Configuration Software G3800 X015. User Manual Preliminary Data December 2002

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1 Du line Fieldbus Insallaionbus Configuraion Sofware G3800 X015 User Manual Preliminary Daa December 2002

2 Table of Conens 1. Inroducion Sar-up Hardware requiremens Insallaion Sar-up of program Funcions in he main window File menu Edi menu Selec menu Tools menu Help menu Configuraion of channel funcions Basic Seup Objecs General Sandard objecs Blank channel (no funcion) The push-buon funcion The oggle swich funcion Timer/Recycler Real-ime clock Maser funcion Special objecs Analog sensors Moion deecor Alarm funcions Overview General feaures ISA Alarm The Smoke Alarm The Inruder Alarm The Waer Alarm Common Siren Roller blind conrol Decenralized roller blind up-down funcion Roller blind maser Couner and Muliplexer Muliplexer (ransmission of couner values) Muliplexer (ransmission of analog values) Logic Seup Inroducion The dialog - logic funcions Seup Applicaion Seups and Funcions Inversion and Edge Triggering Using flags Inernal processing of he logic seups Noes and Documenaion GSM Modem funcions (only valid for G ) SMS Seup Even-based SMS messages SMS Conrol commands and Requess for Dupline daa Radio Modem driver General Seup of Radio Modem Cenral Seup of Radio Modem Subsaion Carlo Gavazzi Indusri A/S. All righs reserved

3 2002 Carlo Gavazzi Indusri A/S. All righs reserved 3

4 1. Inroducion 1.1. Sar-up The G38xx15 program has been designed for configuraion of he G3800X015 maser generaor. All funcions in he generaor are represened by graphic symbols. To each channel funcion are relaed parameers and commens, which can be edied locally in he PC and ransferred o he maser generaor hrough RS232. Likewise, daa from he maser generaor can be uploaded and edied Hardware requiremens The program operaes under Windows 95/98/2000/xp and NT and requires a leas: 486 processor wih 8 Mbyes Ram or higher A free serial por (Com1 or Com2) 5 Mbyes hard disk for insallaion Screen resoluion of 800 x 600 pixels, 256 colours or higher Mouse or oher poining ool desirable, bu no necessary Insallaion Inser disk 1 in he A-drive and run he program Seup.exe. This will guide you hrough he insallaion process. Afer insallaion, he program can be sared by clicking G38xx Sar-up of program When G38xx15 is sared, wo windows will open: To he lef, he main window showing he 128 channels available in Dupline and he menus. To he righ, he properies window, which for each funcion shows he parameers relaed o his paricular funcion Carlo Gavazzi Indusri A/S. All righs reserved

5 1.2. Funcions in he main window File menu The file menu conains he usual funcions: Menu Iem: New: Open: Save: Save As: Wrie Generaor: Read Generaor: Prin: Exi: Explanaion Sar from he beginning wih defaul daa Open exising file Save file Save file under new name Download he presen configuraion file o he Generaor Read he configuraion file from he Generaor The following opions are available: Prin-ou of: Address Lising Maser Channels Real ime Channels or Logic Seings SMS Seup Exi program 2002 Carlo Gavazzi Indusri A/S. All righs reserved 5

6 Edi menu Menu Iem: Basic Seup: Logic Seup: Holiday Seup: SMS (only valid for G ) Couner and Mux analog Seup: Communicaion Seup: Explanaion: Basic seup of he G3800X015 generaor Configuraion of logic funcions Seup of holiday period. The holiday seup is acive when he curren dae falls wihin any of he se ime inervals. Basic seup of he SMS messaging funcions faciliaed by he buil-in GSM modem. Basic seup of he muliplex funcions required when Couner Modules and Muliplexed Analog Modules are used. Configuraion of he communicaion funcions available for he wo RS 232 pors and he RS485 por of he Generaor Carlo Gavazzi Indusri A/S. All righs reserved

7 Selec menu Menu Iem: Language: Serial por: Explanaion: Selec beween 3 languages. By using he Selec new menu, oher languages can be insered in he 3-language menu. Selecion of Com 1, Com 2, Com 3 or Com 4 por, for connecion of he G3800X015 Generaor Tools menu Generaor firmware: In his menu i is possible o download a new firmware file o he Generaor. New firmware files are ypically made available when new feaures are added o he Generaor. Three seps need o be carried ou: 1. Browse o selec he desired firmware file. 2. Acivae he Download buon 3. Acivae he program buon 2002 Carlo Gavazzi Indusri A/S. All righs reserved 7

8 Help menu Menu Iem: Explanaion: General informaion: You can call he Help menu a any ime by pressing F1. Abou program: Shows he opening screen Carlo Gavazzi Indusri A/S. All righs reserved

9 Configuraion of channel funcions When he basic seings have been made under Basic Seup, he funcions of he remaining channels o be used are defined as follows: Acivae one of he channels, hen click on he righ mouse buon for pop-up menu. Click on he desired channel funcion wih he lef mouse buon. The channel is hereby assigned a symbol indicaing he seleced channel funcion. Click on he symbol wih he lef mouse buon, and he parameers which can be se for ha paricular channel funcion can be viewed in he properies window. The arrow keys can also be used o selec channel funcion in he pop-up menu. Furhermore, channel funcion can be seleced by clicking on differen leers. To see how o selec funcions by clicking on leers, selec he General informaion menu under Help. Tool ip When he cursor is posiioned on a channel buon, a bar appears indicaing channel number, describing channel ype and showing he user-defined channel descripion Carlo Gavazzi Indusri A/S. All righs reserved 9

10 1.3. Basic Seup General descripion The ex window is for enering general informaion, eg name of user, dae of configuraion, reference o documenaion, ec. No. of channels For selecion of he number of channels desired in he sysem. The minimum is 8, he maximum is 128 in one Dupline nework. Auo-sar Dupline on shor-circui In case of a shor-circui on Dupline, he Generaor shus down he Dupline signal. Under defaul condiions, power-off followed by power-on needs o be performed o rese he Generaor afer removal of he shor-circui. However, if he "Auo-sar Dupline on shor-circui" box is checked, hen he Generaor will auomaically sar up he Dupline signal afer removal of he shor-circui. Enable auomaic updae of realime saus upon Config-download and Sysem power-up If his box is checked, he Generaor will auomaically se he correc saus for realime channels according o he swich-ime seings, provided ha he acual Day of he week maches he inernal Day of he week of he Generaor. Also, he Generaor will only scan he swich imes (ON or OFF) for ha same day. Enable Auomaic Dayligh saving. Cenral European Time sandard If his box is checked, he Generaor will auomaically change he ime seings 2 imes per year according o he European sandard for dayligh savings. Enable RTC Powerline Auocalibraion Selecing Auo-calibrae, will enable he inernal Realime clock o adjus is inernal calibraion agains he Mains-supply frequency. In mos counries, he Mains-supply frequency is very accurae, and in ha case an improved accuracy on he Realime clock can be achieved. Syncronize Time o PC dae and Time If his buon is acivaed when he Generaor is conneced o he PC, hen he PC dae and ime will be ransferred o he realime clock of he Generaor Carlo Gavazzi Indusri A/S. All righs reserved

11 2. Objecs 2.1. General The objecs are he specific funcions of he G 3800 X015. The funcions are assigned o channels, and he associaed parameers deermines he operaion of he channels Carlo Gavazzi Indusri A/S. All righs reserved 11

12 2.2. Sandard objecs Blank channel (no funcion) Funcion: None Applicaion: Acivaion of oupu channels hrough maser funcions or logic seups Inser wih mouse ( Blank channel ) Descripion The use of blank channels in Dupline is based on he circumsance ha in- and oupu are independen of each oher. Since his objec does no fulfill a funcion beween in- and oupu, an inpu on he address configured as blank funcion will be ineffecive. A he same ime, i is possible o conrol he channel - and consequenly he funcions coded for he address - eiher hrough he maser funcion (see chaper 2.2.6) or as oupu of logic seups (see chaper 3). In addiion, a blank channel can be used as a monosable flag. Parameers None Carlo Gavazzi Indusri A/S. All righs reserved

13 The push-buon funcion Funcion: Monosable Applicaion: Connecion of push-buon swiches and conacs for load swiching Also Normally Closed funcion Selec wih mouse ( Push buon ) or shor-cu key 0 (Zero) Descripion The push-buon funcion - he mos simple objec of he Dupline Maser Generaor - makes i possible o connec any ype of push buon swich and conac o he Dupline bus. Wih his funcion, oupus can indirecly be conrolled wih logic funcions. In his funcion, he oupu follows he inpu signal: he oupu is acivaed as long as he inpu signal is ON (invered in Normally Closed funcion). Parameers Configuraion window of push-buon funcion: Parameer Invered funcion Descripion When his funcion is seleced, he oupu signal is invered. This means ha he oupu is acivaed as long as he inpu has no been se. Time characerisics Normally Open Normally Closed IN IN OUT OUT PManTTas_1a PManTTas_2a The oupu follows he inpu upon a shor delay. In he Normally closed funcion, he oupu funcion is he opposie of he inpu funcion Carlo Gavazzi Indusri A/S. All righs reserved 13

14 Applicaion Example Task: Soluion: A lamp is o be swiched on and off by means of a swich. Use for example he universal inpu module o provide he inpu signal and configure one of he inpus for address A1. Assign he same address o one of he oupus of a relay module. Finally, configure channel A1 in he Maser Generaor as push buon funcion. Objec Funcion Channel In-/oupus Relay oupu Lamp A1 Swich Ligh swich A1 Configuraion of Maser Generaor Push buon funcion Ligh conrol A Carlo Gavazzi Indusri A/S. All righs reserved

15 The oggle swich funcion Funcion: Bisable Flip-Flop Applicaion: Connecion of swiches and conacs for load swiching Can be used in inruder alarm sysems Selec wih mouse ( Toggle swich ) or shor-cu key F Descripion Parameers The oggle swich funcion makes i possible o simulae he operaion of a oggle swich: Pressing he swich once acivaes he oupu, pressing he swich once more de-acivaes he oupu again. Configuraion window of he oggle swich funcion: Parameer Inruder alarm Descripion When his funcion is seleced, he inpu is used in a configured inruder alarm sysem. This means ha in an armoured alarm sysem wih no ime delay se, an alarm is released when he inpu is acivaed. Time characerisics IN OUT PMan_TToggle_1a The firs riggering of he inpu swiches he oupu on, he second riggering swiches he oupu off again Carlo Gavazzi Indusri A/S. All righs reserved 15

16 Applicaion Example Task: Soluion: A lamp is o be swiched on and off by means of a convenional swich. Use for example he universal inpu module o provide he inpu signal and configure one of he inpus for address A1. Assign he same address o one of he oupus of a relay module. Finally, configure channel A1 in he Maser Generaor as swiching funcion. Objec Funcion Channel In-/oupus Relay oupu Lamp A1 Swich Ligh swich A1 Configuraion of Maser Generaor Toggle swich funcion Ligh conrol A Carlo Gavazzi Indusri A/S. All righs reserved

17 Timer/Recycler Funcion: Timer or Recycler Applicaion: Swiching wih on- or off-delay or recycler Acivaion by signal or impulse Acivaion by addiional channel or flag Selec wih mouse Timer or shor-cu key T Descripion This objec makes i possible o selec beween wo modes of operaion: imer and recycler. In boh modes, an inpu coded o he channel of he imer sars he funcions, bu he inpu can also be acivaed by a differen channel or flag. Timer (wih on-delay or off-delay) The imer allows he seing of an on-delay and/or an off-delay. When an inpu coded o his channel is acivaed, he on-delay sars. Afer elapse of his delay, he Off ime sars. The Off ime sops afer he se ime, if he inpu is released before expiry of he se ime. If he inpu is no released, he oupu remains acivaed. Recycler If he recycler is acivaed by an inpu, he recycler coninuously generaes a square-wave signal. The oupu is acivaed afer he se on-delay period and de-acivaed afer he se off-delay period. This process is repeaed, as long as he inpu or he addiional rigger is ON. Parameers Depending on he opions seleced under Timer funcion, a number of parameers can be seleced for Timer and Recycler: Timer (wih on-delay or off-delay) Configuraion window for imer wih on- or off-delay: Parameer Timer funcion Acivaion by pulse On delay Off ime Descripion Selec he opion On-Off delay, in order o use he Timer funcion Selec his opion o sar he imer by means of a shor impulse, eg hrough a push buon swich Ener he ime (0 s o 99 h, 59 min, 59 s) which mus pass before he channel is acivaed Ener he ime (0 s o 99 h, 59 min, 59 s) for which he channel should be acivaed 2002 Carlo Gavazzi Indusri A/S. All righs reserved 17

