.% (in units of.%) Alarm setting range -999 to 9999 (decimal point position depends on input type) Influence of signal source resistance Insulation resistance Dielectric strength alfunction Vibration Resistance alfunction Shock Resistance E5EC Weight E5AC Degree of protection emory protection Setup Tool Setup Tool port Standards Approved standards Conformed standards Thermocouple:. C/Ω max. ( Ω max.) Platinum resistance thermometer:. C/Ω max. ( Ω max.) 2 Ω min. (at 5 VDC) 3, VAC, 5/6 Hz for min between terminals of different charge to 55 Hz, 2 m/s 2 for min each in, Y, and Z directions to 55 Hz, 2 m/s 2 for 2 hrs each in, Y, and Z directions m/s 2, 3 times each in, Y, and Z directions 3 m/s 2, 3 times each in, Y, and Z directions Controller: Approx. 2 g, Adapter: Approx. 4 g 2 Controller: Approx. 25 g, Adapter: Approx. 4 g 2 Front panel: IP66, Rear case: IP2, Terminals: IP Non-volatile memory (number of writes:,, times) C-Thermo version 4.5 or higher E5EC/E5AC top panel: An E58-CIFQ2 USB-Serial Conversion Cable is used to connect to a USB port on the computer.*5 E5EC/E5AC front panel: An E58-CIFQ2 USB-Serial Conversion Cable and E58-CIFQ2-E Conversion Cable are used together to connect to a USB port on the computer.*5 UL 6-, Korean Radio Waves Act (Act 564) EN 6- (IEC 6-): Pollution Degree 2, overvoltage category II, Lloyd's standards *6 EI EN6326 Radiated Interference Electromagnetic Field Strength: EN 55 Group, class A Noise Terminal Voltage: EN 55 Group, class A ES: EN 6326 ESD Immunity: EN EC Electromagnetic Field Immunity: EN Burst Noise Immunity: EN Conducted Disturbance Immunity: EN Surge Immunity: EN Voltage Dip/Interrupting Immunity: EN 6-4- * The indication accuracy of K thermocouples in the -2 to 3 C range, T and N thermocouples at a temperature of - C max., and U and L thermocouples at any temperatures is ±2 C ± digit max. The indication accuracy of the B thermocouple at a temperature of 4 C max. is not specified. The indication accuracy of B thermocouples at a temperature of 4 to 8 C is ±3 C max. The indication accuracy of the R and S thermocouples at a temperature of 2 C max. is ±3 C ± digit max. The indication accuracy of W thermocouples is (±.3% of or ±3 C, whichever is greater) ± digit max. The indication accuracy of PL II thermocouples is (±.3% of or ±2 C, whichever is greater) ± digit max. *2 Ambient temperature: - C to 23 C to 55 C, Voltage range: -5% to % of rated voltage *3 K thermocouple at - C max.: ± C max. *4 The unit is determined by the setting of the Integral/Derivative Time Unit parameter. *5 External communications (RS-485) and USB-serial conversion cable communications can be used at the same time. *6 Refer to information on maritime standards in Shipping Standards on page 92 for compliance with Lloyd's Standards. 27

28 E5EC/E5AC USB-Serial Conversion Cable Applicable OS Windows P, Vista, or 7 Applicable software Applicable models C-Thermo version 4.5 or higher E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.. DTE speed Connector specifications Power supply Power supply voltage Current consumption Output voltage Output current 38,4 bps Computer: USB (type A plug) Digital Temperature Controller: Special serial connector Bus power (Supplied from USB host controller.)* 5 VDC 45 ma max. 4.7±.2 VDC (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) 25 ma max. (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Ambient operating temperature to 55 C (with no condensation or icing) Ambient operating humidity % to 8% Storage temperature -2 to 6 C (with no condensation or icing) Storage humidity % to 8% Altitude 2, m max. Weight Approx. 2 g Windows is a registered trademark of icrosoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction anual included with the Cable for the installation procedure. Communications Specifications Transmission line connection method Communications Synchronization method Protocol Baud rate* Transmission code Data bit length* Stop bit length* RS-485: ultidrop RS-485 (two-wire, half duplex) Start-stop synchronization CompoWay/F, or odbus 96, 92, 384, or 576 bps ASCII 7 or 8 bits or 2 bits Vertical parity (none, even, odd) Error detection Block check character (BCC) with CompoWay/F or CRC-6 odbus Flow control None Interface RS-485 Retry function None Communications buffer 27 bytes Communications to 99 ms response wait time Default: 2 ms * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions Programless communications * 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 6 for the F Series) Applicable PLCs OR PLCs CS Series, CJ Series, or CP Series itsubishi Electric PLCs ELSEC Q Series, L Series, or F Series (compatible with the F2 or F3 (excluding the FS)) KEYENCE PLCs KEYENCE KV Series Component Communications * Copying *2 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 sets can be set for the set point. Number of connected Digital Temperature Controllers: 32 max. (including master) 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. ELSEC is a registered trademark of itsubishi Electric Corporation. KEYENCE is a registered trademark of Keyence Corporation. * A Temperature Controller with version. or higher is required. A Temperature Controller with version 2. or higher is required for the F Series or the KV Series. *2 Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Dielectric strength, VAC for min Vibration resistance 5 Hz, 98 m/s 2 Weight E54-CT: Approx..5 g, E54-CT3: Approx. 5 g Accessories Armatures (2) (E54-CT3 only) Plugs (2) Heater Burnout Alarms and SSR Failure Alarms CT input (for heater current detection) aximum heater current Input current indication accuracy Heater burnout alarm setting range * SSR failure alarm setting range *2 odels with detection for singlephase heaters: One input odels with detection for singlephase or three-phase heaters: Two inputs 5 A AC ±5% FS ± digit max.. to 49.9 A (in units of. A) inimum detection time: ms *3. to 49.9 A (in units of. A) inimum detection time: ms *4 *. For heater burnout alarms, the heater current will be measured when the control output is, and the output will turn 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, and the output will turn if the heater current is higher than the set value (i.e., SSR failure detection current value). *3. The value is 3 ms for a control period of. s or.2 s. *4. The value is 35 ms for a control period of. s or.2 s. Electrical Life Expectancy Curve for Relays (Reference Values) Life ( 4 operations) E5EC/E5AC 25 VAC, 3 VDC (resistive load) cosφ = Switching current (A) 28

29 External Connections E5EC/E5AC E5EC/E5AC Control output Relay output 25 VAC, 5 A (resistive load) Voltage output (for driving SSR) 2 VDC, 4 ma When There Is a Control Output 2: 2 ma Linear current output to 2 ma DC 4 to 2 ma DC Load: 5 Ω max. () Control output R odels with Relay Output OUT R E5EC-@@ 5 Q odels with Voltage Output (for Driving SSR) C odels with Linear Current Output OUT + 3 OUT + - Q C E5AC-@@ 5 () (2) (3) (4) (5) (6) () (2) (3) (4) (5) (6) Terminal type Terminal type Control output 2 Auxiliary outputs to 4 (6) Options Relay output 4 odels with 4 auxiliary Communications outputs: 25 VAC, 2 A and 2 event inputs (resistive load) Relay output 25 VAC, 5 A (resistive load) Voltage output (for driving SSR) 2 VDC, 2 ma Linear current output to 2 ma DC 4 to 2 ma DC Load: 5 Ω max. QQ QR odels with 2 Voltage odels with Voltage Output (for Outputs (for Driving SSR) Driving SSR) and Relay Output 3 OUT OUT Q - Q Q R OUT2 6 OUT2 RR PR CC odels with 2 odels with 2 odels with 2 Relay Outputs Position-proportional Linear Current Relay Output Outputs Open OUT OUT 3 R 3 3 R + C R R - C 6 OUT2 6 6 Close OUT2 CQ odels with 2 Outputs: Linear Current Output and Voltage (for Driving SSR) 3 OUT + (2) Auxiliary Outputs C 4 - Auxiliary outputs, 2, 3, Auxiliary output Q 8 OUT2 Auxiliary output 3 9 Auxiliary output 2 Auxiliary output 2 (3) Input Power Supply to 24 VAC 24 VAC/DC 2 2 (no polarity) Potentiometer Input 9 O 2 W 2 C Isolation/Insulation Block Diagrams odels with 4 Auxiliary Outputs B(+) RS-485 A(-) EV EV (5) Sensor (Temperature/Analog) Input TC Pt I V A B ma B - V event inputs EV3 EV4 EV EV2 6 event Inputs, CT input, transfer output, and remote input EV5 3 EV6 + 3 Transfer V + I 32 output Remote V + 35 ma event Inputs, transfer output, and remote input EV5 3 EV6 + 3 Transfer V + output I V + Remote 35 ma 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. EV3 EV4 EV EV2 CT EV3 EV4 EV EV2 9 Communications, 2 event inputs, and 2 CT inputs B(+) RS-485 A(-) EV EV2 CT CT2 CO EV3 5 5 EV EV 8 8 EV2 9 9 CT Communications, 4 event Inputs, transfer output, and remote input B(+) 3 RS A(-) EV5 3 EV6 + 3 Transfer V + 32 output I Remote V + ma event inputs and CT input EV EV Note:. 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 EC standards, the cable that connects the sensor must be 3 m or less. If the cable length exceeds 3 m, compliance with EC standards will not be possible. 4. Connect 3 crimped terminals. Sensor input, CT inputs, potentiometer input, and remote input Power Supply Communications and event inputs Voltage output (for driving SSR), linear current output, and transfer output Relay output Auxiliary outputs, 2 Auxiliary outputs 3, 4 : Reinforced insulation : Functional isolation Note: Auxiliary outputs to 2 and 3 to 4 are not insulated. 29

