Metaforsa 3/3.plus

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MF3/MF3.plus
METAFORSA 3 MF3-14.png
Output ports
Number of switched channels10
Number of dimming channels4
Peak load16 A
Max load per dimming channel0.5 A (110 W at 220 V)
Dimmer typeMOSFET
Input ports
Number of discrete inputs28
General
Max CAN devices4 (can be extended with the license) 99 (for Metaforsa 3.plus)
Max CAN bus length800 m (twisted pair CAT5e)
Max current per CAN bus500 mA
Other
Supply voltage11.5...27.5 V DC
Dimentions9U, 156x90x58 mm


Introduzione

METAFORSA SMART HOUSE Installation Manual describes the procedure for its installation, assembly, operation and setting. While working with the system, you must strictly comply with all the requirements set out in this manual. Failure to comply may result in damage to the device, its failure, electric shock, fire and other fallout. The manufacturer reserves the right to make changes to this manual without prior notice. This manual is an integral part of the system and shall remain with the end-use customer.

==Caratteristiche

  • 10 uscite universali supportate:
    • Luci
    • Valvole di riscaldamento NC/NO
    • Tende
    • Cancelli a 1 o 2 poli
    • Valvole a 1 o 2 poli
    • Chiusure NC/NO
    • Bobine di ventilazione
  • 4 uscite dimmerabili
  • 28 ingressi che supportano:
    • Pulsanti
    • Pulsanti a LED
    • Interruttori
    • Interruttori a lamelle
    • Sensori di perdita
    • Rilevatori di movimento
    • Sensori di temperatura
    • Strisce LED
    • Strisce RGB a 3-4-5 canali
    • StrisceWS2812B
    • Dispositivi RS485 (solo per Metaforsa 3.plus)
  • Porta di estensione
  • Relè con contatti AgSnO2 con corrente di spunto di 80A 20ms
  • Connessione al cloud e controllo di tutti i sistemi della casa
  • Controllo vocale (Siri, Alexa, Google Home)

Requisiti di sicurezza

ATTENZIONE! Tutti i lavori relativi all'installazione, collegamento, impostazione, assistenza e supporto devono essere eseguiti da personale qualificato con sufficienti competenze ed esperienza nel lavoro con apparecchiature elettriche.

Per evitare il rischio di incendio, scossa elettrica, danni al sistema e/o lesioni personali, l’installazione e il montaggio del sistema devono essere eseguiti in conformità con le istruzioni di seguito elencate:


  • Tutti i lavori di collegamento devono essere eseguiti in assenza di corrente;
  • utilizzare strumenti adeguati e protezioni personali contro le scosse elettriche;
  • non utilizzare cavi, fili e connettori danneggiati;
  • evitare di piegare i cavi e i fili;
  • non schiacciare o piegare i cavi e i fili applicando una forza eccessiva. In caso contrario, i conduttori interni dei cavi e dei fili potrebbero spellarsi o rompersi;
  • Non utilizzare prese di corrente con contatti scadenti per il collegamento;
  • non superare il limite dei parametri di carico specificati nel presente manuale;
  • La sezione dei fili dei conduttori di alimentazione è soggetta alle specifiche relative al limite di densità di corrente, al tipo di isolamento e al materiale dei fili. Una sezione leggera può provocare il surriscaldamento del cavo e l'incendio.


Quando si lavora con il sistema dopo l'alimentazione di tensione MAI:

  • effettuare la connessione/sconnessione dei connettori;
  • moduli e sensori aperti.

Configurazione del sistema e scopo

Scopo del sistema

METAFORSA SMART HOUSE è una soluzione pronta per l'automazione di locali residenziali e commerciali, complessi alberghieri che include le funzionalità più desiderate di Smart House.


Il dispositivo dispone di 10 canali di controllo, 4 canali di regolazione e 28 canali di ingresso.


Le uscite universali possono essere utilizzate per controllare: ! Gli ingressi universali consentono di collegare:
Illuminazione Pulsanti/LED/unità di commutazione
Connettori per prese di corrente Interruttori reed magnetici
Riscaldamento a pavimento Sensori di perdita
Tenda Rilevatori di movimento
Attuatori per cancelli Sensori di temperatura
Alimentazione dell'acqua Strisce LED/3-4-5 canali RGB/strisce WS2812B
Valvole di riscaldamento Dispositivi RS485*

* - Solo per Metaforsa 3.plus


Porta di espansione


La porta di espansione consente di aggiornare il sistema collegando apparecchiature ausiliarie, come il modulo di controllo per illuminazione a LED, dimmerazione, dispositivi di misurazione e altri elementi. Il pacchetto, completamente pronto per l'installazione, comprende l'hardware e il software di base.

