PF900 High-Performance [Process/Temperature Controller]

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1 RESE RU FIX A HOL SEP P SE P E Ramp/Soak Controller PF900 High-Performance [Process/emperature Controller] PF90 PF900 SV RE S O AL OU OU OU OI PV H SV P SEG A S O A OU OU OU RESE RU FIX A HOL SEP P SE OI RoHS compliant R

2 isplay Clear isplay All necessary information can be viewed on the front display with -segment characters for easy readout. isplay with -segment characters Program/Segment remaining time display (Unit: hour:min/min:sec) ime signal/ igital output indicators EVOLUIO High intensity white color display Output program memory group number set value Wait zone High (group ) set value Running pattern/ Segment display Gradient state display Program pattern/ Output bargraph display Control Advanced control ew control algorithm RSS (Ramp Soak Stabilizer) he PF900 comes with our newly developed control algorithm exclusively designed for ramp/soak controls. his new algorithm improves follow-up performance in ramp control and simultaneously suppresses overshoot at the time of transition stage to soak control. hus, control performance in ramp/soak control has been further improved. PV SV Suppress overshoot EVOLUIO Program Control EVOLUIO PF900 Just arrived with versatile functionality with useful features to satisfy requirements in various applications. Improved follow-up Ramp Soak ultiple control aximum of point program pattern outputs (Output program function) Up to analog outputs can be used to control three types of devices such a motorized valve. Combinations of time signals allow more complicated instrumentation system to be established. ime signal output OU OU OU Analog output t Analog output t Analog output t 00% 0% 00% % 00% % Catalytic Steam Warm water otorized valve Fast sampling of 0.0 sec. Switchable to 0.0/0./0. sec. sampling for selection of faster sampling speed or better control resolution. You can switch over the sampling rate from "fast" (for fast process applications) to "stable" (for applications which require higher resolutions) to meet different control requirements. aximum of digital inputs and digital output Wait release and switchover of reverse/direct actions have been newly added to the digital input function. Versatile event handling can be achieved with abundant digital inputs/outputs options. Customizable keys irect access to major functions RESE RU FIX A HOL SEP P SE P E OI Ventilation valve You can customize the function keys to accept the change by : Press once, Press twice, Pressing the key for seconds isabled his enables you to select a desired function at a touch of the relevant key.

3 Program EVOLUIO Large memory he PF900 can store up to 0 segments (99 patterns with 0 segments each to 0 patterns with 99 segments each). ( patterns by segments, yet all patterns are linkable to form a large program) ime signal output Enhanced flexibility Pattern Segment signal output Each segment wo types of signal modes You can select a pattern mode that works within the pattern or a segment mode that works within the segment. (Please specify one of the tow)) S S Selectable PI zones S8 <ime signal output within pattern> S8 <ime signal output per segment> Level-PI or segment PI Can be selected depending on the requirements. he set values are stored in 8 stage levels or in 8 memory groups. Satisfies versatile applications Set values management Flexible pattern end output You can set the end signal to the control mode after the pattern end, valve opening status, event status, or retransmission output signal status. Flexible WAI function he WAI function can be released by the out-ofwait zone determination (upper/lower sides), digital input or timeout setting. emory group Set values of P, I,, event, segment wait, time signal, program pattern output can be stored in memory groups and can be called up for a segment to be set. PI values, Wait and Events: 8 groups ime signals: 6 groups Program pattern output : Up to 99 points Segment repeat Specified segment can be repeated. mmunication EVOLUIO Reliable collabo orative operation Collaborative program operation ( Inter-controller communication) Up to four slave instruments (FB/RB series and PF900/90) can be connected via exclusive communication port. Isolated communication