18 Parameer Enabled by address Descripion Enering of an addiional channel (A1..P8) or flag (W1..Z8) which will also enable he imer funcion. To preven locking, he channel assigned o he imer iself mus no be used. If he addiional signal is an impulse, selec he opion Acivaion by pulse. Recycler Configuraion window for recycler Parameer Timer funcion On-ime Off-ime Enabled by address Descripion To selec he Recycler funcion, selec Recycler Enering of he ime (1 s o 99 h, 59 min, 69 s) for which he oupu is On during recycling Enering of he ime (0 s o 99 h, 59 min, 59 s) for which he oupu is Off during recycling Enering of an addiional channel or flag which will also enable he recycler. To preven locking, he channel assigned o he recycler iself mus no be used. Time characerisics Timer wih on- or off-delay T E T N T E T N IN OUT PMan_TTimer_1a The on-delay E sars shorly afer he inpu signal a ime 1. Afer elapse of he delay, he On-ime N sars. Afer elapse of he On-ime ( 3), he oupu swiches off again. To achieve his, he inpu mus be rese before ime Carlo Gavazzi Indusri A/S. All righs reserved

19 Recycler IN OUT T E T A PMan_TTimer_2a The impulse is generaed shorly afer he inpu has swiched on a ime 1. A pulse cycle consiss of he Onime E and he Off-ime A. When he inpu is swiched off, he pulse cycle also ends. Applicaion Example Task: Soluion: A fan in a bahroom is o sar 5 min afer he ligh has been swiched on and run for 10 min. The lighing is acivaed by a push buon conneced o a sensor module (for example a universal inpu module) and configured for address A1 as a oggle swich funcion. An oupu of a relay module is assigned he same address and acivaes he lighing. A second channel A2 is configured as Timer and acivaed by he above-menioned push buon. An addiional channel of he oupu module is also assigned he address A2 and acivaes he fan. Objec Funcion Channel In-/oupus Relay oupu Bahroom ligh A1 Swich Ligh swich A1 Relay oupu Bahroom fan A2 Configuraion of Maser Generaor Toggle swich funcion Ligh conrol A1 Timer Fan conrol A2 By use of he addiional rigger A1, he imer sars when he ligh is swiched on Carlo Gavazzi Indusri A/S. All righs reserved 19

20 Real-ime clock Funcion: Real-ime clock wih week and holiday planner Applicaion: Time-conrolled swiching on and off of loads Also applicable as swiching funcion Holiday seing can be performed cenrally for all clocks Selec wih mouse Real-ime or shor-cu key R Descripion Parameers The real-ime clock enables on- and off-swiching of loads in relaion o he inernal ime seing of he Maser Generaor. I is possible o pre-define up o four swich-on and swich-off imes for each clock on freely selecable weekdays and holidays. Configuraion window of real-ime clock funcion: Parameer Swich-on ime Swich-off ime Days of week Descripion Time a which he channel is o swich on Time a which he channel is o swich off Day(s) on which he swiching ime indicaed o he lef applies (M: Monday, T: Tuesday, W: Wednesday, T: Thursday, F: Friday, S: Saurday, S: Sunday) If H is acivaed, he clock also swiches on holidays. In his case, he corresponding days mus be enered under <Edi><Holiday seup>. Time characerisics IN OUT PMan_TReal_1a Carlo Gavazzi Indusri A/S. All righs reserved

21 1: The real-ime clock acivaes he channel a he pre-defined ime wihou affecing he inpu channel. 2: By acivaion of he inpu, he oupu swiches off direcly. 3: By acivaing he inpu once more, he oupu swiches on again. 4: A he se Swich off ime, he inpu is always deacivaed. 5: The oupu can always be acivaed againg hrough he oupu. Applicaion Example Task: Soluion: A lamp is o be swiched on and off by means of a swich. Use for example he universal inpu module o provide he inpu signal and configure one of he inpus for address A1. Assign he same address o one of he oupus of a relay module. Finally, configure channel A1 in he Maser Generaor as a oggle swiching funcion. Objec Funcion Channel In-/oupus Relay oupu Oudoor lamp A1 Swich Ligh swich A1 Configuraion of Maser Generaor Toggle swich funcion Ligh conrol A Carlo Gavazzi Indusri A/S. All righs reserved 21

22 Maser funcion Funcion: Simulaneous on- and off-swiching of muliple oggle swich funcions, real-ime clocks, ec, upon acivaion of inpu. Inegraed real-ime clock wih four swich imes Applicaion: Simulaneous off- on on-swiching of muliple loads, calling lighing scenes in connecion wih dimmers. Selec wih mouse ( Maser funcion ) or shor-cu key M. Bisable maser funcion Descripion The maser funcion allows simulaneous acivaion of a random number of channels configured for suiable objecs. When he maser funcion is acivaed, an on-signal is generaed on he channels configured for swiching on. Likewise, an off-signal is generaed on channels configured for swiching off. The objecs configured for hese channels hus deermine he behaviour of he oupus. Noe: he following characerisics of he maser funcion: A maser funcion has prioriy over he individual funcions a he ime of acivaion, ie i is no possible o acivae he individual channels as long as he maser funcion is on. Upon rese of he maser funcion, he decenral funcions are acceped again. I is o be noed, in paricular in connecion wih real-ime clocks, ha only one maser command can apply a a ime. When several maser funcions are acivaed a he same ime, only he one wih he highes address number (eg B7 has prioriy over A5) will be applied. The maser funcion canno affec channels wih advanced funcions, eg alarm channels or analog sensors. A maser funcion canno acivae anoher maser funcion. Parameers Configuraion window of Maser funcion: (In his example, a real-ime clock is included and he opion Ener Swich imes : Carlo Gavazzi Indusri A/S. All righs reserved

23 Parameer Address marix Toggle swich Include Real-ime Ener Swich imes Descripion Mark he addresses o be swiched on by he maser funcion wih 1 and he addresses o be swiched off wih 0.* Addresses marked wih x are no affeced. Addresses which are auomaically marked wih a red line canno be conrolled by a maser funcion, eg maser funcions, roller blind conrols, ec. If his funcion is seleced, he maser funcion will oggle beween he seleced oupu saus and he invered oupu saus, whenever he inpu is acivaed. A real-ime clock is included o ime-conrol he maser funcion. The field Ener Swich imes appears. Click here o open or close a marix in which o ener swich imes Real-ime clock Normally, he real-ime clock for ime-conrol of he maser funcion behaves in he same way as he objec Real-ime clock. See chaper Real-ime clock for furher deails. Unlike a separae real-ime clock, he buil-in real-ime clock only generaes one swiching impulse. This is paricularly imporan o bear in mind when he maser funcion is o conrol push buon funcions, since he swich signal may be of very shor duraion. As a Flip-Flop Maser The real-ime funcion operaes boh ON-swiching and OFF-swiching. This enables simulaneous ON- and OFF-swiching of muliple channels. The channels marked wih 1 swich on when he maser is acivaed and swich off upon deacivaion. The channels marked wih 0 behave in he opposie way. Tip: Enire address groups can be changed by clicking on he righ mouse buon. Time characerisics (wihou oggle funcion seleced) IN OUT Swiched oupus Toggle swich funcion PMan_TMaser_1a Push buon funcion The maser funcion remains acive unil he inpu is swiched off. In he above example, he oupus swich on, and - in he case of a push buon funcion - remain on, unil he maser funcion swiches off again Carlo Gavazzi Indusri A/S. All righs reserved 23

24 Applicaion Example Task: Soluion: The maser funcion is o conrol four lamps and wo dimmers in a building. - Maser on: Swiches all lamps on and ses dimmer a 100%. - Maser off: Swiches all lamps off and ses dimmer a 0%. - Lighing scene for living room: lighing scene 6 (facory seing: 85%) is o be called by boh dimmers. Three push buons are configured on addresses A1 o A3 o iniiae he maser funcion for calling he lighing scene. The channels of he dimmer are coded for B1 o B8 and configured as push buon funcions. Objec Funcion Channel In-/oupus Push buon inpu Maser on A1 Push buon inpu Maser off A2 Push buon inpu Push buon for call- A3 ing lighing scene 6 Dimmer channels Channels for calling B1.. B4 lighing scenes B5..B8 Relay oupus Lamps C1..C4 Configuraion of Maser Generaor Maser funcion Maser on A1 Maser funcion Maser off A2 Maser funcion Calling lighing A3 scene Push buon funcion Dimmer channels B1..B B5..B8 Toggle swich funcion Lamps C1..C Carlo Gavazzi Indusri A/S. All righs reserved

25 2.3. Special objecs Analog sensors Funcion: Transmission and oupu of analog values (from emperaure, ligh and oher sen sors) o perform swiching funcions Applicaion: Display of analog (AnaLink) values on ex display/ouchscreen: load swiching (for example heaing elemens, lamps, roller blinds) in relaion o emperaure or oudoor ligh, ec. Readou a any ime of analog values in relaion o exernal values Up o wo swiching ranges can be defined on each channel Disabling of swiching operaions hrough an addiional channel or flag Selec wih mouse Analog Sensor Descripion The objecs of he analog sensors offer he possibiliy of inegraing analog measuring devices in Dupline and processing heir values. I is possible o selec among four ypes of sensor funcions. Measuring sensor General sensor objec, wih which all he oher sensor ypes can be inegraed (he following sensors, such as he ligh sensor, are indicaed by differen icons and he measuring ranges are parly pre-defined). Since all sensors operae in he same way, heir funcions are illusraed by means of he general measuring sensor. Ligh sensor This pre-defined objec for he ligh sensor DLUX operaes in he same way as he measuring sensor, bu has a differen icon and he prese measuring range of 0.1 o 100,000 Lux. Wind sensor This sensor objec is inended for he inegraion of a wind meer (anemomeer), bu requires a conversion module. Apar from ha, his objec operaes like he measuring sensor. Temperaure sensor This objec also operaes in he same way as he measuring sensor, bu has is own icon for easy recogniion. General informaion Channels for analog ransmission operae in he same way as oher swiching channels. For example, hey canno be swiched wih swiches ha operae on he same channel. This means ha an addiional channel is needed when for example a sensor only is o be swiched manually and only a a cerain ime. Furhermore, analog values canno be processed by means of flags. In sead, i is possible o configure any number of analog sensors so ha hey relae o he same source value Carlo Gavazzi Indusri A/S. All righs reserved 25

26 Parameers Configuraion window of he analog sensor funcion: When he Configuraion Sofware has been conneced o he maser, he acual values are shown: In general, he operaion of sensors depends on he purpose of using he values: Showing daa on PC, Touchscreen or Tex display In his case, he parameers Conrol oupu and Alernaive inpu should no be acivaed, because in ha case he analog value will only be ransmied and no displayed. Finally, he measuring range should be configured wih minimum and maximum values (eg -30 C and +60 C): Hin: In his operaing mode, limi values can be se. I is also possible o use he swiching commands of his channel as inpu in logic funcions wihou acivaing he parameer Conrol oupu. Swiching an elecrical load by means of he sensor For his purpose, he parameer Conrol oupu mus be acivaed in order o oupu he se limi values. This oupu funcion causes a swiching command on his channel and hereby an oupu (eg relay) on he same address. The sensor is o be configured as follows: 1. Ener he measuring range of he sensor (saed direcly on he sensor or in he user manual), e.g. -30 C and +60 C. 2. Ener he swiching range a which he objec swiches on or off: Sandard seing gives he hreshold value Off < Limi and On > Limi. This means ha he channel swiches off when he analog value drops below he firs enered value, and he channel swiches on when he analog value exceeds he second enered value. Bu his is rarely he case. More ofen - and in paricular in heaing conrol sysems - he heaing elemen is o swich on when he emperaure drops below se value and swich off when se value is exceeded. The invered oupu funcion needed for his purpose is seleced wih he parameer Inver limis, which changes he enered values ino On < Limi and Off > Limi. Selec he values appearing in he window in order o conrol he emperaure of a room wihin he range of 19 C and 21 C. 3. If you wan o add nigh seback o your heaing conrol sysem, selec he opion Enable Limi 2 o ener a second pair of limi values and specify a channel or flag in he field Enabled by address, eg address A3 configured for he real-ime clock funcion. Hin: These limis can also be invered by clicking Inver limis. 4. The enire analog signal oupu can be disabled hrough a channel or a flag by enering a Disable address. When he Disable address is swiched on, he sensor objec swiches neiher On nor Off. 5. Finally, he analog values can also in his case be provided by anoher channel. By clicking in he field Alernaive inpu and enering an address in he field Measuring channel, an analog value can generae a random number of oupus Carlo Gavazzi Indusri A/S. All righs reserved