30 E5EC/E5AC Nomenclature E5EC Front panel Temperature unit Operation indicators No. display or specified parameter No. 2 display or specified parameter value Top View of E5EC Front-panel Setup Tool port No. 3 display anipulated value or other value anipulated Use the Uvalue D Keys or other to set value the parameter. Use S Key to change the digit (default setting). Top-panel Setup Tool port Press O Key once to go to Adjustment Level. Use the Key to change to another parameter. Press O Key for at least 3 seconds to go to Initial Setting Level. E5AC Front Panel Temperature unit Operation indicators No. display or specified parameter Top View of E5AC Front-panel Setup Tool port No. 2 display or specified parameter value No. 3 display anipulated value or other value Press the U or D Key to set the parameter. Press the S Key to change the digit (default setting). Top-panel Setup Tool port Press the O Key once to go to the Adjustment Level. Press the O Key for at least 3 seconds to go to the Initial Setting Level. Press the Key to change to another parameter. 3

31 Dimensions Controllers E5EC/E5AC (Unit: mm) E5EC (64) The Setup Tool ports are on the front and top of the Digital Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller. Waterproof Packing (Accessory) ounting Adapter (Accessory) ounted Separately Group ounted * (48 number of units 2.5) +. * Selections for Control Outputs and 2: QQ, QR, RR, CC, PR, or CQ If you also specify, 3, or 4 for the option selection and use group mounting, the ambient temperature must be 45 C or less. If the ambient temperature is 55 C, maintain the following mounting spaces between Controllers min. 2 min. Group mounting does not allow waterproofing min. Recommended panel thickness is to 8 mm. Group mounting is not possible in the vertical direction. (aintain 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. 3

32 E5EC/E5AC E5AC (64) x 96 9 x 9 9 Waterproof Packing (Accessory) ounting Adapter (Accessory) The Setup Tool ports are on the front and top of the Digital Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller. ounted Separately Group ounted * (96 number of units 3.5) Recommended panel thickness is to 8 mm. Group mounting is not possible in the vertical direction. (aintain 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. 2 min. Group mounting does not allow waterproofing

33 E5EC/E5AC Accessories (Order Separately) USB-Serial Conversion Cable E58-CIFQ2 (2) LED (RD) USB connector (type A plug) LED (PWR) LED (SD) Serial connector Conversion Cable E58-CIFQ2-E Conversion Cable Connecting to the E58-CIFQ2 USB-Serial Conversion Cable (5) 25 (2) Note: Always use this product together with the E58-CIFQ2. E58-CIFQ2 (Order Separately) Conversion Cable Terminal Covers Waterproof Packing E53-COV24 (Three Covers provided.) Y92S-P9 (for DIN 48 96) Y92S-P (for DIN 96 96) The Waterproof Packing is provided with the Temperature Controller. The degree of protection when the Waterproof Packing is used is IP66. Also, keep the Port Cover on the front-panel Setup Tool port of the E5EC/E5AC securely closed. To maintain an IP66 degree of protection, the Waterproof Packing and the Port Cover for the front-panel Setup Tool port must be periodically replaced because they may deteriorate, shrink, or harden depending on the operating environment. The replacement period will vary with the operating environment. Check the required period in the actual application. Use 3 years or sooner as a guideline. If a waterproof structure is not required, then the Waterproof Packing does not need to be installed. Setup Tool Port Cover for top panel Y92S-P7 ounting Adapter Y92F-5 (for DIN 48 96) Order this Port Cover separately if the Port Cover on the front-panel Setup Tool port is lost or damaged. The Waterproof Packing must be periodically replaced because it may deteriorate, shrink, or harden depending on the operating environment. One pair is provided with the Controller. Order this Adapter separately if it becomes lost or damaged. 33

34 E5EC/E5AC Watertight Cover Y92A-49N (48 96) Watertight Cover Y92A-96N (96 96) 2.9 (2) 2.9 (2) Current Transformers E54-CT E54-CT dia..5 Two, 3.5 dia. 2 dia. Thru-current (Io) vs. Output Voltage (Eo) 2.8 (Reference Values) E54-CT 2.36 dia aximum continuous heater current: 5 A (5/6 Hz) Number of windings: 4±2 Winding resistance: 8±2 Ω V Frequency: 5 Hz Output voltage (Eo) V (r.m.s.) mv μv kω Ω RL= Ω 3% % Distortion factor % ma,a E54-CT3 Accessories Armature Approx. 3 dia. 8 Plug Two, 3 (depth: 4) 3 Connection Example Armature Plug Lead Thru-current (Io) A (r.m.s.) Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 aximum continuous heater current: 2 A (5/6 Hz) (aximum continuous heater current for an OR Digital Temperature Controller is 5 A.) Number of windings: 4±2 Winding resistance: 8±.8 Ω Output voltage (Eo) V (r.m.s.) V Frequency: 5 Hz kω 5Ω mv Ω 5Ω RL=Ω Distortion factor % 3% % Approx. 6 dia. μv (22) ma,a Thru-current (Io) A (r.m.s.) 34

35 EO 35

36 Digital Temperature Controller E5DC (22.5 mm Wide, and DIN Track-mounting Type) The E5DC ounts to DIN Track and Is Ideal for Connections to HIs and PLCs. It provides the Same Easy Operation and Advanced Performance as the Rest of the Series. A slim body at mm (D W) that fits into narrow control panels and mounts to DIN Track. Removable terminal block for easy replacement to simplify maintenance. High-speed sampling at 5 ms for applications with high-speed temperature increases. Easy connections to a PLC with programless communications. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the C-Thermo (sold separately). odels are available with up to 2 auxiliary outputs and event input to complete basic functions. A white display (height: 8.5 mm) is easy to read when setting up, checking alarms, and making settings in a control panel mm Wide, and DIN Track-mounting Type E5DC Refer to your OR website for the most recent information on applicable safety standards. Refer to Safety Precautions on page 9. ain I/O Functions Sensor Input Universal input Thermocouple Pt Analog current/voltage E5DC Dual displays: /SV 4-digit displays Indication Accuracy Thermocouple input: ±.3% of Pt input: ±.2% of Analog input: ±.2% of FS Sampling Period 5 ms Control Output Relay output Voltage output (for driving SSR) Linear current output Auxiliary Outputs None 2 Event Inputs None Serial Communications None RS-485 PF (shift) Key Temperature status display Simple programming Independent heating and cooling PID control Changed parameter display Display brightness setting This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C Digital Temperature Controllers User s anual (Cat. No. H74) E5@C Digital Temperature Controllers Communications anual (Cat. No. H75) 36

