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19

SAIA

®

 S-Bus

This chapter describes how the individual registers, inputs, flags, etc. are approached.  
No reference is made here to addresses of the respective inputs and outputs. Addresses are to be taken  
from the type-specific device datasheet in question. 

General 
In order to enable using the SAIA

®

 S-Bus, it is necessary to put the SASI initialisation “SASI S-Bus Master” before  

the FBoxes used for communication.  
Optional also the FBox “S-Bus Station” can be used for each individual fieldbus device. By means of this FBox  
communication is optimised and after a fieldbus device failure, communication is recovered again. 

Bus connection 
The terminals A and B have different designations at the SAIA

®

 S-Bus. These are to be allocated as follows:  

A  =  ⁄  D 
B = D

Analog values 
Analog values are generally treated as WORD REGISTER (32 BIT) in the FB-II fieldbus system.
Temperature measurement data are forwarded as integer with 1  ⁄  10 °C increments. 
21,3 °C  ............. corresponds to the value 213.
Active measurement and output values (0 .. 10 V and 0 ... 20 mA) are forwarded at a resolution of 1  ⁄  100 of a unit. 
6,7 V .................. corresponds to the value 670. 
11,25 mA  ......... corresponds to the value 1125.

Digital input 
Digital inputs are treated as individual FLAGS (bits) in the FB-II fieldbus system. 
Here it is immaterial whether only one or several inputs are read at the same time.

Digital output  
Digital outputs are treated as individual OUTPUT (bits) in the FB-II fieldbus system.  
Here it is immaterial whether only one or several outputs are written or read at the same time.

Emergency operation switches  
Switches of the emergency operation level are treated as individual FLAGS (bits) in the FB-II fieldbus  
system like digital inputs.  
Here it is immaterial whether only one or several switches are read at the same time. 

Emergency operation potentiometers  
Potentiometers of the emergency operation level are treated like active analog inputs. 
The potentiometer position corresponds to an output signal of the respective device type (0 .. 10 V)  
and is forwarded at a resolution 1  ⁄  100 of a unit. 
U-type ...... 67% ........ corresponds to the value 670 or 6,7V respectively. 
I-type  ....... 50% ........ corresponds to the value 1000 or 10 mA respectively.

SASI S-Bus initialisation 
In order to enable using the SAIA

®

 S-Bus, it is necessary to place the SASI initialisation before the first communication  

FBox in the FUPLA programme. This can be done by using the FBox “SASI S-Bus Master”
Settings in the FBox: 
Cannel ................................................... The PLC channel’s number used 
TS-Delay ................................................ 0  ms
TN-Delay................................................ 0  ms
Timeout ................................................. 100  -  1000  ms    (depending  on  complexity  of  network)
S-Bus Mode .......................................... Parity ⁄ Data
Gateway ................................................ No
RS Type ................................................. RS485
Transmission speed ............................ Select the same desired transmission speed, which is preset at the fieldbus devices. 
S-Bus station (optional) 
Optional also the FBox “S-Bus Station” can be used for each individual fieldbus device.  
By means of this FBox communication is optimised and after a fieldbus device failure, communication is recovered again. 

Summary of Contents for THERMASGARD 9111

Page 1: ...ons Mounting Installation Fieldbus input modules and fieldbus output modules F Notice d instruction Modules d entr e bus de champ et modules de sortie bus de champ r Fieldbus THERMASGARD 9111 mit 8 an...

Page 2: ...ncy operating level avec 8 sorties analogiques 0 10V commande manuelle et commande de secours 8 0 10B THERMASGARD 9112 mit 8 Relais Ausg ngen und Handbetrieb with 8 relay outputs and manual mode avec...

Page 3: ...A Digital Ausgang Relais max 250 V AC 6A AC1 2A AC3 Analog Eingang passiv Pt100 Pt1000 Ni1000 Ni1000 LG 0 5 mA Analog Eingang aktiv 0 10V Ri 10k 0 20mA B rde 200 Analog Ausgang U 0 10V max 10mA je Aus...

Page 4: ...egebenen Verwendungszweck zu nutzen dabei sind die entsprechenden Sicherheitsvorschriften des VDE der L nder ihrer berwachungsorgane des T V und der rtlichen EVU zu beachten Der K ufer hat die Einhalt...