27 The following able gives an overview of all parameers: Parameer Funcion Disable address Descripion Selec he funcion of an ordinary measuring sensor, ligh sensor, wind or emperaure sensor. Basically, all funcions operae in he same way. When he channel or flag enered here is acivaed, all swiching operaions of he sensor are disabled. The value can be overwrien a any ime and deleed by he Delee-key. Conrol oupu This enry is needed in order o use he sensor o acivae a relay coded o he same address. If he analog value is o be displayed on his channel (for insance on a Touchscreen), hen his opion mus no be seleced. Inver limis Alernaive inpu Sensor inpu range This opion invers he swiching funcion in relaion o he limi values. When selecing his opion, he analog value is provided by anoher channel. The channel o provide he alernaive analog value is enered in he field Measuring channel. The upper and lower limi values of he sensor. For example, he lower value could be -30 C, while he upper value could be 60 C. Noe: The enry of each value mus be confirmed wih he Ener-key. Measuring channel If he sensor providing he value is coded for anoher channel, his source channel is enered here. For his purpose, he opion Alernaive inpu mus be acivaed. The value can be overwrien a any ime and deleed again by he Deleekey. Off < Limi These are he swiching limis of he sensor objec. If he opion Inver limis is On > Limi no seleced, he limi values appear as described, ie if he values 17.0 and or 20.0 are enered, he channel swiches off when he acual value is below 17.0 On < Limi and swiches on when he acual value is above Off > Limi When he limi values are invered, he sensor swiches on when he acual value is below 17.0 and swiches off when he acual value is above This seing is ypical for a heaing conrol sysem. The limi values are only acive, when he address enabling a second pair of limi values is no swiched on. Noe: The enry of each value mus be confirmed wih he Ener-key. Enable limi 2 Off < Limi On > Limi or On < Limi Off > Limi This opion is seleced in order o ener a second pair of limi values, for insance for nigh seback. The second pair of limi values makes i possible o enable a differen swiching operaion hrough a differen address - Enabled by address. If Enabled by address is acivaed, he second pair of limi values will apply in sead of he firs pair. The second pair of limi values can also be invered by he Inver limis opion. Noe: The enry of each value mus be confirmed wih he Ener-key. Enabled by address When he seleced channel or flag is no acive, he firs pair of limi values will apply, when i is acive, he second pair will apply. The value can be overwrien a any ime and deleed by he Delee-key Carlo Gavazzi Indusri A/S. All righs reserved 27

28 Time characerisics Sensor for display of measuring values In his applicaion, he displayed value follows he acual value afer a shor delay. Noe: Upon swich-on of he sensor or he Dupline bus, he acual sensor value is only reached afer a ime elapse of 30 s. This ime is needed by he sysem o calculae he value accuraely. Sensor as swiching channel The ime characerisics of he sensors are here illusraed by he example of a emperaure sensor: he upper curve shows he room emperaure, he curve in he middle shows he Disable address, and he lower curve shows emperaure sensor as swiching channel. Room emperaure: Value for Off > Limi Value for On < Limi Disable address Temperaure sensor PMan_TTemp_1a 1: 2: 3: 4: 5: 6: The room emperaure drops o he value enered for On > Limi, eg 21 C. Since no Disable Address is enered, he objec Temperaure sensor swiches he channel on. The emperaure reaches he value enered for Off < Limi, eg 17 C. Since a Disable Address is sill no enered, he channel assigned o he Temperaure sensor objec swiches off. The room emperaure reaches he lower limi value again, and he objec swiches on. The Disable Address (channel or flag) is acivaed, for example hrough a oggle swich. Alhough he upper limi value is reached, he objec does no swich he channel on, because he Disable address is acive. The emperaure sensor swiching channel does no swich off, unil he Disable address is deacivaed Carlo Gavazzi Indusri A/S. All righs reserved

29 Applicaion Example Task: A heaing elemen is o keep he room emperaure beween 19 C and 21 C during dayime. A nigh, he emperaure mus be lowered by 4 C. A emperaure sensor locaed in he room is coded for address A2 and displays he emperaure on a Touchscreen. Soluion: Since he analog sensor value on A2 is already needed for displaying he emperaure, we assign he emperaure sensor objec - and consequenly he relay conrolled by he heaing elemen - o address A3. For he nigh seback, we assign a real-ime clock o A4 wih he desired swiching imes. The real-ime clock serves as an addiional address for enabling he second pair of limi values. Objec Funcion Channel In-/oupus Temperaure sensor Temperaure A2 Relay oupu Heaing valve A3 Configuraion of Conroller Analog sensor: Transmission of A2 Temperaure sensor analog value Analog sensor: Analog signal ou- A3 Temperaure sensor pu and swiching channel for he relay of he heaing valve Real-ime clock Timer for nigh A4 seback 2002 Carlo Gavazzi Indusri A/S. All righs reserved 29

30 Moion deecor Funcion: Includes moion deecors or similar inpu modules in he Dupline sysem. Applicaion: Conrol of lamps and inegraion in he inruder alarm sysem Off ime adjusable from 00 h 00 min 00 s o 99 h 59 min 59 s Variable number of movemen impulses helps o avoid false alarms in he inruder alarm Selec wih mouse ( Moion deecor ) Descripion The objec Moion deecor makes i possible o include Dupline Passive Infrared Deecor (PIR), eg G and convenional moion deecors, which are conneced o he Dupline bus via binary inpus. The PIR deecor can have an off ime defined and be inegraed in he inruder alarm sysem. Thereby i becomes possible avoid false alarms by seing he number of impulses which mus be deeced wihin a 10 s ime window before he alarm sars. Noe: If you wan a PIR deecor o generae he off ime indepedenly, he objec Push buon funcion should be used. The off ime of G can be operaed hrough DIP-swiches. Parameers Configuraion window of Moion deecor: Parameer Off ime: Use in Inruder alarm Number of pulses Descripion The ime for which he channel remains acivaed ( o ) afer a moion impulse has occured. Each addiional impulse will sar he off ime again. When enering an off ime of 00:00:00, he Maser Generaor generaes a shor oupu signal indpendenly of he duraion of he inpu signal. Click in he check box in order o include he channel in he inruder alarm sysem. A signal from his channel will hen also sar he inruder alarm (see chaper 2.4.5). The value enered here (1..255) deermines how many impulses he moion deecor may generae wihin 10 s, before he alarm sars. When an impulse is deeced, he Maser Generaor checks wheher he number of impulses during he pas 10 s has exceeded he se number. If his is he case, an alarm is generaed in he conneced inruder alarm sysem. This seing hus reduces he risk of false alarms. Noe: Since he signal oupu akes place subsequenly, an addiional impulse is always needed. This means ha when he number of impulses is se o 3, he alarm will go off a he fourh signal. The se off ime has no influence on he alarm Carlo Gavazzi Indusri A/S. All righs reserved

31 Time characerisics In he following figure, IN is he inpu channel of he moion deecor or he conac, while OUT is he oupu signal of he same channel. In addion, he objec Moion deecor has been inegraed in he inruder alarm sysem (whose alarm siren can also be seen in he below diagram). The number of impulses has been se o 3. IN OUT T N Alarm siren P1 P2 P3 P4 PMan_TMoion_1a P1, P2, P3 and P4 are he poins of ime a which he moion deecor generaes a signal. The impulse duraion depends on he characerisics of he deecor. T N is he se off ime reriggered by he impulses P2 and P3 and herefore only begins afer elapse of he hird impulse. The alarm will no sar unil afer he fourh impulse P4, and only when he ime elapse beween P1 and P4 less han 10 s. is 2002 Carlo Gavazzi Indusri A/S. All righs reserved 31

32 Applicaion Example Task: Soluion: A floor lighing is o swich on auomaically for 5 minues wih PIR sensor G and also serve as inruder alarm when he house is empy. G mus be conneced o he Dupline bus and given an address (here A1). In his example, increase of he signal ransmission ime hrough he DIP swich is o be swiched ou. Configure boh he objec Moion deecor and an oupu channel of a relay module for address A1 and addiional objecs needed for he inruder alarm (Manual armouring, Alarm siren). Also in his case, he moion deecor acivaes he oupu module for he lighing direcly on address A1. If he alarm sysem is acivaed via he manual armouring, he Maser Generaor generaes an alarm wihin 10 s afer he hird impulse. Addiional deails abou he inruder alarm can be found in chaper Tip: If you wan o use he Saboage proecion (Normally closed funcion) of he G , you should configure he objec Push buon funcion for he normally closed funcion and use he increase of signal ransmission ime funcion provided by he module. In order o include he deecor wih saboage proecion in an inruder alarm sysem, you mus use he objec Acive deecor of he inruder alarm sysem in sead of he Push buon funcion Carlo Gavazzi Indusri A/S. All righs reserved

33 2.4. Alarm funcions Overview This chaper will assis you in using he four differen Dupline alarm sysems: 1. ISA-alarm (chaper 2.4.3) This general alarm sysem develped acc. o ISA specificaions is very flexible and has formed he basis of he developmen of he oher alarms sysems. Applicaion areas include emperaure- and level conrol as well as plans requiring ordinary alarm funcions. 2. Smoke alarm (chaper ) The primary purpose of his alarm sysem is he connecion of he Dupline smoke deecor. Of course, oher smoke deecors can also be used if hey provide a Normally closed or Normally open conac. In his case, he connecion o he Dupline sysem can ake place hrough a digial inpu. 3. Inruder alarm (chaper 2.4.5) This sysem provides objecs which allow monioring of inpu signals for he inruder alarm. The inpus can be eiher floaing or non-floaing conacs conneced o he sysem hrough digial Dupline inpus. 4. Waer alarm (chaper 2.4.6) The Waer alarm was developed as a separae sysem inended for he connecion of waer sop sensors. The alarm sysems differ in he following ways: In he armouring (manual/door lock) In he ype of alarm reseing (Acknowledgemen/Rese) In he way of alarming and In he ime characerisics General feaures In-/oupu on one channel The alarm sysems benefi more han any objecs from he capabiliy of Dupline o differ beween in- and oupus on he same channel (Spli I/O). Thereby i is possible o use a Normally open conac o rese he sysem and subsequenly swich i in and ou alernaely. The user should herefore no be surprised when: a channel is acivaed wihou an inpu being acivaed or a channel is no acivaed alhough an inpu is acivaed Maser funcions Alarm objecs can generally no be affeced by maser funcions Carlo Gavazzi Indusri A/S. All righs reserved 33

34 ISA Alarm Funcion: General alarm sysem wih inclusion of Passive deecor, Acive deecor, Acknowledgemen, Rese, Lamp es and Alarm siren Applicaion: Monioring of conacs and oher alarm sources. Selec wih mouse ( ISA alarm ) or shor-cu key A Descripion The purpose of he ISA-Alarm is o serve as a general alarm sysem acc. o he ISA specificaions. The sysem suppors wo operaion modes: 1. Sandard: An alarm is rese ( Rese ) and swiched on again manually by push buon. 2. Auo rese: An alarm is rese and swiched on again auomaically afer acknowledgemen and removal of he cause of alarm (Normal posiion of he alarm conacs). Alarm conacs are generally included in he sysem hrough he objecs Passive deecor and Acive deecor. The alarm sysem is swiched on for he firs ime afer downloading of he applicaion when all alarm conacs are in off-posiion or he Rese buon is acivaed. The alarm is released when one or several alarm conacs are acivaed. The sysem acuaes he acivaed alarm conac approx. every second and swiches he alarm oupu on for he se duraion. When he Acknowledgemen buon has been acuaed in he Sandard operaion mode, he alarm conacs swich from flashing o coninuous operaion and he alarm oupu is swiched off. A his poin of ime, renewed acuaion of an alarm conac does no rigger off an alarm. Subsequen acuaion of he Rese buon swiches he alarm conac off and releases he alarm sysem. If he Rese buon is acuaed before he Acknowledgemen buon, he sysem will also swich off he alarm oupu, bu he alarm conacs will coninue o flash. A new alarm is caused by renewed acivaion of an alarm conac. In he operaion mode Auo rese, he alarm sysem is resared afer acknowledgemen and wih alarm conacs in off-posiion. The saus of he alarm conacs can easily be displayed, eg on a panel. This only requires ha he oupu channels are coded for he same addresses as he alarm conacs. The funcionaliy of he lamps can hen be esed by means of he objec Lamp es. For giving ou alarms, he objec Common siren can also be used. Furher deails can be found in chaper The various ISA objecs are seleced under Funcion : Passive deecor: Normally open inpu. This objec makes i possible o include passive deecors. When he conac is acivaed and a 1 -Signal consequenly ransmied on he Dupline bus, an alarm is sared. Acive deecor: Normally closed inpu. This objec makes i possible o include acive deecors. When he conac is acivaed and a 0 -Signal consequenly ransmied on he Dupline bus, an alarm is sared. Acknowledgemen: This objec makes i possible o include acknowledgemen buons. Upon acuaion of an acknowledgemen buon, he alarm oupu is rese and he alarm source indicaion prepared for he reseing (changing from flashing o coninuous operaion). Noe: This objec mus always be configured. Rese: This objec is only needed in he operaion mode Sandard and makes i possible o include a buon for reseing he alarm and resaring he sysem. This requires prior acknowledgemen of he alarm Carlo Gavazzi Indusri A/S. All righs reserved