37 odel Number Legend and Standard odels odel Number Legend odels with (Example: E5DC-RAS-5) A B C D E F E5DC odel E5DC A B C D E F Control output No. of auxiliary outputs Power supply voltage Terminal type Input type Options eaning 22.5 mm wide and mounts to DIN Track Control output R Relay output Q Voltage output (for driving SSR) C Linear current output *5 None 2 2 (one common) A to 24 VAC D 24 VAC/DC S Screw terminals Universal input HB alarm and HS alarm Communications Event input * *2 2 RS * RS * * * Option can be selected only if two auxiliary outputs are selected. *2 Options 2 and 7 can be selected only if the control output is a relay output or voltage output and two auxiliary outputs are selected. *3 Option 5 cannot be selected if the control output is a relay output or voltage output and two auxiliary outputs are selected. *4 Options 6 can be selected only if the control output is a linear current output and two auxiliary outputs are selected. *5 The control output cannot be used as a transfer output. List of odels Options odel odel Control output No. of auxiliary outputs HB alarm and HS alarm No. of event inputs Communications Power supply voltage to 24 VAC Power supply voltage 24 VAC/DC Relay output Voltage output (for driving SSR) Linear current output Detection for singlephase heater -- Detection for singlephase heater -- RS-485 E5DC-RAS-5 E5DC-RDS E5DC-R2AS- E5DC-R2DS- RS-485 E5DC-R2AS-2 E5DC-R2DS-2 -- E5DC-R2AS-7 E5DC-R2DS-7 RS-485 E5DC-QAS-5 E5DC-QDS E5DC-Q2AS- E5DC-Q2DS- RS-485 E5DC-Q2AS-2 E5DC-Q2DS-2 -- E5DC-Q2AS-7 E5DC-Q2DS-7 RS-485 E5DC-CAS-5 E5DC-CDS E5DC-C2AS- E5DC-C2DS- RS-485 E5DC-C2AS-5 E5DC-C2DS-5 -- E5DC-C2AS-6 E5DC-C2DS-6 Note: These products are sold as a set with a terminal block (i.e., Terminal Unit). Heating and Cooling Control Using Heating and Cooling Control A Control Output Assignment An auxiliary output is used as the cooling control output. B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. 37

38 E5DC Optional Products (Order Separately) USB-Serial Conversion Cable End Plate odel E58-CIFQ2 odel PFP- Conversion Cable odel E58-CIFQ2-E Note: Always use this product together with the E58-CIFQ2. This Cable is used to connect to the front-panel Setup Tool port. Current Transformers (CTs) Hole diameter odel 5.8 mm E54-CT 2. mm E54-CT3 ounting Adapters Short Bars odel Y92F-53 odel Y92S-P Spacer DIN Tracks Unit Labels End Cover odel PFP-S odel PFP-N PFP-5N odel Y92S-L2 odel Y92F-54 C-Thermo Support Software odel EST2-2C-V4 Note: C-Thermo version 4.6 or higher is required for the E5DC. For the system requirements for the C-Thermo, refer to information on the EST2-2C-V4 on the OR website ( 38

39 E5DC Specifications Ratings Power supply voltage Operating voltage range Power consumption Sensor input Input impedance Control method Control output Auxiliary outputs Event inputs Setting method Relay output Indication method ulti Bank switching Other functions A in model number: to 24 VAC, 5/6 Hz D in model number: 24 VAC, 5/6 Hz; 24 VDC 85% to % of rated supply voltage 4.9 VA max. at to 24 VAC, and 2.8 VA max. at 24 VDC or.5 W max. at 24 VDC Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt or JPt Infrared temperature sensor (ESB): to 7 C, 6 to 2 C, 5 to 65 C, or 4 to 26 C Analog input Current input: 4 to 2 ma or to 2 ma Voltage input: to 5 V, to 5 V, or to V Current input: 5 Ω max., Voltage input: Ω min. (Use a : connection when connecting the ES2-HB/ THB.) / control or 2-PID control (with auto-tuning) ST-NO, 25 VAC, 3 A (resistive load), electrical life:, operations, minimum applicable load: 5 V, ma (reference value) Voltage output (for driving SSR) Output voltage 2 VDC ±2% (PNP), max. Load current: 2 ma, with short-circuit protection circuit Linear current output 4 to 2 ma DC/ to 2 ma DC, load: 5 Ω max., resolution: Approx., Number of outputs 2 (depends on model) Output specifications ST-NO relay outputs: 25 VAC, 2 A (resistive load), Electrical life:, operations, inimum applicable load: ma at 5 V (reference value) Number of inputs (depends on model) External contact input specifications Ambient operating temperature Contact input : kω max., : kω min. Non-contact input : Residual voltage.5 V max.; : Leakage current. ma max. Current flow: approx. 7 ma per contact Digital setting using front panel keys -segment digital displays and individual indicators Character height: : 8.5 mm, SV: 8. mm Up to eight set points ( to 7) can be saved and selected using the event inputs, key operations, or serial communications.* None anual output, heating/cooling control, loop burnout alarm, ramp, other alarm functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 4% AT, % AT, V limiter, input digital filter, self tuning, robust tuning, input shift, run/stop, protection functions, extraction of square root, V change rate limit, logic operations, temperature status display, simple programming, moving average of input value, and display brightness setting to 55 C (with no condensation or icing), for 3-year warranty: to 5 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, m max. Recommended fuse T2A, 25 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 6- compliant) * Only two set points are selectable for event inputs. 39

40 E5DC Input Ranges Thermocouple/Platinum Resistance Thermometer (Universal inputs) Sensor type Sensor specification Temperature range ( C) Platinum resistance thermometer Thermocouple Pt JPt K J T E L U N R S B W PLII Infrared temperature sensor Set value Shaded settings are the default settings to 7 C 2 6 to 2 C 22 5 to 65 C 23 4 to 26 C 24 The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C , IEC L: Fe-CuNi, DIN U: Cu-CuNi, DIN W: W5Re/W26Re, AST E JPt: JIS C , JIS C Pt: JIS C , IEC 675 PL II: According to Platinel II electromotive force charts from BASF (previously Engelhard) Analog input Input type Current Voltage Input specification 4 to 2 ma to 2 ma to 5 V to 5 V to V Usable in the following ranges by scaling: Setting range -999 to 9999, to 999.9, to or to Set value

41 E5DC Alarm Types Each alarm can be independently set to one of the following 7 alarm types. The default is 2: Upper limit. (See note.) Auxiliary outputs are allocated to alarms. delays and delays ( to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm is set to a heater alarm (HA) and the Alarm Type parameter is not displayed. To use alarm, set the output assignment to alarm. Set value Alarm type Alarm output operation When alarm value is positive When alarm value is negative Alarm function Output No alarm Upper- and lower-limit * 2 (default) Upper-limit 3 Lower-limit Upper- and lower-limit range * *5 L H *2 L H *3 Upper- and lower-limit with standby sequence * Upper-limit with standby sequence Lower-limit with standby sequence Absolute-value upper-lim it 9 Absolute-value lower-limit Absolute-value upper-limit with standby sequence Absolute-value lower-limit with standby sequence 2 LBA (alarm type only) - *7 3 change rate alarm - * absolute-value upper-limit alarm absolute-value lower-limit alarm Standard Control V absolute-value upper-limit alarm *9 V absolute-value lower-limit alarm *9 L H V Heating/Cooling Control (Heating V) Standard Control V V Heating/Cooling Control (Cooling V) V *4 Description of function 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 when the is outside this deviation range. Set the upward deviation in the set point by setting the alarm value (). The alarm is when the is higher than the by the deviation or more. Set the downward deviation in the set point by setting the alarm value (). The alarm is when the is lower than the by the deviation or more. 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 when the is inside this deviation range. A standby sequence is added to the upper- and lower-limit alarm (). *6 A standby sequence is added to the upper-limit alarm (2). *6 A standby sequence is added to the lower-limit alarm (3). *6 Standard Control V Heating/Cooling Control (Heating V) Always Standard Control V Heating/Cooling Control (Cooling V) Always The alarm will turn if the process value is larger than the alarm value () regardless of the set point. The alarm will turn if the process value is smaller than the alarm value () regardless of the set point. A standby sequence is added to the absolute-value upperlimit alarm (8). *6 A standby sequence is added to the absolute-value lowerlimit alarm (9). *6 This alarm type turns the alarm when the set point () is higher than the alarm value (). This alarm type turns the alarm when the set point () is lower than the alarm value (). This alarm type turns the alarm when the manipulated variable (V) is higher than the alarm value (). This alarm type turns the alarm when the manipulated variable (V) is lower than the alarm value (). 4

42 E5DC * With set values, 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:, Upper- and lower-limit alarm Case Case 2 Case 3 (Always ) H<, L< L H L H H L H<, L> H<, L> H>, L< H L H L H < L H > L H>, L< H L H L *3 Set value: 4, Upper- and lower-limit range Case Case 2 Case 3 (Always ) H<, L< L H L H H L H<, L> H L H<, L> H < L H>, L< H > L H L H L H>, L< H L *4 Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above at *2 In cases and 2 above, the alarm is always if the upperand lower-limit hysteresis overlaps. In case 3, the alarm is always. *5 Set value: 5, Upper- and lower-limit alarm with standby sequence The alarm is always if upper- and lower-limit hysteresis overlaps. *6 Refer to the E5@C Digital Temperature Controllers User s anual (Cat. No. H74) for information on the operation of the standby sequence. *7 Refer to the E5@C Digital Temperature Controllers User s anual (Cat. No. H74) for information on the LBA. *8 Refer to the E5@C Digital Temperature Controllers User s anual (Cat. No. H74) for information on the change rate alarm. *9 When heating/cooling control is performed, the V absolutevalue upper-limit alarm functions only for the heating operation and the V absolute-value lower-limit alarm functions only for the cooling operation. 42

