Digital Temperature Controller

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1 NewGeneration PXF Series Digital Temperature Controller Exceeding Your Expectations High Speed and High Accuracy MultiDrop Master Function Universal Input MSA CTROL () E00c

2 Superior Versatility and Flexibility for a Wide Range of Applications Control output indicator Alarm output (DO) indicator P Ramp/soak status P Manual operation indicator PID auto tuning indicator Process value () Set value () Parameter number User key MV ar graph Select key PXF Up key Digit selector Down key MultiFunctional to Suit Your Needs In addition to types of temperature control functions including onoff control, heating/cooling control, and degreesoffreedom PID, useful functions such as multidrop control using RS network and simple watthour monitoring are available All these features make PXF practical for any applications *For details of each functions, see pages Accuracy ±0% (depends on type and range) Simple WattHour Metering Function Fast Control 00ms Sampling Rate 0 ms Operating Days Alarm MSA CTROL () comercial@msacontrolcombr

3 RS Communication (option) Universal Input can be transmitted to multipxfs through communication Synchronous temperaturerise control is available in combination with degreesoffreedom PID RS Synchronized heating function Example: injection molding machine Temperature Thermocouple RTD Pressure V DC, etc Master Zone Slave Zone Slave Zone Slave Zone Zone Multizone control (synchronized heating) Flow rate 0 ma DC, etc Easy switchover by parameter setting Tallest Characters in the Industry right and clear white display for optimal viewing Compact Design With only mm depth, compact enough to be installed on small equipment mm mm PXF Size Selection different sizes, with a depth of mm Parameter Setting Available on PC Parameter loader software is download free from our website al US cable enables PXF to be connected to and powered from PC Laptop PC US PXF x mm PXF x mm PXF x mm US cable MSA CTROL () comercial@msacontrolcombr

4 Advanced Control Functions Parameter setting is available using the front keys or a PC with Fuji Electric s loader software Standard Functions On/off Control Simple and asic Control When process value () is below the set value (), PXF turns on the output to energize the heater, and vice versa In this way, PXF keeps the temperature constant by turning the output on and off based on the as a threshold Control characteristic of /OFF action Setpoint Heater OFF Hysteresis Time Molding PID Control with Auto Tuning Typical Control ased on PID Theory * Overshoot may occur due to external disturbance Setpoint Machine Start/stop of auto tuning can be commanded externally PID Auto Tuning Overshoot Response to disturbances The controller calculates optimal PID parameters PXF has types of autotuning functions; the standard type (autotuning with used as reference) and the low type (autotuning with the value 0% below used as reference) (a) Standard type AT start AT end (PID setup) AT computation (b) Low type AT start AT end (PID setup) AT computation Digital Auto tuning command : Start OFF: stop Temperature Tuning Temp alarm Temperature Molding machine Raw materials (Control output) 00% OFF 0% (process value) OFF OFF OFF action PID control (Control output) 00% OFF 0% (process value) OFF OFF OFF action PID control 0% Heater Fuzzy Control with Auto Tuning Suppresses Overshoot by Fuzzy Calculation y monitoring, PXF suppresses overshoot without lengthening startup time At the same time, it can quickly deal with external disturbances DegreeofFreedom PID with Auto Tuning Combined Method for Stable Control Suppresses overshoot and undershoot occurs at startup or at change, or by external disturbances Conventional PID Process value degreesoffreedom PID (before adjusting α and β) Process value Fuzzy control Conventional control Setpoint Setpoint Time Time Overshoot Response to disturbances Overshoot Response to disturbances degreesoffreedom PID (with optimal α and β) Process value Time MSA CTROL () comercial@msacontrolcombr

