FB900 FB mm. General Description. Features. Temperature/Process Controller FB900/400. Numerous inputs and outputs
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- Damon Sutton
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1 emperature/process ler FB900/00 FB900 FB00 General escription he FB Series is a high performance process controller with a more advanced Brilliant II PI, autotuning, selectable sampling cycle time of 0.0/0./0. second and 0.% of accuracy in short depth housing. Applications include various plastic machines (extrudes, injection machine, etc), electric furnaces, semiconductor, food processing, environmental chambers and many others. Features High Accuracy with selectable sampling cycle time he depth of 60mm Inter-cntroller Brilliant II PI control Start-up tuning and Autotuniung Panel space saving : 60mm depth he FB Series has very short depth as a /8 or / I size controller. he series was designed with a mounting bracket that allows close horizontal mounting of as many as six units. Easy maintenance 60mm umerous inputs and outputs Universal input hermocouple R C voltage C current Up to points igital input Remote setting input Power feed forward PFF input Up to points ASI, MOBUS communication Inter-controller communication Loader communication irect Function eys Up to points igital output Analog retransmission output Heat/Cool control Position proportioning control without FBR hree direct function keys enable one-touch operation on frequently used functions such as Auto/Manual, Monitoring display scroll, and Memory area selection. he keys can also be configured as RU/SOP, Remote/Local, and Auto/Manual keys.. Auto/Manual, Monitoring display scroll, Memory area selection A/M MOI AREA he internal assembly of the FB Series can be removed from the front. Plug-in lock released bar. Auto/Manual, Remote/Local, RU/SOP A/M R/L R/S Label * Also possible to invalidate the direct mode selection key function. FB_0E
2 emperature/process ler FB900/00 Features Ramp / Soak Program he FB900/00 Series temperature controller has Recipe (Multi-memory Area) function which stores up to 8 sets of control parameters. 6 8 Set value Event to Set Value Proportional band (Heat and Cool) Integral time (Heat and Cool) erivative time (Heat and Cool) Link area number response Overlap/eadband Manual reset Ramp-to-setpoint (Up and own) LBA time Set value Area soak time Link area number Up to 6-segment ramp/soak control is available by using the memory area function (ramp-to-set point UP and OW, soak time, link area number). PA emp. Area SO Area SO Area SO < Link example of each area > Area soak time Area soak time Area SO changing rate limiter (High) Area SO changing rate limiter (High) Memory area Memory area Inter-controller Area SO changing rate limiter (Low) Area soak time Memory area ime he FB Series has a second communication port (COM) for intercontroller communication. It achieves more precise cascade control and ratio control by sending data via digital communication while conventional cascade controllers send data to slave controllers by analog signal with less resolution. umerous Inputs and Outputs A maximum of seven event inputs can be specified. A maximum of five outputs can be specified, and various output functions (control output, analog retransmission, event up to ) can be allocated in output logic operation. Available inputs and outputs depend on the specifications monitor C monitor C monitor monitor monitor monitor Event monitor Proportional band Integral time erivative time RU/SOP status "Seven parameters from 0XX0" monitor monitor Event monitor Proportional band Integral time erivative time RU/SOP status Inter-controller User mapping area (Up to 6 parameters) Group Group (RS-8) Group 6 Up to units Auto-temperature-rise with Learning Function Auto-temperature-rise with learning function achieves temperature uniformity at ramp-up without partial thermal expansion even when using multiple FB Series controllers. Up to controllers with 6 groups can be configured. Auto-temperature-rise function is not available with Heat/Cool PI control toe. emperature Ratio Setting If the master controller changes the control set value, the slave controllers will also change the set values by following preset ratios to the master. Up