elsner elektronik KNX LW sl 70164 Installation And Adjustment

elsner elektronik KNX LW sl 70164 Installation And Adjustment

Brightness and wind sensor

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KNX LW sl
Brightness and Wind Sensor
Item number 70164
Installation and Adjustment

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Summary of Contents for elsner elektronik KNX LW sl 70164

  • Page 1 KNX LW sl Brightness and Wind Sensor Item number 70164 Installation and Adjustment...
  • Page 3: Table Of Contents

    6.9.2. AND logic connection inputs ..............37 6.9.3. Connection inputs of the OR logic ............. 39 Elsner Elektronik GmbH • Sohlengrund 16 • 75395 Ostelsheim • Germany Brightness and Wind Sensor KNX LW sl • from software version 1.00, ETS programme version 1.1...
  • Page 4 Clarification of signs This manual is amended periodically and will be brought into line with new software releases. The change status (software version and date) can be found in the contents footer. If you have a device with a later software version, please check www.elsner-elektronik.de in the menu area "Service"...
  • Page 5: Safety And Operating Instructions

    Elsner Elektronik is not liable for any changes in norms and standards which may occur after publication of these operating instructions. For information on maintenance, disposal, scope of delivery and technical data, please refer to the installation instructions.
  • Page 6: Installation And Start-Up

    • Wind sensor monitoring: If the wind measurement value changes by less than ± 0.5 m/s within 48 hours, a fault can be output. The wind measured value is output with the maximum measured value of 35 m/s and all wind threshold values below this value become active •...
  • Page 7 Fig. 2 The device must be attached to a vertical wall 90° (or a pole). Wall Place the supply line in a loop before leading it into the wall or junction box. This will allow pole rain to drip off and not drain into the wall or box.
  • Page 8: Sensor Positions

    3.2. Sensor positions Fig. 5 Brightness sensor Wind measurement element ATTENTION! Sensitive wind sensor. • Remove the protective transport sticker after installation. • Do not touch the sensor on the wind measuring element (on bottom, recessed). 3.2.1. Measurement direction of the brightness sensor Fig.
  • Page 9: Sensor Assembly

    3.3. Sensor assembly 3.3.1. Attach mount First, assemble the mount for wall/pole mounting. Release the screw joint of the mount with a cross-headed screwdriver. Wall installation Hole spacing 30 mm Fig. 7 Front view Use two screws to attach the mount to the wall.
  • Page 10: Attaching And Connecting The Device

    3.3.2. Attaching and connecting the device Fig. 9 1. Slide the device onto the mounting from above. 2. Tighten the screw of the mount to secure the device. 3. Screw the M8 connectors of the connection cable onto the connection socket on the bottom side of the device.
  • Page 11: Instructions For Assembly And Initial Start-Up

    35 seconds after the power is turned on. Configuration is made using the KNX software ETS. The product file can be down- loaded from the Elsner Elektronik website on www.elsner-elektronik.de in the “Ser- vice” menu. After the bus voltage has been applied, the device will enter an initialisation phase last- ing approx.
  • Page 12 bottom side top side Fig. 11 Programming LED (under the semi-transparent lid) Programming button for teaching the device Brightness and Wind Sensor KNX LW sl • Status: 19.08.2021 • Errors excepted. Subject to technical changes.
  • Page 13: Transfer Protocol