5 OpenLoop Supported PID Control Suppresses Overshoot Reduces overshoot in the processes where the controlled equipment is power cycled Process value Power supply to control equipment OFF Close Control loop Open Overshoot is controlled Close t Self Tuning Control AutoTuned PID for Changing Temperature At power up, change, or during external disturbance, tuning is made automatically so that the PID parameters are reoptimized * For some objects of control, PID values cannot be optimized Power on Set value change External disturbance Simple Program Control (Ramp Soak Function) Up to Steps PXF automatically changes to the preset values at preset times You can set up to steps and types of operation patterns For example, when you bake four kinds of bread, you can divide steps into four patterns to set suitable temperature for each bread TMr Example of steps x patterns step step step 0 TMs TMr TMs TMr step to : pattern step to : pattern step to : pattern step to : pattern asic functions [h min] or [min s] Guarantee soak Repeat action start Delay start Power restoring function Operation You can start/stop/suspend the operation using a user key, parameter setting, digital, or communication Max steps!! Time TMs Number of steps and patterns Steps Patterns Controlling Temperature Gradient of Furnace by heating patterns Digital Ramp soak action command : Start OFF: Reset Temperature drive output Thermocouple Furnace Ramp Soak Function Temperature rise/fall pattern is controlled by setting a heat pattern having a gradient You can externally start or reset the pattern Setpoint Time al Functions Heating and Cooling Control with Dual Output Output Heating side Cooling side Heating side Output Deviation () Set value () Heating side Cooling side Proportional Proportional band band Proportional band (P) Coefficient 0 Coefficient 0 Coefficient 0 Deviation () Deviation () Overlap band Dead band Set value () Cooling side Deviation () * For the cooling side proportional band, set a coefficient with respect to the heating side proportional band (Works as onoff control if coefficient is zero) Energy Savings in Livestock arns oth heating and cooling are controlled with one temperature controller using its two control outputs Power consumption can be curbed by controlling a cooling fan motor with inverter Room temperature Cooling fan motor M Cattle shed Temperature signal Current output Inverter Current output in shed Heater power supply To heater AC power regulator (APR) Motorized Valve Control Valve Opening/Closing is Available Position feedback control based on motorized valve position signal Servo control without valve position signal Heating/Cooling Control of Air Conditioner Command switch Summer Winter Close in summer, open in winter Switching Open in summer, close in winter Summer: Normal action Winter: Reverse action Valve control command output Hot water Valve position Solenoid valve signal (resistance) M Temperature sensor Cold water Air conditioner Solenoid valve Motorized valve MSA CTROL () comercial@msacontrolcombr

6 Variety of Functions Expanding the Uses of Temperature Controllers and Improve the User Experience Standard Functions and PID selection Easy Switching Among Presets This enables optimum PID setting for changing process, materials, or You can perform selection only, PID selection only, or PID selection according to Soft Start Saves Energy at Startup Prevents the output being maximum when turning on the equipment (including the temperature controller) This is useful for suppressing the load at equipment startup switching Control output (MV) MV without soft start PLC Palette Palette switching PID switching Palette drive output PID switching Soft start output set value 0% Power or Digital Soft start set time MV with soft start (limited) t Simple WattHour Metering Function Tells You the Energy Consumption If you use an optional current transformer (See page 0) Approximate monitoring is also available without CT Operating Days Alarm For WellTimed Maintenance Indicator or alarm output alert you when the number of days operated has reached the limit you set With CT Estimated voltage PXF Heater load Parameter setting 0 Load voltage (V) Energy consumption AC kwh Load Control output current CT Measures CT actual current Voltage: estimated value set by user (0 V) Current: value measured by CT Without CT Estimated voltage PXF Heater load Parameter setting 0 Load voltage (V) Energy time consumption AC kwh Parameter setting Control output 0 Load current Estimated current Voltage: estimated value set by user (0 V) Current: estimated value set by user (0 A) Alarm al Functions Retransmission Output Temperature Signals to External Devices Cost savings achieved by eliminating the need for an extra temperature sensor Output signal : 0 0 ma DC, 0 ma DC, 0 V DC, V DC, 0 0 V DC, or 0 V DC Process value (), set value (), control output (MV), or (DV) Recorder PHR transfer output Voltage/ current Current control signal AC power regulator (APR) Temperature Heater Oil Fryer Heater urnout Alarm Quickly Informs You a Failure A current transformer (CT) is required The power supply voltage and the alarm action point must be configured beforehand [Example of PXF/PXF] Power supply 00 0 V DC, 0/0 Hz Power supply Control output MG SW Current transformer (CT) Electromagnetic switch Heater Electric furnace Thermocouple Wired to heater (through hole in CT) * Available only for singlephase heater * Not available when using thyristor phase angle control Heater burnout alarm output Wired to PXF (with no polarity) MSA CTROL () comercial@msacontrolcombr