to controllers with 6 groups can be configured. When automatic temperature rise is not set CH A Start B C Ratio CH A wait CH B wait CH C wait All CH emperature rise completion Ratio Ratio When automatic temperature rise is set Start All CH emperature rise completion Cascade It is effective when a thermal time-delay exists between the heat source and a control point. A maximum of 0 slave controllers can be connected to one master controller. Master MV Slave Ratio Ratio Ratio Group RU/SOP Function When RU/SOP mode is changed on one controller in a group, the mode of all the other controllers in the same group will be also automatically changed. Up to controllers with 6 groups can be configured. Master CH Slave Group Group SOP SOP SOP SOP RU RU RU RU CH CH CH CH CH CH (ote) ime lag among controllers caused by inter-controller communication is (Max.0ms) x (number of controllers connected). Please consider the time lag of inter-controller communication for high-speed process control in which process changes rapidly. FB_0E CH
3 emperature/process ler FB900/00 Features Brilliant II PI Selectable PI control algorithm PI control algorithm is selectable in the FB Series to achieve the most precise control for various applications. erivative PI : suitable for fixed setpoint control (Factory setting) eviation erivative PI : suitable for ramp control using rampto-setpoint function and cascade control. derivative type PI control Overshoot Hunting Most adaptive to conventional fixed value control eviation derivative type PI control Follow-up Most adaptive to conventional fixed value control Follow-up Selectable sampling time among 0ms, 00ms, and 0ms. Selectable sampling time makes the FB Series suitable for any application ranging from pressure control requiring fast response to precise control requiring highest resolution. he selections are 00ms (factory setting) usually suitable for most of standard applications, 0ms for fast response applications, and 0ms for precise control requiring high-resolution. he PI parameters can be set in /0 unit which supports fast and accurate control. Ramp-to-setpoint and output-change-limiter functions are each settable for UP and OW so that a special heater can be controlled precisely. Advanced Heat/Cool PI algorithm with Undershoot Suppression Advanced Heat/Cool PI algorithm achieves stable control by the Undershoot Suppression (USS) function, and independent P-I- settings for both Heat and Cool which are effective for applications with strong cooling gain. Response type selection is settable to avoid overshoot at start-up and against external disturbance. he FB Series also offers selection of water cool and air cool PI control algorithm. Configurable control type he control type is configurable among Heat, Cool, Heat/Cool, and position proportioning. ( C) ms sampling controller FAS MEIUM SLOW ( C) sec sec response parameter 0ms sampling controller USS (Under Shoot Suppression) gain USS gain : Small USS gain : Large * USS setting range : to.000 Autotuning Autotuning to calculate optimum PI parameters he improved Autotuning alrogithm calculates optimum PI parameters. For Heat/Cool control, PI parameters for both sides (Heat and Cool) are calculated. Start-up tuning to eliminate time for autotuning Start-up tuning eliminates time required for conventional autotuning as it calculates optimum PI values by temperature characteristics at start up. It is useful in applications which require a long time for conventional autotuning. he timing of activation of start-up tuning can be selected from at power-up, at setpoint change, and at power-up/setpoint change. It is also settable to Only-once or always-o. Startup tuning is not available with Heat/Cool PI control type. Validity/invalidity of the startup tuning function can be set. Heater power needs to be turned on simultaneously with or before turning on power to the temperature controller. If start-up tuning does not calculate suitable PI values due to characteristics of application, use Autotuning function. Only execution at power O uning O Power O Only execution at change uning O change Execution at power O and change uning O Power O uning O change Output limiters high and low for autotuning Output limiters high and low for autotuning enables autotuning to be used with any application in which the output has to be within limited range, even during autotuning. High and low are independently settable. A function when limiter is not effective. A function when limiter is effective. Output 00% Output 0% A O Output 00% A output limiter High A output limiter Low Output 0% A O FB_0E
