FLTA Wireless Room Transmitter Control Modules

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1 Product sheet SN.22 Sensor type FLTA FLTA Wireless Room Transmitter Control odules TEFL/TEU-FL/KLU-FL wireless system operates in 868.3Hz range. The system has been designed for reliable operation in wide range of environments using the latest RF technology. The communication between the TEFL and x-fl sensors and the FLTA control module is two-way. The measurement readings are transmitted on change, or at least every hour. The FLTA control module has 8 x..vdc outputs that can be configured for temperature, humidity, setpoint, digital contact, 5-position switch, lux level or for..vdc input signal. The FLTA can also be configured to work with LA-FL wireless occupancy sensor and with RY-FL wireless IO-modules. FLTA module acts as a odbus Communication interface for measurements and wireless IOs. FLTA is often connected using odbus to BS systems. Using FLTA modules temperature readings can be made available, for example, on the WebBiter web-browser interface. The FLTA control module monitors the room units for any malfunctions and for the low battery level. can operate in the same wireless area. Total maximum of 6,237 sensors/transmitters can be connected to the system in a single system. Each FLTA control module can have up to 99 sensors/transmitters in its operating area. Up to 63 FLTA control modules (networks) odel Type odel Description FLTA Wireless Control odule, odbus Communication, 8 x..vdc Output Signals FLAN Antenna for the Wireless FLTA Control odule Technical Data Power supply 24Vac/dc Transmission Frequency Hz Transmission Power +8 dbm Reception Sensitivity -9 dbm odulation Technology FSK Transmission Range Line of sight: Up to 5m In buildings: 2..m, depending on the wall materials FLREP and FLREP-U modules can be used to extend the transmission range in difficult environments. FLTA odule Outputs 8 x..vdc Outputs Error Signal Output (if odbus is disabled) For TEFL Sensors Temperature...5 C = V Humidity...% =...V Setpoint C =...V 5-Position Switch...5V (e.g.. position 3 = 3V) Digital Input: V (Open), 5V (Closed) For TEU-FL Sensors Temperature C = V Analogue Input:..Vdc =..Vdc (wireless signal transmission e.g. for HDH CO2 transmitters) For KLU-FL Sensors Temperature C = V Humidity...% =...V PS SN.22 - /2

2 FLTA Communication odbus RTU (RS485) Error Signal (If odbus is disabled) V = no error 5V = low battery, or no signal in 62 minutes Operating Temperature -25 C C Ambient Humidity...%rh (non-condensing) Enclosure IP2 ABS Plastics Dimensions 53W x 9H x 58D mm NOTE: RY-FL requires FLTA version 2.2 or later and FLSER service tool version 2.2 or later. Wiring Diagram 24 Vac/dc V odbus G 2 Go 3 A+ 4 B+ V 5 Go 6 AO 7 AO2 8 AO3 9 AO4 AO5 AO6 2 AO7 4 AO8 5 Go 24 Vac/dc Supply odbus Analogue Outputs FLTA System Examples The diagrams below illustrate the typical system examples. The system can have up to 99 sensors/transmitters per FLTA and up to 63 FLTAs. During the commissioning each FLTA is configured with unique ID (ID = aster ID). This is programmed through the keypad and the display of the FLTA. For any sensor, transmitter or repeater needs to configured with the matching aster ID for it to operate within the corresponding FLTA. This is done using FLSER Service Tool. If FLTA has not received a wireless message for one hour from a sensor/trasmitter configured to its memory, a loss of sensor alarm is raised. WIRELESS NETWORK DIAGRA TEFL Up to 99 Sensors per FLTA module Web-Browser Interface 3 2 A Radio Signal Hz Up to 63 FLTA aster odules odbus RS-485 Communication TEU-FL FLTA A to A8..Vdc Analogue Outputs * If odbus RTU is disabled an additional alarm output is available..vdc 6 6 External Pt Temperature Sensor (Option) Range (between 2 wireless devices): In buildings: 2..m (depending wall structures) Line of sight: Up to 5m With repeaters the overall distance can be extended...vdc Signal Transmitter e.g. Pressure, Wind, Solar Sensor PS SN.22-2/2