7 Up to Alarms (PXF: up to ) Absolute value alarm Alarm type Action diagram Upper limit absolute value Lower limit absolute value Upper limit absolute value (with hold) Lower limit absolute value (with hold) Upper limit deviation Deviation alarm Range upper and lower limits deviation (ALM/ independent operation) Range upper and lower limits absolute value Range upper and lower limits deviation Range upper limit absolute value and lower limit deviation Range upper limit deviation and lower limit absolute value AL AL AL drive output drive output Oven Temperature Digital change command Temperature Lower limit deviation (with hold) Changeover of set values (front,,, ) can be commanded externally Upper limit deviation (with hold) change, AT start, timer startup, program selection, start/ stop/reset, PID changeover, etc Can be Switched Externally Digital Input Upper and lower limits deviation Upper and lower limits deviation (with hold) Lower limit deviation Range alarm Alarm Output Remote Input Can be Configured Externally Input signal: 0 V DC, V DC, 0 0 V DC, 00 ma DC, or 0 ma DC Input impedance: About MΩ Sequencer AL Set temperature () to V DC AL AL AL AL Control output Temperature Cell A Cell Cell C Cell D Cell E The temperature of each cell is set by the sequencer Multidrop master function Synchronous temperaturerise control is available in combination with degreesoffreedom PID RS Communication User address mapping function Users can create a list of necessary parameters (max words) for quick data acquisition on that data set Communication speed: max kbps Address Synchronized heating function RS Master Zone Parameter Slave Zone Slave Zone Slave Zone Example: injection molding machine Zone Multizone control (synchronized heating) Max words (Read) Address Parameter 000 DV MV 000 (Read) 000 (Write) 000 MV 000 (Write) 000 P 000 STY 000 I 000 D 000 AT 000 P 000 I 000 D Parameter copy function Parameter values can be copied to multiple PXFs simultaneously Communication with PC, programmable operation display, or PLC PLC RSC Signal converter Programless communication RS (Modbus) PXF MSA CTROL () comercial@msacontrolcombr Programmable operating display PXF PXF Up to controllers PXF

8 Product Lineup Model PXF PXF PXF Appearance Front panel size (W x H) mm mm mm Depth Display digits mm digit ( and ) Character height () mm mm mm Indication accuracy Sampling rate Input signal Output signal Control output Control method (*with auto tuning) Process value Remote RTD : ±0% of indication value ± digit or ±0 C± digit, whichever is larger Thermocouple : ±0%± digit of indicated value or ± C± digit, whichever is larger Voltage and current : ±0%FS ± digit 0 ms Universal (RTD, thermocouple, voltage/current) Voltage/current Current transformer (CT) Dedicated CT ( to 00 A) Motorized valve position 00Ω to kω (wire) Digital (DI) (Motorized valve control version: up to ) Up to Relay contact /SSC drive output Current output (linear) Voltage output (linear) Motorized valve control output Analog retransmission output (voltage) Analog retransmission output (current) Heater burnout alarm output Operating days alarm Alarm/event contact output (DO) Up to Up to /OFF control PID control* Fuzzy control* degreesoffreedom PID control* Openloop supported PID control Self tuning Ramp soak function (simple program control) Up to steps Heating/cooling control* Motorized valve control Number of /PID patterns Up to /PID switchover Soft start Functions Simple watthour metering Operating days Manual operation User key Communication Loader interface RS (Modbus) Power supply 00 0 V AC, 0/0 Hz voltage V DC/AC Power consumption 0 VA MAX VA MAX VA MAX Screw terminals M *Some functions are unavailable depending on the model For more detail, please refer to the specifications on Page MSA CTROL () comercial@msacontrolcombr

9 Outline Diagram PXF Outer dimensions Panel cutout (if with terminal cover) Mounting fixture 0 Panel For mounting "n" units 0 ( n) 0 0 MIN 0 t (panel thickness) t (terminal cover) 0 Waterproof packing For close mounting in horizontal direction ("n" units) (Waterproof property is lost in this case) Panel cutout 0 0 In horizontal close mounting where the packing cannot be used, PXF front panel does not meet NEMA X nor IP MIN Terminal cover (option) * Dimensions include coating thickness PXF Outer dimensions Panel cutout (terminal cover included) Mounting fixture ( n) 0 MIN 0 (terminal cover) 0 For close mounting in horizontal direction ("n" units) (Waterproof property is lost in this case) For mounting "n" units 0 0 Waterproof packing In horizontal close mounting where the packing cannot be used, PXF front panel does not meet NEMA X nor IP 0 MIN t (panel thickness) t Panel Terminal cover (option) * Dimensions include coating thickness PXF Outer dimensions Panel cutout (terminal cover included) Mounting fixture Waterproof packing 0 0 MIN (terminal cover) 00 MIN t (panel thickness) t Terminal cover (option) Panel * Dimensions include coating thickness Rear view PXF PXF PXF Terminal M Terminal M MSA CTROL () comercial@msacontrolcombr Terminal M