4 FB900 A/M MOI AREA emperature/process ler FB900/00 Features Setup and ata Monitoring he FB Series has the loader port (provided as standard) to connect to a PC USB port with Windows000/XP. he standard port allows setup and data logging to be managed by the PC. he FB Series is recognized as an external device on the PC. Easy data monitoring/logging withwin-uci he Win-UCI can store maximum 8,000 points of data. ata can be exported as an electronic file in C format. It has a trend graph function and data monitoring function. "Win-UCI" software for setup & data logging is free. Simply download "Win-UCI" from the RC Instrument website ( RS-8 RS-C C File Up to units USB Easy setup with Win-UCI Using the Win-UCI, the controller setup and parameter settings can be done from a PC. he parameter settings can be stored on the PC making it easy to copy the same parameters to other FB Series controllers. he instrument must have a hardware required for selected functions. ata logging and trend graph screen emperature monitoring screen Customize the background with your own picture (bitmap format) o power supply cable necessary at setup When setting up the FB Series via the loader port, the power can be supplied from the PC via the USB port so no power supply cable is necessary. ust connect the cable to the FB Series and setup is ready to go. ata setting screen MV Upload ownload USB port Loader port (Provided as standard) converter converter : COM- (Unit : mm) Connector (Phoenix contact) (Included in a converter package) 6 Loader communication Cable length :.m 0 9 Cable length : m RS-A/8 USB Reinforced Insulation, Lead-free PCBs, Low Power Consumption Reinforcement Insulated Power Supply Circuit Power supply circuit of the FB Series has been designed to be reinforcement insulated. It saves cost to perform basic insulation on the equipment side. <Requirements for electrical equipment according to safety standards> he safety standards on electrical equipment (IEC 600- and ISC 00-) request that the secondary side of the equipment which may be touched by the operator should be double insulated or reinforcement insulated* from high voltage causing electric shock. Insulation safeguarding personnel from electric shock which is equal to double insulation or higher is called "reinforced insulation". Lead-free esign complying with EU irective he FB Series uses lead-free PCBs complying with EU irective *. * WEEE irective (Waste Electrons/Electrical Equipment irective) and RoHS irective (irective of Restricting the use of Harmful Materials for Electrical Products) Low Power Consumption, Low Heat Generation he power consumption is 0% less than the equivalent model of RC REX-F900. he saving is VA per controller at 0VAC. It also generates less heat and it helps keep temperature low inside the control cabinet. FB_0E
5 A6P ACPU PA0 emperature/process ler FB900/00 Features Open etwork Connectivity he FB Series can be connected to various Open etworks, such as PROFIBUS, eviceet, CC-Link, and Ethernet via a gateway. A gateway with the MAPMA function is available with the FB Series. he MAPMA function requires no PLC programming and automatically writes process data into the PLC registers and updates parameters continuously. CC-Link eviceet PROFIBUS Ethernet MV RS-8 COM-C COM-H COM-G COM-L A/M MOI AREA MOBUS protocol protocol converter PLC FB900 MAPMA Mitsubishi MELSEC series Program free Omron SYSMAC series COM-E FB_0E
