background image

IC logic= 1 - Input configured as Start I. Operation according to 

STEP-BY-STEP MOV

. logic.  Internal start for traffic light control.

IC logic= 2 - Input configured as Open.  

The command causes the leaves to open. If the input stays closed, the leaves stay open until the contact is opened. When the contact is open, the automated device closes following 

the TCA time, where activated.
IC logic= 3 - Input configured as Closed.  

The command causes the leaves to close.
IC logic= 4 - Input configured as Ped. 

The command causes the leaf to open to the pedestrian (partial) opening position. Operation according to 

STEP-BY-STEP

. logic

IC logic= 5 - Input configured as Timer. 

  Operation same as open except closing is guaranteed even after a mains power outage.
IC logic= 6 - Input configured as Timer Ped. 

The command causes the leaf to open to the pedestrian (partial) opening position. If the input stays closed, the leaf stays open until the contact is opened. If the input stays closed and a Start E, 

Start I or Open command is activated, a complete opening-closing cycle is performed before returning to the pedestrian opening position. Closing is guaranteed even after a mains power outage.

Safety input configuration

SAFE logic= 0 - Input configured as Phot (photocell) non tested (*). (fig.F, ref.1).  

Enables connection of devices not equipped with supplementary test contacts. When beam is broken, photocells are active during both opening and closing. When beam is broken 

during closing, movement is reversed only once the photocell is cleared. If not used, leave jumper inserted.
SAFE logic= 1 - Input configured as Phot test (tested photocell). (fig.F, ref.2).  

Switches photocell testing on at start of operation. When beam is broken, photocells are active during both opening and closing. When beam is broken during closing, movement is 

reversed only once the photocell is cleared.
SAFE logic= 2 - Input configured as Phot op (photocell active during opening only) non tested (*). (fig.F, ref.1).  

Enables connection of devices not equipped with supplementary test contacts. In the event beam is broken, photocell operation is disabled during closing. During opening, stops 

motion for as long as the photocell beam stays broken. If not used, leave jumper inserted.
SAFE logic= 3 - Input configured as Phot op test (tested photocell active during opening only (fig.F, ref.2). 

Switches photocell testing on at start of operation. In the event beam is broken, photocell operation is disabled during closing. During opening, stops motion for as long as the photo-

cell beam stays broken.
SAFE logic= 4 - Input configured as Phot cl (photocell active during closing only) non tested (*). (fig.F, ref.1).  

Enables connection of devices not equipped with supplementary test contacts. In the event beam is broken, photocell operation is disabled during opening. During closing, move-

ment is reversed immediately. If not used, leave jumper inserted.
SAFE logic= 5 - Input configured as Phot cl test (tested photocell active during closing only (fig.F, ref.2). 

Switches photocell testing on at start of operation. In the event beam is broken, photocell operation is disabled during opening. During closing, movement is reversed immediately.
SAFE logic= 6 - Input configured as Bar (safety edge) non tested (*). (fig.F, ref.3).  

Enables connection of devices not equipped with supplementary test contacts. The command reverses movement for 2 sec.. If not used, leave jumper inserted.
SAFE logic= 7 - Input configured as Bar (tested safety edge (fig.F, ref.4). 

Switches safety edge testing on at start of operation. The command reverses movement for 2 sec.
SAFE logic= 8 - Input configured as Bar 8k2 (fig.F, ref.5). Input for resistive edge 8K2.  

The command reverses movement for 2 sec.

(*) If “D” type devices are installed (as defined by EN12453), connect in un-

verified mode, foresee mandatory maintenance at least every six months.