without setting error can be established because of digital communication. Ratio setting of individual slave controller is possible as well as memory area selection and Run/Stop switch-over. PF900 (aster) Inter-controller RS-8 (OBUS) FB00 FB00 FB00 FB00 (Slave) (Slave) (Slave) (Slave) emory area needs to be selected on FB series. If you use FB00, FB900 or PF900 for a slave device, please select Communication. Communication protocol among slave devices is odbus. odels available as a master device Easy data management PF900/PF90 : Suffix codes for communication : W, X, or Y odels available as a slave device FB00 : Optional codes : E, F, H, or J Front loader interface + Programming tool FB00/FB900 : Suffix codes for communication : or X RB00/RB00/RB00/RB700/RB900 : Suffix codes for communication :, 6, B or C he PF900 comes with a front loader port and programming tool PF900/90 : Suffix codes for communication : or X which make complicated programming visual and easy to set on a PC. ownload/upload of large amount of set values can be achieved with ease. USB communication converter -K- (With loader communication cable) -K- (Without loader communication cable) USB port -K Loader com USB (Loader cable) (USB cable comes with -K) odel code for cable only : (Complete with loader communication W-BV-0-00 cable for PF900) (Front loader port)

4 Specifications Sampling time Influence of external Influence of lead break action igital filter PV bias PV ratio Square root extraction Control method Autotuning Control Autotuning with auto soak detect: Setting range Level-PI Valve drive Control motor time Integrated output limiter eutral zone ifferential gap Valve action at RESE state Performance easuring accuracy Universal input a) emperature, current, voltage (low) input group hermocouple input K, J, E,, R, S, B,, PLII, WRe/W6Re, U, L, PR0-0 R Pt00, JPt00 (-wire type) C Voltage input (input impedance: Ω) 0 to V, 0 to 00mV, 0 to 0mV, -00 to +00mV, -0 to +0mV, - to +V b) Voltage (high) input group C Voltage input (input impedance: Ω) 0 to V, to V, 0 to 0V, - to +V, -0 to +0V c) Current input group C Current input (input impedance: 0Ω) to 0mA, 0 to 0mA (Use dip switch to change input group.) 0. sec (0.0sec/0.sec is selectable.) 0.μV/Ω (hermocouple input) Approx. 0.0% of span (for R) aximum 0Ω per leadwire maxthermocouple hermocouple input : Up-scale/own-scale (Selectable) R input : Up-scale Low voltage input : Up-scale/own-scale (Selectable) Current input : Value around 0mA High voltage input : Value around 0V 0. to 00.0 sec. (OFF when 0 is set.) - input range span to + input range span 0.00 to PV = ( value) x PV ratio + PV bias Low level cut off : 0.00 to.00% of span a) Brilliant II PI control irect action/reverse action is selectable b) Brilliant II PI control (Heat/Cool type) c) Brilliant II position proportioning control irect action/reverse action is selectable Position proportional control can be used with/without FBR (feedback ) input. a), b), c) is selectable a) For PI control or position proportioning control b) For Heat/Cool PI control (For extruder, air cooling) c) For Heat/Cool PI control (For extruder, water cooling) d) For Heat/Cool PI control his is a function to search program soak areas and perform autotuning in the order of segments at the time of reset. his feature is enabled/disabled for ramp segment. a) Proportional band: 0 (0.0/0.00) to input span ( C, F) (for temperature input) 0.0 to 000.0% of input span (for voltage/current input) (O/OFF control when P = 0) ifferential gap at O/OFF control (High/Low individual setting) emperature input : 0 (0.0/0.00) to input span ( C, F) Voltage/Current input : 0.0 to 00.0% of input span b) Integral time: 0 (0.0) to 600 (600.0) sec. (P control when I = 0) c) erivative time: 0 (0.0) to 600(600.0) sec. (PI control when = 0) d) Cooling proportional band : (0./0.0) to input span ( C, F) (for temperature input) 0. to 000.0% of input span (for voltage/current input) e) Integral time for cooling : 0 (0.0) to 600 (600.0) sec. (P control when I = 0) f) erivative time for cooling : 0 (0.0) to 600(600.0) sec. (PI control when = 0) g) Overlap/deadband: -span to +span ( C, F) (for temperature input) to +00.0% of span (for C voltage/current input) h) Control response parameter: slow, medium, fast i) Output limiter: -.0 to +0.0% (High/Low individual setting) j) Cool side output limiter: -.0 to +0.0% (High/Low individual setting) k) Heat side cycle time: 0. to 00.0 sec. l) Cool side cycle time: 0. to 00.0 sec. m) anual reset: to +00.0% of proportional band n) Output at reset: -.0 to +0.0% (Heat and cool sides are individual setting.) o) Overlap/deadband reference: 0.0 to.0 (heating reference at zero) p) Undershoot suppression factor (USS) for cooling: to.000 q) Ramp/soak stabilizer (RSS): 0.0 to.0 Selectable from enabled/disabled. a) umber of levels: 8 levels (PI groups to 8) b) Level setting range: Low limit of input range to high limit of input range (level settings to 7) to 000 seconds OFF, 0. to 00.0% of control motor time 0. to 0.0% 0% of neutral zone (Fixed) a) close: off, open: off b) close: on, open: off c) close: off, open: on a), b), c) is selectable a)hermocouple ype : K, J,, E, PLII, U, L Less than -00 C (-8 F) : ±.0 C (±.8 F) -00 to +00 C (-8 to 9 F) : ±0. C (±0.9 F) ore than 00 C (9 F) : ±0.% of reading ype :, S, R, WRe/W6Re Less than 0 C ( F) : ±.0 C (±.6 F) 0 to 000 C ( to 8 F) : ±.0 C (±.8 F) ore than 000 C (8 F) : ±0.% of reading easuring accuracy Program control ime accuracy umber of program patterns umber of program segments Segment time umber of segment repeat umber of pattern repeat umber of linkable patterns Pattern end output time: ime signal memory group number Program starting mode: WAI status at the time of program start: WAI function Pattern end output ime signal output: Programmed preset manual output: (Output program function) Other features: emory group PI memory Event memory Segment wait memory ime signal memory Program pattern output ype B Less than 00 C (7 F) : ±70.0 C (±6 F) 00 to 000 C (7 to 8 F) : ±. C (±.6 F) ore than 000 C (8 F) : ±0.% of reading ype PR0-0 Less than 00 C: ±0 C (6 F) 00 to 000 C: ±0 C (8 F) ore than 000: ±0.% of displayed value Cold junction temperature compensation error ±.0 C (.8 F) [Between and 0 C ( and 0 F)] ±. C (.7 F) [Between -0 and C (6 and F), and 0 and C (0 and F)] b) R Less than 00 C (9 F) : ±0. C (±0. F) ore than 00 C (9 F) : ±0.% of reading c) C voltage and C current ±0.% of span ±0.0% of reading or input sampling time, whichever is larger. Up to 99 patterns Up to 0 segments Up to 99 segments per pattern. Supplied with hold, step, fast forward, fast rewind features. 0 hr 0 min to 00 hs 00 min or 0 min 0 sec to 00 min 0 sec to 9999 repeats Repeat is disabled when set to. to 0,000 repeats Continuous repeat when set to 0, to 99 patterns o pattern link when set to zero 0 hr 0 min to 00 hs 00 min or 0 min 0 sec to 00 min 0 sec Output remains on when set to zero. 0 to 6 o assigned groups when set to zero. a) Starts from a desired value (SV after reset) b) Starts from a desired measured input (ime fixed) c) Starts from a desired measured input (ime shortened) d) Intersection of measurement input and pattern is searched and starts from there. (HOL status when started) e) Intersection of measurement input and pattern is searched and starts from there. (RU status when started) WAI condition memory number : 0~8 o WAI when set to zero. Selectable from release by wait zone, contact input (trigger), and timeout. a) Wait zone (upper) ) emperature input: 0 (0.0/0.00) to 00 (00.0/00.00)( C, F) ) Voltage/current input: 0.0 to 0.0% of input span Wait function off when set to zero b) Wait zone (lower) ) emperature input: -00(-00.0)~0(0.0)( C, F) or ~0.00( C, F) ) Voltage/current input: 0.0~0.0% of input span Wait function off when set to zero c) Wait timeout (ime counting resumes unconditionally after the set time has elapsed) 0 hr 0 min to 00 hs 00 min or 0 min 0 sec to 00 min 0 sec Function is disabled when set to zero. O can be assigned (turns on for 0. second for each pattern repeat). ime signal or segment signal, whichever is specified. a) ime signal ) umber of outputs: 8 (S to S8) ) Output assignment: Up to (including relays), assignable by O ) ime signal memory group: 6 groups ) umber of memory storage: 6 groups X 6 memories ) umber of storage memory: to segment o. (max = 99) 6) Starting time: 0 hr 0 min to 00 hs 00 min or 0 min 0 sec to 00 min 0 sec 7) Ending segment: to segment o. (max = 99), however, ending segment must be equal to or larger than the starting segment. 