6 emperature/process ler FB900/00 Specifications Input Input Universal input a) emperature, Current, Low voltage input group hermocouple :,, R, S, B, E,, (IS/IEC), PLII (BS), WRe/W6Re (ASM), U, L (I) Influence of external resistance : Approx. 0.µV/Ω Input break action : Up-scale / own-scale (Selectable) R : Pt00 (IS/IEC), Pt00 (IS) Influence of input lead resistance : Approx. 0.0[%/Ω] of reading Maximum 0Ω per wire Input break action : Up-scale Low voltage : 0 to V C, 0 to 00mV C, 0 to 0mV C, -00 to +00mV C, -0 to +0mV C Input break action : Up-scale / own-scale (Selectable) Current : to 0mA C, 0 to 0mA C Input break action : Uncertain (indicates a value around 0mA) b) High voltage input group High voltage : 0 to V C, to V C, 0 to 0V C, - to +V C Input break action : Uncertain (indicates a value around 0V) Sampling ime 0. sec 0.0sec or 0.sec is available. Input igital Filter 0. to 00.0 sec (OFF when 0 is set.) Bias -span to +span Ratio 0.00 to.00 Square Root Extraction Equation : = (Input value x ratio + bias) Low level cut OFF : 0.00 to.00% of span Performance Measuring Accuracy a) hermocouple ype :,,, 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) More than 00 C (9 F) : ±(0.% of Reading + digit) ype :, S, R, WRe/W6Re Less than 0 C ( F) : ±.0 C (±.6 F) 0 to 000 C (-8 to 8 F) : ±.0 C (±.8 F) More than 000 C (8 F) : ±(0.% of Reading + digit) ype : B Less than 00 C ( F) : ±0.0 C (±6 F) 00 to 000 C ( to 8 F) : ±. C (±. F) More than 000 C (8 F) : ±(0.% of Reading + digit) Cold junction temperature compensation error ±.0 C (.8 F) [at to 0 C ( to 0 F)] Within ±. C (±. F) [Between -0 and C ( to F), 0 and 0 C (0 to F)] b) R Less than 00 C (9 F) : ±0. C (±0. F) More than 00 C (9 F) : ±(0.% of Reading + digit) c) C voltage and C current ±(0.% of span) Close horizontal mounting error : ±. C (±. F) Insulation Resistance More than 0MΩ (00V C) between measured terminals and ground More than 0MΩ (00V C) between power terminals and ground ielectric Strength 000V AC for one minute between measured terminals and ground Method a) Brilliant II PI control Available for reverse and direct action. b) Brilliant PI control (Heat/Cool type) c) Position proportioning control without feedback resistance. a), b), c) is selectable. Autotuning Method a) For PI control (irect action/reverse action) b) For Heat/Cool PI control (For extruder, air cooling type) c) For Heat/Cool PI control (For extruder, water cooling type) d) For Heat/Cool PI control Startup tuning he condition to activate Startup uning is selectable among a) to g) a) At power-on, one-time tuning b) At change, one-time tuning c) At power-on and change, one-time tuning d) At power-on, always on e) At change, always on f) At power-on and change, always on g) Function off (ot available for Heat/Cool PI control type) Major Setting Range Set value : Same as input range. Proportional band : 0 to input span (emperature input) 0.0 to 000.0% of span (Voltage, Current input) (O/OFF control when P = 0) Integral time : 0 to 600sec. or 0.0 to 999.9sec. (selectable) erivative time : 0 to 600sec. or 0.0 to 999.9sec. (selectable) Cool-side proportional band : to input span (emperature input) 0. to 000.0% of span (Voltage, Current input) Cool-side integral time : 0 to 600sec. or 0.0 to 999.9sec. (selectable) Cool-side derivative time : 0 to 600sec. or 0.0 to 999.9sec. (selectable) eadband/overlap : -span to +span (emperature input) to +00.0% of span (Voltage, Current input) response : Slow, Medium, Fast Ramp-to-setpoint : 0 to span per ime (ime is selectable between and 600 sec) (Up/own individual setting) Output limiter : -.0 to +0.0% (High/Low individual setting) Cool-side output limiter : -.0 to +0.0% (High/Low individual setting) Output change rate limiter : 0.0 to 00.0%/sec. (Up/own individual setting) Cool-side output change rate limiter : 0.0 to 00.0%/sec. (Up/own individual setting) Proportional cycle time : 0. to 00.0 sec. Cool-side proportional cycle time : 0. to 00.0 sec. Manual reset : to +00.0% Output at control stop mode : -.0 to 00.% (Heat/Cool individual setting) Motor Valve (position proportioning control type only) Motor time : to 000 sec. (full open to full close) Integral output limiter : OFF, 00.0 to 00.0% of motor time eutral zone : 0. to 0.0% ifferential gap : 0. to.0% Valve action at a stop mode : a) CLOSE : OFF, OPE : OFF b) CLOSE : O, OPE : OFF c) CLOSE : OFF, OPE : O a), b), c) is selectable. Memory area umber of memory area : 8 memory areas Setting item : Set value (), Proportional band, Integral time, erivative time, Cool-side proportional band, Cool-side integral time, Cool-side derivative time, eadband/overlap, response, Manual reset,ramp-to-setpoint (Up/own), Event set vale, LBA time, LBA deadband, Soak time : 0 min 0.00 sec to 99 min 9 sec or 0 hr 00 min to 9 hr 9 min (selectable) Linking area number : OFF, to 8 Main Output umber of Main Output Up to points (OU, OU) Output Items output, HBA output, FAIL output Output ype Relay output : Form A contact, 0V AC A (resistive load) Voltage pulse output : 0/V C Current output : (Load resistance : More than 600Ω) to 0mA C, 0 to 0mA C (Load resistance : Less than 600Ω) Continuous voltage output : 0 to V C, 0 to V C, to V C, 0 to 0V C (Load resistance : More than kω) SSR (riac) output : Rated current : 0.A Open collector output : (Sink type) Load voltage : Less than 0V C, Maximum load current : Less than 00mA O voltage : Less than V C (at 00mA) 6 FB_0E