43 E5DC Characteristics Indication accuracy (when mounted individually, ambient temperature of 23 C) Thermocouple:* (±.3 % of indication value or ± C, whichever is greater) ± digit max. Platinum resistance thermometer: (±.2 % of indication value or ±.8 C, whichever is greater) ± digit max. Analog input: ±.2% FS ± digit max. CT input: ±5% FS ± digit max. Influence of temperature *2 Thermocouple input (R, S, B, W, PL II): (±% of indication value or ± C, whichever is greater) ± digit max. Other thermocouple input: (±% of indication value or ±4 C, whichever is greater) ± digit max. *3 Influence of voltage *2 Platinum resistance thermometer: (±% of indication value or ±2 C, whichever is greater) ± digit max. Analog input: ±% FS ± digit max. CT input: ±5% FS ± digit max. Installation influence (E5DC only) R, S, B, W, or PLII thermocouple: (±% of or ± C, whichever is greater) ± digit max. Other thermocouple: (±% of or ±4 C, whichever is greater) ± digit max. *3 Input sampling period 5 ms Hysteresis Temperature input:. to C or F (in units of. C or F) Analog input:.% to 99.99% FS (in units of.% FS) Proportional band (P) Temperature input:. to C or F (in units of. C or F) Analog input:.% to 999.9% FS (in units of.% FS) Integral time (I) to 9999 s (in units of s),. to s (in units of. s) *4 Derivative time (D) to 9999 s (in units of s),. to s (in units of. s) *4 Proportional band (P) for cooling Temperature input:. to C or F (in units of. C or F) Analog input:.% to 999.9% FS (in units of.% FS) Integral time (I) for cooling to 9999 s (in units of s),. to s (in units of. s) *4 Derivative time (D) for cooling to 9999 s (in units of s),. to s (in units of. s) *4 Control period.,.2,.5, to 99 s (in units of s) anual reset value.% to.% (in units of.%) Alarm setting range,999 to 9,999 (decimal point position depends on input type) Influence of signal source resistance Thermocouple:. C/Ω max. ( Ω max.), Platinum resistance thermometer:. C/Ω max. ( Ω max.) Insulation resistance 2 Ω min. (at 5 VDC) Dielectric strength 3, VAC, 5/6 Hz for min between terminals of different charge Vibration alfunction to 55 Hz, 2 m/s 2 for min each in, Y and Z directions Resistance to 55 Hz, 2 m/s 2 for 2 hr each in, Y, and Z directions Shock alfunction m/s 2, 3 times each in, Y, and Z directions Resistance 3 m/s 2, 3 times each in, Y, and Z directions Weight Controller: Approx. 2 g Degree of protection ain unit: IP2, Terminal unit: IP emory protection Non-volatile memory (number of writes:,, times) Setup Tool C-Thermo version 4.6 or higher E5DC bottom panel: An E58-CIFQ2 USB-Serial Conversion Cable is used to connect a USB port on the Setup Tool port computer. *5 E5DC front panel: An E58-CIFQ2 USB-Serial Conversion Cable and E58-CIFQ2-E Conversion Cable are used together to connect a USB port on the computer.*5 Standards Approved standards UL 6-, Korean Radio Waves Act (Act 564) Conformed standards EN 6- (IEC 6-): Pollution Degree 2, overvoltage category II EI: EN6326 Radiated Interference Electromagnetic Field Strength: EN55 Group, class A Noise Terminal Voltage: EN55 Group, class A ES: EN6326 EC ESD Immunity: EN6-4-2 Electromagnetic Field Immunity: EN6-4-3 Burst Noise Immunity: EN6-4-4 Conduction Disturbance Immunity: EN6-4-6 Surge Immunity: EN6-4-5 Voltage Dip/Interrupting Immunity: EN6-4- * The indication accuracy of K thermocouples in the 2 to,3 C range, T and N thermocouples at a temperature of C or less, and U and L thermocouples at any temperature is ±2 C ± digit max. The indication accuracy of B thermocouples at a temperature of 4 C max. is not specified. The indication accuracy of B thermocouples at a temperature of 4 to 8 C is ±3 C max. The indication accuracy of R and S thermocouples at a temperature of 2 C max. is ±3 C ± digit max. The indication accuracy of W thermocouples is (±.3% of or ±3 C, whichever is greater) ± digit max. The indication accuracy of PLII thermocouples is (±.3% of or ±2 C, whichever is greater) ± digit max. *2 Ambient temperature: to 23 to 55 C, Voltage range: 5% to % of rated voltage *3 K thermocouple at C max: ± C max. *4 The unit is determined by the setting of the Integral/Derivative Time Unit parameter. *5 External serial communications (RS-485) and USB-Serial Conversion Cable communications can be used at the same time. 43

44 E5DC USB-Serial Conversion Cable Specifications Applicable OS Windows P, Vista, or 7 Applicable software C-Thermo version 4.6 or higher Applicable models E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2. DTE speed 38,4 bps Connector specifications Computer: USB (Type A plug) Digital Temperature Controller: Special serial connector Power supply Bus power (supplied from the USB host controller) * Power supply voltage 5 VDC Current consumption 45 ma max. Output voltage 4.7±.2 VDC (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Output current 25 ma max. (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Ambient operating temperature to 55 C (with no condensation or icing) Ambient operating humidity % to 8% Storage temperature 2 to 6 C (with no condensation or icing) Storage humidity % to 8% Altitude 2, m max. Weight Approx. 2 g Windows is a registered trademark of icrosoft Corporation in the United States and other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction anual included with the Cable for the installation procedure. Communications Specifications Transmission line connection method Communications Synchronization method Protocol Baud rate* Transmission code Data bit length * Stop bit length * Error detection Flow control Interface Retry function Communications buffer Communications response wait time RS-485: ultidrop RS-485 (two-wire, half-duplex) Start-stop synchronization CompoWay/F or odbus 9,6, 9,2, 38,4, or 57,6 bps ASCII 7 or 8 bits or 2 bits Vertical parity (none, even, or odd) Block check character (BCC) with CompoWay/F or CRC-6 with odbus None RS-485 None 27 bytes to 99 ms Default: 2 ms * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions Program- less communications * 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 the PLC. No communications programming is required. Number of connected Digital Temperature Controllers: 32 max. (Up to 6 for the F Series) Applicable PLCs: OR PLCs CS Series, CJ Series, or CP Series itsubishi Electric PLCs ELSEC Q Series, L Series, or F Series (compatible with the F2 or F3 (excluding the FS)) KEYENCE PLCs KEYENCE KV Series When Digital Temperature Controllers are connected, set points and RUN/STOP commands can be sent from the Digital Component Temperature Controller that is set as the master to the Digital Communi- Temperature Controllers that are set as slaves. cations * Slope and sets can be set for the set point. Number of connected Digital Temperature Controllers: 32 max. (including master) When Digital Temperature Controllers are connected, the parameters can be copied from the Digital Temperature Control Copying *2 ler that is set as the master to the Digital Temperature Controllers that are set as slaves. ELSEC is a registered trademark of itsubishi Electric Corporation. KEYENCE is a registered trademark of Keyence Corporation. * A Temperature Controller with version 2. or higher is required for the F Series or the KV Series. *2 Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Dielectric strength, VAC for min Vibration resistance 5 Hz, 98 m/s 2 Weight E54-CT: Approx..5 g, E54-CT3: Approx. 5 g Accessories (E54-CT3 only) Armatures (2) Plugs (2) Heater Burnout Alarms and SSR Failure Alarms CT input (for heater current detection) aximum heater current Input current indication accuracy Heater burnout alarm setting range * SSR failure alarm setting range *2 odels with detection for single-phase heaters: input 5 A AC ±5% FS ± digit max.. to 49.9 A (in units of. A) inimum detection time: ms *3. to 49.9 A (in units of. A) inimum detection time: ms *4 * For heater burnout alarms, the heater current will be measured when the control output is, and the output will turn 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, and the output will turn if the heater current is higher than the set value (i.e., SSR failure detection current value). *3 The value is 3 ms for a control period of. s or.2 s. *4 The value is 35 ms for a control period of. s or.2 s. Electrical Life Expectancy Curve for Control Output Relay (Reference Values) Life ( 4 operations) E5DC 25 VAC, 3 VDC (resistive load) cosφ = Switching current (A) 44