Contenuto della confezione

Il pacchetto è dotato di serie di:

Mainframe METAFORSA 3/3.plus 1 pz
Alimentatore MEANWELL DR-15-12 1 pz
Sensore di movimento CW-MSD 3 pz
Sensore di dispersione FW-WL.B 2 pz
Elemento sensibile alla temperatura FW-TS 4 pz
Interruttore magnetico reed (sensore di posizione finestra/porta) 4 pz
Filtro antidisturbo per cavo Ethernet 1 pz
Cavo di alimentazione 1 pz

Specifiche tecniche di base del sistema

Le specifiche e le caratteristiche di base del modulo METAFORSA 3/3.plus sono riportate nella tabella 1.

Specifiche! Significato
Tabella 1
'Porte di uscita
Numero di canali commutati 10
Numero di gruppi commutati 10
Numero di canali dimmerabili 4
Tensione di commutazione 0-250 V AC/DC
Carico di picco (un canale) 16A
Carico di picco (dispositivo) 160A
Carico massimo per canale di regolazione 0,5A (110W a 220V)
Tipo di dimmer MOSFET
Tipo di carico del dimmer R,C
Tipo di dimmerazione bordo d'uscita
Tipo di collegamento del cavo di alimentazione connettore
Sezione ammissibile del cavo di alimentazione da collegare alla presa:
cavo a conduttore singolo
cavo a conduttore multiplo
cavo a conduttore multiplo a punta

0,5 ... 4mm2
0,5 ... 4mm2
0,5 ... 2,5mm2
Porte di ingresso
Numero di ingressi discreti 28
Corrente massima nominale sui connettori di tensione a corrente continua 5 mA*
Altro'
Temperatura ambiente di funzionamento 0 ... +45°С
Temperatura di stoccaggio/trasporto -10 ... +50°С
Umidità ammissibile 0 ... 95% (non condensante)
Alimentazione 11,5 ... 27,5 V CC
24V, 0,75A Consigliato
Massima richiesta 0,5А
Interfacce disponibili Ethernet, CAN
Tipo di bus CAN (4 fili)
CAN (4 fili) 800 m** (doppino CAT5e)
Tipo di filo CAN FTP Cat 5E
Tipo di connessione CAN Connettore
Lunghezza massima della linea digitale 30 m
Tipo di linea digitale UTP/FTP Cat 5E
Lunghezza massima LAN 100 m
Tipo di filo LAN UTP/FTP Cat 5E
Tipo di connessione LAN Connettore RJ-45
Quantità porte RS485 1***
Velocità di trasferimento dati 1200-115200 b/s***
Specifiche dimensionali 9U, 156x90x58 mm
Materiale del guscio ABS
Involucro IP40
Tipo di installazione dell'apparecchio Binario DIN (EN 60715)
Peso 400 g

* - I canali di uscita devono essere collegati solo con un amplificatore che utilizza come ingresso il segnale PWM a 5 V dell'uscita IO.

** - per le linee lunghe è necessaria l'installazione di alimentatori aggiuntivi; la lunghezza massima della linea può essere ridotta da vari fattori di interferenza

*** - Solo per Metaforsa 3.plus

Struttura generale del Sistema

La vista generale del modulo è mostrata in fig. 1


 


1 - connettore per applicazione del carico
2 - connettore per applicazione dimming-lampade
3 - connettore di alimentazione
4 - connettore di rete Ethernet
5-6 - connettori per canali universali di ingresso/uscita
7 - connettore per modulo di espansione.