7 Specifications emperature/process ler FB900/00 igital Input (I to : Optional, I to : Standard) umber of Inputs Up to points (I to, I to ) Input Rating on-voltage contact input Functions I to I : Memory area selection + Area set I to I : Run/Stop, Remote/Local, Auto/Manual, Alarm interlock reset, Selectable Remote Setpoint Input igital Output umber of Sub Output Up to points (O to O) Output Items Event output, Heater break alarm (HBA), FAIL Output ype Relay output : Form A contact, 0V AC A (resistive load) Event (Alarm) umber of Event Setting Up to points (Event to ) Alarms ype : Setting range eviation : Process, Set value : eviation High, Low, High/Low, Band, Process High, Low Set value High, Low MV value High, Low Cool side MV value (MV) High, Low FBR value High, Low Loop Break Alarm (LBA) - (Input span) to + (input span) ifferential gap : 0 to input span Same as input range ifferential gap : 0 to input span Power feed forward input Exclusive power feed transformer is required. MV value, FBR valued : -.0 to +0.0% loop break alarm (LBA) : LBA time : 0 to 00 sec. (OFF by setting zero) LBA deadband : 0 to input span Output Assignable to digital output (O to ). Other Functions a) Hold/Re-hold action (Valid for deviation/band/process alarm only) Hold action is activated at Power-up and SOP to RU. Re-hold action is activated at Power-up, SOP to RU, and the control set value change. b) Event action is configurable in case of input abnormality. c) Energized/de-energized action is configurable. d) elay timer : 0.0 to sec e) Interlock (latch) function is configurable. Heater Break Alarm umber of C Input Up to points C Input type CL-6-P- (0A), CL--S6-0L-(00A) Selectable Accuracy ± % of input value or ± A (whichever is larger) isplay range 0.0 to 00.0A Output Assignable to output or digital output (O to ). (Standard) Input C voltage (Low), Current : 0 to V C, 0 to 00mV C, 0 to 0mV C to 0mA C, 0 to 0mA C C voltage (High) : 0 to V C, to V C, 0 to 0V C input and remote setpoint input are not isolated for each other. Universal input Sampling time 0. sec (with measuring input sampling time of 0.0 sec) 0. sec (with measuring input sampling time of 0. sec) 0. sec (with measuring input sampling time of 0. sec) Accuracy 0.% of span Analog Retransmission Output umber of Outputs point Output types Measured value (), eviation (EV), Set value (), Manipulated output value (MV) Output Signal Current output : Feedback Resistance (FBR) Input s umber of communications : method : speed : Protocol : General Specifications Up to points COM: RS-8, RS-C, RS-A COM: For Inter-controller communication 00, 9600, 900, 800 BPS ASI X.8(96). A MOBUS Bit format Start bit : ata bit : or 8 For MOBUS 8 bit only Parity bit : Without, Odd or Even Stop bit : or Maximum connection : RS-8 : units (Including host) RS-A : 6 units (Including host) RS-C : unit to ler : to 0mA C, 0 to 0mA C (Load resistance : Less than 600Ω) Continuous voltage output : 0 to V C, 0 to V C, to V C, 0 to 0V C (Load resistance : More than kω) Resistance value Standard : 00 to 0kΩ (factory default Ω) Sampling time 0. sec (with measuring input sampling time of 0.0 sec) 0. sec (with measuring input sampling time of 0. sec) 0. sec (with measuring input sampling time of 0. sec) ot available with PFF or C input. Waterproof/ustproof Automatic temperature rise, Cascade control, emperature ratio setting, Group SOP/RU (Standard) EMAX, IP66 Waterproof/ustproof protection only effective from the front in panel mounted installation. Supply Voltage a) 90 to 6V AC (Including supply voltage variation) [Rating : 00 to 0V AC] (0/60Hz selectable) b).6 to 6.V AC (Including supply voltage variation) [Rating : V