35 If a conac is acivaed during reseing, he sysem riggers off a new alarm When his objec is configured, he operaion mode Sandard is auomaically seleced. Parameers: Lamp es: Alarm siren: This objec makes i possible o es he funcion of lamps indicaing he saus of he alarm conacs. All alarm channels are acivaed upon acuaion of he lamp es buon. The alarm siren indicaes he occurence of an alarm. The channel configured for his objec can be used for alarm oupu on a random number of oupu modules. I usually acivaes a relay oupu swiching a siren. Parameer Operaion mode Passive deecor Descripion Sandard: This seing means ha acivaion of he alarm sysem akes place upon prior release by he rese buon. This enails ha he objec Rese mus be configured. Auo rese: Wih his seing, he sysem acivaes iself auomaically upon acknowledgemen, when all passive and acive deecors are in heir normal posiion (in which hey do no rigger off alarms) Noe: Operaion mode can be seleced for any objec of he ISA alarm - bu applies o he enire sysem. If he objec Rese is seleced o include a rese buon, he sysem assumes ha he operaion mode Sandard is o be seleced. Simulaneously, he opion operaion mode is deacivaed and can only be reacivaed by unclicking he objec Rese. If Auo rese is seleced, he sysem prevens configuraion of he Rese objec. Disable address On-delay Acive deecor Ener an address (A1..P8) or a flag (W1..Z8) whose acivaion ( 1 -signal) will leave ou he Passive deecor funcion of he monioring sysem whereby i canno rigger off any furher alarms. Ener a ime value in seconds (0..255) for which he alarm signal is delayed upon acivaion of he alarm conac. Disable address Ener an address (A1..P8) or a flag (W1..Z8) whose acivaion ( 1 -signal) will leave ou he Passive deecor funcion of he monioring sysem whereby i canno rigger off any furher alarms Carlo Gavazzi Indusri A/S. All righs reserved 35

36 On-delay Acknowledge Rese Lamp es Ener a ime value in seconds (0..255) for which he alarm signal is delayed upon acivaion of he alarm conac. No configuraion possibiliies. No configuraion possibiliies. No configuraion possibiliies. Alarm siren Siren ime This seing deermines for how long he alarm oupu is o remain acivaed in he case of alarm. The value can be beween 0 and 60 min. Noe: Wih he Minus-key (-), he ime can be se o an indefinie ime. This is indicaed by»»». Time characerisics Operaion mode Sandard Passive deecor (IN) Passive deecor (OUT) T EV Acknowledgemen Rese Alarm siren PMan_TISA_1a Carlo Gavazzi Indusri A/S. All righs reserved

37 The above illusraion shows he normal sequence and rese of an alarm in he operaion mode Sandard : 1: When all conacs are in off-posiion, he Maser Generaor alers he alarm sysem auomaically upon loading of he applicaion. 2: Afer elapse of on delay T EV, he Maser Generaor acivaes he alarm siren and causes he oupu of he source channel o flash. 3: By acivaion of he acknowledgemen buon, he Maser Generaor swiches he alarm siren off (provided ha he siren ime has no elapsed) and ransfers he alarm source indicaion ino a coninuous signal. 4: By acivaion of he rese buon, he alarm source indicaion urns off and he sysem is aler again. Operaion mode Auo rese Passive deecor (IN) T EV Passive deecor (OUT) Acknowledgemen Alarm siren 2 T a PMan_TISA_2a The above illusraion shows he normal sequence and rese of an alarm in he operaion mode Auo rese : 1: 2: 3: 4: When all conacs are in off-posiion, he Maser Generaor alers he alarm sysem auomaically upon loading of he applicaion. If a conac is subsequenly acivaed, iniially nohing will happen because of enered on delay T EV. Afer elapse of on delay T EV, he Maser Generaor acivaes he alarm siren and causes he oupu of he source channel o flash. Afer elapse of he siren ime T A and rese of he alarm conac, he Maser Generaor swiches he alarm siren off. Acknowledgemen deacivaes he Normally open oupu, and he sysem a once brings iself in he aler sae again. 5/ 6: As 1/ 2. 7: 8: In spie of he acknowledgemen of he alarm, he flashing source indicaion changes o coninuous operaion, because he alarm source is sill acivaed a his poin of ime. Since he siren ime has no ye elapsed, he alarm siren urns off. Only when he alarm source swiches off, is he source indicaion also rese and he alarm sysem in he aler sae again Carlo Gavazzi Indusri A/S. All righs reserved 37

38 Applicaion Example Task: Soluion: In a chemical facory, eigh laboraories are o be provided wih alarm swiches. Upon acivaion of an alarm buon, he fire saff of he facory is informed via a siren. When he fire saff has acknowledged he alarm, hey go o he lab where he alarm was sared. The alarm swiches are coded for channels A1 o A8. The source of he alarm is indicaed on a panel whose LED is acivaed via a mimic display. The addresses correspond o hose of he alarm conacs. The fire saff uses a buon coded for address B1 o acknowledge he alarms. The alarm is rese hrough a rese buon coded for address B2. The alarm is sounded by means of a horn acivaed hrough a relay oupu of DSM 8 coded for address B4. Objec Funcion Channel In-/oupus Alarm swich Alarm conac A1..A8 Push buon inpu Acknowledgemen B1 Push buon inpu Rese B2 Push buon inpu Lamp es B3 Semiconducor oupu LED for source in- A1..A8 caion on a panel Relay oupu Alarm siren B4 Configuraion of Maser Generaor ISA alarm: Alarm sources A1.. A8 Passive deecor ISA alarm: Alarm B1 Acknowledgemen acknowledgemen ISA alarm: Rese Alarm rese B2 ISA alarm: Lamp es Acivaion of all B3 LEDs on he panel ISA alarm: Alarm siren Alarm sounding B Carlo Gavazzi Indusri A/S. All righs reserved

39 The Smoke Alarm Funcion: Fire alarm sysem including Passive deecor, Acive deecor, Rese, Alarm Siren and Alarm signal Applicaion: Wiring of smoke/fire indicaors o an alarm sysem Selec wih mouse ( Smoke alarm ) or shor-cu key S Descripion The purpose of he Smoke Alarm is an alarm sysem consising of smoke and fire indicaors inegraed as Passive or Acive deecors. The wiring makes i possible o replace convenional fire alarm sysems. Smoke deecors are generally included in he sysem hrough he objecs Passive deecor or Acive deecor. The alarm sysem is auomaically aler afer elapse of he Rese delay (se wih he Rese objec), when he Configuraion sofware has been downloaded or he Maser Generaor has been swiched on. The Rese oupu swiches on wihin his ime. An alarm is riggered off when one or several alarm conacs are acivaed for more han 10 s. The channel for he acivaed alarm conacs (alarm source indicaion) as well as he alarm oupu sar o flash approx. every second. By subsequen acivaion of he rese key, he Maser Generaor swiches he channel ou of he sysem. If conacs are sill acivaed, anoher alarm is riggered off afer elapse of he rese delay. Noe: Configuraion of he objec Rese is absoluely necessary o ensure correc funcion. The saus of he alarm conacs can be shown in a simple way on a panel. All ha is needed for his purpose is ha he oupu channels are coded o he addresses of he alarm conacs. The objec Alarm signal makes i possible o conrol a elephone or GSM modem because of he shor message on his channel. For alarm purposes, he objec Common Siren can also be used. Deails can be found in he secion describing The alarm siren/common siren. The various smoke alarm objecs are se under Channel funcion : Passive deecor: Normally open inpu. This objec makes i possible o include passive deecors. When he conac is acivaed and a 1 -Signal consequenly ransmied on he Dupline bus, an alarm is sared. Acive deecor: Normally closed inpu. This objec makes i possible o include acive deecors. When he conac is acivaed and a 0 -Signal consequenly ransmied on he Dupline bus, an alarm is sared. Rese: This objec makes i possible o include a buon o rese he alarm and resar he sysem.. If a conac is acivaed during rese, a new alarm is sared afer elapse of he rese delay. Noe: This objec mus be configured in order o achieve correc funcion of he smoke alarm sysem. Alarm siren: The siren indicaes ha an alarm has occurred. The channel configured wih his objec can be used o oupu he alarm on any oupu modules. I usually acivaes a relay oupu hrough which a siren is swiched. Noe: The alarm oupu basically flashes. Alarm signal: When an alarm occurs, a channel configured wih his objec is acivaed for 10 s and can hus be used o acivae a elephone or GSM-modem Carlo Gavazzi Indusri A/S. All righs reserved 39

40 Parameers: Parameer Descripion Passive deecor Disable address Ener an address (A1..P8) or a flag (W1..Z8) whose acivaion ( 1 -signal) will leave ou he Passive deecor funcion of he monioring sysem whereby i canno rigger off any furher alarms. Acive deecor Disable address Ener an address (A1..P8) or a flag (W1..Z8) whose acivaion ( 1 -signal) will leave ou he Acive deecor funcion of he monioring sysem whereby i canno rigger off any furher alarms. Rese Rese delay The delay afer which he sysem becomes aler or an alarm is suppressed upon acivaion of he rese buon. This funcion can be used o ensure ha he measuring chambers are compleely empied of smoke. This ime is also used in connecion wih downloading of he sofware and swiching on of he channel generaor Carlo Gavazzi Indusri A/S. All righs reserved

41 Parameer Descripion Alarm siren Siren ime Wih his seing, you deermine he duraion of he acivaion of he alarm oupu upon he occurence of an alarm. The value can lie beween 0 and 60 min. The enered value is auomaically adoped by he Common Siren. Alarm signal Alarm signal delay Wih his seing, you deermine he ime o elapse afer swiching on of he alarm siren ill he alarm signal is acivaed. The value can lie beween 0 and 10 min Carlo Gavazzi Indusri A/S. All righs reserved 41

42 Time characerisics Passive deecor (IN) Passive deecor (OUT) T EV Rese (IN) T R T R Rese (OUT) Siren T M Alarm signal PMan_TSmoke_1a The above illusraion shows he normal sequence and rese of an alarm: 1: When power supply is conneced, he sysem becomes aler afer elapse of he se rese delay T R, indicaed by rese of he rese oupu. 2: Afer a shor delay (approx. 3 s) afer he occurence of a fire (acivaion of he Passive deecor), he alarm is sared. This akes place by he alarm siren flashing and by oupu of he Passive deecor channel, whereby he alarm source is indicaed. 3: The channel generaor acivaes he alarm signal channel afer elapse of he se alarm signal delay T M. 4: By acivaion of he rese buon, he alarm siren and he alarm source indicaion are rese, alhough he alarm source (Passive deecor) is acivaed as before. The reason is ha he Maser Generaor ignores all alarm sources during he rese delay. 5: By removing he smoke from he smoke deecor, he Passive deecor opens again and deacivaes he alarm channel. 6: Afer elapse of he rese delay, he sysem becomes aler again, and he rese oupu is rese Carlo Gavazzi Indusri A/S. All righs reserved

43 Applicaion Example Task: Soluion: In a residenial building, eigh rooms are o be equipped wih smoke deecors. When an alarm occurs, a siren swiches on and he fire auhoriies are noified. The alarm channels of he smoke deecor are assigned o channels C1 o C8. The alarm source is indicaed on a panel whose LED is acivaed by mimic display. The addresses correspond o hose of he alarm conacs. The alarm is sounded hrough a horn which is acivaed hrough address D2 of a relay module. The alarm is rese again by a push buon on address B Carlo Gavazzi Indusri A/S. All righs reserved 43