Panoramica dei connettori esterni del dispositivo METAFORSA: Nella parte superiore dell'involucro (fig. 1) sono presenti:


  • connettore (1) — Connessione dispositivi;
  • connettore (2) — Collegamento lampade dimmerabili;


Nella parte inferiore dell'involucro (fig. 1) sono presenti:


  • connettore (3) - collegamento all'alimentazione del modulo;
  • connettore (4) - connessione alla rete Ethernet;
  • connettori (5-6) - collegamento dei canali di ingresso/uscita universali - pulsanti, interruttori reed, pulsanti LED, sensori di perdita, sensori di movimento, sensori di temperatura, strisce LED, strisce RGB a 3-4-5 canali, strisce WS2812B, dispositivi RS485 (solo per Metaforsa 3.plus);
  • Connettore (7) - connessione al modulo di espansione.

La configurazione fisica e l'assegnazione dei punti di contatto di ciascun connettore sono riportate nella tabella 2.

Tabella 2
Connettore Contatto Assegnazione
  1-10 Applicazione del carico (lampade, attuatori termici, ecc.)
  D1-4, L, N Applicazione del carico (lampade dimmerabili)
Indicatori di stato del dispositivo Gli indicatori di stato del modulo sono descritti nella tabella 3
  +24V
GND
+24V - alimentazione del modulo tramite un alimentatore esterno da 24 V GND - comune
  RJ45 +24V - module power supply via external 24 V power supply GND - common
  In1-14, In15-28 GND Collegamento dei dispositivi di controllo (pulsanti, pulsanti a LED, interruttori reed magnetici, rilevatori di movimento, sensori di perdita, sensori di temperatura, ecc:)
In1 ... In28 - ingressi logici
GND - comune
  VCC
GND
L
H
Collegamento moduli esterni per CAN-bus
VСС - uscita 24V per alimentazione dispositivi esterni
GND - comune
L - bus dati CAN-L
H - bus dati CAN-H
Table3
Indicator Status Description
Power   Power
  Power not available
Activity   Data communication
  Data communication not available
Error   No errors
  Communication error
   Module overheat
    Dimmer outputs module overload
     Absence of power on dimmers, if in configuration

Installazione e assemblaggio del sistema

Prima di collegare il sistema è necessario:


  • posizionare il sensore e gli attuatori (se non preinstallati), impostare i sensori e gli attuatori;
  • posizionare il modulo e l'alimentatore.


Nota: il modulo deve essere installato vicino alla fonte di tensione di alimentazione.


ATTENZIONE! La tensione di alimentazione CA deve essere fornita all'ingresso del sistema attraverso il gruppo dell'interruttore. Dovrebbe essere installato vicino all'alimentatore.
  1. La potenza del gruppo interruttore deve essere conforme alla capacità di carico;
  2. Al modulo non è possibile collegare altro che i conduttori di fase, il filo neutro è collegato separatamente.


Typical diagram of METAFORSA 3/3.plus module connection is shown in fig. 3.

 


Connection of the actuators

Connection of the lights/electric contactor/heating thermal actuator

 
Fig. 4
Such actuators as light, electric contactor, heating thermal actuator should be switched on any of the outputs 1 – 10, the neutral wire and the ground wire should be connected directly to the switchboard. The example of connection is shown in Fig.4.


Connection of high load device

  Recomended contactors:
  • ABB ESB series
  • Schneider Acti 9 iCT series
  • Hager ESC series.


Connection of single-pole water/gas supply valve

Caution: Before applying power to the load, make sure that the output configuration of METAFORSA module is correct. The incorrect configuration or incorrect connection can cause the module failure and/or failure of the equipment connected to it, and even a fire.
 
Fig. 5
The single pole water/gas supply valve is connected to any of the outputs of 1 – 10, the (neutral wire and the ground wire are connected directly to the switchboard. The example of connection is shown in Fig.5.


Connection of double-pole water/gas supply valve

Caution: Before applying power to the valve, it is necessary to ensure the output configuration of METAFORSA module is correct. The incorrect configuration can cause the voltage application simultaneously to both channels of the valve, which may result in the module failure and/or failure of the equipment connected to it, and even a fire.
 
Fig. 6
Two adjacent contact points (for example, 3, 4) are used to connect the double-pole water/gas supply valve; in these conditions the neutral wire and the ground wire are connected directly to the switchboard. The example of connection is shown in Fig.6.


Connection of single-pole gate actuator

Caution: Before applying power to the module, you should properly configure access to the application. The contacts incorrectly configured can result in the module failure and/or failure of the equipment connected to it, and even a fire.