45 External Connections E5DC Control output Relay output 25 VAC, 3 A (resistive load) Voltage output (for driving SSR) 2 VDC, 2 ma Linear current output to 2 ma DC 4 to 2 ma DC Load: 5 Ω max. Auxiliary outputs and 2 Relay outputs 25 VAC: 2 A (resistive load) 2 2 (no polarity) The E5DC 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. E5DC S Control output Options Input Power Supply Control Output to 24 VAC 24 VAC/DC R Q C relay voltage output linear output (for driving SSR) current output 5 6 R Q + C E5DC 5 9 Options 2 Communications and CT B(+) 3 RS-485 CT 4 A(-) Auxiliary Outputs 9 Auxiliary output 2 Auxiliary output 5 Communications B(+) 3 RS A(-) 6 One event input Sensor (Temperature/Analog) Input TC Pt I V A B ma B - V Do not connect anything to the terminals that are shaded gray EV One event input and one CT CT EV Note:. 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 EC standards, the cable that connects the sensor must be 3 m or less. If the cable length exceeds 3m, compliance with EC standards will not be possible. 4. Connect 3 crimped terminals. Isolation/Insulation Block Diagrams Sensor input and CT input Power supply Communications and event input Voltage output (for driving SSR) and linear current output Relay output Auxiliary outputs and 2 : Reinforced insulation : Functional isolation Note: Auxiliary outputs to 2 are not insulated. 45

46 E5DC Nomenclature E5DC Front panel Operation indicators Press O Key once to go to Adjustment Level. Press O Key for at least 3 seconds to go to Initial Setting Level. No. display or specified parameter No.2 display or specified parameter value Use the Key to change to another parameter. Use the U D Keys to set the parameter. Bottom View of E5DC Bottompanel Setup Tool port Use S Key to change the digit (default setting). Front-panel Setup Tool port Dimensions Controllers (Unit: mm) E5DC (85) ounting Adapter (Accessory: Sold separately) The Setup Tool ports are on the front and bottom of the Digital Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Digital Temperature Controller. ounted Separately Two-Unit ounting Group ounted (22.5 number of units) min Recommended panel thickness is to 8 mm. Group mounting is not possible in the vertical direction. (aintain the specified mounting space between Controllers.) When two or more Digital Temperature Controllers are mounted, make sure that the surrounding temperature does not exceed the allowable operating temperature specified in the specifications. 46

47 Accessories (Order Separately) E5DC USB-Serial Conversion Cable E58-CIFQ2 (2) LED (RD) USB connector (type A plug) LED (PWR) LED (SD) Serial connector Conversion Cable E58-CIFQ2-E Conversion Cable Connecting to the E58-CIFQ2 USB-Serial Conversion Cable (5) 25 (2) Note: Always use this product together with the E58-CIFQ2. E58-CIFQ2 (sold separately) Conversion Cable Current Transformers E54-CT E54-CT dia..5 Two, 3.5 dia dia. 2 dia Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT aximum continuous heater current: 5 A (5/6 Hz) Number of windings: 4±2 Winding resistance: 8±2 Ω V Frequency: 5 Hz Output voltage (Eo) V (r.m.s.) mv μv kω Ω RL=Ω Distortion factor % 3% % E54-CT3 Accessories Armature Approx. 3 dia. 8 Plug 4 4 Two, 3 holes (depth: 4) 5 3 Connection Example Armature Plug Lead ma,a Thru-current (Io) A (r.m.s.) Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 aximum continuous heater current: 2 A (5/6 Hz) (aximum continuous heater current for an OR Digital Temperature Controller is 5 A.) Number of windings: 4±2 Winding resistance: 8±.8 Ω V Frequency: 5 Hz Distortion factor kω % 5Ω 3% % Output voltage (Eo) V (r.m.s.) mv Ω 5Ω RL=Ω Approx. 6 dia. μv (22) ma,a Thru-current (Io) A (r.m.s.) 47

48 E5DC ounting Adapters Y92F-53 (Two included.) This accessory is not included with the product. Order it separately to mount the product to a panel Short Bars Y92S-P (Four included.) Use this product to connect between terminals (for power supplies, communications, etc.) when you use multiple E5DC Controllers End Plate PFP- 4 8 pan head screw DIN Tracks PFP-N PFP-5N.5 4 spring washer ±.5 35±.3 27± (5)* (5)* * Dimensions in parentheses are for the PFP-5N. Spacer PFP-S Unit Labels Y92S-L The Unit Labels for the Digital Panel eter are used. Use either the C or F label from the sheet. 6.5 End Cover Y92F-54 (Two included.) Use the End Cover when you mount the E5DC to a panel to hide the gap between the Controller and the panel. 48

49 EO 49

50 Programmable Temperature Controller (Digital Controller) E5CC-T (48 48 mm) Programmable Controllers Join the E5C Series! Program up to 256 segments can handle a wide variety of applications. Set up to 8 Programs (Patterns) with 32 Segments (Steps) Each The white display with a height of 5.2 mm improves visibility. High-speed sampling at 5 ms. odels are available with up to 3 auxiliary outputs, up to 4 event inputs, and a transfer output to cover a wide range of applications. Short body with depth of only 6 mm. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the C-Thermo (sold separately). Easy connections to a PLC with programless communications. Use component communications to link Temperature Controllers to each other mm E5CC-T Refer to your OR website for the most recent information on applicable safety standards. Refer to Safety Precautions on page 9. ain I/O Functions E5CC-T is scheduled to be released in January, 24. Sensor Input Universal input Thermocouple Pt Analog current/voltage E5CC-T Dual displays: /SV 4-digit displays Indication Accuracy Thermocouple input: ±.3% of Pt input: ±.2% of Analog input: ±.2% of FS Sampling Period 5 ms Event Inputs None 2 4 Serial Communications None RS-485 PF (shift) Key Temperature status display Operating and editing the program Independent heating and cooling PID control Parameter mask setting Display brightness setting Control Output Relay output Voltage output (for driving SSR) Linear current output Control Output 2 None Voltage output (for driving SSR) Auxiliary Outputs 3 Transfer Output None This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C-T Digital Temperature Controllers Programmable Type User s anual (Cat. No. H85) E5@C-T Digital Temperature Controllers Programmable Type Communications anual (Cat. No. H86) 5

51 odel Number Legend and Standard odels odel Number Legend odels with Screw Terminals (Example: E5CC-TR3A5-) A BCDE F E5CC-T odel A B C D E F Control outputs and 2 No. of auxiliary outputs Power supply voltage Terminal type Input type Options eaning E5CC-T mm Programmable Type Control output Control output 2 R Relay output None Q Voltage output (for driving SSR) None * C Linear current output *2 None QQ Voltage output (for driving SSR) Voltage output (for driving SSR) CQ Linear current output *2 Voltage output (for driving SSR) 3 3 (one common) A to 24 VAC D 24 VAC/DC 5 Screw terminals (with cover) Universal input HB alarm and HS alarm Communications Event inputs Transfer output * * 3 2 (for 3-phase heaters) RS RS Provided. *. Options with HB and HS alarms ( and 3) cannot be selected if a linear current output is selected for the control output. *2. The linear current output cannot be used as a transfer output. Heating and Cooling Control Using Heating and Cooling Control A Control Output Assignment If there is no control output 2, an auxiliary output is used as the cooling control output. If there is a control output 2, the two control outputs are used for heating and cooling. (It does not matter which output is used for heating and which output is used for cooling.) B Control If PID control is used, you can set PID control separately for heating and cooling. This allows you to handle control systems with different heating and cooling response characteristics. 5

52 E5CC-T Optional Products (Order Separately) USB-Serial Conversion Cable Terminal Covers odel E58-CIFQ2 odel E53-COV7 E53-COV23 Note: The Terminal Covers E53-COV23 are provided with the Digital Temperature Controller. The E53-COV cannot be used. Refer to page 6 for the mounted dimensions. Waterproof Packing Front Covers Type Hard Front Cover Soft Front Cover C-Thermo Support Software odel Y92A-48H Y92A-48D odel EST2-2C-V4 Note: C-Thermo version 4.6 or higher is required for the E5CC-T. For the system requirements for the C-Thermo, refer to information on the EST2-2C-V4 on the OR website ( odel Y92S-P8 Note: The Waterproof Packing is provided with the Digital Temperature Controller. Current Transformers (CTs) Hole diameter odel 5.8 mm E54-CT 2. mm E54-CT3 Adapter odel Y92F-45 Note: Use this Adapter when the panel has already been prepared for an E5B@ Controller. Waterproof Cover odel Y92A-48N ounting Adapter odel Y92F-49 Note: This ounting Adapter is provided with the Digital Temperature Controller. DIN Track ounting Adapter odel Y92F-52 52