AC] (0/60Hz selectable) c).6 to 6.V C (Ripple rate 0% p-p or less) [Rating:VC] Power Consumption FB00 : Less than.9va for AC type (at 0V AC) Less than 8.VA for V AC type Less than 0mA for V C type FB900 : Less than.0va for AC type (at 0V AC) Less than 9.VA for V AC type Less than 00mA for V C type Power Failure Effect 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) Self-iagnostic Function Adjustment data check, Back-up check, A/ converter check, etc. Operating Environments : -0 to 0 C [ to F] to 9% RH. Absolute humidity : MAX. W.C 9.g/m dry air at 0.kPa. Memory Backup : Backed up by non-volatile memory (FRAM) ata retaining period : Approx. 0 years umber of writing : Approx.,000,000,000,000,000 times. (epending on storage and operating conditions.) et Weight FB00 : Approx. 0g FB900 : Approx. 90g External imensions (W x H x ) FB00 : 8 x 96 x 60mm FB900 : 96 x 96 x 60mm FB_0E
8 emperature/process ler FB900/00 Model and Suffix Code Specifications Model Output (OU) Output (OU) Power supply igital output C input, * Power feed forward (PFF) input, Feedback resistance Retransmission output igital input (I to ) <Area selection> Case color Initial setting ** Model and Suffix Code Hardware coding only Quick start code FB00 (8 x 96mm /8 I size) FB900 (96 x 96mm / I size) Y Relay contact output M Voltage pulse output : 0/V C V C ma, mv, V (See Output Signal Code able, Code : to 8) riac (SSR) output Open collector output o supplied Relay contact output M Voltage pulse output : 0/V C V C ma, mv, V (See Output Signal Code able, Code : to 8) riac (SSR) output Open collector output V AC/C 00 to 0V AC o supplied O points (O to O) ot supplied C input : points PFF input (Within transformer 00 to 0V AC type) PFF input (Within transformer 00 to 0V AC type) C input : point + PFF input (Within transformer 00 to 0V AC type) C input : point + PFF input (Within transformer 00 to 0V AC type) Feedback resistance input F o retransmission output C ma, mv, V (See Output Signal Code able, Code : to 8) ot supplied : RS-C, : ot supplied With digital input (I to ) Area selection : RS-A, : ot supplied With digital input (I to ) Area selection : RS-8, : ot supplied With digital input (I to ) Area selection : RS-C, : RS-8 With digital input (I to ) Area selection W : RS-8, : RS-8 With digital input (I to ) Area selection X : ot supplied, : RS-8 With digital input (I to ) Area selection Y igital input : points (I to I) <Area selection> White case Black case A o quick start code (efault setting) Specify quick start code Specify quick start code and (See page ) igital ler o quick start code PI control with A (Reverse action) PI control with A (irect action) Method Heat/Cool PI control with A Heat/Cool PI control with A for extruder (Air cooling type) Heat/Cool PI control with A for extruder (Water cooling type) Position proportional PI control without FBR Input and o quick start code range See Input range Code able Instrument version Version symbol Universal input, no model code required on hardware code. * When HBA (heater break alarm) is used, select the "C input" from the model code. ** When inter-controller communication is used, please specify code "W, X or Y (COM : RS-8). Remote setpoint input is not available with inter-controller communication. Quick start code Input range code table hermocouple Input Code Range Input to C to C to 00.0 C to C -00 to + C 0 C A 0 to -8.0 to F 0.0 to 00 C F 0 C 0 to -8 to 800 C +0 F C6 A -0.0 to F 0 to 800 F S R A 0 to 600 F to C 0.0 to 0 to 00.0 C 00 C to C 0.0 to 0 to C 800 C -00 to +00 C E B Output signal code table Code Range Input Code Range C to F PLII A 0 0 to 90 C C6-8.0 to F (BS) A A 0 to F B6 0.0 to F WRe/W6Re W 0 0 to 00 C B9-8 to +9 F (ASM) W A 0 to 00 F A 0 to 800 F U U to C A 0 to 600 F (I) U B 0.0 to.0 F to C L L to C C -8.0 to +.0 F (I) L A 0.0 to 6.0 F S 06-0 to +68 C S A -8 to + F R 0-0 to +68 C R A -8 to + F C Current Voltage E to C Input Code Range E to +000 C 0 to 0mV 0 E A9-8.0 to +9.0 F 0 to 00mV 0 E B -8 to +8 F 0 to V to 00.0% B 0 0 to 800 C 0 to V 0 B B 0 to F 0 to 0V to 00 C to V 6 0 A 0 to F o code F G A W Z o code Input Code Range to C Pt to C to C C to F C9-8.0 to +6.0 F P to C P to C Pt00 P C to F P C9-8.0 to +8.0 F P to F 0 - V C * 0 - V C 0-0V C 6 - V C 0-0mA C 8-0mA C * 0 to VC output can be specified only for analog retransmission output. R Input Code Range 0 to 0mA 0 to 0mA to +00mV to 00.0% - to +V to 0mV 9 0 Y 8 FB_0E