3 6 3 SyxthSense Ltd WIRELESS NETWORK WITH OPTIONAL REPEATERS Web-Browser Interface Up to 99 Sensors per FLTA module Radio Signal Hz Optional up to 8 Repeaters per FLTA network Up to 63 FLTA aster odules odbus RS-485 Communication TEFL 3 2 A FLREP Range (between 2 wireless devices): In buildings: 2..m (depending wall structures) Line of sight: Up to 5m FLTA A to A8..Vdc Analogue Outputs * If odbus RTU is disabled an additional alarm output is available AXIU WIRELESS SYSTE SIZE PER NETWORK - WITHOUT RY-FL I/O ODULES No. of Devices Up to 99 (including TEFL, KLU-FL, TEU-FL and LA-FL) No. of Repeaters Up to 8. RY-FL WIRELESS IO-ODULE WITH ODBUS RTU CONNECTION VIA FLTA EXAPLE NETWORK ODBUS aster Device RY-FL Inputs / Outputs 2 Digital Inputs / 2 Analogue Inputs 2..Vdc Outputs / 2 Relay Outputs (individually configurable, total 4 IOs) Up to 2 RY-FL Input / Output odules odbus RS-485 Communication Up to 63 FLTA aster odules Optional up to 2 Repeaters (FLREP or FLREP-U) per FLTA/RY-FL network RY-FL A to A8..Vdc Analogue Outputs FLTA v.2.2 Radio Signal Hz FLREP FLREP-U TEFL Range (between 2 wireless devices): In buildings: 2..m (depending wall structures) Line of sight: Up to 5m 2 A Up to 99 TEFL, TEU-FL, KLU-FL and LA-FL Sensors / Transmitters (max. 99 including RY-FLs) AXIU WIRELESS SYSTE SIZE PER NETWORK - WITH RY-FL I/O ODULES No. of Devices Up to 99 (including TEFL, KLU-FL, TEU-FL and LA-FL) No of RY-FL odules ax. 2 No. of Repeaters ax 2 when RY-FL modules are used (otherwise 8) Commissioning Instructions Connect supply voltage to the FLTA receiver. If the receiver has not been configured it has still the factory default configuration and the following will be displayed:- first the version number then flashing text SET, which means that the receiver has not been commissioned to the network Factory Default Display FLTA receiver s default settings can be changed by entering to programming mode. Press the button for 5 seconds to enter programming mode. Continue pressing button to move from one parameter to another. Use +/- buttons to change value. The diagram below illustrates the available settings. PS SN.22-3/2

4 . RSSI ID= OFF OD= 9.6 kbaud User Screen aster ID [..63] odbus ID [FF/..247] odbus Baud Rate [9.6/9.2/38.4] A OFF A2 OFF A3 OFF A4 OFF Output = Sensor [..99] Output 2 = Sensor [..99] Output 3 = Sensor [..99] Output 4 = Sensor [..99] A5 OFF A6 OFF A7 OFF A8 OFF Output 5 = Sensor [..99] Output 6 = Sensor [..99] Output 7 = Sensor [..99] Output 8 = Sensor [..99] OFF PIRmin LA-FL PIR Delay Time (min) [OFF/5..3] DEL_ID Delete Sensor from FLTA emory [..99] ASTER ID (ID) Each wireless network has one FLTA master with unique aster ID (ID). Each sensor, transmitter and repeater uses this ID to identify the destination of its messages. The aster ID can be..63. Each wireless network (ID) can have one FLTA, 99 sensors / transmitters (of which max 2 RY-FL IO-modules) and 8 repeaters (max. 2 repeaters when RY-FL IO-modules are used). ODBUS (OD) odbus communication is available with communication speed of 9.6/9.2/38 kbaud and with address..247 (maximum 28 devices in the odbus RS-485 network). As default the odbus setting is Off - odbus disabled. When odbus is Disabled terminal 4Bbecomes as an alarm output. OFF OD= odbus ID [FF/..247] 9.6 kbaud odbus Baud Rate [9.6/9.2/38.4] ANALOGUE OUTPUTS (A to A8) A OFF Output = Sensor [..99] Each of the analogue outputs can be configured to output the desired measurement. Eg. sensor temperature reading can be sent to A, and sensor 4 setpoint to A2 and sensor 8 humidity reading to A3. Each of the outputs are fully configurable. It is also possible to send the same measurement to multiple analogue outputs. To configure each analogue output:. Press button to select appropriate output (A or A8) 2. Press buttons to select the TEFL/KLU-FL/TEU-FL transmitter address (-99) 3. Press button to associate measurement (OFF, TE, SP, RH, FAN) 4. Continue until all analogue outputs have been defined Analogue outputs can be configured to have any of the following:- OFF = not in use TE = temperature reading..5 C =..Vdc SP = setpoint C =..Vdc RH = relative humidity..%rh =..Vdc FAN = 5-position switch A = V - 2V - 3V - 4V -5V PS SN.22-4/2