53 E5CC-T Specifications Ratings Power supply voltage Operating voltage range Power consumption Sensor input Input impedance Control method Control output Auxiliary output Event input Transfer output Setting method Indication method Bank switching Other functions Relay output A in model number: to 24 VAC, 5/6 Hz D in model number: 24 VAC, 5/6 Hz; 24 VDC 85% to % of rated supply voltage 7.5 VA max. at to 24 VAC, and 4. VA max. at 24 VAC or 2.3 W max. at 24 VDC Temperature input Thermocouple: K, J, T, E, L, U, N, R, S, B, W, or PL II Platinum resistance thermometer: Pt or JPt Infrared temperature sensor (ESB): to 7 C, 6 to 2 C, 5 to 65 C, or 4 to 26 C Analog input Current input: 4 to 2 ma or to 2 ma Voltage input: to 5 V, to 5 V, or to V Current input: 5 Ω max., Voltage input: Ω min. (Use a : connection when connecting the ES2-HB/THB.) 2-PID control (with auto-tuning) or / control ST-NO, 25 VAC, 3 A (resistive load), electrical life:, operations, minimum applicable load: 5 V, ma (reference value) * Voltage output (for driving SSR) Output voltage: 2 VDC ±2% (PNP), max. load current: 2 ma, with short-circuit protection circuit Linear current output 4 to 2 ma DC/ to 2 ma DC, load: 5 Ω max., resolution: approx.,* Number of outputs 3 Output specifications ST-NO relay outputs, 25 VAC, odels with 3 outputs: 2 A (resistive load), Electrical life:, operations, inimum applicable load: ma at 5 V (reference value) Number of inputs 2 or 4 (depends on model) External contact input specifications Number of outputs Output specifications Ambient operating temperature Contact input: : kω max., : kω min. Non-contact input: : Residual voltage:.5 V max., : Leakage current:. ma max. Current flow: Approx. 7 ma per contact (only on models with a transfer output) Current output: 4 to 2 ma DC, load: 5 Ω max., resolution: approx., Linear voltage output: to 5 VDC, load: kω min., resolution: Approx., Digital setting using front panel keys -segment digital display and individual indicators Character height: : 5.2 mm, SV: 7. mm None anual output, heating/cooling control, loop burnout alarm, other alarm functions, heater burnout (HB) alarm (including SSR failure (HS) alarm), 4% AT, % AT, V limiter, input digital filter, robust tuning, input shift, protection functions, extraction of square root, V change rate limit, logic operations, temperature status display, moving average of input value, and display brightness setting - to 55 C (with no condensation or icing), for 3-year warranty: - to 5 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, m max. Recommended fuse T2A, 25 VAC, time-lag, low-breaking capacity Installation environment Installation Category II, Pollution Degree 2 (IEC 6- compliant) * You cannot select a relay output or linear current output for control output 2. 53

54 E5CC-T Input Ranges Thermocouple/Platinum Resistance Thermometer (Universal inputs) Sensor type Sensor specification Temperature range ( C) Platinum resistance thermometer Thermocouple Pt JPt K J T E L U N R S B W PLII Infrared temperature sensor Set value Shaded settings are the default settings to 7 C 2 6 to 2 C 22 5 to 65 C 23 4 to 26 C 24 The applicable standards for the input types are as follows: K, J, T, E, N, R, S, B: JIS C , IEC L: Fe-CuNi, DIN U: Cu-CuNi, DIN W: W5Re/W26Re, AST E JPt: JIS C , JIS C Pt: JIS C , IEC 675 PL II: According to Platinel II electromotive force charts from BASF (previously Engelhard) Analog input Input type Current Voltage Input specification 4 to 2 ma to 2 ma to 5 V to 5 V to V Usable in the following ranges by scaling: Setting range -999 to 9999, to 999.9, to or to Set value

55 E5CC-T Alarm Types Each alarm can be independently set to one of the following 7 alarm types. The default is 2: Upper limit. (see note.) Auxiliary outputs are allocated for alarms. delays and delays ( to 999 s) can also be specified. Note: In the default settings for models with HB or HS alarms, alarm is set to a heater alarm (HA) and the Alarm Type parameter is not displayed. To use alarm, set the output assignment to alarm. Set value Alarm type Alarm output operation When alarm value is positive When alarm value is negative Alarm function Output No alarm Upper- and lower-limit * 2 (default) Upper-limit 3 Lower-limit Upper- and lower-limit range * *5 L H *2 L H *3 Upper- and lower-limit with standby sequence * Upper-limit with standby sequence Lower-limit with standby sequence Absolute-value upper-lim it 9 Absolute-value lower-limit Absolute-value upper-limit with standby sequence Absolute-value lower-limit with standby sequence 2 LBA (alarm type only) - *7 3 change rate alarm - * absolute-value upper-limit alarm absolute-value lower-limit alarm Standard Control V absolute-value upper-limit alarm *9 V absolute-value lower-limit alarm *9 L H V Heating/Cooling Control (Heating V) Standard Control V V Heating/Cooling Control (Cooling V) V *4 Description of function 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 when the is outside this deviation range. Set the upward deviation in the set point by setting the alarm value (). The alarm is when the is higher than the by the deviation or more. Set the downward deviation in the set point by setting the alarm value (). The alarm is when the is lower than the by the deviation or more. 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 when the is inside this deviation range. A standby sequence is added to the upper- and lower-limit alarm (). *6 A standby sequence is added to the upper-limit alarm (2). *6 A standby sequence is added to the lower-limit alarm (3). *6 Standard Control V Heating/Cooling Control (Heating V) Always Standard Control V Heating/Cooling Control (Cooling V) Always The alarm will turn if the process value is larger than the alarm value () regardless of the set point. The alarm will turn if the process value is smaller than the alarm value () regardless of the set point. A standby sequence is added to the absolute-value upperlimit alarm (8). *6 A standby sequence is added to the absolute-value lowerlimit alarm (9). *6 This alarm type turns the alarm when the set point () is higher than the alarm value (). This alarm type turns the alarm when the set point () is lower than the alarm value (). This alarm type turns the alarm when the manipulated variable (V) is higher than the alarm value (). This alarm type turns the alarm when the manipulated variable (V) is lower than the alarm value (). 55

56 E5CC-T * With set values, 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:, Upper- and lower-limit alarm Case Case 2 Case 3 (Always ) H<, L< L H L H H L H<, L> H<, L> H>, L< H L H L H < L H > L H>, L< H L H L *3 Set value: 4, Upper- and lower-limit range Case Case 2 Case 3 (Always ) L H L H H L H<, L> H>, L< H < L H > L H<, L< H<, L> H L H L H L H>, L< H L *4 Set value: 5, Upper- and lower-limit with standby sequence For Upper- and Lower-Limit Alarm Described Above *2 Case and 2 Always when the upper-limit and lower-limit hysteresis overlaps. Case 3: Always *5. Set value: 5, Upper- and lower-limit with standby sequence Always when the upper-limit and lower-limit hysteresis overlaps. *6 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's anual (Cat. No. H85) for information on the operation of the standby sequence. *7 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's anual (Cat. No. H85) for information on the loop burnout alarm (LBA). *8 Refer to the E5@C-T Digital Temperature Controllers Programmable Type User's anual (Cat. No. H85) for information on the change rate alarm. *9 When heating/cooling control is performed, the V absolute upper limit alarm functions only for the heating operation and the V absolute lower limit alarm functions only for the cooling operation. 56