Page 5: ...auf die Busleitung sendet ON ON 1 1 8 8 Rx Tx 0V sorgung 24V DC RS485 Busabschluss Bus adresse Busparameter Baudrate Datenbits RS485 Bus Konfiguration Die Position der DIP Schalter ist oben mittig Der...

Page 6: ...s 1 bis 8 eingestellt werden ON ON 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Busabschluss Bus adresse Busparameter Baudrate Datenbits RS485 Bus ON ON 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Busabschluss Bus a...

Page 7: ...bei ist es egal ob nur ein oder mehrere Eing nge gleichzeitig gelesen werden Digital Eingang read Discrete Inputs 0x02 Digital Ausgang Digitale Ausg nge werden als einzelne Bits im FB II Feldbussystem...

Page 8: ...Ausgang Digitale Ausg nge werden als einzelne OUTPUT Bits im FB II Feldbussystem behandelt Dabei ist es egal ob nur ein oder mehrere Ausg nge gleichzeitig geschrieben oder gelesen werden Notbedienung...

Page 9: ...ss Startadresse mit der das Beschreiben beginnen soll Die Anzahl der zu schreibenden Outputs wird durch ausziehen der F Box erreicht S Bus Output lesen Output lesen mit F Box Empfang Bin r Einstellung...

Page 10: ...ister R 10 E 11 Holding Reg 11 Register R 11 E 12 Holding Reg 12 Register R 12 E 13 Holding Reg 13 Register R 13 E 14 Holding Reg 14 Register R 14 E 15 Holding Reg 15 Register R 15 16x digitaler Einga...

Page 11: ...Register R 17 Ni1000 WI 2 Holding Reg 18 Register R 18 Ni1000 WI 3 Holding Reg 19 Register R 19 Ni1000 WI 4 Holding Reg 20 Register R 20 Ni1000 WI 5 Holding Reg 21 Register R 21 Ni1000 WI 6 Holding Re...

Page 12: ...Register R 11 Ni1000 E 12 Holding Reg 12 Register R 12 Ni1000TK5000 E 13 Holding Reg 13 Register R 13 Ni1000TK5000 E 14 Holding Reg 14 Register R 14 Ni1000TK5000 E 15 Holding Reg 15 Register R 15 Ni1...

Page 13: ...100 der Einheit angegeben z B Wert 250 im Ausgangsregister entspricht 2 5 V am Ausgang Lesezugriff Sollwert Modbus RTU SAIA S Bus Potentiometer read Register analog Holding Register read WO 0 Holding...

Page 14: ...AC3 Analog input passive Pt100 Pt1000 Ni1000 Ni1000 LG 0 5 mA Analog input active 0 10V Ri 10k 0 20mA working resistance 200 Analog output U 0 10V max 10mA per each output Bus interface RS485 active g...

Page 15: ...their heat flow Direct sun irradiation or heat irradiation by similar sources powerful lamps halogen spotlights must absolutely be avoided Operating this device close to other devices that do not comp...

Page 16: ...g data to the bus line ON ON 1 1 8 8 Rx Tx 0V sorgung 24V DC RS485 Busabschluss Bus adresse Busparameter Baudrate Datenbits RS485 Bus Configuration The position of DIP switches is at the top centred T...

Page 17: ...ght DIP switch positions 1 through 8 ON ON 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Busabschluss Bus adresse Busparameter Baudrate Datenbits RS485 Bus ON ON 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Busabschlu...

Page 18: ...several inputs are read at the same time Digital input read Discrete Inputs 0x02 Digital output Digital outputs are treated as individual bits in the FB II fieldbus system Here it is immaterial whethe...

Page 19: ...s are treated as individual OUTPUT bits in the FB II fieldbus system Here it is immaterial whether only one or several outputs are written or read at the same time Emergency operation switches Switche...

Page 20: ...tination address Starting address writing should start wit The number of outputs to be written is obtained by extracting the FBox Reading S Bus Output Read Output using FBox Receive Binary Settings in...