44 The Inruder Alarm Funcion: Inruder alarm sysem including Passive/Acive deecor conacs, Toggle swich funcions, Moion deecors, Manual and Door-lock Armouring, Code lock Armouring, Alarm siren and Alarm signal Applicaion: Wiring of inruder deecor conacs o an alarm sysem Selec wih mouse ( Inruder alarm ) or shor-cu key I Descripion The purpose of he Inruder Alarm is an alarm sysem consising of various conacs inegraed as Passive or Acive deecors. The wiring makes i possible o replace convenional inruder alarm sysems. Apar from he conacs represened by heir own objecs (Passive and Acive dececor), i is also possible o include oggle swich funcions and moion deecors which have already been configured. This is done direcly when seing he parameers for hese objecs. A sysem which is enabled will hen sar an alarm when one or several alarm conacs have been acivaed. The channel for he acivaed alarm channels (as alarm source indicaion) as well as he alarm oupu sar o flash afer he se ime delay. By subsequen acivaion of he Manual armouring, he Door-lock armouring or Code lock armouring, he Maser Generaor swiches he channel ou of he sysem and swiches he alarm oupu off. If an alarm is no acknowledged before elapse of he alarm signal delay, he sysem auomaically becomes aler again. Noe: Configuraion of he objecs Manual armouring, Door-lock armouring or Code lock armouring is absoluely necessary o ensure correc funcion. I is no necessary o use he objecs Manual armouring or Code lock armouring, bu i is possible o have an operaion mode in addiion o or in sead of he Manual armouring. By use of wo objecs, an alarm mus necessarily be acknowledged wih he objec which is also used o aler he sysem. The saus of he alarm deecors can be shown in a simple way on a panel. All ha is needed for his purpose is ha he oupu channels are coded o he addresses of he alarm conacs. The objec Alarm signal makes i possible o conrol a elephone or GSM modem because of he shor message on his channel. For alarm purposes he objec Common Siren can also be used. Deails can be found in he chaper describing The alarm siren/common siren. The various Inruder alarm objecs are seleced under Channel funcion : Passive deecor: Acive deecor: Toggle swich funcion: This objec makes i possible o conrol windows, doors, ec. wih Passive deecor. If he conac is acivaed and a 1 -Signal consequenly ransmied on he Dupline bus, an alarm is sared. This objec makes i possible o conrol windows, doors, ec. wih Acive deecor. When he conac is acivaed and a 0 -Signal consequenly ransmied on he Dupline bus, an alarm is sared. Use in Inruder alarm. See he chaper describing he Toggle Swich funcion Moion deecor: The moion deecor can also be inegraed in he inruder alarm. See he chaper describing he Moion deecor Carlo Gavazzi Indusri A/S. All righs reserved

45 Manual armouring: Door lock armouring: Code lock armouring: Alarm siren: Alarm signal: This objec makes i possible o include a push buon o enable and rese he alarm. The objec only enables he alarm conacs for which no or a deacivaed disable address has been enered. Manual armouring hus parly enables alarms. Upon acivaion of manual armouring, he armouring delay begins o run. During his ime, he channel generaor ignores acivaed alarm conacs. If subsequenly an enabled alarm conac is acivaed, his channel begins o flash and riggers off an alarm hrough he siren afer elapse of he de-armouring delay. To acknowledge he alarm, press he manual armouring key once. To resar he alarm sysem, press wice. This objec makes i possible o include a swich o acivae he alarm sysem. The funcion is similar o ha of he manual armouring, only in door lock armouring he disable addresses enered a he alarm conacs are ignored. This means ha he swich performs oal enabling. Upon acivaion of he swich, he armouring delay begins o run. During his ime, he channel generaor ignores acivaed alarm conacs. If subsequenly an alarm conac is acivaed, his channel (like manual armouring) begins o flash and riggers off an alarm hrough he siren afer elapse of he de-armouring delay. The alarm is acknowledged by swiching off he door-lock armouring. The sysem becomes aler by renewed swiching on. This objec can be used as an alernaive o door-lock armouring. The mode of operaion is idenical, since his objec also performs oal enabling of all - also disabled - alarm conacs. The objec awais an impulse from he code lock o make he alarm sysem aler. An addiional impulse is needed in order o acknowledge an occuring alarm (see manual armouring). The alarm siren indicaes ha an alarm has occured. The channel configured for his objec can be used o oupu he alarm on differen oupu modules. I usually acivaes a relay oupu hrough which a siren is swiched. The configuraion also allows he alarm oupu o flash and makes i possible o deermine addiional channels which also flash. When an alarm occurs, a channel configured wih his objec is acivaed for 10 s and can hereby be used o acivae a elephone modem or a GSM modem Carlo Gavazzi Indusri A/S. All righs reserved 45

46 Parameers Parameer Descripion Passive deecor Disable address Ener an address (A1..P8) or a flag (W1..Z8) whose acivaion ( 1 -signal) will leave ou he Passive deecor funcion of he monioring sysem whereby i canno rigger off any furher alarms. Acive deecor Disable address Ener an address (A1..P8) or a flag (W1..Z8) whose acivaion ( 1 -signal) will leave ou he Acive deecor funcion of he monioring sysem whereby i canno rigger off any furher alarms. Manual armouring Door-lock armouring Code lock armouring Armouring delay De-armouring delay Here you can deermine he delay wih which - afer acivaion of he Manual armouring funcion - he sysem becomes aler. Wih his seing you deermine how many seconds are o elapse from an alarm has occured ill he alarm siren is o be acivaed. This also allows early acknowledgemen of he alarm or prevens an alarm oupu on he siren, for example in order o make i possible o ener a building Carlo Gavazzi Indusri A/S. All righs reserved

47 Parameer Descripion Alarm siren Siren ime Flash when Alarm Wih his seing you deermine how long he alarm oupu is o remain acivaed when an alarm occurs. The value can lie beween 0 and 60 min. The sysem becomes aler again, when he siren ime has elapsed and no alarm conac is acivaed any more. A value enered here is auomaically adoped by he Common siren. By icking off his checkbox, he opion Flashing Channels allows you o selec which channels are o flash in case of alarm as well as heir flash inerval (see below). The alarm siren channel is hereby consanly swiched on. Noe.: The opions Flash Inerval and Flashing Channels only appear when he opion Flash when Alarm has been seleced. Flash Inerval Flashing Channels Here you can ener he swich on/off ime span of he flashing alarm signals. The opion Flash when Alarm mus be swiches on. The value can lie beween 0 and 60 s. Please noe ha flash inervals below 2 seconds may urn ou inaccuraely because of he cycle ime. When he value 0 is enered, flashing akes place a he fases possible rae. By mouse-click on his opion, an address marix appears in which you can selec he channels which are o flash upon an alarm. This opion is only available when he opion Flash when Alarm has been seleced. Alarm signal Alarm signal delay Wih his seing you can deermine he ime which is o elapse from he alarm siren is acivaed ill he alarm signal is acivaed. The value can lie beween 0 and 10 min Carlo Gavazzi Indusri A/S. All righs reserved 47

48 Time characerisics Passive deecor (IN) T FV Passive deecor (OUT) T EV Manual armouring (IN) Manual armouring (OUT) T AV T A Alarm siren Alarm signal T M PMan_TBurglar_1a The above illusraion shows he normal sequence of an alarm as well as early acknowledgemen and he swiching of he sysem back ino he aler sae hrough he Manual Armouring opion: 1: When he Maser Generaor is swiched on, he alarm sysem becomes aler hrough acivaion (once) of he Manual Armouring funcion. 2: An alarm conac is acivaed, eg by he opening of a secured por. Since he armouring delay T FV in his example has no ye elapsed, nohing happens a firs. 3: Afer elapse of he armouring delay T FV, he alarm is sared, ie boh he channel of he alarm conac and ha of he Manual Armouring sar o flash. 4: Afer elapse of he de-armouring delay T AV, he Maser Generaor acivaes he alarm siren. 5: Afer elapse of he siren ime T A, he alarm siren channel is deacivaed. The flashing of he alarm conac and he Manual Armouring oupu coninues. 6: Afer elapse of he alarm signal delay T M se a he objec Alarm signal, he channel is briefly acivaed. A he same ime, he alarm conac is coninuously swiched off and he Manual Armouring oupu coninuously swiched on Carlo Gavazzi Indusri A/S. All righs reserved

49 7: Acivaion of he Manual Armouring will acknowledge he alarm, and he Manual Armouring oupu will be rese. 8: Acivaing he Manual Armouring once more will bring he sysem back ino he aler sae - afer he armouring delay T FV. Applicaion Example Task: Soluion: In a residenial building, eigh rooms are o be equipped wih window and door conacs. All ligh swiches as well as wo moion deecors are o be included in he sysem. When an alarm occurs, a siren swiches on and he police is informed via a elephone modem. A panel shows he source of he alarm. The sysem should moreover make i possible o disable he alarm conacs on each floor. The alarm conacs are grouped room-wise (swiched in series). Each room is assigned o a NO conac wihin he range E1..E8. The source of he alarm is shown on a panel whose LED is acivaed via a mimic display. The addresses correspond o hose of he alarm conacs. The alarm is sounded hrough a horn, which is acivaed via a relay on address F3. The alarm can be brough ino he aler sae as well as acknowledged hrough he Manual Armouring funcion on F1 in he inpu range or hrough he Code Lock Armouring funcion a he enrance door. Disabling of floors is performed wih wo swiches Carlo Gavazzi Indusri A/S. All righs reserved 49

50 The Waer Alarm Funcion: Waer alarm sysem including Passive deecor, Acive deecor, Rese, Siren and Alarm signal Applicaion: Wiring of waer indicaors, eg he waer sop sensor, o an alarm sysem Selec wih mouse ( Waer alarm ) or shor-cu key W Descripion The purpose of he Waer Alarm is an alarm sysem consising of waer sensors inegraed as Passive or Acive deecor. The wiring makes i possible o replace convenional fire alarm sysems. Waer deecors are generally included in he sysem hrough he objecs Passive deecor or Acive deecor. The alarm sysem is auomaically aler afer elapse of he Rese delay (se wih he rese objec), when he Configuraion sofware has been downloaded or he Maser Generaor has been swiched on. The Rese oupu swiches on wihin his ime. An alarm is riggered off when one or several alarm conacs are acivaed for more han 10 s. The sysem seps hrough he acivaed alarm conacs (as alarm indicaion) as well as he alarm oupu approx. every second. The alarm siren flashes wih a pulse-pause raio of approx. 3 s/57 s. By subsequen acivaion of he rese key, he Maser Generaor reses he sepping hrough of he alarm conacs and he alarm oupu. If conacs are sill acivaed, anoher alarm is riggered off afer elapse of he rese delay. Noe: Configuraion of he objec Rese is absoluely necessary o ensure correc funcion. The saus of he alarm conacs can be shown in a simple way on a panel. All ha is needed for his purpose is ha he oupu channels are coded o he addresses of he alarm conacs. The objec Alarm signal makes i possible o conrol a elephone or GSM modem because of he shor message on his channel. For alarm purposes, he objec Common Siren can also be used. Deails can be found in he chaper describing he alarm siren/common siren. The various fire alarm objecs are seleced under Channel funcion : Passive deecor: Normally open inpu. This objec makes i possible o include passive deecors. When he conac is acivaed and a 1 -Signal consequenly ransmied on he Dupline bus, an alarm is sared. Acive deecor: Normally closed inpu. This objec makes i possible o include acive deecors. When he conac is acivaed and a 0 -Signal consequenly ransmied on he Dupline bus, an alarm is sared. Rese: This objec makes i possible o include a buon o rese he alarm and resar he sysem.. If a conac is acivaed during rese, a new alarm is sared afer elapse of he Rese delay. Noe: This objec mus be configured in order o achieve correc funcion of he waer alarm sysem. Alarm siren: The alarm siren indicaes he occurrence of an alarm. The channel configured for his objec can be used for alarm oupu on any oupu modules. I usually acivaes a relay oupu swiching a siren. In case of alarm, his oupu flashes wih an on-ime of approx. 3 s and an offime of approx. 57 s. Alarm signal: When an alarm occurs, a channel configured for his objec is acivaed for 10 s and can hus be used o acivae a elephone or GSM modem Carlo Gavazzi Indusri A/S. All righs reserved

51 Parameers Parameer Descripion Passive deecor Disable address Ener an address (A1..P8) or a flag (W1..Z8) whose acivaion ( 1 -signal) will leave ou he Passive deecor funcion of he monioring sysem whereby i canno rigger off any furher alarms. Acive deecor Disable address Ener an address (A1..P8) or a flag (W1..Z8) whose acivaion ( 1 -signal) will leave ou he Acive deecor funcion of he monioring sysem whereby i canno rigger off any furher alarms. Rese Rese delay The delay afer which he sysem becomes aler or is o remain swiched off upon acivaion of he rese buon. The rese delay can be from 2 and 10 min Carlo Gavazzi Indusri A/S. All righs reserved 51

52 Parameer Descripion Alarm siren Siren ime Wih his seing, you deermine he duraion of he acivaion of he alarm oupu upon he occurence of an alarm. The value can lie beween 0 and 60 min. The enered value is auomaically adoped by he Common Siren. Alarm signal Alarm signal delay Wih his seing, you deermine he ime o elapse afer swiching on of he alarm siren ill he alarm signal is acivaed. The value can lie beween 0 and 10 min Carlo Gavazzi Indusri A/S. All righs reserved