10 Ordering Code PXF Standard Type Digit Specifications Code Front panel size W x H mm PXF A Control output Relay contact * A Relay contact (SPDT) * drive output C Current output E Voltage output P Control output Y Relay contact A drive output C Current output E Voltage output P Retransmission output (current) R Retransmission output (voltage) S Revision code Alarm output 0 point points F points M points (independent common) J Power supply voltage/instruction manual 00 to 0 V AC, Japanese & English Y 00 to 0 V AC, English V 0 00 to 0 V AC, Chinese & English W V AC/DC, Japanese & English A V AC/DC, English V AC/DC, Chinese & English D Y RS Communication M Digital (DI) S RS communication Digital (DI) V RS communication Remote * K RS Communication CT * J 00 *: Not available for the th code C, E, P, R, S However, if you want to order the th code A (SPST relay contact for the control output ) and the th code R or S (current/ voltage retransmission output for the control output ), specify the model as follows: R PXFAA 0 S *: When using current for the remote, add a 0ohm resistor to the terminal *: When using the CT for heater burnout alarm, add one alarm output for it in the th code PXF & PXF Standard Type Digit Specification Code Front panel size W x H mm PXF mm PXF A Control output Relay contact A Relay contact (SPDT) drive output C Current output E Voltage output P Control output Y Relay contact A drive output C Current output E Voltage output P Retransmission output (current) R Retransmission output (voltage) S Revision code Alarm output 0 point points F points M points (independent common) J Power supply voltage/instruction manual 00 to 0 V AC, Japanese & English Y 00 to 0 V AC, English V 0 00 to 0 V AC, Chinese & English W V AC/DC, Japanese & English A V AC/DC, English V AC/DC, Chinese & English D Y RS Communication M Digital (DI and DI) T Remote Digital (DI) * H CT Digital (DI) * G RS communication Digital (DI) V RS Digital (DI, DI, DI) Auxiliary alarm output (AL, AL) C 00 *: When using current for the remote, add a 0ohm resistor to the terminal *: When using the CT for heater burnout alarm, add one alarm output for it in the th code PXF Motorized Valve Control Type Digit Specifications Code Front panel size W x H mm PXF A Control output Motorized valve control output (without PF ) T Control output Y Revision code Alarm output 0 point points F points (independent common) J Power supply voltage/instruction manual 00 to 0 V AC, Japanese & English Y 00 to 0 V AC, English V 0 00 to 0 V AC, Chinese & English W V AC/DC, Japanese & English A V AC/DC, English V AC/DC, Chinese & English D Y Digital (DI,, ) D RS communication Digital (DI) V 00 al items Name Model Current transformer A to 0A ZOZ CCTLSH 0 to 00A ZOZ CCTLS Terminal cover ZZPPXRA0 Parameter loader interface cable ZZP TQ0C Shunt resistor (0 Ω±0%) ZZPPXRA0 Panel mounting adapter for replacement from PXR to PXF ZZP TQ0C PXF & PXF Motorized Valve Control Type Digit Specifications Code Front panel size W x H mm PXF mm PXF A Control output Motorized valve control output (without PF ) S Motorized valve control output (with PF ) V Control output Y Revision code Alarm output 0 point points F points M points (independent common) J Power supply voltage/instruction manual 00 to 0 V AC, Japanese & English Y 00 to 0 V AC, English V 0 00 to 0 V AC, Chinese & English W V AC/DC, Japanese & English A V AC/DC, English V AC/DC, Chinese & English D Y RS communication Digital (DI, DI, DI) U 00 al items Name Model Current transformer A to 0A ZOZ CCTLSH 0 to 00A ZOZ CCTLS Terminal cover * ZZPPXF00 Parameter loader interface cable ZZP TQ0C Shunt resistor (0 Ω±0%) ZZPPXRA0 *: For PXF, two covers are necessary for one unit Scope of delivery 0 P X F A 0 0 Controller Instruction manual Panel mounting adapter set Waterproof packing 0 MSA CTROL () comercial@msacontrolcombr