57 E5CC-T Characteristics Thermocouple: (±.3% of indication value or ± C, whichever is greater) ± digit max. * Indication accuracy Platinum resistance thermometer: (±.2% of indication value or ±.8 C, whichever is greater) ± digit (at the ambient temperature of 23 C) Analog input: ±.2% FS ± digit max. CT input: ±5% FS ± digit max. Transfer output accuracy ±.3% FS max. Influence of temperature *2 Thermocouple input (R, S, B, W, PL II): (±% of indication value or ± C, whichever is greater) ± digit max. Other thermocouple input: (±% of indication value or ±4 C, whichever is greater) ± digit max. *3 Influence of voltage *2 Platinum resistance thermometer: (±% of indication value or ±2 C, whichever is greater) ± digit max. Analog input: ±%FS ± digit max. CT input: ±5% FS ± digit max. Input sampling period 5 ms Hysteresis Temperature input:. to C or F (in units of. C or F) Analog input:.% to 99.99% FS (in units of.% FS) Proportional band (P) Temperature input:. to C or F (in units of. C or F) Analog input:.% to 999.9% FS (in units of.% FS) Integral time (I) to 9999 s (in units of s),. to s (in units of. s) *4 Derivative time (D) to 9999 s (in units of s),. to s (in units of. s) *4 Proportional band (P) for cooling Temperature input:. to C or F (in units of. C or F) Analog input:.% to 999.9% FS (in units of.% FS) Integral time (I) for cooling to 9999 s (in units of s),. to s (in units of. s) *4 Derivative time (D) for cooling to 9999 s (in units of s),. to s (in units of. s) *4 Control period.,.2,.5, to 99 s (in units of s) anual reset value. to.% (in units of.%) Alarm setting range -999 to 9999 (decimal point position depends on input type) Influence of signal source resistance Thermocouple:. C/Ω max. ( Ωmax.) Platinum resistance thermometer:. C/Ω max. ( Ω max.) Insulation resistance 2 Ω min. (at 5 VDC) Dielectric strength 3, VAC, 5/6 Hz for min between terminals of different charge Vibration alfunction to 55 Hz, 2 m/s 2 for min each in, Y, and Z directions Resistance to 55 Hz, 2 m/s 2 for 2 hrs each in, Y, and Z directions Shock alfunction m/s 2, 3 times each in, Y, and Z directions Resistance 3 m/s 2, 3 times each in, Y, and Z directions Weight Controller: Approx. 2 g, Adapter: Approx. g Degree of protection Front panel: IP66, Rear case: IP2, Terminals: IP emory protection Non-volatile memory (number of writes:,, times) Setup Tool C-Thermo version 4.6 or higher Setup Tool port E5CC-T top panel: An E58-CIFQ2 USB-Serial Conversion Cable is used to connect to a USB port on the computer. *5 Standards Approved standards UL 6-, Korean Radio Waves Act (Act 564) Conformed standards EN 6- (IEC 6-): Pollution Degree 2, overvoltage category II EI: EN6326 Radiated Interference Electromagnetic Field Strength: EN 55 Group, class A Noise Terminal Voltage:, class A EN 55 Group ES: EN 6326 EC ESD Immunity: EN Electromagnetic Field Immunity: EN Burst Noise Immunity: EN Conducted Disturbance Immunity: EN Surge Immunity: EN Voltage Dip/Interrupting Immunity: EN 6-4- * The indication accuracy of K thermocouples in the -2 to 3 C range, T and N thermocouples at a temperature of - C max., and U and L thermocouples at any temperatures is ±2 C ± digit max. The indication accuracy of the B thermocouple at a temperature of 4 C max. is not specified. The indication accuracy of B thermocouples at a temperature of 4 to 8 C is ±3 C max. The indication accuracy of the R and S thermocouples at a temperature of 2 C max. is ±3 C ± digit max. The indication accuracy of W thermocouples is (±.3% of or ±3 C, whichever is greater) ± digit max. The indication accuracy of PL II thermocouples is ±.3% of or ±2 C, whichever is greater, ± digit max. *2 Ambient temperature: - C to 23 C to 55 C, Voltage range: -5% to % of rated voltage *3 K thermocouple at - C max.: ± C max. *4 The unit is determined by the setting of the Integral/Derivative Time Unit parameter. *5 External communications (RS-485) and USB-serial conversion cable communications can be used at the same time. 57

58 E5CC-T Program Control Number of programs (patterns) 8 Number of segments (steps) 32 Segment setting method Segment times Alarm setting Reset operation Startup operation PID sets Alarm function Program status control Wait operation Time signals Program status output Program startup operation Operation end operation Program shift Time setting (Segment set with set point and time.) Slope setting (Segment set with segment type, set point, slope, and time.) h min to 99 h 59 min min s to 99 min 59 s Set separately for each program. Select either stopping control or fixed operation. Select continuing, resetting, manual operation, or run mode. Number of sets 8 Setting method Set separately for each program (automatic PID group selection also supported). Select from ramp and target. Segment operation Advance, segment jump, hold, and wait Program operation Program repetitions and program links Wait method Waiting at segment ends Wait width setting Same wait width setting for all programs Number of outputs 2 Number of / each per output Operations Setting method Set separately for each program. Program end output (pulse width can be set), run output, stage output start Select from segment set point, slope-priority start h min to 99 h 59 min Standby day h to 99 day 23h Select from resetting, continuing control at final set point, and fixed control. Same program shift for all programs 58

59 E5CC-T USB-Serial Conversion Cable Applicable OS Windows P, Vista, or 7 Applicable software Applicable models C-Thermo version 4.6 or higher E5@C-T Series, E5@C Series, and E5CB Series USB interface standard Conforms to USB Specification 2.. DTE speed Connector specifications Power supply Power supply voltage Current consumption Output voltage Output current 384 bps Computer: USB (type A plug) Digital Temperature Controller: Special serial connector Bus power (Supplied from USB host controller.)* 5 VDC 45 ma max. 4.7±.2 VDC (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) 25 ma max. (Supplied from USB-Serial Conversion Cable to the Digital Temperature Controller.) Ambient operating temperature to 55 C (with no condensation or icing) Ambient operating humidity % to 8% Storage temperature -2 to 6 C (with no condensation or icing) Storage humidity % to 8% Altitude 2, m max. Weight Approx. 2 g Windows is a registered trademark of icrosoft Corporation in the United States and or other countries. * Use a high-power port for the USB port. Note: A driver must be installed on the computer. Refer to the Instruction anual included with the Cable for the installation procedure. Communications Specifications Transmission line connection method RS-485: ultidrop Communications RS-485 (two-wire, half duplex) Synchronization method Start-stop synchronization Protocol CompoWay/F, or odbus Baud rate* 96, 92, 384, or 576 bps Transmission code ASCII Data bit length* 7 or 8 bits Stop bit length* or 2 bits Vertical parity (none, even, odd) Error detection Block check character (BCC) with CompoWay/F or CRC-6 odbus Flow control None Interface RS-485 Retry function None Communications buffer 27 bytes Communications to 99 ms response wait time Default: 2 ms * The baud rate, data bit length, stop bit length, and vertical parity can be individually set using the Communications Setting Level. Communications Functions Programless communications * You can use the memory in the PLC to read and write E5@C-T parameters, start and reset operation, etc. The E5@C-T automatically performs communications with PLCs. No communications programming is required. Number of connected Temperature Controllers: 32 max. Applicable PLCs OR PLCs CS Series, CJ Series, or CP Series itsubishi Electric PLCs ELSEC Q Series, L Series Component Communications Copying * Life ( 4 operations) 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 sets can be set for the set point. Number of connected Digital Temperature Controllers: 32 max. (including master) 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. ELSEC is a registered trademark of itsubishi Electric Corporation. * Both the programless communications and the component communications support the copying. Current Transformer (Order Separately) Ratings Dielectric strength, VAC for min Vibration resistance 5 Hz, 98 m/s 2 Weight E54-CT: Approx..5 g, E54-CT3: Approx. 5 g Accessories Armatures (2) (E54-CT3 only) Plugs (2) Heater Burnout Alarms and SSR Failure Alarms CT input (for heater current detection) aximum heater current Input current indication accuracy Heater burnout alarm setting range * SSR failure alarm setting range *2 odels with detection for singlephase heaters: One input odels with detection for singlephase or three-phase heaters: Two inputs 5 A AC ±5% FS ± digit max.. to 49.9 A (in units of. A) inimum detection time: ms *3. to 49.9 A (in units of. A) inimum detection time: ms *4 * For heater burnout alarms, the heater current will be measured when the control output is, and the output will turn if the heater current is lower than the set value (i.e., heater burnout detection current value). *2 For SSR failure alarms, the heatercurrent will be measured when the control output is, and the output will turn if the heater current is higher than the set value (i.e., SSR failure detection current value). *3 The value is 3 ms for a control period of. s or.2 s. *4 The value is 35 ms for a control period of. s or.2 s. Electrical Life Expectancy Curve for Relays (Reference Values) E5CC-T 25 VAC, 3 VDC (resistive load) cosφ = Switching current (A) 59