 

6) MOTOR WIRING Fig. E

7) SAFETY DEVICES

Note: only use receiving safety devices with free changeover contact.
7.1) TESTED DEVICES Fig. F

7.2) CONNECTION OF 1 PAIR OF NON-TESTED PHOTOCELLS FIG. D
8) CALLING UP MENUS: FIG. 1
8.1) PARAMETERS MENU (

PARA

) (PARAMETERS TABLE “A”)

8.2) LOGIC MENU (

LOGIC

) (LOGIC TABLE “B”) 

8.3) RADIO MENU (

radio

) (RADIO TABLE “C”)

-   IMPORTANT NOTE: THE FIRST TRANSMITTER MEMORIZED MUST BE 

IDENTIFIED BY ATTACHING THE KEY LABEL (MASTER).

In the event of manual programming, the first transmitter assigns the RECEIVER’S 

KEY CODE: this code is required to subsequently clone the radio transmitters.

The Clonix built-in on-board receiver also has a number of important advanced features: 

•  Cloning of master transmitter (rolling code or fixed code).

•  Cloning to replace transmitters already entered in receiver.

•  Transmitter database management.

•  Receiver community management.

To use these advanced features, refer to the universal handheld programmer’s 

instructions and to the general receiver programming guide.
8.4) DEFAULT MENU (

default

)

Restores the controller’s DEFAULT factory settings. Following this reset, you will 

need to run the AUTOSET function again. 
8.5) LANGUAGE MENU (

language

)

Used to set the programmer’s language on the display. 
8.6) AUTOSET MENU (

AUTOset

•  Launch an autoset operation by going to the relevant menu.

•  As soon as you press the OK button, the “.... ....  ....” message is displayed and the control 

unit commands the device to perform a full cycle (opening followed by closing), dur-

ing which the minimum torque value required to move the leaf is set automatically.

  The number of cycles required for the autoset function can range from 1 to 3.

  During this stage, it is important to avoid breaking the photocells’ beams and not 

to use the START and STOP commands or the display.

  Once this operation is complete, the control unit will have automatically set the 

optimum torque values. Check them and, where necessary, edit them as described 

in the programming section.

WARNING!! Check that the force of impact measured at the points 

provided for by standard EN 12445 is lower than the value laid down 

by standard EN 12453.

Impact forces can be reduced by using deformable edges.

Warning!! While the autoset function is running, the obstacle detection 

function is not active. Consequently, the installer must monitor the 

automated system’s movements and keep people and property out 

of range of the automated system.

8.7)INSTALLATION TEST PROCEDURE

1.  Run the AUTOSET cycle (*)

2.  Check the impact forces: if they fall within the limits (**) skip to point 10 of the procedure, 

otherwise

3.  Where necessary, adjust the speed and sensitivity (force) parameters: see parameters 

table.

4.  Check the impact forces again: if they fall within the limits (**) skip to point 10 of the 

procedure, otherwise

5.  Apply a shock absorber profile

6.  Check the impact forces again: if they fall within the limits (**) skip to point 10 of the 

procedure, otherwise

7.  Apply pressure-sensitive or electro-sensitive protective devices (such as a safety edge) 

(**)

8.  Check the impact forces again: if they fall within the limits (**) skip to point 10 of the 

procedure, otherwise

9.  Allow the drive to move only in “Deadman” mode

10. Make sure all devices designed to detect obstacles within the system’s operating range 

are working properly

(*) Before running the autoset function, make sure you have performed all the assembly and 

make-safe operations correctly, as set out in the installation warnings in the drive’s manual.

(**) Based on the risk analysis, you may find it necessary to apply sensitive protective 

devices anyway
8.8) LIMIT SWITCH ADJUSTMENT MENU (

L.SW ADJ

)

Used to adjust limit switches for motors featuring encoders. 

The menu is enabled with the following motors: LUX BT, LUX g BT. In all other 

cases, the “

NOT AVAILABLE

” message is displayed. 

NOTE: these operations must be performed in deadman mode at reduced speed 

and without the safety devices operating. If logic mode “

1 Mot. act

” is set, only 

messages relating to motor 1 will be displayed (“

OPm1

” and “

CLm1

”).