11 Outline Diagram of al Items Panel mounting adapter for replacement from PXR to PXF (ZZP TQ0C) Panel mounting adapter How to install PXF with the adapter 0 When the panel thickness is mm Panel ( to mm) PXF Mounting bracket PXF mounting hole Mounting screws ( pcs) Watertight packing Mounting frame 0 (provided with PXF) Current transformer (CT) For 0A (CTLSH) For 0 00A (CTLS) ø 0 0 ø 0 ø ø M, depth 0 0 Detection is available only for singlephase heater Cannot be used when the heater is controlled using thyristor phase angle control Insulation lock Diagram PXF PXF and PXF Power supply Internal circuit Power supply Internal circuit Control output (relay contact) or Motorized valve OPEN output Process value Remote CT Control output (relay contact) or Motorized valve OPEN output Process value Remote Current transformer (CT) Control output (relay contact) or Motorized valve CLOSE output Control output ( drive, current, voltage) Control output ( drive, current, voltage) Control output (relay contact) or Motorized valve CLOSE output Valve position feedback (PF) Control output ( drive, current, voltage) Alarm output (Relay contact) Alarm output to (Relay contact) Alarm output (Relay contact) When the th code is "J" (AL and AL: independent common) When the th code is other than "J" (AL, AL, and AL: shared common) Digital to Communication (RS) asic insulation Functional insulation No insulation Alarm output and (relay contact) Alarm output (Relay contact) Alarm output to Alarm output (Relay contact) (Relay contact) When the th code is "J" (AL and AL: independent common) When the th code is other than "J" (AL, AL, and AL: shared common) Control output ( drive, current, voltage) or retransmission output Digital to Communication (RS) asic insulation Functional insulation No insulation MSA CTROL () comercial@msacontrolcombr

12 Connection Diagram Standard type (base model: PXF) Control output Control output (SPDT) NC NO Current Voltage (SPDT) NC NO Current Voltage OUT OUT OUT OUT OUT Control output Control output Current Voltage Current Voltage Current or retransmission output (current) Current or retransmission output (current) Current or retransmission output (current) Voltage or retransmission output (voltage) Current Voltage or retransmission output (voltage) Voltage Voltage or retransmission output (voltage) OUT OUT OUT OUT or retransmission OUT or retransmission OUT or retransmission OUT or retransmission OUT or retransmission OUT or retransmission Process value Alarm output points (independent common) AL AL AL AL Note ) AL AL AL points Power supply V AC/ V DC 0/0Hz or points AL NonC AL Note : Power supplies for AL and AL must be of the same type, either AC or DC 000 V AC 0/0Hz M terminals 0 Digital DI DI Universal A RS Remote R Thermocouple RTD Current 0 0 RS Voltage CT 0 CT Motorized valve control type (base model: PXF) Valve control output Valve control Close Valve control Open Digital RS DI RS DI DI 0 DI Digital DI 0 DI Alarm output points (independent common) or points AL AL AL ALM Note ) Note : Power supplies for AL and AL must be of the same type, either AC or DC Power supply 0/0Hz V AC/ V DC AL NonC AL 0/0Hz 000 V AC M terminals 0 Process value Universal A Thermocouple RTD Current Voltage MSA CTROL () comercial@msacontrolcombr

13 Standard type (base model: PXF, PXF) Control output (SPDT) NO NC Current Voltage Current Voltage Retransmission output (current) Retransmission output (voltage) Control output OUT OUT OUT OUT OUT OUT M terminals RS Digital CT Alarm output points (independent common) AL AL AL AL Note ) AL AL AL points or points AL NonC AL RS DI DI DI CT Note : Power supplies for AL and AL must be of the same type, either AC or DC Power supply V AC/ V DC 0/0Hz 000 V AC 0/0Hz Digital output AL AL Digital DI DI DI 0 DI Remote R Process value Universal A Thermocouple RTD Current Voltage Motorized valve control type (base model: PXF, PXF) Valve control output Valve control Open Valve control Close M terminals RS Digital PF Alarm output points (independent common) AL AL AL AL Note ) AL AL AL points or points AL NonC AL Note : Power supplies for AL and AL must be of the same type, either AC or DC RS DI DI DI 0 I PF I Power supply V AC/ V DC 000 V AC 0/0Hz 0/0Hz Digital DI DI Process value Universal A Thermocouple RTD Current Voltage MSA CTROL () comercial@msacontrolcombr