 
Fig. 7
Any contact point (for example, 3) is used to connect the single-pole gate drive controllers. The example of connection is shown in Fig.7.


Connection of double-pole gate actuator

Caution: Before applying power to the module, you must properly configure the outputs in the application. The contacts configured incorrectly can lead to simultaneous power supply to both channels, resulting in the module failure and/or failure of the equipment connected to it, and even a fire.

 
Fig. 8
Two adjacent contact points (for example, 3, 4) should be used to connect the double-pole gate drive controller. The example of connection is shown in Fig.8.


Connection of curtain/jalousie/shutter actuator with 220V force control

Caution: Before applying power to the module, you must properly configure the outputs in the application. The contacts configured incorrectly can lead to simultaneous power supply to both channels, resulting in the module failure and/or failure of the equipment connected to it, and even a fire.

 
Fig. 9
Two adjacent contact points (for example, 3, 4) should be used to connect the curtain/jalousie/rolladens actuator, in these conditions the neutral wire and the ground wire are connected directly to the switchboard. The example of connection is shown in Fig.9.


Connection of curtain/jalousie/shutter actuator with low-voltage control

Caution: Before applying power to the module, you must properly configure the outputs in the application. The contacts configured incorrectly can lead to simultaneous power supply to both channels, resulting in the module failure and/or failure of the equipment connected to it, and even a fire.

 
Fig. 10
Two adjacent contact points (for example, 3, 4) should be used to connect the curtain/jalousie/rolladens actuator with low-voltage control. The example of connection is shown in Fig.10.

Connection of sensing elements/switches/buttons

Connection of motion sensors/leakage sensors

The motion sensors/leakage sensors should be connected to any free input in1-in28; in these conditions their power is connected to the contact points of +5V and GND of the relevant group. The example of connection is shown in Fig.11.

 
Fig. 11 connection of motion sensors/leakage sensors


Connection of buttons/switches/magnetic reed switches

Buttons and reed switches are connected to any free input in1-in28, while their second contact point is connected to GND point of the relevant METAFORSA module group. The example of connection is shown in Fig. 12-13.

 

Fig. 12 connection of buttons/switching units
 

Fig. 13 connection of the magnetic reed switches (window/door position sensors)

Connection of temperature sensors

Temperature sensors are connected to any free input in1-in28, while their second contact point is connected to GND point of the relevant METAFORSA module group. The example of connection is shown in Fig. 14.

 

Fig. 14 connection of temperature sensors

RGB connection scheme

CAUTION! Output channels should only be connected using amplifier which uses 5V PWM signal from IO output as input

 

Fig. 15 RGB connection

WS2812B connection scheme

 

Fig. 16 WS2812B connection

RS485 connection scheme

CAUTION! RS485 connection is only available for Metaforsa 3.plus and only occurs on 21 channel

 

Fig. 17 RS485 connection

Connection of auxiliary equipment.

Expansion modules include Larnitech equipment connected through the CAN-bus. Such equipment includes: dimmers, RGB-backlit control modules, multimode sensors, etc. The equipment connected to the expansion port is defined automatically and does not require any preset tuning. Connector contact pin assignment is defined in Table 4. The example of connection is shown in Fig. 18.

 
Caution! The 120 ohm terminating resistors should be installed at the end connectors between L and H contact points of CAN-bus. Ensure the connection is correct. The incorrect connection may cause sensor and/or module malfunction.

Module installation and connection procedure

ATTENTION! You must precisely follow the recommendations listed in the Security Requirements section hereof.
  1. Install the module in the switchboard on the DIN-rail and fix it with the special latch on the module base.
  2. Fasten the supply unit on the left side of the module.
  3. Connect the connector (4) having the noise filter pre-installed which is supplied complete with the module.
  4. Connect the connectors (5), (6).
  5. Connect the connectors (1), (2).
  6. Connect the connector (3).
  7. Apply power to the supply unit of METAFORSA module.
  8. Wait until the module is loaded, then configure it in accordance with the System Setup Instructions.
  9. Apply power to the connectors (1), (2).
  10. Check all equipment for proper operation.