5 Example Example 2 A analogue output has been configured to receive temperature (TE) signal from the sensor (SID=). Factory Default: All Outputs = OFF A8 analogue output 8 has been configured to receive 5-Position switch signal (FAN) from the room sensor 99 (SID=99). DELETING UNNECESSARY WIRELESS SENSORS (DEL_ID) Transmitter/sensor can be removed from the memory of the receiver via DEL_ID option. This is necessary if a sensor is removed from the network as otherwise the system will create "communication lost" alarm. DEL_ID = OK = OK DEL? = Cancel Delete Sensor Accept Sensor from FLTA emory Deletion [..99] COPLETING COISSIONING By pressing the button once more the commissioning is now completed. The FLTA displays "OK" and the configured ASTER ID (ID). If the odbus has been selected, the FLTA receiver starts immediately the communication with the possible odbus master, and all measurements from the wireless sensors/transmitters can be seen with via FLTA LCD display. Using LCD Display FLTA display can be used to display the current measurements from each wireless transmitter and to analyse the signal strengths. Use "Rotation" button to rotate between readings and +/- buttons to select the appropriate sensor/transmitter (by the sensor/transmitter ID). RSSI SID =, Signal Strength = SID = 6, Signal Strength = 9 + upwards - downwards to select the sensor/transmitter 9 6RSSI 2.3 6TE ºC 2. 6SP ºC 42. 6RH% 5 6FAN 5 6LUX 6.5 6InV RSSI (Signal strength [..9]) Temperature Display Setpoint Humidity Switch Position Lux Level Voltage NOTE: The FLTA automatically builds image of each SID in its database, and therefore the display only shows information relevant to that transmitter (SID) 99RSSI SID = 99, Signal Strength = NOTE: The button is only used for the commissioning of the FLTA. After power failure the FLTA receiver goes to the local display mode and shows the signal strength (RSSI) for sensor (SID = ). FLTA receiver remembers the last measurement in its memory. PS SN.22-5/2

6 Fault Diagnostics and Alarm Acknowledgement The FLTA monitors each sensor for a battery fault (low battery) or if the communication has been lost to the sensor. The fault signals are available via the ODBUS network or locally on the display. If the ODBUS network has not been enabled, a physical alarm output is also available on the FLTA unit. ALAR DISPLAY In case of an alarm, the FLTA display shows the current alarm condition on its display, for example A LOST or A BATT (where A is sensor address, LOST means communication problem and BATT means low battery alarm for sensor). Alarms is acknowledged by pressing the ROTATE button continuously more than 5 seconds or via odbus network. It is necessary to reset the alarm display by acknowledging the alarm before the normal display mode resumes. Note: When BATT (low battery) alarm is displayed for wireless sensors/transmitters, this typically means that the battery has about 5% left of charge. For example in case of TEFL battery has sufficient energy for an other 3 months. VIA THE ODBUS NETWORK For each wireless sensor a separate ODBUS register is available to display the battery alarm or the communications alarm. Alarms are stord in the FLTA and can be reset aither via ODBUS network or by pressing the ROTATE button in the local display mode continuously over >5 seconds IF ODBUS NETWORK IS DISABLED If the odbus network is not operational, a common alarm signal can be read from connector 4 (B-). This I/O connector gives /5V status information. The V means a normal stage and the 5V means a stage, where there comes an alarm from one or several sensors. The status information can be forwarded to a BS/Controller or for example to the RY -U voltage relay. FLSER Service Tool During the installation FLSER service tool can be used to facilitate the wireless network set up. The service tool can be used to measure the signal strength from sensors to the tool, or from the FLTA to the service tool.. After commissioning FLTA Receiver / aster odule, set selection switch on the FLSER service tool to RSSI position. 2. FLTA will display "On Care" and the red receiver LED is flashing rapidly. 3. Now with the FLSER tool the position of the transmitters / sensors can be located by monitoring the signal strength on the FLSER display. NOTE: To identify true signal strength it is NOT recommended to keep the FLSER tool in hand because it will distort the radio transmission. 4. FLSER display shows the signal strengths measured by FLTA (small number) and by the FLSER (large number). Signal strength readings: -2 = poor, 3-5 = statisfactory, 6-9 = good. 5. After testing switch FLSER to "OFF" position, the FLTA receiver returns back to its normal operation in 3 seconds RX ANT RSSI 7 REP RSSI S-RID ID OFF FLSER FLTA Firmware Version TEFL wireless sensors and FLTA receivers supplied after date code..7 use version 2 software. Version 2 is not compatible with version. If you require extensions to version network (products supplied before Nov 27), please state this at the time of ordering. RY-FL requires FLTA version 2.2 or later and FLSER service tool version 2.2 or later. PS SN.22-6/2