14 Specifications General specifications Power supply voltage 00 V (%) to 0 V (0%) AC, 0/0 Hz, V AC/DC (±0%) Model 00 to 0 V AC V DC/AC Power consumption PXF 0 VA MAX VA MAX PXF & PXF VA MAX VA MAX Insulation resistance 0 MΩ or more (at 00 V DC) Power source all terminals: 00 V AC for min Withstand voltage Relay contact output all terminals: 00 V AC for min etween others: 00 V AC for min Process value Number of s Input setting Programmable scale See Table on Page Input signal (Universal : thermocouple/rtd/voltage/current) Standard measurement See Table on Page range and type Indication accuracy (at Ta = C) Thermocouple : either ± C ± digit or ±0% of indicated value ± digit, whichever is larger *except: Thermocouple : 0 to 00 C: no accuracy assurance Thermocouple R: 0 to 00 C: ± C ± digit Thermocouples of which measuring range is between 00 C and 00 C: ± C ± digit RTD : ±0 C ± digit or ±0% of indication value ± digit, whichever is larger mv, voltage, current : ±0%FS ± digit Temperature effect on sensitivity ±0%FS/0 C Indication resolution See Table on Page Sampling rate 0 ms Thermocouple, mv : MΩ or more Input impedance Current : 0 Ω or less (builtin diode) Voltage : About MΩ Variation by signal source resistance Allowable wiring resistance Allowable voltage: Noise reduction ratio Input correction Overrange underrange Thermocouple, mv : ±0%FS ± digit per 00 Ω Voltage : ±0%FS ± digit per 00 Ω RTD: 0 Ω MAX (per wire) DC voltage : within ± V Current : within ± ma Thermocouple, RTD, mv : within ± V Normal mode: 0 d (0/0 Hz) Common mode: 0 d (0/0 Hz) etween and power supply: ± C at 0 V AC, 0/0 Hz (a) User adjustment: ±0%FS for each of zero and span point (b) Process value shift: ±0%FS (c) Input filter: 00 to 00 s (filter is off when set to 00) (d) Square root extraction: 0 to 0% (OFF if set to 0%) Out of the range between % and 0% FS (accuracy is not assured between and 0, and between 00 and 0%FS) *except: Pt (00 C to 0 C) : Out of the range between 0 to 0 V DC : % to 0% of FS Thermocouple E: Out of the range between to 0% of FS Remote (option) Number of s Voltage: 0 to V DC/ to V DC/0 to 0 V DC Input signal Current: 0 to 0 ma DC/ to 0 ma DC (an external resistance of 0 Ω is required for current ) Input impedance Approx MΩ Sampling rate 0 ms Current transformer (CT) (option) Single phase CT, point Input type For A to 0 A: CTLSH For 0 A to 00 A: CTLS Range of detected A to 00A current Detected current Setpoint ±%FS accuracy Detected current 0A resolution time necessary for detection 00 ms MIN Digital (DI) (option) PXF and PXF: up to No of points PXF standard version: PXF motorized valve control version: Specifications Novoltage contact or transistor Contact capacity: V DC, about ma (per point) voltage: V DC or lower Input judgment: OFF voltage: V DC or higher Sampling pulse width 0 ms MIN Remote mode selection, changeover, control standby, AT startup, Functions timer startup, alarm unlatch, program selection, start/stop/reset, PID switching (normal/reverse), etc Valve position feedback signal (potentiometer) (option) Model PXF and PXF (not available for PXF) Resistance range 00Ω to kω, threewire Resolution 0% FS Accuracy ±0%FS Temperature effect on sensitivity ±0%FS/0 C urnout function Control output No of points Type Select among to Up to ( points: Heating/cooling control) Relay contact output Proportional cycle: to 0 s Contact structure: SPST contact *SPST: single pole single throw Contact capacity: 0 V AC/0 V DC, A (resistive load) Minimum /OFF current: 0 ma ( V DC) Mechanical life: 0 million operations MIN (00 operations/min) Electrical life: 00,000 operations MIN (rated load) Relay contact output (SPDT) Proportional cycle: to 0 s Contact structure: SPDT contact *SPDT: single pole double t row Contact capacity: 0 V AC/0 V DC, A (resistive load) Mechanical life: 0 million operations MIN (00 operations/min) Electrical life: 00,000 operations MIN (rated load) /SSC drive output Proportional cycle: to 0 s voltage: V DC (between 0 and V DC) OFF voltage: 0 V DC or lower Maximum current: 0 ma DC Load resistance: 00 Ω MIN Current output (0 to 0 ma DC/ to 0 ma DC) Accuracy: ±%FS Load resistance: 00 Ω MAX Voltage output (0 to V DC/ to V DC/0 to 0 V DC/ to 0 V DC) Accuracy: ±%FS Load resistance: 0 kω MIN Motorized valve control output Contact structure: SPST contacts without interlock circuit *SPST: Single Pole Single Throw Contact capacity: 0 V AC/0 V DC, A (resistive load) Minimum /OFF current: 00 ma ( V DC) Mechanical life: 0 million operations MIN (00 operations/min) Electrical life: 00,000 operations MIN (rated load) Alarm output (DO) (option) Relay contact Number of outputs Shared : PXF & PXF:, PXF: Independent : PXF & PXF:, PXF: Relay contact output Contact structure: SPST *SPST: single pole single throw Contact capacity: 0 V AC/0 V DC, A (resistive load) Output specifications Minimum /OFF current: 0 ma ( V DC) Mechanical life: 0 million operations MIN (00 operations/min) Electrical life: 00,000 operations MIN (rated load) Alarm output (see "Alarm function"), main unit control mode output, Output functions program status output, control output and, etc Output cycle 00 ms Retransmission output (option) No of points Current/voltage output (0 to 0 ma DC/ to 0 ma DC/0 to V DC/ to V DC/ 0 to 0 V DC/ to 0 V DC) Guaranteed output range: 0 to ma DC/0 to 0 V DC Type Accuracy: ±0%FS (±%FS at ma or smaller) Resolution: 0,000 MIN Load resistance: 00 Ω MAX (current), 0 kω MIN (voltage) Output cycle 00 ms Output contents,, DV, MV Additional function Scaling function Display and keys Type LCD (with backlight) Process value indication: segment, digit [white] Setpoint indication: segment, digit [green] Indication contents Screen No indication: segment, digit [orange] Status indication: indicator lamps Luminance setting possible ( steps) Keys Sheet type keys (with emboss), keys Control functions /OFF control Refer to page PID control Dual control (heating/cooling) PID parameters determination: Auto tuning Fuzzy PID control Dual control (heating/cooling) PID parameters determination: Auto tuning Self tuning control Refer to page PID control Dual control (heating/cooling) PID parameters determination: Auto tuning degreesoffreedom PID PID parameters determination: Auto tuning Position proportional PID (servo) with position feedback Full stroke time: 0 seconds MIN (not available for PXF) MSA CTROL () comercial@msacontrolcombr