8) Ending time: 0 hr 0 min to 00 hs 00 min or 0 min 0 sec to 00 min 0 sec b) Segment signal: S to S8 can be independently turned O and OFF at each segment. Fixed value is produced at each segment. he function is activated by assigning outputs to to the program output. a) umber of output program patterns: to (8/max. segments number) For example, in case of 99 segments, it is "". ax. segment o.: umber of segments by number of patterns multiplied by number of segments. b) Setting items: Output program to : -.0 to +0.0% (Independently adjustable). Pattern/segment copy function, tag name edit function (for each pattern), data clear (to initial state), remaining time display of pattern. a) emory group o : 0 to 8 (Level-PI is activated when set to zero.) b) Setting items: Proportional band, Integral time, erivative time, Control response parameter, Cool side proportional band, Cool side integral time, Cool side derivative time, eadband/overlap, eutral zone, anual reset, Output limiter (high/low), Cool side output limiter (high/low), O/OFF differential gap (high/low), LBA time, LBA headband. a) emory group o.: 0 to 8 (event off when set to zero) b) Setting items : Event to a) emory group o.: 0 to 8 (wait off when set to zero) b) Setting items: wait zone, wait release trigger, timeout for wait a) emory group o.: 0 to 6 (time signal off when set to zero) b) emory o. : ~6 (6 set points per group) c) Setting items: ime signal output destination, starting segment, time signal starting time, end segment, time signal end time. a) Pattern os.: to (8/max.segment) Up to 99 segments b) Segment o.: to max segment value. c) Setting items : Output program to

5 ode selection Operation mode ode transfer Before transfer Reset mode Program control mode Fixed setpoint control anual control umber of output Output function Output types: Reset mode Provide control output at the time of reset Output (OU) igital output (O) umber of output Output function Output types Event (alarm) function umber of event Event types Event setting range Event output type Additional features for event output: Heater break alarm (HBA) Reset (RESE), program (RU), fixed setpoint control (FIX), and manual control (A) Action when operation mode is selected. After transfer Program control Fixed setpoint Control continues with the calculated value of the control. * Control continues with the SV for a program control. Control continues with the SV for a fixed setpoint control. Control continues after bumpless transfer to manual output Retransmission output (AO) anual control Control starts with the control output at reset as the manual setpoint. Output continues after adjusting the final output level of the program control to the output level of manual. Output continues after adjusting the final output level of the fixed setpoint control to the output level of manual. * Program status is retained unless the instrument is reset. If program control is selected, control starts from the retained status. Output may result in a bump in spite of a bumpless transfer action if the selected control mode is P action, P action, or O/OFF action. Up to points(ou to OU) Control output (V), Output program, Retransmission output. OU and OU can be used as event outputs. See output assignment table for details. a) Relay contact output : Form a contact, Rating: 0V AC A (Resistive load) Electrical life: 00,000 cycles or more b) Voltage pulse output : 0/V C, Load : 600Ω or more (0mA or less) * OU can be 00Ω or more (0mA or less) if OU is not used. c) Current output : to 0mA, 0 to 0mA C, Load : 600Ω or less d) Continuous voltage output : 0 to V, to V, 0 to 0V, 0 to V C (Assignable to OU only), Load : KΩ or more e) SSR output (triac output) : current rating 0.A f) Open collector output (sink method) : Load voltage 0V C or lower Allowable load current: 00mA. O voltage: V or less (For maximum load current) O to O : Standard O to O: Optional Up to points (Oup to (O to ) O to : Relay contact output (Standards) O to : Open collector output ime signal, event, Heater break alarm, Loop break alarm, abnormality, RU state, FIX mode state, A mode status, Ramp status, Soak status, HOL status, WAI status, Pattern end status, A status, FAIL, Communication failure, FBR input abnormality a) Relay contact output, Form a contact, 0VAC A (Resistive load) b) Open collector output (sink