8.9) STATISTICS MENU

Used to view the version of the board, the total number of operations (in 

hundreds), the number of transmitters memorized and the last 30 errors (the 

first 2 digits indicate the position, the last 2 give the error code).  Error 01 is the 

most recent.
8.10) PASSWORD MENU 

Used to set a password for the board’s wireless programming.
9) CLOSING LIMIT SWITCH PRESSURE Fig. G Ref. A-B

OPENING DIRECTION Fig. G Ref. C-D
10) CONNECTION WITH EXPANSION BOARDS AND UNIVERSAL HANDHELD 

PROGRAMMER VERSION> V1.40 (Fig. H) Refer to specific manual.
WARNING!  Incorrect settings can result in damage to property and injury to people 

and animals.  

WARNING: Check that the force of impact measured at the points 

provided for by standard EN 12445 is lower than the value laid down 

by standard EN 12453.

Impact forces can be reduced by using deformable edges.

For best results, it is advisable to run the autoset function with the motors idle (i.e. 

not overheated by a considerable number of consecutive operations).
11) U-LINK OPTIONAL MODULES

Refer to the U-link instructions for the modules. 

INSTALLATION MANUAL

ENGLISH

THALIA P   

33

D811780

 00100_06

Содержание THALIA P

Страница 1: ...tion Read Warnings inside carefully Attention Veuillez lire attentivement les Avertissements qui se trouvent à l intérieur Achtung Bitte lesen Sie aufmerksam die Hinweise im Inneren Atención Leer atentamente las Advertencias en el interior Let op Lees de Waarschuwingen aan de binnenkant zorgvuldig QUADRO COMANDO CONTROL PANEL CENTRALE DE COMMANDE SELBSTÜBERWACHENDE STEUERUNG CUADRO DE MANDOS Bedie...

Страница 2: ...1 ENC1A SWO 1 SW 2 ENC1B SWC2 ENC2A SWO2 ENC2B 24V 24V 24 VSafe COM IC 1 IC 2 NO NO COM IC 3 IC 4 NO NO Ingressi finecorsa encoder Encoder limit switch inputs Entrées des fins de course encodeur Eingänge Anschlag Encoder Entradas finales de carrera Encoder ingangen Alimentazione accessori Accessories power supply Alimentation des accessoires Stromversorgung Zubehör Alimentación accesorios Voeding ...

Страница 3: ... M2 M1 M1 M2 M1 M2 M2 M1 M2 M1 inv direz ap open in other direct inv sens ouv inv richt offnung inv direcc ap Omkering openingsrichting 1 ext inv direz ap open in other direct inv sens ouv inv richt offnung inv direcc ap Omkering openingsrichting 1 ext inv direz ap open in other direct inv sens ouv inv richt offnung inv direcc ap Omkering openingsrichting 1 ext inv direz ap open in other direct in...

Страница 4: ... M1 M2 M2 M1 M2 M1 Bianco Bianco Rosso Nero White Red Black Blanc Rouge Noir Weiß Rot Nero Blanco Rojo Negro Wit Rood Zwart Rosso Rosso Bianco Bianco Nero Nero Rosso Nero inv direz ap open in other direct inv sens ouv inv richt offnung inv direcc ap Omkering openingsrichting 1 ext inv direz ap open in other direct inv sens ouv inv richt offnung inv direcc ap Omkering openingsrichting 1 ext inv dir...

Страница 5: ...le sr funzionamento semi aut residenziale ac funzionamento automatico condominiale Sc funzionamento semi automatico condominiale Ind funzionamento a uomo presente AR preset sr ac sc ind regolazione finecorsa di apertura motore 1 regolazione finecorsa di apertura motore 2 regolazione finecorsa di chiusura motore 2 regolazione finecorsa di chiusura motore 1 opm1 opm2 clm2 clm1 ersu fine o o reg fc 2...