53 Time characerisics Passive deecor (IN) T EV Passive deecor (OUT) Rese (IN) T R T R Rese (OUT) 3s 57s Siren Alarm signal T M 4 5 PMan_TWaer_1a The above illusraion shows he normal sequence and rese of an alarm: 1: When power supply is conneced, he sysem becomes aler afer elapse of he se rese delay T R, indicaed by rese of he rese oupu. 2: An alarm conac is acivaed. This sars he swich on delay T EV, which can run for 3-11 s depending on he number of channels. 3: Upon elapse of he swich-on delay T EV, he Maser Generaor causes he oupu of he acivaed conac as well as he alarm siren o flash. The alarm siren is hen swiched on for approx. 3 s and swiched off for approx. 57 s. 4: Upon elapse of he alarm signal delay T M, he alarm signal is briefly acivaed. 5: Acivaion of he rese buon sars he rese delay and he siren is swiched off Carlo Gavazzi Indusri A/S. All righs reserved 53

54 Applicaion Example Task: Soluion: In a residenial building, eigh rooms are o be proeced agains waer damage. When an alarm occurs, a siren swiches on and he house owner is informed by means of an SMS-message. The room in quesion should be recognizable on a panel. The alarm channels of he waer sop sensors are assigned o channels G1 o G8. The alarm source is indicaed on a panel, whose LED is acivaed by a mimic display. The addresses correspond o hose of he alarm conacs. The alarm is sounded hrough a horn which is acivaed hrough address D2 of a relay module. The alarm is rese again by a pushbuon on address H Carlo Gavazzi Indusri A/S. All righs reserved

55 Common Siren Funcion: Common oupu of ISA-, Smoke-, Inruder- and Waer alarm Applicaion: Oupu of several alarms on one siren in addiion o or in replacemen of alarm sysem specific sirens Selec wih mouse ( Common Siren ) Descripion The Common Siren offers he possibiliy of ransmiing he alarms of all alarm sysems on one channel. The alarm of he siren oupu behaves in he same way as he individual alarm sirens. If several alarms are on, hey are indicaed wih he following prioriy: 1. Smoke alarm 2. Inruder alarm 3. Waer alarm 4. ISA alarm The operaion of he common siren is independen of wheher a siren was configured in he individual alarm sysem. Noe: The signal ime enered in he Common siren is auomaically adoped by he individual sirens. This also applies o reversed funcion. If an alarm has been acknowledged or rese, he Maser Generaor also reses he signal of he common siren. Parameers: Parameer Descripion Common siren Channel funcion Siren ime Here you selec one or several alarm sysems whose alarm will also acivae his siren. Here you ener he max. ime for which his siren is o remain acivaed. The value can lie beween 0 min and 60 min. Applicaion Example Task: Soluion: In a commercial building, differen alarm sysems (smoke, waer, ISA and Inruder) are o acivae he siren mouned ouside. The alarm sysems described in he previous examples are used. The relay for he oudoor siren is configured for address I1. The siren ime of each conneced alarm is configured Carlo Gavazzi Indusri A/S. All righs reserved 55

56 2.5. Roller blind conrol Decenralized roller blind up-down funcion Funcion: Up-Down conrol of roller blind moors Applicaion: Conrol of moors for roller blinds, sun blinds and roof windows hrough Dupline modules G Run ime and Swich ime individually adjusable Tiled blinds for sun blinds and prioriy conrol for example for wind sensor. Descripion The decenralized roller blind up-down conrol makes i possible o run Dupline roller blind conrol modules for roller blind and sun blind moors. By organizing he up- and down-channels, he Maser Generaor ensures undisurbed operaion by prevening boh direcions from being acivaed a he same ime and ensuring ha he delay ime is observed. The up-channel generally overrides he down-channel, ie if boh are acivaed a he same ime, he Maser Generaor will execue he up-command. Address configuraion The roller blind conrol can only be configured for an uneven channel number. This means ha he up-channel mus have an uneven address number assigned o i and he down-channel mus have an even address number assigned o i. This reflecs he address coding of he roller blind modules. Here he up-channel mus also have an uneven oupu assigned o i, while he down-channel mus have an even oupu channel addressed o i. Noe: When, in spie of correc address configuraion, he moor runs in he opposie direcion, he corresponding connecing cables of he moor are reversed. In his case, correc connecion mus be ensured - he channels mus under no circumsances be reversed. Operaion The up- and down-buons configured for he addresses of he roller blind conrol allow very simple operaion: By pressing he direcion key once, he moor runs o he end posiion or for he duraion of he roll ime. By pressing he same direcion key once more, he moor sops. By pressing in he opposie direcion, he moor sops shorly and runs in he opposie direcion unil i reaches end posiion or for he duraion of he roll ime. When he opion Tiled blinds is seleced, he following opions are available: If he direcion key is pressed for less han hree seconds, he moor sops when he key is no longer pressed. If he direcion key is pressed for more han hree seconds, he moor runs o he end posiion or for he duraion of he run ime. Here i is also possible o sop he moor by pressing he key once more or le i run in he opposie direcion by pressing he oher direcion key. The Tiled blinds funcion makes i possible o acivae he sun blinds shorly, so ha in sead of causing upor down-movenmen i changes he posiion of he iling blinds. Auomaing he roller blind conrol Surely, many mehods of auomaic operaion of roller blinds exis. No only wind- and rain sensors, bu also ligh sensors and clock imers increase comfor hrough auomaic funcions. Such funcions should - if no configured as prioriy address - usually be made by means of Logic seup, where primarily edge riggering is o be used which prevens coninuous signals and allows permanen operaor conrol. Furher deails can be found in he chaper on Logic Seup Carlo Gavazzi Indusri A/S. All righs reserved

57 Connecion of several moors Simulaneous acivaion of several moors can be achieved by: 1. connecing all moors o separae oupus and 2. assigning he same address o all up-channels as well as all down-channels. We srongly advise agains connecing wo or more moors in parallel o one oupu channel. The flexible way of conrolling several moors cenrally or group-wise is o use he Roller blind maser funcion. Furher deails are found in chaper Carlo Gavazzi Indusri A/S. All righs reserved 57

58 Parameers Parameer Descripion Roller blind conrol (Decenralized Up-Down) Roll ime Reverse delay Tiling blinds Inser he imes (seconds) for which he moor is o run in each direcion. The value mus be wihin 0 and 255 s. The seleced ime inerval should ensure ha he roller blinds can reach he end posiions in boh direcions where an end posiion conac mus swich he moor off. Inermediae values allows shadow, for example. Bu i should be ensured ha he roller blind is in one of he end posiions before sar. The enered roll ime is overwrien by he roll ime of he maser. Ener he delay ime (milliseconds) before he roller blind changes direcion. The value should lie beween 500 and 2000 ms. This opion allows adjusmen of iling blinds. The funcion sops wihin he firs hree seconds afer he key is released. The iling blinds opion mus be acivaed if you wan o define for how long he roller blinds mus run in he opposie direcion afer expiry of he roll ime Address By acivaion of he enered channel address, he roller blind runs in he seleced direcion for he enered roll ime. As long as he indicaed prioriy channel is se, inpu signals on he roller blind channels are ignored. Noe: The prioriy channel also overrides he maser conrol. Prioriy A channel or flag can be enered by which he up- or down-direcion of he roller blinds is given prioriy Carlo Gavazzi Indusri A/S. All righs reserved

59 Time characerisics T V T V Up-buon T V Down-buon Up-channel Down-channel T U T L PMan_TRollerUpD_1a The above illusraion is based on a roller blind applicaion wih adjusmen of iling blinds (Reverse Up ime T V of 3 s). 1: 2: 3: 4: 5: 6: 7: The buon for he up-direcion is acivaed. Since he impulse is shorer han he Reverse Up ime T V (3 s), he moor sops when he buon is released. The up-direcion is acivaed again. Since he impulse his ime is longer han he Reverse Up ime T V, he roller maser conrol aemps o swich he channel on for he oal roll ime. An addiional acuaion in he same direcion sops he moor. Now he buon for he up-direcion is acivaed again and he moor consequenly sared in he updirecion. By acivaion of he buon for he down-direcion, he moor is sopped and he Reverse delay T U sars. Afer elapse of he Reverse delay T U, he moor rolls in he down-direcion. Afer elapse of he roll ime TL, he moor is sopped. In order o reach he end of he roll ime, he acivaion of he Down-buon mus las longer han he Reverse Up ime T V Carlo Gavazzi Indusri A/S. All righs reserved 59

60 Applicaion Example Task: Soluion: Conrol of several roller blinds as well as a roof window in a building. The sysem should include groupwise conrol for wo differen floors as well as maser conrol of all roller blinds ogeher. To proec he roller blinds, a wind sensor and a rain sensor are insalled. The roller blinds are o roll down by rain and up by wind, and wind has prioriy. The roof window is o close by rain. The roller blinds as well as he roof window are acivaed hrough Dupline roller blind conrol modules. For he group-wise and he maser conrol, roller blind maser conrols are used. The address of he wind sensor is marked direcly in he roller blind conrols as prioriy address. The down-channel of he maser conrol is acivaed hrough logic seup via he address of he rain sensor. Furher deails can be found in chaper Objec Funcion Channel In-/oupus Push buon inpus Local acivaion A1..B4 C1..D4 Push buon inpus Group-wise B5/6 Maser D5/6 D7/8 Binary inpus for Prioriy conrol E1/E2 wind/rain sensors Relay oupus Moors A1..B4 Configuraion of Maser Generaor Decenralized Roller blind/roof A1.. B4 Roller Blind Up-Down window conrol C1..D4 Roller Blind Maser Group-wise con- B5/6 rol ground floor Roller Blind Maser Group-wise con- D5/6 rol 1s floor Roller Blind Maser Maser conrol D7/8 Push buon funcion Connecion of E1/E2 Wih he logic seup below, he rain sensor acivaes all roller blinds in he Down-direcion hrough he maser funcion. If he wind sensor channel is se, he command of he decenralized up-down conrol is no execued (prioriy conrol a each decenral roller blind objec). Oupu Inpu 1 Funcion Inpu 2 D8 /E2 AND /E Carlo Gavazzi Indusri A/S. All righs reserved

61 Roller blind maser Funcion: Group-wise or maser conrol of decenralized roller blinds Applicaion: Group-wise or maser conrol of moors for roller blinds, Roll ime wih prioriy over individual roll imes adjusable Simulaneous or sequenial roller blind sar selecable Reverse Up ime for iling blinds when end posiion reached. Ener wih mouse ( Roller blind maser ) Descripion This objec enables group-wise and maser conrol of for example roller blinds, sun blinds and roof windows. The decenralized roller blind channels configured above (chaper ) are included in he Roller blind maser by marking hem in he channel marix. The roll ime se for he Roller blind maser applies o all indiviual conrols and overrides heir roll imes. Enering a Reverse Up Time allows auomaic adjusmen of iling blinds a he end of a cycle. Afer elapse of he se roll ime, he Conroller swiches he moor in he opposie direcion for he se Reverse Up ime. The Roller blind maser offers wo operaion modes for saring he moors: 1. Simulaneous: All moors are sared simulaneously. 2. Sequenial: All moors - saring wih he lowes address - are sared a 1 sec. inervals. Thereby curren peaks are avoided. Address configuraion The Roller blind maser can only be configured for an uneven address number. This means ha he Up-channel mus lie on an uneven (eg A1, B5 or P7) and he Down-channel mus lie on an even address (eg A2, B6 or P8). Operaion The Up- and Down-buons configured for he addresses of he Roller blind maser allows very simple operaion: By pressing a direcion key once, all seleced moors roll unil end posiion is reached or he roll ime has elapsed. By pressing he same direcion key once more, he se roll ime sars again. Thus, i canno be sopped. By pressing he oher direcion key, he moors sop shorly (decenrally se Reverse Up ime) and run in he opposie direcion unil he end posiion is reached or he se roll ime has elapsed. Afer elapse of he Down-ime, he moors run in he Up-direcion, provided ha a Reverse Up ime has been enered and he Tiling blinds funcion has been acivaed a he decenral roller blind conrol. During he maser command, all moors can also be acuaed hrough heir individual decenral roller blind conrol channels. All funcions of he decenral roller blind conrol are available (Sop, reversal of direcion, adjusmen of iling blinds). Auomaion of maser command Surely, many mehods of auomaic operaion of roller blinds exis. No only wind- and rain sensors, bu also ligh sensors and clock imers increase comfor hrough auomaic funcions. Such funcions should - if no configured as prioriy address - usually be made by means of Logic seup, where primarily edge riggering is o be used which prevens coninuous signals and allows permanen conrol by he operaor. Furher deails can be found in he chaper describing he logic seup. Hin: Please be aware ha in he applicaion of clock imers in paricular, only one maser command can be execued a a ime. When several maser commands are acivaed a he same ime, he Conroller only execues he command wih he highes address number, eg H3/H4 before F7/F Carlo Gavazzi Indusri A/S. All righs reserved 61

