FLTA-KP10 Wireless Receiver/ Control Modules for HRP/LRP

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1 Product sheet SN1.14 Sensor type FLTA-KP FLTA-KP10 Wireless Receiver/ Control odules for HRP/LRP FLTA-KP10 wireless receiver has been designed to work with SyxthSense HRP/LRP controllers and TEFL/TEU-FL/KLU-FL wireless sensor range. The FLTA-KP10 has 8 analogue outputs of which six operate as KP10 temperature sensor and two as analogue 0..10Vdc signal. The analogue signals can be used to transmit wirelessly humidity, setpoint, pressure, flow rate, CO and digital signals to the controllers. The wireless range uses Hz FSK odulation and has been designed for reliable operation in wide range of environments. Wireless temperature sensors transmit measurement readings on change, or at least every hour. FLTA-KP10 module acts also as a odbus Communication interface for the sensor readings. Using FLTA-KP10 odbus communication up to 99 sensors can be read over odbus master such as WebBiter web-browser interface, of which up to 8 sensors can be connected to HRP/LRP via analogue outputs. The FLTA-KP10 control module monitors the room units for any malfunctions and for the low battery level. Up to 63 FLTA-KP10 control modules (networks) can operate in the same wireless area. Total maximum of 6,37 sensors/transmitters can be connected to the system in a single system. odel Type odel Description FLTA-KP10 Wireless Control odule, odbus Communication, 6 x KP10 and x 0..10Vdc Output Signals for HRP/LRP FLAN Antenna for the Wireless FLTA Control odule Technical Data Power supply 4Vac/dc Transmission Frequency Hz Transmission Power +8 dbm Reception Sensitivity -109 dbm odulation Technology FSK Transmission Range Line of sight: Up to 500m In buildings: m, depending on the wall materials FLREP module can be used to extend the transmission range in difficult environments. FLTA odule Outputs 6 x KP10 Outputs x 0..10Vdc Outputs Error Signal Output (if odbus is disabled) A1: KP10 Output, range: C, resolution 0.37 C A: KP10 Output, range: C, resolution 0.3 C A3: KP10 Output, range: C, resolution 0.3 C A4: KP10 Output, range: C, resolution 0.3 C A5: KP10 Output, range: C, resolution 0.3 C A6: KP10 Output, range: C, resolution 0.37 C A7: 0..10Vdc Output A8: 0..10Vdc Output KP10 outputs can be used for temperature readings from TEFL, KLU-FL and TEU-FL sensors Vdc outputs A7 and A8 can be used for setpoints, humidity signals and any other suitable analogue measurement (see signal output options for TEFL, TEU-FL and KLU-FL transmitters). PS SN1.14-1/8

2 FLTA Communication Error Signal (If odbus is disabled) Operating temperature Ambient humidity Dimensions easurement Options odbus RTU (RS485) 0V = no error 5V = low battery, or no signal in 6 minutes 0 C C %rh (non-cond.) 53W x 90H x 58D mm For TEFL Transmitters Temperature C = KP10, FLTA Outputs A1 to A6 Humidity % = V, FLTA Outputs A7 and A8 Setpoint C = V, FLTA Outputs A7 and A8 5-Position Switch 1...5V (e.g.. position 3 = 3V), FLTA Outputs A7 and A8 Digital Input: 0V (Open), 5V (Closed), FLTA Outputs A7 and A8 TEU-FL Transmitters Temperature C = KP10, FLTA Outputs A1 and A6 Analogue Input: 0..10Vdc = 0..10Vdc (wireless signal transmission e.g. for HDH CO transmitters), FLTA Outputs A7 and A8 KLU-FL Transmitters Temperature C = KP10, FLTA Outputs A1 and A6 Humidity % = V, FLTA Outputs A7 and A8 Wiring Diagrams Antenna Connector (required) Vac/dc - 0V Common (Ground) 3 - A(+) odbus RTU 4 - B(-) odbus RTU or Fault Signal (5V) 5 - OV Common 6 - AO1 - KP10, Range C 7 - AO - KP10, Range C 8 - AO3 - KP10, Range C 9 - AO4 - KP10, Range C 10 - AO5 - KP10, Range C 11 - AO6 - KP10, Range C 1 - AO Vdc Output 13 - AO Vdc Output 14-0V Common ODBUS Wiring for NET-CAB485 (WebBiter connection) 3 - A(+) odbus RTU = Orange / White 4 - B(-) odbus RTU = Orange 5 - OV Common = Blue & Blue/White Typical Connections to HRP AO Vdc AO6 - KP10, C AO5 - KP10, C HRP B1 - B - B3 - B4 - B5 - B6-10K min. 1,5 mm B V/mA RX P90 TX RS V DC - Bus min. 1.5 mm 0V COON AO1 - KP10, C AO- KP10, C AO3- KP10, C AO4- KP10, C PS SN /8