9 emperature/process ler FB900/00 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. Initial Setting Code Specifications Output logic selection Remote setpoint input signal Event type Event type Event type Event type Quick Start Code See output logic code table. 0 to 0mV C 0 to 00mV C 0 to V C 0 to V C 0 to 0V C to V C 0 to 0mA C to 0mA C ot supplied See event type code table ot supplied See event type code table ot supplied See event type code table ot supplied See event type code table LBA ( loop break alarm) o C and C C : CL-6-P-, C : o use C type C : CL--S6-0L-, C : o use C : CL-6-P-, C : CL-6-P- C : CL--S6-0L-, C : CL--S6-0L- ot supplied protocol ASI/RC standard MOBUS * Please specify "8" when the remote setpoint input signal is not used. 6 8 PS U Output Logic Code able. Output Output igital Output (OU ) (OU ) (O ) output output output output output output output output output output output HBA HBA FAIL (e-energized) Event Event Event Event Event Event Event igital Output igital Output igital Output (O ) (O ) (O ) Event Event Event HBA Event Event Event Energized/e-energized is configurable except for the FAIL output. (Factory default setting: Energized) Invalid for a non-existing output/event function. (Caution) When used as heating/cooling control/position proportioning control, select any code of to. Event Event HBA Event Event Event Event Event HBA FAIL (e-energized) Event Event FAIL (e-energized) Event Code 6 Event ype Code able. Event type eviation High eviation Low eviation High/Low Band eviation High with Alarm Hold eviation Low with Alarm Hold eviation High/Low with Alarm Hold Process High Process Low Process High with Alarm Hold Process Low with Alarm Hold eviation High with Alarm Re-Hold eviation Low with Alarm Re-Hold eviation High/Low with Alarm Re-Hold Set value High Set value Low MV value High MV value Low Cool side MV value High Cool side MV value Low Code A B C E F G H L Q R V W Accessory Current transformer for heater break alarm (HBA) (Sold separately) Model code CL-6-P- (0 to 0A) CL--S6-0L- (0 to 00A) erminal cover Model Code : FB00-8 (FB900 uses unit) (Sold separately) (For Power feed forward input) * Supplied when power feed forward function is specified. Max.0 (Unit : mm) 9 ±0. Mounting dimension 9 ±0. CL-6-P- Approx.0. (Unit : mm) -M φ.8 FB00 Max.68 CL--S6-0L- Approx FB900 Max.6. φ 0 0 M epth 0 ± * When ordering transformer for replacement, please specify one of the following model codes. 00 to 0V AC type : PF-0 00 to 0V AC type : PF-0 FB_0E 9
10 emperature/process ler FB900/00 FB00 96 External imensions and Rear erminals Panel Cutout +0.8 (Close horizontal mounting) * Up to 6 units 0 9 L Unit : mm FB (Panel thickness must be between to 0mm) Panel Cutout +0.8 L=(96Xn-) 0 n : umber of controllers (=<n=<6) (Close horizontal mounting) * Up to 6 units L (Panel thickness must be between to 0mm) L=(8Xn-) n : umber of controllers (=<n=<6) FB00 FB900 Waterproof/dustproof is not available for close horizontal mounting Use a solderless terminal for screw size MX6. o AC L C 00-0V V V COM O O COM O O O O O O 0 O () () () O () () () escription Power supply (*) igital output, (O, ) Relay contact output (*) igital output, (O, ) Relay contact output Main output (OU) () Relay contact output () Voltage pulse / Current/Voltage () SSR (riac) / Open collector Main output (OU) () Relay contact output () Voltage pulse / Current/Voltage () SSR (riac) / Open collector o escription SG S SG /R(A) SG (A) (*) () RS-C /R(B) (B) () () RS-8 R(A) /R(A) () RS-A R(B) /R(B) () () () RS-8 COM (*) () I igital input () I (Memory area selection) I to I () I (SE) on voltage contact input I R () AO Analog retransmission output (AO) (*) Optional (*) o COM I I 6 I COM (A) OPE (B) COM (C) (O) C C (W) C PFF (C) CLOSE A B B () () () escription C : Current transformer for heater break alarm PFF : Power feed forward transformer igital input (Mode selection) I to I on voltage contact input () C,C input (*) () Feedback resistance input () C input + Power feed forward input Remote setpoint input Measured input (A) hermocouple (B) R (C) Voltage/Current 0 FB_0E
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