62 Parameers Parameer Descripion Roller blind maser Operaion mode Roll ime Reverse Up ime The seing deermines wheher he roller blinds are sared simulaneously or sequenially. Wih he seing Sequenially, he roller blinds sar and sop successively a 1 second inervals. This ime inerval is also observed in connecion wih change of direcion or iling blind (Reverse Up ime). This ime inerval does no affec he se roll ime. The roll ime deermines for how long he roller blinds mus run. This roll ime overrides he roll ime se in he Decenral up-down roller blind conrol. The Reverse Up ime deermines he ime in seconds for which he roller blinds mus run in he opposie direcion afer expiry of he roll ime. Applies o iling blinds. Noe: The Conroller only execues he Reversing funcion in decenral roller blind conrols in which he opion adjusmen of Tiling blinds has been acivaed Carlo Gavazzi Indusri A/S. All righs reserved

63 Time characerisics Up-buon cenral Down-buon cenral T U T L T U T R Up-channel (roller blind 1) Down-channel (roller blind 1) T V T V T V T L T U Up-channel (roller blind 2) PMan_TRollerMaser_1a The above illusraion is based on a roller blind maser applicaion wih sequenial operaion mode and a Reverse Up ime T R. 1: 2: 3: 4: 5: 6: 7: The buon for he up-direcion is acivaed. The up-channel of he firs moor is acivaed. In he operaion mode Sequenial, he Conroller swiches he up-channel of he second moor on afer a ime delay of 1 s. Before elapse fo he maser roll ime, he Down-buon is acuaed whereby he roller blind is forced in he opposie direcion. The moors sop one by one, and he Reverse delay T U se for he decenral roller blind objec begins. Afer elapse of he Reverse delay T U, he firs moor sars in he opposie direcion, while he second moor is acivaed afer a delay of 1 s. Afer he end of he roll ime T L, he Reverse delay T U is posponed due o he subsequen Reversing. Based on he se Reverse Up ime T R, he roller blinds again run in he opposie direcion in order o il he blinds. Afer elapse of he Reverse Up ime T R, he moor of he firs roller blind sops Applicaion example A deailed example is described in connecion wih he decenralized up-down roller blind funcion Carlo Gavazzi Indusri A/S. All righs reserved 63

64 2.6. Couner and Muliplexer Muliplexer (ransmission of couner values) Funcion: Objec for deecion of max. 128 couner values Applicaion: Regisraion of energy and operaing hours wih couner module G Configuraion hrough he opion Couner and Mux Analog Seup in he edi menu. Descripion The couner channels wih he sum sign are for ransmission of couner values. This muliplex ransmission of up o 128 couner values is dedicaed o he use of he couner module G The range of values o be ransmied can be seleced in he Basic seup hrough he opion Couner range. Depending on he range of values, a corresponding number of address groups are reserved, whereby he Muliplex sysem is sared. Hin: The reserved addresses mus no be used for oher purposes, eg o oupu swich commands. There are no furher configuraion possibiliies in he Configuraion sofware - addressing of he channels as well as ransmission and saving of daa is carried ou auomaically by he Maser Generaor. Module configuraion Deecion of he couner values requires correc seing of he couner module G Apar from he seing he couner range, i is also necessary o assign an address o each module hrough roary swich. Daa forma A descripion of he used daa forma can be found in he user manual of he couner module G Couner value oupu Access o and oupu of he sored couner values is only done hrough he Modbus communicaion inerface of he Maser Generaor. There are basically 3 possibiliies of coninued processing: 1. Represening he values in visualizaion sofware or operaor panel (eg on a PC wih he Dupline Web- Server). 2. Through communicaion programmes, eg he Dupline DDEServer - an open sofware inerface o for example Microsof Office applicaions. 3. Individual rese of couner values. Simulaneous operaion wih Muliplex Analog Value Transmisison If ransmission of couner and analog values is needed, care should be aken o avoid address overlap. The ransmission channels of he analog modules mus be se so ha hey do no overlap he channels of he couner value ransmission. Read he following chaper Muliplexer (Transmission of analog values) Carlo Gavazzi Indusri A/S. All righs reserved

65 Parameers Parameer Descripion Muliplexer (Deecion of couner values) Couner range Wih his seing made under <Edi><Couner And Mux Analog Seup>, you selec he range of couner values. Depending on he range, a coresponding number of channel groups, beginning by B are reserved: Couner ranges Reserved groups --- None (couner operaion swiched off) B..C B..D B..E B..F Applicaion Example Task: Soluion: On a camping sie, 64 curren values are o be deeced and used on a PC for he issue of invoices. The couner modules G are buil ino he local power cabines. Four Dupline energy couners supply one G wih he corresponding impulses. The Maser Generaor is configured for Couner seup hrough enry of he couner ranges. A daa enry sofware available hrough a DDE inerface reads ou he values via he DDEServer and reses he couner value when a new gues arrives. The volage of he individual power oule is urned on from he PC hrough a relay module (sofware DP-Camp). Free channels are used for his purpose. The applied Maser Generaor can, of course, also perform addiional auomaion funcions. Objec Funcion Channel In-/oupus Couner inpu Deecion of B1..F8 impulses from energy couner Relay oupu Swiching power G1..N8 oules Configuraion of Maser Generaor Couner range Channels for B1..F8 couner values Toggle swich funcion Swiches for power G1..N Carlo Gavazzi Indusri A/S. All righs reserved 65

66 Muliplexer (ransmission of analog values) Funcion: Objec for deecion of max. 112 analog values Applicaion: Fas ransmission of muliplexed analog values hrough Dupline analog modules Configuraion under he opion Muliplexer channels in he Basic seup Descripion The (original) muliplexing of analog values makes i possible o read and wrie Dupline muliplex analog values. As opposed o AnaLink ransmission wih analog sensors, wo addresses are needed in sead of one, which allows ransmission of accurae analog values. The ransmission speed is also higher. A full analog value needs one bus cycle, a bes. AnaLink values need 256 cycles. While for he ransmission of couner values (see chaper ) only inpu modules are available, various Dupline oupu modules are available for muliplex analog values. The oupu modules have he oupu ranges ma, ma and V. In connecion wih he configuraion of he muliplexer in he Basic seup (Opions Muliplexer Coun and Muliplexer delay), he Configuraion sofware auomaically reserves four channels (A1..A4) for addressing he modules. The addressing on hese channels is performed auomaically by he Maser Generaor. Daa is ransferred on wo consecuive address groups (C/D, E/F, G/H, I/J, D/L, M/N and O/P). The channels can be se individially o he applied modules and can hus no be reserved by he Maser Generaor. Also when he number is limied o 16 because only four channels have been reserved, 112 values can acually be processed. This is possible because up o 7 analog channels receive he same binary address, bu subsequenly ransmi he values o differen channel groups. (see above). Noe: The reserved addresses mus no be used for oher purposes, eg o oupu swich commands. Module configuraion Transmission of analog values requires correc seing of he analog modules. Apar from he seing of he ransmission channels, i is also necessary o assign a binary address o each module. Deails can be found in he daashees. Daa forma Wihin he wo channel groups (in his case C and D), he value 1957 is generaed coninuously. Signal availabe Value valid Sign Value in housands Time Value in hundreds Value in ens Single-digi value Channel C1 C2 C3 C4 C5 C6 C7 C8 D1 D2 D3 D4 D5 D6 D7 D8 Facor Example: Channel sae: Value Signal available means ha an inpu module coninuously provides he value Value valid indicaes ha he value is valid An 0 sands for a posiive value An 1 sands for a negaive value Carlo Gavazzi Indusri A/S. All righs reserved

67 Parameers Processing of analog values As opposed o he couner values, i is no only possible o visualize he analog muliplex values hrough he Modbus communicaion inerface, bu also o change hem. There are basically wo possibiliies of value processing: 1. Represening he values in visualizaion sofware or operaor panel (eg on a PC wih he Dupline Web- Server). 2. Through communicaion programmes, eg he Dupline DDEServer - an open sofware inerface o for example Microsof Office applicaions. Simulaneous operaion wih ransmission of muliplex analog values If boh muliplex modes are used, care should be aken o avoid address overlap. The ransmission channels of he analog modules mus be se so ha hey do no overlap he channels of he couner value ransmission. Read he preceding chaper Muliplexer (Transmission of couner values). Working wih es uni GTU8 GTU8 makes i easy o read ou and simulae analog values of his forma (operaion mode Analog BCD). In he case of simulaion, care should be aken ha boh he bi Signal available and he validiy bi have been se (see above). Parameer Descripion Muliplexer (Transmisison of analog values) Muliplex channels Muliplex delay Wih his seing made under <Edi><Couner & Mux Analog Seup>, you selec how many modules should be addressed. The number depends on he number of applied modules and heir in-/oupu channels. From 0 o 16 addresses can be seleced. The value 0 swiches he muliplex operaion ou. Wih his seing made under <Edi><Couner & Mux Analog Seup>, you selec how fas he Maser Generaor may scan he muliplex addresses. This seing only has an effec when muliplex ransmission has been acivaed (a leas 1 muliplex channel seleced). Since some of he Dupline Muliplex modules need a large par of heir capaciy for inernal processing, heir response ime is reduced. This can be balanced by a longer delay. The Maser Generaor hen wais for he corresponding number of cycles beween he scans Carlo Gavazzi Indusri A/S. All righs reserved 67

68 3. Logic Seup 3.1. Inroducion The preceding chapers have illusraed he simpliciy of configuring channels wih he pre-defined objecs. Praxis, hower, is no always so simple - for example when he oudoor lamps mus be conrolled in relaion o he ime of day, or he roller blinds in relaion o ligh or weaher or condiions. The Maser Generaor offers a splendid ool for solving hese asks: he logic funcions, wih which any relaion can be esablished beween he individual channels. The logic funcions are described in he following chaper The dialog - logic funcions Seup The processing of logic funcions akes place in he Dialog Logic Seup Dialog Logic seup Menu Logic seup Configuraion window of he Logic funions: Each logic block always shows eigh seups. The individual blocks are seleced by pressing he corresponding block numbers. The seleced block is marked by a small bar below he box. Each seup consiss of wo inpus inerconneced by an operand (eg AND). The resul of he seup ( True or False ) is hen assigned o he oupu. The componens are summarized in he following able: Carlo Gavazzi Indusri A/S. All righs reserved

69 Designaion Values Descripion Abb. (1) Oupu A1..P8 Channel or flag whose saus is o be changed A W1..Z8 Inpu 1 A1..P8 Channel or flag causing he firs par of he E1 W1..Z8 condiions for he change in oupu saus -,/,\ Funcion AND, OR, XOR The logic operand connecion he wo inpus Fk Inpu 2 A1..P8 Channel or flag causing he second par of he E2 W1..Z8 condiions for he change in oupu saus -,/,\ (1) This abbreviaion is used in he following o designae he various componens. 3.3 Applicaion Seups and Funcions Creaing Seups Navigaing For jumbing beween he individual fields, press he Tab-key (forward) or he Al- and Tab-keys (backwards) Adding All fields in a logic seup mus be filled in, ie all 4 componens mus be available. Any number of seups can be seleced, and gaps are allowed. To add a funcion, place he cursor in any field in he row. Depending on he componen, press a leer or number key. Changing Changes are made in he same way as addiions: place he cursor in he field Funcion and overwrie he old value wih he new value. Deleing The enire logic row can be deleed by placing he cursor in he field Funcion and press he Delee-key or he space bar Mode of operaion The in- and oupus can be channel addresses (A1 o P8) or flags (W1 o Z8). Depending on he inpus or logic seup (resul of he funcion), he oupu is se in each bus cycle (max. all 134 ms). This means ha he oupu assumes he value 0 when he seup is no fulfilled and he value 1 when he seup is fulfilled. The hree logic funcions correspond o he mahemaical funcions AND, OR and XOR (exclusive of OR). AND The oupu is always 1, when boh inpus are 1. OR The oupu is always 1, when one or boh inpus are 1. XOR The oupu is 1, when only one of he wo inpus are Carlo Gavazzi Indusri A/S. All righs reserved 69