60 E5CC-T External Connections E5CC-T Control output Relay output 25 VAC, 3 A (resistive load) Voltage output (for driving SSR) 2 VDC, 2 ma Linear current output to 2 ma DC 4 to 2 ma DC Load: 5 Ω max. Control output 2 Voltage output (for driving SSR) 2 VDC, 2 ma Auxiliary outputs Relay output odels with 3 auxiliary outputs: 25 VAC: 2 A (resistive load) E5CC T 3 5 () (2) (3) (4) (5) (6) Terminal type The E5CC-T 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. () Control outputs, 2 R Q C QQ odels with odels with odels with odels with 2 Relay Voltage Output Linear Current Voltage Outputs Output (for Driving SSR) Output (for Driving SSR) OUT OUT OUT OUT R + Q + C + Q OUT Q (5) Sensor (Temperature/Analog) Input TC Pt I V A B ma B V CQ odels with 2 Outputs: Linear Current Output and Voltage (for Driving SSR) OUT + C - OUT2 + Q (2) Auxiliary Outputs Auxiliary outputs, 2, and 3 7 Auxiliary output 3 8 Auxiliary output 2 9 Auxiliary output (3) Input Power Supply to 24 VAC 24 VAC/DC 2 2 (no polarity) (6) Options 3 4 Event inputs and 2, Communications Communications (RS-485) and CT (RS-485), CT, and CT2 and event inputs 3 and 4 B(+) B(+) RS-485 RS EV + A( ) A( ) EV CT CT CO 8 CT2 EV3 + 8 EV4 8 5 Event inputs to EV + 5 EV EV3 + 8 EV4 6 Event inputs and 2, and transfer output + EV + EV V 7 Transfer output I 8 Note:. 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 EC standards, the cable that connects the sensor must be 3 m or less. If the cable length exceeds 3 m, compliance with EC standards will not be possible. 4. Connect 3 crimped terminals. Isolation/Insulation Block Diagrams odels with 3 Auxiliary Outputs Sensor input and CT inputs Communications and event inputs Power supply Voltage output (for driving SSR), linear current output, and transfer output Relay output Auxiliary outputs, 2, 3 : Reinforced insulation : Functional isolation Note: Auxiliary outputs to 3 are not insulated. 6

61 Nomenclature E5CC-T E5CC-T Temperature unit Front panel Operation indicators Press O Key once to go to Program Setting Level. Press O Key for at least 3 seconds to go to Initial Setting Level. Use the Key to change to another parameter. Press and D Keys simultaneously for at least second to switch between run and reset status. Use S Key to change the digit (default setting). No. display or specified monitor/setting parameter No. 2 display or specified monitor/parameter value Top-panel Setup Tool port Use the UD Keys to set the parameter. Press U Key for at least second when Process value/set point parameter are displayed in Program ode to go to Display Segment Selection parameter in Program Setting Level. Top View of E5CC-T Dimensions (Unit: mm) Controllers E5CC-T (64) Panel Cutout ounted Separately Group ounted (48 number of units - 2.5) min. Group mounting does not allow waterproofing Waterproof Packing (Accessory) ounting Adapter (Accessory) The Setup Tool port is on the top of the Temperature Controller. It is used to connect the Temperature Controller to the computer to use the Setup Tool. The E58-CIFQ2 USB-Serial Conversion Cable is required to make the connection. Refer to the instructions that are provided with the USB-Serial Conversion Cable for the connection procedure. Note: Do not leave the USB-Serial Conversion Cable connected when you use the Temperature Controller Recommended panel thickness is to 5 mm. Group mounting is not possible in the vertical direction. (aintain 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. To attach the USB-Serial Conversion Cable to the control panel, use a panel thickness of to 2.5 mm. 6

62 E5CC-T Accessories (Order Separately) USB-Serial Conversion Cable E58-CIFQ2 (2) LED (RD) USB connector (type A plug) LED (PWR) LED (SD) Serial connector Terminal Covers 48 Terminal Covers E53-COV7 E53-COV23 (Three Covers provided.) Terminal Cover (E53-COV23) Waterproof Packing Y92S-P8 (for DIN 48 48) The Waterproof Packing is provided with the Temperature Controller. 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 three years as a rough standard.) The Waterproof Packing does not need to be attached if a waterproof structure is not required. 62

63 E5CC-T Current Transformers E54-CT E54-CT dia..5 Two, 3.5 dia dia. 2 dia Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT aximum continuous heater current: 5 A (5/6 Hz) Number of windings: 4±2 Winding resistance: 8±2 Ω Output voltage (Eo) V (r.m.s.) V mv μv Frequency: 5 Hz kω Ω RL=Ω 3% % Distortion factor % 4 4 ma,a Thru-current (Io) A (r.m.s.) E54-CT3 Accessories Armature Approx. 3 dia. Plug 8 5 Two, 3 (depth: 4) 3 Connection Example Armature Plug Lead Thru-current (Io) vs. Output Voltage (Eo) (Reference Values) E54-CT3 aximum continuous heater current: 2 A (5/6 Hz) (aximum continuous heater current for an OR Digital Temperature Controller is 5 A.) Number of windings: 4±2 Winding resistance: 8±.8 Ω V Frequency: 5 Hz Output voltage (Eo) V (r.m.s.) mv kω 5Ω Ω 5Ω RL=Ω Distortion factor % 3% % Approx. 6 dia. (22) μv ma,a Thru-current (Io) A (r.m.s.) 63

64 E5CC-T Adapter Y92F-45 Note:. Use this Adapter when the Front Panel has already been prepared for the 2. Only black is available. 3. You cannot use the E58-CIFQ2 USB-Serial Conversion Cable if you use the Y92F-45 Adapter. To use the USB-Serial Conversion Cable to make the settings, do so before you mount the Temperature Controller in the panel to 77.6 Fixture (Accessory) ounted to E5CC-T Panel ( to 8 mm) ounting Adapter Y92F (Accessory) DIN Track ounting Adapter Y92F To back of the E5CC-T Note: This Adapter cannot be used together with the Terminal Cover. Remove the Terminal Cover to use the Adapter This Adapter is used to mount the E5CC-T to a DIN Track. If you use the Adapter, there is no need for a plate to mount in the panel or to drill mounting holes in 3.5 the panel. 6 ounted to E5CC-T

65 E5CC-T Watertight Cover Y92A-48N (2) ounting Adapter Y92F-49 The ounting Adapter is provided with the Temperature Controller. Order this Adapter separately if it becomes lost or damaged Protective Cover Y92A-48D Note: This Protective Cover cannot be used if the Waterproof Packing is installed. This Protective Cover is soft type. It is able to operate the controller with using this cover. Protective Cover Y92A-48H This Protective Cover is hard type. Please use it for the mis-operation prevention etc. 65

66 Programmable Temperature Controller (Digital Controller) E5EC-T/E5AC-T (48 96 mm/96 96 mm) Programmable Controllers Join the E5C Series! Program up to 256 segments can handle a wide variety of applications. Set up to 8 Programs (Patterns) with 32 Segments (Steps) Each A white LCD display with a height of approx. 8 mm for the E5EC T and 25 mm for the E5AC-T improves visibility. Tool ports are provided both on the top panel and the front panel. Set up the Controller without wiring the power supply by connecting to the computer with a Communications Conversion Cable (sold separately). Setup is easy with the C-Thermo (sold separately). High-speed sampling at 5 ms. odels are available with up to 4 auxiliary outputs, up to 6 event inputs, and a transfer output to cover a wide range of applications. Short body with depth of only 6 mm. Easy connections to a PLC with programless communications. Use component communications to link Temperature Controllers to each other. The new position-proportional control models allow you to control valves as well. (The position-proportional control models are scheduled to be released in ay, 24.) ain I/O Functions mm E5EC-T mm E5AC-T Refer to your OR website for the most recent information on applicable safety standards. Refer to Safety Precautions on page 9. E5@C-T is scheduled to be released in January, 24. Sensor Input Universal input Thermocouple Pt Analog current/voltage E5EC-T E5AC-T Three-level Display Simultaneous display of the,, Program No., Segment No., etc. 4-digit displays Indication Accuracy Thermocouple input: ±.3% of Pt input: ±.2% of Analog input: ±.2% of FS Sampling Period 5 ms Event Inputs None Serial Communications None RS-485 PF (shift) Key Setup Tool port on front panel Temperature status display Operating and editting the program Independent heating and cooling PID control Parameter mask setting Display brightness setting Control Output Relay output Voltage output (for driving SSR) Linear current output Control Output 2 Voltage output (for driving SSR) Relay output Linear current output Auxiliary Outputs 4 Transfer Output None This datasheet is provided as a guideline for selecting products. Be sure to refer to the following manuals for application precautions and other information required for operation before attempting to use the product. E5@C-T Digital Temperature Controllers Programmable Type User s anual (Cat. No. H85) E5@C-T Digital Temperature Controllers Programmable Type Communications anual (Cat. No. H86) 66

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