3 System Example Up to 99 Sensors per FLTA module Web-Browser Interface TEU-FL A 16 TEFL Up to 99 Sensors per FLTA module 16 Radio Signal Hz Optional up to 8 Repeaters per FLTA network FLREP Range (between wireless devices): In buildings: m (depending wall structures) Line of sight: Up to 500m With repeaters the overall distance can be extended. Up to 63 FLTA/ FLTA-KP10 aster odules FLTA-KP odbus RS-485 Communication HRP A1 to A6 : KP10 Outputs A7 and A8: 0..10Vdc Outputs Note: KP10 and 0..10Vdc outputs can be used with all HRP/LRP controllers. Note: By connecting WebBiter via odbus to FLTA-KP10 up to 99 transmitters can be interrogated (all measurement combinations) Vdc External Pt1000 Temperature Sensor (Option) 0..10Vdc Signal Transmitter e.g. Pressure, Wind, Solar Sensor 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 0 1RSSI 0 ID= 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. OFF OD= 9.6 kbaud User Screen aster ID [1..63] odbus ID [0FF/1..47] odbus Baud Rate [9.6/19./38.4] A1 A A3 A4 Output 1 - KP10 Output - KP10 Output 3 - KP10 Output 4 - KP10 A5 A6 A7 A8 Output 5 - KP10 Output 6 - KP10 Output V Output V OFF PIRmin LA-FL PIR Delay Time (min) [OFF/5..30] 1 DEL_ID Delete Sensor from FLTA emory [0..99] COISSIONING OUTPUTS AO1 - AO8 PS SN1.14-3/8

4 The KP10 and analogue outputs are required to be commissioned for trasmitting the measurements to the HRP/LRP controllers. The outputs A1 to A6 should be commissioned as TE (temperature output) and analogue outputs A7 and A8 can be used for transmitting any relevant signal. After setting the baud rate by continuing pressing the button, the KP10 and analogue outputs can be defined to desired measurements. Use the following sequence to configure the KP10 temperature outputs:- 1. Press button to select appropriate KP10 output (A1 to A6). Press buttons to select the TEFL/KLU-FL/TEU-FL transmitter address (1-99) 3. Press button to associate temperature measurement (OFF or TE - see below) Use the following sequence to configure the analogue outputs A7 and A8:- 1. Press button to select appropriate output (A7 or A8). Press buttons to select the TEFL/KLU-FL/TEU-FL transmitter address (1-99) 3. Press button to associate measurement (OFF, TE, SP, RH, FAN - see below) 4. Continue until all analogue outputs have been defined Example 1 (Outputs A1 to A6):- A1 analogue output 1 has been configured to receive temperature (TE) signal from the outside sensor 1 (SID=1). This temperature is transmitted to the HRP/LRP controllers. Factory Default: All Outputs = OFF Analogue outputs A1 - A6 can be configured only with the following options:- OFF = not in use TE = temperature reading Example (A7 and A8):- A8 analogue output 8 has been configured to receive 5-Position switch signal (FAN) from the room sensor 99 (SID=99). Analogue outputs A7 and A8 can be configured to have any of the following:- OFF = not in use TE = temperature reading C = 0..10Vdc SP = setpoint C = 0..10Vdc RH = relative humidity %rH = 0..10Vdc FAN = 5-position switch A = 1V - V - 3V - 4V -5V DELETING UNNECESSARY WIRELESS SENSORS After completing the output settings (A8) by pressing the button two times more the screen similar to the following is displayed. The FLTA receiver builds automatically to its database list of TEFL TEU-FL and KLU-FL sensors in its vicinity. Any wireless sensor that is brought to the "listening area" and has the ID configured the same as the FLTA ID number will be added to the database. By selecting the appropriate sensor (DEL_ID = TEFL/TEU/KLU SID) the unwanted sensor can be removed from the FLTA memory. Use the following sequence to remove devices from the database:- 1. Press buttons to select the appropiate wireless trasmitter unit (DEL_ID = 1-99). Press button to delete the sensor 3. DEL? is diplayed. Press button to confirm deletion. The selected transmitter SID is removed from the database. PS SN1.14-4/8