    Transfer protocol Transfer protocol Units: Brightness in Lux Wind in metres per second 5.1. List of all communications objects Abbreviation flags: Communication Read W Write Transmit U Update Text Function Flags DPT type Size Software version Output R-CT [217.1] DPT_Version 2 bytes Brightness sensor measurement Output...
  • Page 14 Transfer protocol Text Function Flags DPT type Size Brightness sensor threshold value 3: Input -WC- [1.1] DPT_Switch 1 bit (1:+ | 0:-) Brightness sensor threshold value 3: Input -WC- [7.5] DPT_TimePeriod- 2 bytes Delay from 0 to 1 Brightness sensor threshold value 3: Input -WC- [7.5] DPT_TimePeriod-...
  • Page 15 Transfer protocol Text Function Flags DPT type Size Brightness sensor 2 threshold value 3: Input -WC- [1.1] DPT_Switch 1 bit (1:+ | 0:-) Brightness sensor 2 threshold value 3: Input -WC- [7.5] DPT_TimePeriod- 2 bytes Delay from 0 to 1 Brightness sensor 2 threshold value 3: Input -WC-...
  • Page 16 Transfer protocol Text Function Flags DPT type Size Brightness sensor 3 threshold value 3: Input -WC- [1.1] DPT_Switch 1 bit (1:+ | 0:-) Brightness sensor 3 threshold value 3: Input -WC- [7.5] DPT_TimePeriod- 2 bytes Delay from 0 to 1 Brightness sensor 3 threshold value 3: Input -WC-...
  • Page 17 Transfer protocol Text Function Flags DPT type Size Total brightness threshold value 3: Input -WC- [1.1] DPT_Switch 1 bit (1:+ | 0:-) Total brightness threshold value 3: Input -WC- [7.5] DPT_TimePeriod- 2 bytes Delay from 0 to 1 Total brightness threshold value 3: Input -WC- [7.5] DPT_TimePeriod-...
  • Page 18 Transfer protocol Text Function Flags DPT type Size Twilight brightness threshold value 3: Input -WC- [1.1] DPT_Switch 1 bit (1:+ | 0:-) Twilight brightness threshold 3: delay Input -WC- [7.5] DPT_TimePeriod- 2 bytes from 0 to 1 Twilight brightness threshold 3: delay Input -WC- [7.5] DPT_TimePeriod-...
  • Page 19 Transfer protocol Text Function Flags DPT type Size Wind threshold value 1: Switching out- Input -WC- [1.1] DPT_Switch 1 bit put block Wind threshold value 2: Absolute value Input/ RWCT [9.5] DPT_Value_Wsp 2 bytes Output Wind threshold value 2: (1:+ | 0:-) Input -WC- [1.1] DPT_Switch...
  • Page 20 Transfer protocol Text Function Flags DPT type Size 1152 Computer 2: Output O1 Output R-CT 4 bytes 1153 Computer 2: Output O2 Output R-CT 4 bytes 1154 Computer 2: Condition text Output R-CT [16.0] DPT_String_AS- bytes 1155 Computer 2: Monitoring status Output R-CT [1.1] DPT_Switch...
  • Page 21 Transfer protocol Text Function Flags DPT type Size 1191 Computer 7: Input I3 Input RWCT 4 bytes 1192 Computer 7: Output O1 Output R-CT 4 bytes 1193 Computer 7: Output O2 Output R-CT 4 bytes 1194 Computer 7: Condition text Output R-CT [16.0] DPT_String_AS-...
  • Page 22 Transfer protocol Text Function Flags DPT type Size 1422 AND logic 3: Block Input -WC- [1.1] DPT_Switch 1 bit 1423 AND logic 4: 1-bit switching output Output R-CT [1.2] DPT_Bool 1 bit 1424 AND logic 4: 8-bit output A Output R-CT 1 byte 1425 AND logic 4: 8-bit output B...
  • Page 23: Parameter Setting

    Parameter setting Text Function Flags DPT type Size 1464 OR logic 6: 8-bit output A Output R-CT 1 byte 1465 OR logic 6: 8-bit output B Output R-CT 1 byte 1466 OR logic 6: Block Input -WC- [1.1] DPT_Switch 1 bit 1467 OR logic 7: 1-bit switching output Output R-CT...
  • Page 24: General Settings

    Parameter setting 6.1. General settings Set basic characteristics of data transfer. A different transmission delay prevents an overload of the bus shortly after the reset. Transmission delay after reset/restoration of bus for: Measured values 5 … 300 seconds Threshold values and switching outputs 5 …...
  • Page 25 Parameter setting gramming" should not be used for the initial start-up, as the factory settings are always used until the first call (setting via objects is ignored). Maintain the threshold values and delays received via • never communication objects • after power supply restoration •...
  • Page 26: Twilight Brightness Threshold Values

    Parameter setting Switching output sends • on change • on change to 1 • on change to 0 • on change and periodically • on change to 1 and periodically • on change to 0 and periodically Cycle 5 s ... 2 h (if sent periodically) Block If necessary, activate the switching output block and set what a 1 or 0 at the block entry...
  • Page 27: Twilight Threshold Value 1-4