Страница 6: ...utomatica 0 1 0 1 0 0 Chiusura rapida 0 0 0 0 0 0 Movimento passo passo 0 1 0 1 0 0 Preallarme 0 0 0 1 1 0 Uomo presente 0 0 0 0 0 1 Blocca impulsi in apertura 0 0 0 1 1 0 Blocca impulsi in TCA 0 0 0 0 0 0 Blocca impulsi in chiusura 0 0 0 0 0 0 Colpo di ariete in apertura 0 0 0 0 0 0 Colpo di ariete in chiusura 0 0 0 0 0 0 Mantenimento blocco 0 0 0 0 0 0 Pressione finecorsa chiusura 0 0 0 0 0 0 IC...

Страница 7: ...own motor 1 opening limit switch adjustment motor 2 opening limit switch adjustment motor 2 closing limit switch adjustment motor 1 closing limit switch adjustment ar automatic operation residential sr semiautomatic operation residential ac automatic operation commercial Sc semiautomatic operation commercial Ind dead man operation opm1 opm2 clm2 clm1 ersu end o o 2 1 2 1 2 1 2 1 LUX BT LUX G BT EL...

Страница 8: ... 0 1 0 1 0 0 Fast closing 0 0 0 0 0 0 Step by step movement 0 1 0 1 0 0 Pre alarm 0 0 0 1 1 0 Deadman 0 0 0 0 0 1 Block pulses during opening 0 0 0 1 1 0 Block pulses during TCA 0 0 0 0 0 0 Block pulses during closing 0 0 0 0 0 0 Hammer during opening 0 0 0 0 0 0 Hammer during closing 0 0 0 0 0 0 Stop maintenance 0 0 0 0 0 0 Closing limit switch pressure 0 0 0 0 0 0 ICE feature 0 0 0 0 0 0 1 motor...

Страница 9: ...atique collectif Sc fonctionnementsemi automatique collectif Ind fonctionnement à homme présent x1 MIN 1 MAX 3 AUTO OPEN AUTO CLOSE Monter Descendre Confirmation allumage afficheur Sortir du menu AR preset sr ac sc ind opm1 opm2 clm2 clm1 ersu fin o o 2 1 2 1 2 1 2 1 LUX BT LUX G BT ELI BT PHOBOS BT IGEA BT SUB BT regL fc réglage fin de course d ouverture moteur 1 réglage fin de course d ouverture...

Страница 10: ...utomatique 0 1 0 1 0 0 Fermeture rapide 0 0 0 0 0 0 Mouvement pas à pas 0 1 0 1 0 0 Préalarme 0 0 0 1 1 0 Homme présent 0 0 0 0 0 1 Verrouillage impulsions à l ouverture 0 0 0 1 1 0 Verrouillage impulsions en TCA 0 0 0 0 0 0 Verrouillage impulsions à la fermeture 0 0 0 0 0 0 Coup de bélier à l ouverture 0 0 0 0 0 0 Coup de bélier à la fermeture 0 0 0 0 0 0 Maintien verrouillage 0 0 0 0 0 0 Pressio...

Страница 11: ...ikbetrieb Hausbereich Sc Halbautomatikbetrieb Hausbereich Ind Halbautomatikbetrieb Hausbereich Öffnung nach innen EXT Öffnung nach außen type eli phob igea 2 n mot 1 x1 autoset O 01 gevue taste verst taste loslassen speichern hs ende o o MIN 1 MAX 3 AUTO OPEN AUTO CLOSE Aufwärts Abwärts Bestätigung Aufleuchten Display Zurück zum Hauptmenü AR preset sr ac sc ind opm1 opm2 clm2 clm1 ersu ende o o en...