type), Load voltage: 0V C or less Allowable load current : 00mA O voltage : V or less (For maximum load current) umber of output Up to points ( for program outputs) epends on output assignment. Output function PV, SV, Control output, Output program value, eviation, % of segment time (Selectable) Output types a) Current output : to 0mA, 0 to 0mA C Load : 600Ω or less b) Voltage output : 0 to V, 0 to V, to V, 0 to 0V C Load : KΩ or more Scaling range a) PV, SV : Same as input range b) Control output, Output program output: 0 to 00% c) eviation: ±input span Output program and segment time percentage are fixed. Additional function Stop/continue selectable during RESE status Up to points (event to ) Process, eviation, Band, SV, V a) eviation/band Event setting: -input span to +input span ifferential gap for event action: 0 to input span b) PV/SV Event setting: same as input range ifferential gap for event action: 0 to input span c) V Event setting : -.0 to +0.0% ifferential gap for event action : 0 to 0% Freely assignable to digital outputs (O to, OU, OU). See Output allocation table for details. a) Hold function (Valid when power is supplied or when even is started.) b) Event action selection at the time of abnormal input. c) Action selection at the time of RESE d) elay timer: 0.0 to sec. e) Event minimum O and OFF time : 0.0 to sec (O/OFF individual setting) f) Interlock : Without/With/Switches into the manual mode and stops control. a) umber of C input: points ( for each C input) b) function: Current detector (C) c) range: CL-6-P-: 0 to 0A CL--S6-0L-: 0 to 00A d) Heater current display range:0.0 to00.0a e) Heater current display accuracy: ±% of input value or ±A f) Interlock : Without/With/Switches into the manual mode and stops control. g) Output method: Freely assignable to digital outputs h) Action selection at reset status Heater break alarm (HBA) is not available for current/continuous voltage output. Loop break alarm (LBA) igital input (I) umber of input type Feedback (FBR) input Allowable Sampling time Communication Communication method Protocol: Communication speed Bit structure aximum connection: Inter-controller communication [] Communication Function to send target value to slave controllers. type Communication RS-8 method Protocol odbus RU Communication 9600, 900, 800 bps. speed (selectable) Bit structure Start bit:, ata bit: 8, Parity bit: none, Stop bit: aximum slaves units Slave controllers PF900/PF90/FB series (With memory area), RB series (with memory area) Loader communication Communication RS-8 method Protocol Communication speed Bit structure Connection method General specifications Supply voltage Power consumption Rush current Power failure Insulation a) LBA time: 0 to 700 sec. (OFF when set to zero) b) LB setting: 0 to input span c) Interlock : Without/With/Switches into the manual mode and stops control. d) Output method: Freely assignable to digital outputs See output assignment table. Loop break alarm (LBA) is not available for heat/cool PI control type. I to I6 : Optional I7 to I: Standard Up to points (I to 6, I7 to ) on voltage contact input I to I6 : Pattern o. selection + Pattern set, WAI release I7 to I : Pattern o selection + Pattern set, ode selection (RESE, RU), irect/reverse action selection Refer to igital table for details. 00 to 0KΩ (Ω as standard) 0. sec. (For measurement input sampling 0.0 sec.) 0. sec. (For measurement input sampling 0. sec.) 0. sec. (For measurement input sampling 0. sec.) RS-8/RS-A/RS-C (o be specified at the time of ordering) a) RKC standard (ASI X.8 subcategory. A) b) odbus RU (selectable) 00, 800, 9600, 900, 800, 7600 bps. (selectable) a) RKC protocol: Start bit:, ata bit: 7 or 8, Parity bit: (even or odd) or none Stop bit: or b) odbus protocol Start bit:, ata bit: 8, Parity bit: (even or none), Stop bit: or a) or b) selectable RS-8/RS-A : units RS-C : unit RKC standard (ASI X.8 subcategory. A) 800 bps Start bit:, data bit: 8. parity bit: none, stop bit: Front: Connected to -K with an exclusive cable (W-BV-0-00) Front loader interface is available only while instrument is powered. a) 8 to 6V AC (0/60Hz), Rating: 00 to 0V AC b) 0. to 6.V AC (0/60Hz), Rating: V AC c) 0. to 6.V C, Rating: V C a) 00 to 0V AC :.VA <0.9VA> ( at 0V AC), 9.VA <7.VA> (at 00V AC) b) V AC : 8.VA <6.VA> c) V C : 0mA <7mA> < > : Power saving mode a) 00 to 0V AC : Less than 7.A (at 0V AC), Less than 7.A (at 00V AC) b) V AC : Less than 8.A c) V C : Less than 6.0A A power failure of 0m sec or less will not affect the control action. If power failure of more than 0m sec occurs, controller will restart with the state of HO start, HO start or COL start (selectable) emory backup Backed up by onvolatile memory (FRA) ata retaining period : Approx. 