5 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-KP10 receiver starts immediately the communication with the possible odbus master, where all the measurements from the TEFL room units can be seen with their own parameters. Using Local Display FLTA-KP10 local display can be used for both commissioning and to display the current readings from the wireless network. NOTE: The button is only used for the commissioning of the FLTA. Example: TEFL SID 6 Temperature (TE) = 0.3 C Display Selection - Use buttons to select the sensor ID (SID) Available readings:- RSSI = Signal Strength Display TE C = temperature reading SP C = setpoint reading RH% = relative humidity reading FAN = 5-position switch position - Use button to rotate between the readings After power failure the FLTA receiver goes to the local display mode and shows the TEFL room unit s SID 1 signal strength (RSSI). FLTA-KP10 receiver remembers the last measurement in its memory. 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 A1 LOST or A1 BATT (where A1 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. 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 TEFL sensors, this typically means that the 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 0/5V status information. The 0V 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 1-U voltage relay. PS SN1.14-5/8

6 FLSER Service Tool ODBUS Registers 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. FLSER tool has a RSSI position on the switch. In this stage the FLSER tool communicates with the FLTA receiver. When the connection has been built on the FLTA display appears a text "ON CARE" and during this stage the FLTA receiver serves only the current FLSER tool. During this stage all other operations on the network are halted. When the RSSI position is switched off from the FLSER tool the FLTA receiver goes back to its normal stage in 30 seconds. The FLTA supports the following odbus registers and function codes. The default communication speed is 9600 bps. The other settings for the odbus communication are: 8 data bits, Parity None and 1 Stop Bit. NOTE: It is necessary to enable the ODBUS during the commissioning stage before the FLTA starts to respond to the ODBUS queries. Register Parameter Description odbus Function Code Data Type Range 1 Common Alarm Signal 01 - Read Coils Bit 0 On - Off 1 Device 1 Low Battery 0 - Read Discrete Inputs Bit 0 On - Off Device Low Battery 0 - Read Discrete Inputs Bit 1 On - Off. 16 Device 16 Low Battery 0 - Read Discrete Inputs Bit 15 On - Off 17 Device 17 Low Battery 0 - Read Discrete Inputs Bit 0 On - Off 18 Device 18 Low Battery 0 - Read Discrete Inputs Bit 1 On - Off. 3 Device Low Battery 0 - Read Discrete Inputs Bit 15 On - Off 33 Device 33 Low Battery 0 - Read Discrete Inputs Bit 0 On - Off 34 Device 34 Low Battery 0 - Read Discrete Inputs Bit 1 On - Off. 48 Device 48 Low Battery 0 - Read Discrete Inputs Bit 15 On - Off 49 Device 49 Low Battery 0 - Read Discrete Inputs Bit 0 On - Off. 64 Device 64 Low Battery 0 - Read Discrete Inputs Bit 15 On - Off 65 Device 65 Low Battery 0 - Read Discrete Inputs Bit 0 On - Off. 80 Device 80 Low Battery 0 - Read Discrete Inputs Bit 15 On - Off 81 Device 81 Low Battery 0 - Read Discrete Inputs Bit 0 On - Off. 96 Device 96 Low Battery 0 - Read Discrete Inputs Bit 15 On - Off 97 Device 97 Low Battery 0 - Read Discrete Inputs Bit 0 On - Off 98 Device 98 Low Battery 0 - Read Discrete Inputs Bit 1 On - Off 99 Device 99 Low Battery 0 - Read Discrete Inputs Bit On - Off 101 Device 1 Communication Lost 0 - Read Discrete Inputs Bit 3 On - Off 10 Device Communication Lost 0 - Read Discrete Inputs Bit 4 On - Off 116 Device 16 Communication Lost 0 - Read Discrete Inputs Bit 15 On - Off 117 Device 17 Communication Lost 0 - Read Discrete Inputs Bit 0 On - Off 13 Device 3 Communication Lost 0 - Read Discrete Inputs Bit 15 On - Off PS SN1.14-6/8