7 FLTA Dimensions 53 mm 6 mm 5 mm RX ANT 9 mm 45 mm L= 4 m ODBUS Registers (FLTA version 2.2) The FLTA supports the following odbus registers and function codes (FLTA version 2.2). The default communication speed is 96 bps. The other settings for the odbus communication are: 8 data bits, Parity None and Stop Bit. NOTE: It is necessary to enable the ODBUS during the commissioning before the FLTA starts to respond to the ODBUS queries. Register Parameter Description odbus Function Code Data Type Range FUNCTION CODE - READ COILS DIGITAL OUTPUT ODBUS REGISTERS Device DO (RY-FL) - Read Coils Bit On - Off 2 Device 2 DO (RY-FL) - Read Coils Bit On - Off 99 Device 99 DO (RY-FL) - Read Coils Bit2 On - Off DIGITAL OUTPUT 2 ODBUS REGISTERS Device DO2 (RY-FL) - Read Coils Bit4 On - Off 2 Device 2 DO2 (RY-FL) - Read Coils Bit5 On - Off 99 Device 99 DO2 (RY-FL) - Read Coils Bit6 On - Off 2 Common Alarm Signal - Read Coils Bit On - Off FUNCTION CODE 2 - READ DISCRETE INPUTS LOW BATTERY REGISTERS Device Low Battery 2 - Read Discrete Inputs Bit On - Off 2 Device 2 Low Battery 2 - Read Discrete Inputs Bit On - Off 99 Device 99 Low Battery 2 - Read Discrete Inputs Bit 2 On - Off COUNICATION LOST REGISTERS Device Communication Lost 2 - Read Discrete Inputs Bit 3 On - Off 2 Device 2 Communication Lost 2 - Read Discrete Inputs Bit 4 On - Off..etc Device 99 Communication Lost 2 - Read Discrete Inputs Bit 2 On - Off PIR STATUS REGISTERS 2 Device PIR 2 - Read Discrete Inputs Bit 8 On - Off 22 Device 2 PIR 2 - Read Discrete Inputs Bit 9 On - Off..etc Device 99 PIR 2 - Read Discrete Inputs Bit On - Off DIGITAL INPUT REGISTERS 3 Device DI (RY-FL) 2 - Read Discrete Inputs Bit 2 On - Off 32 Device 2 DI (RY-FL) 2 - Read Discrete Inputs Bit 3 On - Off PS SN.22-7/2

8 Register Parameter Description odbus Function Code Data Type Range..etc Device 99 DI (RY-FL) 2 - Read Discrete Inputs Bit 4 On - Off DIGITAL INPUT 2 REGISTERS 4 Device DI2 (RY-FL) 2 - Read Discrete Inputs Bit On - Off 42 Device 2 DI2 (RY-FL) 2 - Read Discrete Inputs Bit On - Off..etc Device 99 DI2 (RY-FL) 2 - Read Discrete Inputs Bit 2 On - Off FUNCTION CODE 4 - READ INPUT REGISTERS DISCRETE INPUTS READ AS 6 BIT 32 Discrete Inputs Read Input Registers 6 bit 33 Discrete Inputs Read Input Registers 6 bit 34 Discrete Inputs Read Input Registers 6 bit 35 Discrete Inputs Read Input Registers 6 bit 36 Discrete Inputs Read Input Registers 6 bit 37 Discrete Inputs Read Input Registers 6 bit 38 Discrete Inputs Read Input Registers 6 bit 39 Discrete Inputs Read Input Registers 6 bit 3 Discrete Inputs Read Input Registers 6 bit 3 Discrete Inputs Read Input Registers 6 bit 32 Discrete Inputs Read Input Registers 6 bit 33 Discrete Inputs Read Input Registers 6 bit 34 Discrete Inputs Read Input Registers 6 bit 35 Discrete Inputs Read Input Registers 6 bit 36 Discrete Inputs Read Input Registers 6 bit 37 Discrete Inputs Read Input Registers 6 bit 38 Discrete Inputs Read Input Registers 6 bit 39 Discrete Inputs Read Input Registers 6 bit 32 Discrete Inputs Read Input Registers 6 bit 32 Discrete Inputs Read Input Registers 6 bit 322 Discrete Inputs Read Input Registers 6 bit 323 Discrete Inputs Read Input Registers 6 bit 324 Discrete Inputs Read Input Registers 6 bit 325 Discrete Inputs Read Input Registers 6 bit 326 Discrete Inputs Read Input Registers 6 bit 327 Discrete Inputs Read Input Registers 6 bit 328 Discrete Inputs Read Input Registers 6 bit 329 Discrete Inputs Read Input Registers 6 bit 33 Discrete Inputs Read Input Registers 6 bit 33 Discrete Inputs Read Input Registers 6 bit 332 Discrete Inputs Read Input Registers 6 bit 333 Discrete Inputs Read Input Registers 6 bit COILS READ AS 6 BIT 334 Coils Read Input Registers 6 bit 335 Coils Read Input Registers 6 bit 336 Coils Read Input Registers 6 bit 337 Coils Read Input Registers 6 bit 338 Coils Read Input Registers 6 bit 339 Coils Read Input Registers 6 bit 34 Coils Read Input Registers 6 bit 34 Coils Read Input Registers 6 bit 342 Coils Read Input Registers 6 bit 343 Coils Read Input Registers 6 bit 344 Coils Read Input Registers 6 bit PS SN.22-8/2