0 years umber of writing : Approx. 0,000,000,000 times. (epending on storage and operating conditions.) Power saving mode ot available when C input is supplied Position proportional control can be used with/without FBR (feedback ) input. If any key is not pressed during the user set time period, the backlight LE is turned off except PV and AL displays. Setting time: 0 to 60 min (0 for no power saving mode) Back to normal display if any key is pressed during the power saving mode. 0Ω or more (00V C) between input and ground terminals. 0Ω or more (00V C) between power and ground terminals. 0Ω or more (00V C) between input and power terminals. 00V AC for one minute between input and ground terminals. 00V AC for one minute between power and ground terminals. ielectric strength 00V AC for one minute between input and power terminals. Ambient temperature -0 to + C Ambient humidity to 9%RH (on condensing) Absolute humidity : AX.W.C9.g/m dry air at 0.kPa Weight Approx. 70g, Waterproof/ EA type : IP (When mounted in a panel, front direction) ustproof Safety standards CE marking, UL, cul, C-ick []

6 odel code Specifications Output (OU ) Control output or Output program * Output (OU ) Control output, Output program, Retransmission output or igital output * Output (OU ) Output program, Retransmission output or igital output * Supply voltage igital output C input or FBR input 96 x 96mm I sized ramp/soak controller PV : Green, SV : Orange, Pattern : White PF900 PV : White, SV : White, Pattern : White PF90 Relay contact output SSR drive voltage pulse output (0/V C) C current/voltage output See output table riac output Open collector output one Relay contact output SSR drive voltage pulse output (0/V C) C current/voltage output See output table riac output Open collector output one SSR drive voltage pulse output (0/V C) C current/voltage output See output table Open collector output V AC/C 00 to 0V AC O: points, Relay : O to odel and Suffix Hardware coding only O: points, Relay O to, Open collector: O to one C input: points FBR (FeedBack Resistance) input one Communication :RS-C :ot supplied igital input: 6 points, I to 6 <ote > igital input (I to 6) :RS-A :RS-8 :RS-C :ot supplied :ot supplied :RS-8 igital input: 6 points, I to 6 igital input: 6 points, I to 6 igital input: 6 points, I to 6 :RS-8 :RS-8 igital input: 6 points, I to 6 I7 to supplied as standard :ot supplied :RS-8 igital input: 6 points, I to 6 igital input: 6 points, I to 6 Quick start one code Specify quick start code Specify quick start code and (See page 7) o quick start code PI control with A (Reverse action) PI control with A (irect action) Control Heat/Cool PI control with A ethod Heat/Cool PI control with A for extruder (Air cooling type) Heat/Cool PI control with A for extruder (Water cooling type) Position proportioning PI control with A (Reverse action) Position proportioning PI control with A (irect action) and o quick start code range See range able Instrument version Version symbol Quick start code *, * V V V C F W X Y Quick start code o code F G A W Z C o code /Y /Y <ote > In case inter-controller communication (master-slave operation) is used, please select code: W, X, or Y (that means "with communication ") for a master device, and or X (communication : RS-8) for a slave device. * Please specify voltage or current output if program or retransmission output is necessary. Please specify relay or open collector output if digital output is necessary. * Heater break alarm (HBA) is not available or current/continuous voltage output. Loop break alarm (LBA) is not available for heat/cool PI control type. * Position proportional control can be used with/without FBR (feedback ) input. Control output (OU, OU) assignment by control action PI control action: Control output is produced from OU. OU can be used as retransmission output or digital output. Heat/Cool PI control