Page 21: ...10 Register R 10 E 11 Holding Reg 11 Register R 11 E 12 Holding Reg 12 Register R 12 E 13 Holding Reg 13 Register R 13 E 14 Holding Reg 14 Register R 14 E 15 Holding Reg 15 Register R 15 16x digital i...

Page 22: ...gister R 17 Ni1000 WI 2 Holding Reg 18 Register R 18 Ni1000 WI 3 Holding Reg 19 Register R 19 Ni1000 WI 4 Holding Reg 20 Register R 20 Ni1000 WI 5 Holding Reg 21 Register R 21 Ni1000 WI 6 Holding Reg...

Page 23: ...gister R 11 Ni1000 E 12 Holding Reg 12 Register R 12 Ni1000TK5000 E 13 Holding Reg 13 Register R 13 Ni1000TK5000 E 14 Holding Reg 14 Register R 14 Ni1000TK5000 E 15 Holding Reg 15 Register R 15 Ni1000...

Page 24: ...indicated in 1 100 of a unit e g value 250 in the output register corresponds to 2 5V at the output Read access Setpoint Modbus RTU SAIA S Bus Potentiometer read Register Analog Holding Register read...

Page 25: ...4V DC 500mA Sortie num rique relais max 250 V AC 6A AC1 2A AC3 Entr e analogique passive Pt100 Pt1000 Ni1000 Ni1000 LG 0 5 mA Entr e analogique active 0 10V Ri 10k 0 20mA charge 200 Sortie analogique...

Page 26: ...s tre utilis proximit des sources de chaleur par ex radiateurs ou de leurs flux de chaleur il faut imp rativement viter un ensoleillement direct ou un rayonnement thermique provenant de sources simila...

Page 27: ...des donn es sur la ligne de bus ON ON 1 1 8 8 Rx Tx 0V sorgung 24V DC RS485 Busabschluss Bus adresse Busparameter Baudrate Datenbits RS485 Bus Configuration Les interrupteurs DIP sont plac s en haut...

Page 28: ...r DIP droit pos 1 8 ON ON 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Busabschluss Bus adresse Busparameter Baudrate Datenbits RS485 Bus ON ON 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Busabschluss Bus adresse Bu...

Page 29: ...FB II Il est gal qu une seule ou plusieurs entr es soient lues en m me temps Entr e num rique read Discrete Inputs 0x02 Sortie num rique Les sorties num riques sont trait es comme des bits individuel...

Page 30: ...e temps Sortie num rique Les sorties num riques sont trait es comme des SORTIES OUTPUT individuelles bits dans le syst me de bus de terrain FB II Ici il est gal qu une seule ou plusieurs sorties soien...

Page 31: ...se de d part d o l criture doit commencer Le nombre des sorties crire est atteint par une extension de la F Box Lire sortie S Bus Lire sortie avec F Box R ception binaire R glages dans la F Box Initia...

Page 32: ...0 Holding Reg 10 Register R 10 E 11 Holding Reg 11 Register R 11 E 12 Holding Reg 12 Register R 12 E 13 Holding Reg 13 Register R 13 E 14 Holding Reg 14 Register R 14 E 15 Holding Reg 15 Register R 15...

Page 33: ...ing Reg 17 Register R 17 Ni1000 WI 2 Holding Reg 18 Register R 18 Ni1000 WI 3 Holding Reg 19 Register R 19 Ni1000 WI 4 Holding Reg 20 Register R 20 Ni1000 WI 5 Holding Reg 21 Register R 21 Ni1000 WI 6...

Page 34: ...eg 10 Register R 11 Ni1000 E 12 Holding Reg 12 Register R 12 Ni1000TK5000 E 13 Holding Reg 13 Register R 13 Ni1000TK5000 E 14 Holding Reg 14 Register R 14 Ni1000TK5000 E 15 Holding Reg 15 Register R 1...

Page 35: ...helle de 1 100 par ex valeur 250 dans le registrede sortie correspond 2 5V la sortie Acc s lecture Potentiom tre Modbus RTU SAIA S Bus valeur prescrite read Register analogique Holding Register read W...