7 Register Parameter Description odbus Function Code Data Type Range 133 Device 33 Communication Lost 0 - Read Discrete Inputs Bit 0 On - Off 148 Device 48 Communication Lost 0 - Read Discrete Inputs Bit 15 On - Off 149 Device 49 Communication Lost 0 - Read Discrete Inputs Bit 0 On - Off 164 Device 64 Communication Lost 0 - Read Discrete Inputs Bit 15 On - Off 165 Device 65 Communication Lost 0 - Read Discrete Inputs Bit 0 On - Off 180 Device 80 Communication Lost 0 - Read Discrete Inputs Bit 15 On - Off 181 Device 81 Communication Lost 0 - Read Discrete Inputs Bit 0 On - Off 196 Device 96 Communication Lost 0 - Read Discrete Inputs Bit 15 On - Off 197 Device 97 Communication Lost 0 - Read Discrete Inputs Bit 0 On - Off 198 Device 98 Communication Lost 0 - Read Discrete Inputs Bit 1 On - Off 199 Device 99 Communication Lost 0 - Read Discrete Inputs Bit On - Off 01 Device 1 PIR 0 - Read Discrete Inputs Bit 0 On - Off 0 Device PIR 0 - Read Discrete Inputs Bit 0 On - Off 99 Device 99 PIR 0 - Read Discrete Inputs Bit On - Off 14 Coils Read Holding Registers Signed Coils Read Holding Registers Signed 16 1 Discrete Inputs Read Input Registers Signed 16 Discrete Inputs Read Input Registers Signed 16 3 Discrete Inputs Read Input Registers Signed 16 4 Discrete Inputs Read Input Registers Signed 16 5 Discrete Inputs Read Input Registers Signed 16 6 Discrete Inputs Read Input Registers Signed 16 7 Discrete Inputs Read Input Registers Signed 16 8 Discrete Inputs Read Input Registers Signed 16 9 Discrete Inputs Read Input Registers Signed Discrete Inputs Read Input Registers Signed Discrete Inputs Read Input Registers Signed 16 1 Discrete Inputs Read Input Registers Signed Discrete Inputs Read Input Registers Signed 16 5 Discrete Inputs Read Input Registers Signed Coils Read Input Registers Signed Device 1 TE 04 - Read Input Registers Signed 16 See Note 1 37 Device 1 SP 04 - Read Input Registers Signed 16 See Note 38 Device 1 RH 04 - Read Input Registers Signed 16 See Note 3 39 Device 1 FAN 04 - Read Input Registers Signed 16 See Note 4 40 Device TE 04 - Read Input Registers Signed 16 See Note 1 41 Device SP 04 - Read Input Registers Signed 16 See Note PS SN1.14-7/8

8 Register Parameter Description odbus Function Code Data Type Range 4 Device RH 04 - Read Input Registers Signed 16 See Note 3 43 Device FAN 04 - Read Input Registers Signed 16 See Note Device 3 TE 04 - Read Input Registers Signed 16 See Note 1 45 Device 3 SP 04 - Read Input Registers Signed 16 See Note 46 Device 3 RH 04 - Read Input Registers Signed 16 See Note 3 47 Device 3 FAN 04 - Read Input Registers Signed 16 See Note 4 48 Device 4 TE 04 - Read Input Registers Signed 16 See Note 1 49 Device 4 SP 04 - Read Input Registers Signed 16 See Note 50 Device 4 RH 04 - Read Input Registers Signed 16 See Note 3 51 Device 4 FAN 04 - Read Input Registers Signed 16 See Note 4...etc Device 99 TE 04 - Read Input Registers Signed 16 See Note Device 99 SP 04 - Read Input Registers Signed 16 See Note 410 Device 99 RH 04 - Read Input Registers Signed 16 See Note Device 99 FAN 04 - Read Input Registers Signed 16 See Note 4 1 Alarm 05 - Write Coil Bit 0 On - Off Data Register Scaling 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. Data Type Raw Data Scaled Data Note 1. TEFL and WPIR: TE Signed C TEU-FL and KLU-FL: TE Signed C Note. TEFL: SP Signed C TEU-FL: Uin (Analogue Input) Signed V KLU-FL: LUX Signed lux LA-FL: LUX Signed lux Note 3. TEFL, KLU-FL and WPIR: RH Signed % TEU-FL: not used Signed Note 4. TEFL: FAN Signed TEU-FL and KLU-FL: not used Signed LA-FL: PIR Signed (OFF) - 1 (ON) FLTA Dimensions 53 mm 60 mm 51 mm RX ANT 90 mm 45 mm L= 4 m PS SN1.14-8/8

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