action: Heating output is produced from OU and cooling output from OU. Position proportioning PI control action: Opening output is produced from OU and closing output from OU. Output able Output ype 0 to V C * 0 to V C 0 to 0V C Output ype to V C 0 to 0mA C to 0mA C *: 0 to V C output can be specified only for Output (Analog retransmission output) Range able hermocouple R K J E K K K K 09 K K 0 K 06 K C9 K B K A K C J 7 J 9 J 6 J J C9 J B J B6 J B9 E 0 E 7 E 08 E 06 E B E A6 E B Range to C to+7.0 C 0.0 to 00.0 C 0.0 to 00.0 C -00 to +7 C 0 to 00 C 0 to 00 C -8.0 to +0.0 F 0.0 to F 0.0 to F -8 to +0 F to C to+00.0 C 0.0 to 00.0 C -00 to +00 C -8.0 to +9.0 F 0.0 to 00.0 F 0.0 to F -8 to +9 F to C to C 0.0 to C -00 to +000 C -8.0 to +8.0 F 0.0 to F -8 to +8 F S R B C B7 A7 C9 S 0 S 07 S 06 S A8 S A S A7 R 0 R 08 R 07 R A8 R A R A7 B 0 B 0 B A9 B B B B 0 0 A8 A A7 Range to to C C 0.0 to 00.0 C -00 to +00 C -8.0 to to +7.0 F F 0.0 to F -8 to +7 F 0.0 to C -0.0 to C -0 to +768 C -8.0 to +.0 F 0.0 to 00.0 F -8 to + F 0.0 to C -0.0 to C -0 to +768 C -8.0 to +.0 F 0.0 to 00.0 F -8 to + F 0.0 to C 0 to 800 C 0.0 to 00.0 F 0.0 to 7.0 F 0 to 7 F 0.0 to 00.0 C 0 to 00 C 0.0 to 7.0 F 0.0 to 00.0 F 0 to 7 F PLII (BS) WRe/W6Re (AS) L (I) U (I) PR0-0 A 06 A 0 A 0 A A7 A A A A W 0 W 06 W 0 W A8 W A6 W A L 0 L 0 L A6 L B L A U 0 U 08 U B U B U B F 0 F 0 F A F A Range 0.0 to 90.0 C 0.0 to 00.0 C 0 to 90 C 0.0 to.0 F 0.0 to 00.0 F 0 to F 0.0 to 00.0 C 0.0 to 00.0 C 0 to 00 C 0.0 to 00.0 F 0.0 to 00.0 F 0 to 00 F 0.0 to C 0 to 900 C 0.0 to F 0.0 to 6.0 F 0 to 6 F 0.0 to C 0 to 600 C 0.0 to 00.0 F 0.0 to.0 F 0 to F 0.0 to C 0 to 800 C 0.0 to 00.0 F 0 to 00 F Range to+0.00 C to C to C to C Pt to +80 C C9-8.0 to +6.0 F B to F -8 to +6 F P to+0.00 C P to C JPt00 P to C P to C P to 00.0 C P -00 to +60 C C Current Voltage 0 to 0mV 0 to 00mV 0 to V 0 to V 0 to 0V to V 0 to 0mA to 0mA -00 to +00mV - to +V -0 to +0mV -0 to +0V - to +V Range to +000 (Programmable) Factory set value: 0.0 to 00.0% 6

7 Quick start code Quick start code tells the factory to ship with each parameter preset to the values detailed as specified by the customer. Quick start code is not necessarily specified when ordering, unless the preset is requested. hese parameters are software selectable items and can be re-programmed in the field via the manual. Quick start code Specifications (Initial setting code) igital input allocation See igital Allocation table igital output type See igital output code table igital output type See igital output code table igital output type See igital output code table igital output type See igital output code table o C and C C : CL-6-P-, C : o use C types C : CL--S6-0L-, C : o use C : CL-6-P-, C : CL-6-P- C : CL--S6-0L-, C : CL--S6-0L- o communication () Communication ASI/RKC standard protocol OBUS protocol is used exclusively for inter-controller communication. efault setting value of igital output type igital output : eviation High igital output : eviation Low with Hold igital output : ime signal igital output : Pattern end output * Heater break alarm (HBA) is not available for current/continuous voltage output. * Loop break alarm (LBA) is not available for heat/cool PI control type. igital allocation table P S U igital output code table (Programmable) Event types o event eviation High A eviation Low B eviation High/Low (Common high/low setting) Band (Common high/low setting) eviation High with Hold eviation Low with Hold C E F eviation High/Low with Hold (Common high/low setting) Process High Process Low Process High with Hold G H J K Process Low with Hold L Heater Break Alarm (HBA) * P Heater Break Alarm (HBA) * Q Loop Break Alarm (LBA) * R FAIL S FBR Abnormality Band (Individual high and low settings) U Set value High V Set value Low W eviation High/Low (Individual high and low settings) X eviation High/Low with Alarm Hold (Individual high and low settings) Y V value High V value Low Cool side V value High Cool side V value Low ime signal ime signal ime signal ime signal Pattern end output I I I I I I6 I7 I8 I9 I0 I Pattern o. Selection Pattern o. Set RESE RU SEP HOL Pattern o. Selection Pattern o. Selection Pattern o. Set RESE RU SEP Pattern o. Selection WAI release WAI release WAI release WAI release WAI release WAI release Pattern o. Selection Pattern o. Set WAI release