Page 36: ...9112 S Bus ModBus 24 24 5 24 V DC 24 500 250 6A AC1 2A AC3 Pt100 Pt1000 Ni1000 Ni1000 LG 0 5 0 10 Ri 10 0 20 200 O U 0 10 10 RS485 32 RS485 1200 YstY 2x08 CAT5 SAIA S Bus Parity Mode Data Mode 0 127 M...

Page 37: ...8 0 10 FB 8AE I 1905 9111 2020 500 8 4 20 1 FB 8AA U 1905 9112 0200 100 8 0 10 FB 8AA U H 1905 9112 0201 100 8 0 10 FB 8RA 1905 9112 0300 100 8 FB 8RA H 1905 9112 0301 100 8 FB 8RA 4AE 1905 9112 2300...

Page 38: ...drate Datenbits RS485 Bus DIP DIP RS485 Busabschluss offen Busabschluss geschlossen aktiviert Busabschluss offen Busabschluss geschlossen aktiviert DIP 8 ON ON 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Bus...

Page 39: ...N 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Busabschluss Bus adresse Busparameter Baudrate Datenbits RS485 Bus ON ON 1 1 8 8 Rx Tx 0V orgung 24V DC RS485 Busabschluss Bus adresse Busparameter Baudrate Date...

Page 40: ...Register 0x03 read Holding Register 0x03 write Single Register 0x06 write Multiple Register 0x17 FB II read Discrete Inputs 0x02 FB II write Single Coil 0x05 write Multiple Coil 0x0F read Coils 0x01 F...

Page 41: ...0 10 0 20 1 100 6 7 670 11 25 1125 FB II FLAGS FB II OUTPUTS FB II FLAGS 0 10 ng 1 100 U 67 670 6 7 I 50 1000 10 SASI S Bus SASI S Bus Fupla F Box SASI F Box SASI S Bus Master F Box Cannel TS Delay 0...

Page 42: ...on NO IP Node Profi S Bus Address 0 Destination station S Bus Destination element Output Destination address F Box S Bus F Box Empfang Bin r F Box Initialisation NO IP Node Profi S Bus Address 0 Sourc...

Page 43: ...13 Register R 13 E 14 Holding Reg 14 Register R 14 E 15 Holding Reg 15 Register R 15 16 0 Modbus RTU SAIA S Bus read write Register Holding Register read write E 0 Holding Reg 16 Register R 16 E 1 Ho...

Page 44: ...lding Reg 18 Register R 18 Ni1000 WI 3 Holding Reg 19 Register R 19 Ni1000 WI 4 Holding Reg 20 Register R 20 Ni1000 WI 5 Holding Reg 21 Register R 21 Ni1000 WI 6 Holding Reg 22 Register R 22 Ni1000 WI...

Page 45: ...R 11 Ni1000 E 12 Holding Reg 12 Register R 12 Ni1000TK5000 E 13 Holding Reg 13 Register R 13 Ni1000TK5000 E 14 Holding Reg 14 Register R 14 Ni1000TK5000 E 15 Holding Reg 15 Register R 15 Ni1000TK5000...

Page 46: ...ter Holding Register read WO 0 Holding Reg 8 Register R 8 WO 1 Holding Reg 9 Register R 9 WO 2 Holding Reg 10 Register R 10 WO 3 Holding Reg 11 Register R 11 WO 4 Holding Reg 12 Register R 12 WO 5 Hol...

Page 47: ...V W0 4 0 10 V GND 0 V W0 5 0 10 V GND 0 V W0 6 0 10 V GND 0 V W0 7 0 10 V GND 0 V Rx Tx Pwr A0 A1 A2 A3 A4 A5 A6 A7 WI 0 WI 1 WI 2 WI 3 WI 4 WI 5 WI 6 WI 7 Rx Tx Pwr A0 A1 A2 A3 A4 A5 A6 A7 A0 A1 A2...

Page 48: ...E05 E06 E07 E08 E09 E10 E11 E12 E13 E14 E15 24V DC 0 V E00 E01 E02 E03 E04 E05 E06 E07 E08 E09 E10 E11 E12 E13 E14 E15 Rx Tx Pwr A0 A1 A2 A3 A4 A5 A6 A7 A0 A1 A2 A3 A4 A5 A6 A7 W0 3 W0 2 W0 1 W0 0 Pt...

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