9 Register Parameter Description odbus Function Code Data Type Range 345 Coils Read Input Registers 6 bit 346 Coils Read Input Registers 6 bit ANALOGUE OUTPUT VALUES (READ ONLY) 35 Device AO (RY-FL) 6 - Write Holding Register Signed 6..% 35 Device AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 352 Device 2 AO (RY-FL) 6 - Write Holding Register Signed 6..% 353 Device 2 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 3244 Device 98 AO (RY-FL) 6 - Write Holding Register Signed 6..% 3245 Device 98 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 3246 Device 99 AO (RY-FL) 6 - Write Holding Register Signed 6..% 3247 Device 99 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% DEVICE EASUREENTS (TE, AI, RH, DI - see Notes for more details) 3248 Device TE / AI 4 - Read Input Registers Signed 6 See Note Device SP / AI2 / Uin / LUX 4 - Read Input Registers Signed 6 See Note Device RH 4 - Read Input Registers Signed 6 See Note Device FAN / PIR STATUS 4 - Read Input Registers Signed 6 See Note Device 2 TE / AI 4 - Read Input Registers Signed 6 See Note Device 2 SP / AI2 / Uin / LUX 4 - Read Input Registers Signed 6 See Note Device 2 RH 4 - Read Input Registers Signed 6 See Note Device 2 FAN / PIR STATUS 4 - Read Input Registers Signed 6 See Note Device 3 TE / AI 4 - Read Input Registers Signed 6 See Note Device 3 SP / AI2 / Uin / LUX 4 - Read Input Registers Signed 6 See Note Device 3 RH 4 - Read Input Registers Signed 6 See Note Device 3 FAN / PIR STATUS 4 - Read Input Registers Signed 6 See Note Device 4 TE / AI 4 - Read Input Registers Signed 6 See Note Device 4 SP / AI2 / Uin / LUX 4 - Read Input Registers Signed 6 See Note Device 4 RH 4 - Read Input Registers Signed 6 See Note Device 4 FAN / PIR STATUS 4 - Read Input Registers Signed 6 See Note Device 5 TE / AI 4 - Read Input Registers Signed 6 See Note Device 5 SP / AI2 / Uin / LUX 4 - Read Input Registers Signed 6 See Note Device 5 RH 4 - Read Input Registers Signed 6 See Note Device 5 FAN / PIR STATUS 4 - Read Input Registers Signed 6 See Note 5...etc Device 99 TE / AI 4 - Read Input Registers Signed 6 See Note Device 99 SP / AI2 / Uin / LUX 4 - Read Input Registers Signed 6 See Note Device 99 RH 4 - Read Input Registers Signed 6 See Note Device 99 FAN / PIR STATUS 4 - Read Input Registers Signed 6 See Note 5 FUNCTION CODE 5 - WRITE SINGLE COIL DIGITAL OUTPUT ODBUS REGISTERS Device DO (RY-FL) 5 - Write Single Coil Bit On - Off 2 Device 2 DO (RY-FL) 5 - Write Single Coil Bit On - Off 99 Device 99 DO (RY-FL) 5 - Write Single Coil Bit2 On - Off DIGITAL OUTPUT 2 ODBUS REGISTERS Device DO2 (RY-FL) 5 - Write Single Coil Bit4 On - Off 2 Device 2 DO2 (RY-FL) 5 - Write Single Coil Bit5 On - Off 99 Device 99 DO2 (RY-FL) 5 - Write Single Coil Bit6 On - Off PS SN.22-9/2