70 The following ables summarize he resuls of he logic seups: AND E1 E2 A OR E1 E2 A XOR E1 E2 A Example: If in he XOR-funcion, boh inpu 1 (E1) and inpu 2 (E2) have he value 1, he oupu (A) will assume he value Inversion and Edge Triggering A special feaure of he logic funcions is he possibiliy of invering he oupu: When a - (minus) is added in fron of he value, he inpu value and consequenly he oupu are invered, ie if he inpu had he value 0, i ges he value 1 and vice versa. Adding a / (slash) in fron of he address leads o riggering on leading edge. Adding a \ (backslash) in fron of he address leads o riggering on railing edge. This change in oupu does no affec he inpu channels or flags Inversion Inversion can be applied o boh channels and flags. The oupu can be of any ype. Example of a logic seup: Oupu Inpu 1 Funcion Inpu 2 A1 E1 AND -E2 Time characerisics E1 E2 A1 1 2 PMan_003a Oupu A is only acive, when inpu E1 is acive and inpu E2 is no acive (range beween he doed lines). The inernal processing in he Maser Generaor invers he value of E2 before i is oupu (ie sees i as acive) Example of Edge Triggering Edge riggering can only be used on channels A1 o P8. Since he process is dynamic and lass only wo bus cycles, i is necessary o selec an oupu channel capable of processing impulses, eg channels wih oggle swich funcion, imer funcion or maser funcion. A push buon funcion can also be generaed wih his seup, bu i should be noed ha in his case he oupu will only be acive for one cycle. Example of a logic seup: Oupu Inpu 1 Funcion Inpu 2 A1 E1 AND /E Carlo Gavazzi Indusri A/S. All righs reserved

71 Time characerisics E1 E2 A1 1 2 PMan_003a Two condiions mus be fulfilled (AND): E1 mus be acive and E2 mus rigger on leading edge. This only akes place a 1 (he doed line o he lef). If he signal on E1 goes Off (doed line o he righ), oupu A will also be rese. I is assumed ha he channel se as oupu A is configured for a oggle swich funcion, for example. This funcion only needs one impulse o execue he swiching funcion. A push buon funcion would release again immediaely Using flags Dupline offer flags, wih which he inermediae resuls of logic seups can be sored in order o be used in oher seups. Characerisics The flags are on he channels W1..8, X1..8, Y1..8 and Z1..8. The flags are iniialized for zero upon volage applicaion a he Maser Generaor. The flags are no sored upon volage failure a he Maser Generaor. Flags basically operae in he same way as he Push buon funcion, ie he value of he flags changes immediaely wih he resul of he logic seup. Only edge riggering is no possible wih flags. Applicaion If a channel is o be relaed o more han wo oher channels, flags help o organize he seup. The following example illusraes how channels A1, A2 and A3 are organized and assigned o B1: Oupu Inpu 1 Funcion Inpu 2 W1 A1 AND A2 B1 W1 AND A3 In mos objecs in he marix, eg he decenral roller blind Up-Down funcion, flags can be used in sead of channels. In his way, i is possible o have prioriy conrol funcions, which are relaed o several channel sauses. Noe: Flags used in his way may only be used once in he logic funcion Inernal processing of he logic seups The Maser Generaor processes he seups from block 1 o block 8, and wihin each block from op o boom Noes and Documenaion For laer documenaion of he logic seups, i is useful o add commens in he field Noes. When he logic seups are laer prined ou, he noes appear nex o he individual rows so ha each individual funcion is commened on Carlo Gavazzi Indusri A/S. All righs reserved 71

72 4. GSM Modem funcions (only valid for G ) 4.1. SMS Seup The G Maser Generaor has a buil-in GSM Modem which enables Monioring and conrol of Dupline signals via SMS messages o/from mobile GSM elephones. There are 3 differen ways o use SMS messaging: The Maser Generaor can be programmed o send ou even-based SMS messages. The even can be a channel swiching ON or OFF, or i can be an analog signal crossing a se-poin. Requess for saus of digial or analog daa can be sen and answered via SMS messages Saus of digial channels can be conrolled by sending commands via SMS messages In order o make use of he GSM modem, he following is required: A SIM-card wih he pin-code 9090 needs o be insered ino he slo in he fron of G The pincode can be changed, by insering he SIM-card in a mobile phone and making use of he seing possi biliies in he mobile phone. The SIM-card mus be a 3V ype. A GSM anenna needs o be conneced o he FME connecor on G If he uni is insalled in a meal enclosure, he anenna mus be insalled ouside he enclosure and conneced o he Maser Generaor via a cable (an anenna of his ype is available, wih ype number ANT1). An LED in he fron of G indicaes he saus of he GSM modem. By emiing differen blink paerns, he LED indicaes "connecing", "SIMcard missing", "No nework found", "No response from modem", "SMS sen" and "SMS received". See appendix for furher informaion abou he LED indicaions. Parameers In order o se up he basic SMS funcions, selec "SMS Seup" in he Edi menu. Parameer Descripion Carlo Gavazzi Indusri A/S. All righs reserved

73 Parameer Dial Ou Phone Numbers Max. User Response ime Descripion Up o 4 elephone numbers o which he SMS messages shall be sen can be enered. The counry code mus be included in he numbers (e.g ). I can be seleced if an even-based SMS message shall be sen ou o all he elephone numbers on he lis simulaneously, or if i shall be sen o he elephone numbers one by one, unil an acknowledgemen is received. Acknowledgemen is performed by sending eiher a reques or jus an empy SMS message o he Generaor. Only valid when "one by one o acknowledge" is seleced. Here, he maximum ime he Generaor shall wai for a response from a called number is enered. Oherwise he nex number will be called. Acknowledge: Eiher a reques, a command, or an empy SMS (password mus be included, if user password is seleced). Message Idenifying ex Erase SMS on SImcard during Power-Up Check Dial-in Numbers Allowed Dial-in Numbers Use Password Dial-in Password Opional SMS idenifier ex, ha will be included in he SMS messages sen by he Generaor. Check his box o erase "old" unread SMS messages on he SimCard, during Sysem power-up. This is o preven ou-daed messages from inerfering. Check his box o acivae he Dial-In number proecion. Any received SMSmessage, conains he original phone-number. This number mus exis in he Dial-In numbers lis, before any command is acceped by he Maser Generaor, when his opion is seleced. Ener he phone numbers, which are allowed o send conrol and read commands o he Generaor. The counry code mus be included in he numbers (e.g ). Check his box o acivae he Password-proecion. Any received SMS-message, will hen be checked for he correc password, before any command is acceped by he Masergeneraor. Type in a password wih 4 characers, o be used in case "Use Password" is seleced. Dial Ou Phone-Numbers Up o 4 elephone numbers where he SMS messages shall be sen o can be enered. The counry code mus be included in he numbers (e.g ). I can be seleced if an even-based SMS message shall be sen ou o all he elephone numbers on he lis simulaneously, or if i shall be sen o he elephone numbers one by one, unil an acknowledge is received. The acknowledge is done by sending eiher a reques or jus an empy SMS message o he Generaor. 4.2 Even-based SMS messages 2002 Carlo Gavazzi Indusri A/S. All righs reserved 73

74 If he "SMS by ON" box is checked, he Generaor will send an SMS wih he ime and dae, he idenifying ex, he descripion ex for he channel and he saus, whenever E1 becomes acive. The recipien of he SMS will see he following message in he display of he GSM phone: If more dial-ou phone numbers have been defined, an acknowledgemen can be sen o he Generaor by sending an empy SMS message back. The Generaor will hen sop sending messages o he following phone numbers. SMS messages for AnaLink channels conain he acual AnaLink value SMS Conrol commands and Requess for Dupline daa Commands for conrol or riggering of channel funcions can be sen o he Generaor vi messages. Also, i is possible o send an SMS o he Generaor wih reques for channel saus. The Generaor will hen answer by sending back an SMS wih he requesed daa. The forma of he SMS commands and requess are shown in he example below: Wih passpor opion Conrolling command Example Password, Channel, argumen 1234,F4,on 1234,f4,on 1234,Alarm rese,on Reques Command Example Password, Channel,? 1234.F3? (al: 1234,F3?) 1234,Siren,? Conrolling command Channel, argumen Reques Command Channel,? Wih passpor opion Example F4,on Alarm rese,on Example F3? (al: F3?) Siren,? NB: When using conrolling commands on a channel, which is also configured o send a message when changing saus, he message will also be sen o he GSM phone. No all channel ypes can be conrolled Carlo Gavazzi Indusri A/S. All righs reserved

75 As i can be seen, i is possible o use eiher he channel reference direcly (eg F4) or o use he descripive ex defined for ha channel. The only channel ypes whose oupus are acually conrolled direcly ON or OFF by he SMS command are he Toggle and Realime channels. For Push buon, Timer, Maser, Roller Blind, Alarm Rese and Acknowledge channels, an SMS ON-command will iniiae a pulse on he channel and hereby be able o rigger a funcion (eg a Maser funcion or logic funcion). In his way, i is avoided ha non-reseable channel acivaions appear. An SMS OFF-command o hese channels may no ensure ha he channel oupu is urned off, since he oupu of he channel is also conrolled by ransmission on he channel. All oher channel ypes canno be conrolled via SMS Carlo Gavazzi Indusri A/S. All righs reserved 75

76 5. Radio Modem driver 5.1. General The Maser Generaor has a buil-in driver for conrol of an exernal Radio Modem, which can be used o creae wireless links where no cable is available in pars of an insallaion. One Maser Generaor mus be defined as he cenral MGEN and up o 32 Maser Generaors can be defined as remoe MGEN s. The cenral MGEN is coninuously polling and updaing he Dupline daa from all remoe MGEN s via he radio modem nework, and in his way i makes he enire sysem operae as one big Dupline nework. Apar from increased reacion ime (depending on he number of remoe MGEN s), he sysem will operae as if i was one Maser Generaor conneced o all he I/O-modules wih cable. The Maser Generaor suppors he Radio Modem ype 2ASxE and all 3AS ypes from he Finnish manufacurer SATEL ( These are no supplied by Carlo Gavazzi, bu are available wih local suppor worldwide. Find below an applicaion diagram for he Radio Modem opion. Noe: Analink modules canno be used wih Radio Modems. The Radio Modem mus be conneced o he COM2 of he Maser Generaor. For serial cable pin connecions, please refer o he Maser Generaor daashee. The baud rae seleced for COM2 mus correspond o he baudrae used by he radio modems and he oher maser generaors in he nework. The cenral MGEN mus be defined for "Radio Modem cenral" funcion for COM2, while he remoe MGEN s mus be defined as "Radio modem subsaion". The cenral MGEN can be configured for he usual inelligen funcions, and i can also be conneced via COM1 or he RS485 por o a PLC or PC. The remoe MGEN s, however, canno be configured for any inelligen funcion. They will simply operae as Radio Modem inerfaces. The sysem can handle all ypes of digial, analog (incl. muliplexed) and couner values, excep for Analink values. The configuraion of he Radio Modem funcion is performed in he menu "Edi" under "Communicaion seup" Carlo Gavazzi Indusri A/S. All righs reserved

77 5.2 Seup of Radio Modem Cenral Parameer: Radio Modem Cenral Parameer Modem urn-around ime Subsaion max. response ime No. of subsaions Selec groups for exchange of Mux analog Descripion Defines he ime delay he Maser Generaor uses when changing beween receiving and ransmiing. This can be used o adap o individual radio modem ypes, which may have differen requiremens for his parameer. The defaul value of 100 ms will work in mos cases. Defines he ime he cenral maser generaor will wai for an answer from a subsaion. If he maser generaor does no receive an answer wihin his ime i coninues o he nex subsaion. The defaul ime is 1 s, which is fine for mos applicaions, bu longer ime may be needed if repeaer saions are used on he radio modems. Defines he number of subsaions conneced via radio modem o he cenral maser generaor. Imporan Noe: The maser generaors configured as "Radio modem subsaion" mus be given he ID numbers from 1 and onwards. Example: When "No of subsaions" are se o 3, hen he 3 maser generaors configured as "radio modem subsaion" mus be given he ID numbers 1, 2 and 3 respecively. If muliplexed analog I/O s are used in he radio modem sysem, hen i is necessary o define which "channel group pairs" are used for his purpose. This is simply done by selecing he relevan check boxes. I is only possible upon prior seup of Muliplex-coun under he menu Couners and Mux Analog Seup Carlo Gavazzi Indusri A/S. All righs reserved 77

78 5.3. Seup of Radio Modem Subsaion Parameer: Radio Modem Subsaion Parameer Clear daa upon loss of radio communicaion Time o Daa-clear Descripion Per defaul, he subsaions mainain he las received Dupline oupu daa no maer how long ime has passed since he las elegram was received from he cenral maser generaor. If "Clear daa upon loss of radio communicaion" is checked, hen he oupu daa will be cleared when he ime-ou defined in "Time o Daa-clear" has run ou. Defines he ime-ou when "Clear daa upon loss of radio modem communicaion" is seleced Carlo Gavazzi Indusri A/S. All righs reserved

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