WAI release WAI release WAI release WAI release WAI release Pattern o. Selection WAI release WAI release WAI release WAI release WAI release WAI release RESE RU SEP HOL irect/reverse selection WAI release WAI release WAI release WAI release WAI release WAI release RESE RU SEP HOL Pattern o. Selection (Increment) Example of odel and Quick start code odel code Specifications : hermocouple PR0-0, ax.800 C, resolution 0. C Control: Heating control (Output: to 0mA C) igital output : points (Relay contact output) igital output : eviation high, igital output : Pattern end output igital output : ime signal output, igital output : ime signal output Retransmission output: 0 to 0V C ime signal output: 8 points (open collector) igital input: WAI release + Pattern o.selection, (With Pattern o.set) Communication: RS-C (OBUS) + inter-controller communication PF *W-FF0 OU (Heat output) : to 0mA C : 8 OU (Cool output) : one : OU (Retransmission) : 0 to 0V C : Supply voltage igital output: Relay (event) points (O to ) : C/FBR input: one : Initial setting code -A96- /Scale range : PR to C : F0 Control action: PI with A (reverse) : F Specify quick start code : Communication/igital input: : RS-C, : Inter-controller I : 6 points (I to 6) : W I7 to as standard igital input : WAI release, P.o Select, P o.set igital output : eviation high : A igital output : igital output : igital output : Accessories odel code CL-6-P- (0 to 0A) CL--S6-0L- (0 to 00A) Pattern end output : 9 ime signal : : 6 (Sold separately) Current transformer for heater break alarm (HBA) CL-6-P- Approx.0 ime signal. (Unit : mm) CL--S6-0L- Approx.00 0 : erminal Cover (two pieces necessary) odel code : KFB00-8 protocol : OBUS : C type : one : 0 0 φ φ epth 7

8 External imensions Unit : mm (erminal cover) 9.8 Panel cutout (Rubber packing) (Panel thickness: to 0mm) Rear erminals Please use solderless terminal with width smaller than.9mm. Unused terminals are not supplied with screws. o. 0 Standard 6 I 7 I 8 I 9 RESE RU SEP RESE RU SEP () () () Ptn. o () () () Ptn. o RESE RU SEP RESE RU SEP igital inputs (I 7 to ) C C I0 I HOL () () Ptn.o. (6) Ptn. o (8) C,C inputs Ptn. SE (8) (6) Open (O) (W) Close (C) HOL ir/rev HOL Ptn. IC Feedback A B B () () () easuring input ()hermocouple ()R ()Voltage/Current o. AC L C 00-0V V V O O O O 6 7 O O 8 O O 9 O riac 0 () () () () Power supply Standard igital outputs, (O, ) Relay contact output Standard igital outputs, (O, ) Relay contact output Output (OU) () Relay output () Voltage pulse/voltage/current () SSR (riac), () Open collector o (-) O O 6 O 7 O 8 (-) O 9 O0 O O igital outputs to 8 (O to 8) Open collector output igital outputs 9 to (O 9 to ) Open collector output o. 6 SG S SG /R(A) SG (A) SG Communication () RS-C RS-8 * R /R(B) (B) () RS-8 7 () () () RS-A 8 R(A) /R(A) Communication 9 R(B) () /R(B) (Inter-controllers) 0 : 0, :,,, I I I () () () Pattern o. WAI release WAI release WAI release igital inputs (I to 6) I (8) WAI release O () () riac () () Output (OU) () Relay output () Voltage pulse/voltage/current () SSR (riac), () Open collector 7 8 () () Output (OU) () Voltage pulse/voltage/ Current () Open collector 6 I I 6 (6) Pattern SE WAI release WAI release * : o use communication (inter-controller communication). please specify RS-C or RS-8 for communication. Safety Warning Before operating this product, read the instruction manual carefully to avoid incorrect operation. his product is intended for use with industrial machines, test and measuring equipment. It is not designed for use with medical equipment. If it is possible that an accident may occur as a result of the failure of the product or some other abnormality, an appropriate independent protection device must be installed. Caution for the export trade All transactions must comply with laws, regulations, and treaties. Caution for imitated products As products imitating our product now appear on the market, be careful that you don't purchase these imitated products. We will not warrant such products nor bear the responsibility for any damage and/or accident caused by their use. R (RIKA KOGYO CO.,L) HEA OFFICE : 6-6, KUGAHARA CHOE OHA-KU OKYO 6-8 JAPA PHOE : ( ) info@rkcinst.co.jp FAX : ( ) C900PF0E Printed in Japan : APR.00 OBB8H(P) All Rights Reserved.

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