10 Register Parameter Description odbus Function Code Data Type Range 2 Common Alarm Signal Acknowledgement 5 - Write Single Coil Bit On - Off FUNCTION CODE 6 - WRITE HOLDING REGISTER WRITING COILS AS A SINGLE 6-BIT ESSAGE 434 Coils Write Holding Register 6 bit 435 Coils Write Holding Register 6 bit 436 Coils Write Holding Register 6 bit 437 Coils Write Holding Register 6 bit 438 Coils Write Holding Register 6 bit 439 Coils Write Holding Register 6 bit 44 Coils Write Holding Register 6 bit 44 Coils Write Holding Register 6 bit 442 Coils Write Holding Register 6 bit 443 Coils Write Holding Register 6 bit 444 Coils Write Holding Register 6 bit 445 Coils Write Holding Register 6 bit 446 Coils Write Holding Register 6 bit ANALOGUE OUTPUT ODBUS REGISTERS 45 Device AO (RY-FL) 6 - Write Holding Register Signed 6..% 45 Device AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 452 Device 2 AO (RY-FL) 6 - Write Holding Register Signed 6..% 453 Device 2 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 4244 Device 98 AO (RY-FL) 6 - Write Holding Register Signed 6..% 4245 Device 98 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 4246 Device 99 AO (RY-FL) 6 - Write Holding Register Signed 6..% 4247 Device 99 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% FUNCTION CODE 6 - WRITE ULTIPLE REGISTERS ANALOGUE OUTPUT ODBUS REGISTERS 45 Device AO (RY-FL) 6 - Write Holding Register Signed 6..% 45 Device AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 452 Device 2 AO (RY-FL) 6 - Write Holding Register Signed 6..% 453 Device 2 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 4244 Device 98 AO (RY-FL) 6 - Write Holding Register Signed 6..% 4245 Device 98 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% 4246 Device 99 AO (RY-FL) 6 - Write Holding Register Signed 6..% 4247 Device 99 AO2 (RY-FL) 6 - Write Holding Register Signed 6..% PS SN.22 - /2

11 Data Register Scaling and Notes Different sensor/transmitter types have different active ranges. Depending on the configured sensor the odbus registers raw data values scale to match the corresponding sensor type. Note. Digital Ouput Coil Device n DOx = On Disables Analogue Output Device n AOx Digital Ouput Coil Device n DOx = Off Enables Analogue Output Device n AOx Data Type Raw Data Scaled Data Note 2. TEFL and LA-FL: TE (Temperature) Signed C TEU-FL and KLU-FL: TE (Temperature) Signed C RY-FL: AI (Analogue..Vdc Input) Signed V Note 3. TEFL: SP Signed C TEU-FL: Uin (Analogue..Vdc Input) Signed V KLU-FL: LUX (Lux Level) Signed lux LA-FL: LUX (Lux Level) Signed lux RY-FL: AI2 (Analogue..Vdc Input) Signed V Note 4. TEFL, KLU-FL and LA-FL: RH (Humidity) Signed % TEU-FL and RY-FL: not used Signed 6 Note 5. TEFL: FAN (5-position switch) Signed TEU-FL, KLU-FL AND RY-FL: not used Signed 6 LA-FL: PIR (PIR status) Signed 6 - (OFF) - (ON) Quick Reference for Input Registers The table below has a quick reference to all measurements (Function Code 4 - Input Registers) for up to 99 sensors. Please note that with some odbus master you will need to add 3 to the register value. FLTA v.2.2 odbus Input Registers (Function Code 4) RY-FL AI AI2 LA-FL TE LUX PIR KLU-FL TE LUX RH TEU-FL TE Uin TEFL TE SP RH FAN Device Address PS SN.22 - /2

12 RY-FL AI AI2 LA-FL TE LUX PIR KLU-FL TE LUX RH TEU-FL TE Uin TEFL TE SP RH FAN PS SN.22-2/2

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