    Parameter setting Threshold value... No • Yes Threshold value 4 No • Yes 6.4.1. Twilight threshold value 1-4 Threshold value Set, in which cases threshold values and delay times received are to be kept per object. The parameter is only taken into consideration if the specification/ setting by object is activated further down.
  • Page 28 Parameter setting Switching output Define which value the output transmits if the threshold value is exceeded or undercut. Set the delay for the switching and in which cases the switch output transmits. When the following conditions apply, the • GW above = 1 | GW - Hyst. below = 0 output is •...
  • Page 29: Night

    Parameter setting if switching output = 1  send 1 Switching output sends on change to 1 and periodically if switching output = 0  send 0 Switching output sends on change to 0 and periodically 6.5. Night If necessary, activate the night recognition. Use night recognition No •...
  • Page 30: Wind Measurement

    Parameter setting 6.6. Wind measurement If necessary, activate the wind malfunction object. Specify whether the measurement should also be output in Beaufort. Use malfunction object No • Yes Measured value additionally No • Yes output in the Beaufort scale Define the send pattern and, if necessary, activate the maximum value (this value is not retained after a reset).
  • Page 31: Wind Threshold Values

    Parameter setting 6.7. Wind threshold values Activate the wind threshold values required (maximum four) The menus for the further setting of the threshold values are then displayed. Threshold value 1 No • Yes Threshold value... No • Yes Threshold value 4 No •...
  • Page 32 Parameter setting With both of the methods for specifying the threshold values the hysteresis is set. Hysteresis setting in % • absolute Hysteresis in % (relative to threshold value) 0 … 50; 20 (for setting in %) Hysteresis in 0.1 m/s 0 …...
  • Page 33: Computer

    Parameter setting Switching output sends on change to 1 do not send message • If switching output = 1  send 1 Switching output sends on change to 0 do not send message • If switching output = 0  send 0 Switching output sends on change and Send switching output status periodically...
  • Page 34 Parameter setting Select the function set the input mode and starting values for input 1 and input 2. Function (I = Input) • Prerequisite: E1 = E2 • Prerequisite: E1 > E2 • Prerequisite: E1 >= E2 • Prerequisite: E1 < E2 •...
  • Page 35 Parameter setting if the condition is met 0 [Input range depending on the type of output] if the condition is not met 0 [Input range depending on the type of output] if the monitoring time period 0 [Input range depending on the type of is exceeded output] if blocked...
  • Page 36 Parameter setting Set the output send pattern. Output sends • on change • on change and after reset • on change and periodically • when receiving an input object • when receiving an input object and periodically on change of 1 ...
  • Page 37: Logic

    Parameter setting Value before first call 0 • 1 Output pattern • do not send anything On block • send value On release • as send pattern [see above] • send current value immediately 6.9. Logic The device has 16 logic inputs, eight AND and eight OR logic gates. Activate the logic inputs and assign object values up to first call.
  • Page 38 Parameter setting If the output type is a 1-bit object, set the output values for the various conditions. Output value 1 • 0 if logic = 1 Output value 1 • 0 if logic = 0 Output value 1 • 0 If block is active Output value if 1 •...
  • Page 39: And Logic Connection Inputs

    Parameter setting Block If necessary, activate the block for the logic output and set what a 1 or 0 at the block input means and what happens in the event of a block. Use block No • Yes Analysis of the blocking object •...
  • Page 40 Parameter setting Logic input 8 Logic input 8 inverted Logic input 9 Logic input 9 inverted Logic input 10 Logic input 10 inverted Logic input 11 Logic input 11 inverted Logic input 12 Logic input 12 inverted Logic input 13 Logic input 13 inverted Logic input 14 Logic input 14 inverted...
  • Page 41: Connection Inputs Of The Or Logic

    Parameter setting 6.9.3. Connection inputs of the OR logic The OR logic connection inputs correspond to those of the AND logic. In addition, the following inputs are available for the OR logic: AND logic output 1 AND logic output 1 inverted AND logic output 2 AND logic output 2 inverted AND logic output 3...
  • Page 42 Elsner Elektronik GmbH Control and Automation Engineering Sohlengrund 16 75395 Ostelsheim Phone +49 (0) 70 33 / 30 945-0 info@elsner-elektronik.de Germany +49 (0) 70 33 / 30 945-20 www.elsner-elektronik.de Technical support: +49 (0) 70 33 / 30 945-250...

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