Страница 12: ...ische Schließung 0 1 0 1 0 0 Schnelle Schließung 0 0 0 0 0 0 Bewegung Schritt Schritt 0 1 0 1 0 0 Voralarm 0 0 0 1 1 0 Mann anwesend 0 0 0 0 0 1 Blockiert Öffnungsimpulse 0 0 0 1 1 0 Blockiert TCA Impulse 0 0 0 0 0 0 Blockieren Impulse Schließen 0 0 0 0 0 0 Widderschlag Öffnung 0 0 0 0 0 0 Widderschlag Schließung 0 0 0 0 0 0 Halten Blockierung 0 0 0 0 0 0 Drücken Endschalter Schließung 0 0 0 0 0 0...

Страница 13: ...to automático en edificios Sc funcionamiento semi aut en edificios Ind funcionamiento con hombre presente apertura hacia dentro EXT apertura hacia afuera TIPO eli phob igea 2 autoset O 01 tecla deseada anad start suelte RADIOM FIN o o n mot 1 x1 MIN 1 MAX 3 AUTO OPEN AUTO CLOSE Desplazar hacia arriba Desplazar hacia abajo Confirmación Encendido pantalla Retorno al menú principal LEYENDA AR preset ...

Страница 14: ...re Automático 0 1 0 1 0 0 Cierre rápido 0 0 0 0 0 0 Movimiento paso a paso 0 1 0 1 0 0 Prealarma 0 0 0 1 1 0 Hombre presente 0 0 0 0 0 1 Bloqueo impulsos en fase de apertura 0 0 0 1 1 0 Bloqueo impulsos en TCA 0 0 0 0 0 0 Bloquea impulsos en fase de cierre 0 0 0 0 0 0 Golpe de ariete en fase de apertura 0 0 0 0 0 0 Golpe de ariete en fase de cierre 0 0 0 0 0 0 Mantenimiento bloqueo 0 0 0 0 0 0 Pre...

Страница 15: ...chappelijk semi automatische werking gemeenschappelijk werking bij aanwezige persoon opening naar binnen EXT opening naar buiten type eli phob igea 2 autoset O 01 desidered button hidden button release mem remotes end o o n mot 1 x1 ar sr ac Sc Ind AR preset sr ac sc ind opm1 opm2 clm2 clm1 ersu end o o l sw adj 2 1 2 1 2 1 2 1 LUX BT LUX G BT ELI BT PHOBOS BT IGEA BT SUB BT MIN 1 MAX 3 AUTO OPEN ...

Страница 16: ...matische Sluiting 0 1 0 1 0 0 Snelle sluiting 0 0 0 0 0 0 Stap voor stap beweging 0 1 0 1 0 0 Vooralarm 0 0 0 1 1 0 Persoon aanwezig 0 0 0 0 0 1 Blokkeert impulsen bij opening 0 0 0 1 1 0 Blokkeert impulsen in TCA 0 0 0 0 0 0 Blokkeert impulsen bij sluiting 0 0 0 0 0 0 Drukstoot bij opening 0 0 0 0 0 0 Drukstoot bij sluiting 0 0 0 0 0 0 Handhaving blokkering 0 0 0 0 0 0 Druk aanslag sluiting 0 0 0...

Страница 17: ...PHOT CL 1 BAR 1 BAR 2 BAR 50 52 50 52 50 51 50 51 50 51 50 51 50 76 77 76 77 78 76 76 77 78 51 51 50 51 50 51 50 52 52 52 77 76 77 76 78 77 76 51 50 76 78 1 2 1 2 3 4 5 51 TX1 RX1 Bar 1 1 2 3 4 5 6 1 2 1 2 3 4 5 52 50 TX1 RX1 1 2 1 2 3 4 5 TX1 RX1 1 2 1 2 3 4 5 TX2 RX2 Bar 1 1 2 3 4 5 Bar 2 1 2 3 4 5 Bar 1 1 2 3 4 5 6 6 6 1 2 1 2 3 4 5 TX1 RX1 Bar 1 1 2 3 4 5 6 1 2 1 2 3 4 5 TX1 RX1 1 2 1 2 3 4 5 ...