15 Control parameters Proportional band (P) 0% to % Integration time (I) 0 to 00 s (invalidated when I = 0) Differential time (D) 00 to s (invalidated when D = 0) Control cycle 00 to 00 ms (in 00 ms), to s (in seconds) Antireset windup Hysteresis band Number of and PID patterns Control mode Mode Mode changeover: Alarm Number of alarm Alarm type Heater current alarm function (option) Detectable range Auto/Manual/Remote *During position control in Manual mode, position manual operation with MV = 00% or 0% is operated Auto Manual: alanceless bumpless Auto/Manual Remote: alance bumpless Auto/Manual Remote: alance bumpless Up to (depends on the number of DO) Process value (upper limit/lower limit, absolute/deviation, range), main unit error, etc(nonexcitation, delay, latch, timer function option provided) Current transformer (CT) is to be prepared separately (see page 0) A to 00 A Detected current resolution 0A Setting resolution 0A Hysteresis 00 to 000 A 0 to 00% of measurement range 0% of measurement range (at position control only) : Changed by any of parameter setting, digital, communication, user function keying, zone change RS communication (option) No of points point Physical specifications EIA Protocol ModbusRTU Communication method Halfduplex bit serial, asynchronous communication Code type Data length: data bits Parity: Odd, even, none aud rate 00 bps, 00 bps, kbps, kbps Connection Up to units Communication distance Up to 00 m (total connection length) Multidrop master function The function in which slave devices can be operated by a master device by connecting several temperature controllers Programless communication Additional function The function in which a temperature controller can be connected to a PLC without program Supported PLCs: Mitsubishi PLC Q series Siemens PLC S series Operation and storage conditions Operating temperature 0 C to 0 C Storage temperature 0 C to 0 C Operating/storage humidity 0%RH or less (Non condensation) Warmup time 0 min MIN Vibration during transportation: m/s ( G) or less Impact during transportation: m/s (0 G) or less Enclosure Installation External terminals Panel mount Screw terminals, M Material: AS, PPO Case Noncombustibility grade: ULV0 equivalent Color: lack Panel front side: IP, NEMAX equivalent (When the panel is mounted using our genuine packing Not waterproof if mounted Protection structure closely together) ody: IP0 equivalent (slits on top and bottom) Terminals: IP00 equivalent Terminal cover can be mounted optionally Dimensions Refer to page Weight PXF: approx 00 g, PXF: approx 0 g, PXF: approx 0 g Customizable function and Program (ramp/soak) function Number of program steps: Control option asic functions Memory backup User key Assignable functions Password function level password Auto/Manual change, Standby /OFF change, remote change, ramp/soak change, etc Simple watthour metering function and operating days alarm Simple watthour metering function Operating days alarm steps pattern, steps patterns, steps patterns, or steps patterns ( step = segments) Control by digital Status output by digital output Segment time can be set in "Hour, Minutes" or "Minutes, Seconds" Guarantee soak Repeat action start Delay start Power restoring function EEPROM y connecting a current transformer (to be prepared separately), electric power consumption of the heater can be displayed (Electric power is calculated based on the fixed voltage value you set) Current transformer (CT) is to be prepared separately (see page 0) Current detection range: A to 00 A Indicates the number of days the controller has been operated and activates alarm output (optional) when it exceeds the setpoint Useful for preventive maintenance because it let you know the appropriate time for maintenance work Data backup at power outage on nonvolatile memory Selfdiagnosis Program error supervision by watchdog timer Table type and range Input type Code (PvT) Measurement range [ C] Minimum increment [ C] PT 00 to 00 0 PT 00 to PT 00 to RTD Pt 00 PT 00 to PT 00 to PT 000 to PT to PT 00 to 0 0 to V DC 0V to V DC V DC voltage 0 to 0V DC 00 to (Range to 0V DC 0 where scaling is allowed) 0 to 00mV DC MV DC current 0 to 0 ma DC 00 to 0 ma DC 0 Thermocouple Input type Code (PvT) Measurement range [ C] Minimum increment [ C] J 00 to J J 00 to J 00 to J 00 to 000 K 0 to 00 0 K K 00 to K 00 to K 00 to 00 R R 0 to 00 0 to 00 S S 0 to 00 T T to T to E 00 to E E 00 to E 00 to 00 L L 00 to 0 U U to U 00 to 00 N N 00 to 00 W W 0 to 00 PLII PL 0 to 00 MSA CTROL () comercial@msacontrolcombr

16 MSA CTROL () Please read the following instructions carefully before operating the Digital Temperature Controller WARNING OverTemperature Protection Any control system design should take into account that any part of the system has the potential to fail For temperature control systems, continued heating should be considered the most dangerous condition, and the machine should be designed to automatically stop heating if unregulated due to the failure of the control unit or for any other reason The following are the most likely causes of unwanted continued heating: ) Controller failure with heating output constantly on ) Disengagement of the temperature sensor from the system ) A short circuit in the thermocouple wiring ) A valve or switch contact point outside the system is locked to keep the heat switched on In any application where physical injury or destruction of equipment might occur, we recommend the installation of independent safety equipment, with a separate temperature sensor, to disable the heating circuit in case of overheating The controller alarm signal is not designed to function as a protective measure in case of controller failure Caution on Safety * efore using products in this catalog, be sure to read their instruction manuals in advance MSA CTROL Indústria Elétrica Ltda Rua Iapó Casa Verde São Paulo SP CEP:00 Tel/Fax: () comercial@msacontrolcombr wwwmsacontrolcombr Information in this catalog is subject to change without notice Printed in Japan 0/ FOLS

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