Страница 18: ...nec tions to motor Hardware problems with board contact technical assistance ER2x Encoder error Motor power or encoder sig nal cables inver ted disconnected Actuator movement is too slow or stopped with respect to programmed operation ER3x Reverse due to obstacle Amperostop Check for obstacles in path ER4x Thermal cutout Allow automated device to cool ER5x Communication error with remote devices C...

Страница 19: ...ached by the public Apply at least one warning light flashing light in a visible position and also attach a Warning sign to the structure Attach a label near the operating device in a permanent fashion with informa tion on how to operate the automated system s manual release Make sure that during operation mechanical risks are avoided or relevant protective measures taken and more specifically tha...

Страница 20: ...securedwithadditionalfasteningneartheterminals usingdevices such as cable clamps All connecting cables must be kept far enough away from the dissipater Terminal Definition Description Power supply L LINE Single phase power supply 220 230V 50 60Hz N NEUTRAL JP5 TRANSF PRIM Transformer primary winding connection 220 230V JP7 JP21 TRANSF SEC Board power supply 24V Transformer secondary winding 24V Bu...

Страница 21: ...devices connected to SAFE 3 79 SAFE 4 Configurable safety input 4 N C Default PHOT CL PHOT PHOT TEST PHOT OP PHOT OP TEST PHOT CL PHOT CL TEST BAR BAR TEST BAR 8K2 Refer to the Safety input configuration table 80 FAULT 4 Test input for safety devices connected to SAFE 4 81 Common SAFE 5 and SAFE 6 inputs common 82 SAFE 5 Configurable safety input 5 N C Default PHOT PHOT PHOT TEST PHOT OP PHOT OP T...

Страница 22: ...s code is required to subsequently clone the radio transmitters The Clonix built in on board receiver also has a number of important advanced features Cloning of master transmitter rolling code or fixed code Cloning to replace transmitters already entered in receiver Transmitter database management Receiver community management To use these advanced features refer to the universal handheld program...

Страница 23: ...e force stored during the autoset cycle and subsequently updated before an obstacle alarm is generated The parameter is set automatically by the autoset function WARNING It affects impact force directly make sure that current safety requirements are met with the set value Install anti crush safety devices where necessary CLS FORCE 1 99 50 Leaf force during closing Force exerted by leaf leaves duri...

Страница 24: ...s OPEN UP Input 62 is configured as CLOSE UP WARNING with the device set to Emergency Deadman mode safety devices are not enabled IBL OPEN Block pulses during opening 0 0 Pulse from inputs configured as Start E Start I Ped has effect during opening 1 Pulse from inputs configured as Start E Start I Ped has no effect during opening IBL TCA Block pulses during TCA 0 0 Pulse from inputs configured as ...

Страница 25: ...perating mode See Fig G Ref D SAFE 1 Configuration of safety input SAFE 1 72 0 0 Input configured as Phot photocell 1 Input configured as Phot test tested photocell 2 Input configured as Phot op photocell active during opening only 3 Input configured as Phot op test tested photocell active during opening only SAFE 2 Configuration of safety input SAFE 2 74 6 4 Input configured as Phot cl photocell ...

Страница 26: ...ontrol panel IMPORTANT Enables the automatic addition of new transmitters clones and replays SERIAL MODE Serial mode Identifies how board is configured in a BFT network connection 0 0 Standard SLAVE board receives and communicates commands diagnostics etc 1 Standard MASTER board sends activation commands START OPEN CLOSE PED STOP to other boards ADDRESS Address 0 ___ Identifies board address from ...

Страница 27: ...command 5 Input configured as Timer command 6 Input configured as Timer Pedestrian command 7 Input configured as Phot photocell safety 8 Input configured as Phot op safety photocell active during opening only 9 Input configured as Phot cl safety photocell active during closing only 10 Input configured as Bar safety safety edge EXPO1 Configuration of EXPO2 output on input output expansion board 4 5...

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