METAFORSA module shut-off and deinstallation procedure

  1. De-energize the module by disconnecting the circuit breaker assembly of the load power supply and METAFORSA module supply unit. Verify the voltage is absent on the terminals (1), (2) of the connector wires and on the input terminals of the supply unit.
  2. Disconnect the load power supply connectors (1), (2).
  3. Disconnect the connector (3).
  4. Disconnect the connectors (4)-(6).
  5. Remove the module from the DIN-rail, releasing the latch at the bottom of the module base.

Hardware setup

To configure and control METAFORSA SMART HOUSE, you must install Larnitech software on your smartphone or tablet, which is available in App Store and Play Market. After installation, follow the System Setup Instructions.

Fault diagnostics and handling

The following are some possible faults and ways of fault handling. If you have any difficulty, or face the fault undeclared here, please contact the Technical Support: [1] or [support@larnitech.com]. There are also some tips in the FAQ section at our website [2].

The actuators do not operate:

  • ensure the outputs are properly configured in the application (see System Setup Instructions);
  • check the connection is correct in accordance with table 2 and paragraph 3.6;
  • ensure the power is supplied to the input power contact , i.e. all circuit breaker assembly are ON.
  • verify the operability of the connected equipment.

The module is off, indication absent:

  • check the connection to 24V supply unit as shown in table 2 (contacts pin assignment);
  • check the connection of the supply unit to 220V power mains, the indicator should be ON.

Network connection fault:

  • ensure the Ethernet cable is properly wired and connected to the connector;
  • ensure the LED status indicators are ON on the Ethernet connector;
  • check the LAN configuration is correct, Ethernet cable loops are absent;
  • METAFORSA module and the device you are connecting from are in the same network.

hold integer 0-10000 1-10 by default hold is the same as runtime hold is the bridging time in miliseconds, is used for gate and jalousie, lock; Example: hold=3500


The sensors do not operate:

  • ensure the inputs are properly configured in the application (System Setup Instructions);
  • check the connection is correct in accordance with table 2 and paragraph 3.7;
  • ensure the METAFORSA module is ON: circuit breaker assembly is closed, indication on the supply unit is ON, the module indication corresponds to the operating status – table 3;
  • check the power supply availability on the sensors;
  • check the integrity of lines laid to the sensors.

The auxiliary equipment does not operate:

  • check the connection is correct in accordance with table 2 and paragraph 3.8-9;
  • ensure the METAFORSA module is ON: circuit breaker assembly is closed, indication on the supply unit is ON, the module indication corresponds to the operating status – table 3;
  • check the integrity of the CAN lines, voltage supply on the modules.

HW Settings

Name Type, range SUBID Default Description
runtime integer 0-100 1-10 15 runtime is the open/close time in seconds, is used for jalousie, gate, valve(2 pole);


Example: runtime=15

runtimeopen integer 0-60000 Blinds subId Runtimeopen is the open time in milliseconds, is used for blinds; Example: runtimeopen=15000
runtimeclose integer 0-60000 Blinds subId Runtimeclose is the close time in milliseconds, is used for blinds; Example: runtimeclose=15000
hold integer 0-10000 1-10 500 hold is the bridging time in milliseconds, is used for gate and jalousie (by default hold is the same as runtime for jalousie and gate), lock; Example: hold=3500
def string 'ON' 1-10 'OFF' def is the element status is set after restart, is used for lamp, heating, valve(1 pole); Example: def='ON'
stop Char ‘R’ 1-7 (for 2-pole gate and blinds) If it is declared then by Stop command during the motion, the same impulse appears as it was at the beginning of the motion. Pole, an which the stop-impules is formed, is defined by the parameter Stop value. If it is ‘r’ or ‘R’ then stop-impulse is produced on the opposite to the start-impulse pole. If any other value is delcared (e.g., ‘d’ ) then the stop-impulse is on the same pole. If a Runtime passed after the beginning of the motion then the stop-impulse is not formed. Example: stop=’r’
out char[10] 98 'LLLLHHHHP-' Each char is responsible for the type of a particular channel
  • 'L'-Lamp;
  • 'M'-Lamp Inverse;
  • 'J'-Heating NO, valve-heating, normally open;
  • 'H'-Heating NC, valve-heating, normally closed;
  • 'B'-Blinds (2 pole), jalousie/curtains;
  • 'C'-Blinds Inverse (2 pole), jalousie/curtains, invert open-close;
  • 'G'-Gate (2 pole), 2 pole gate;
  • 'D'-Gate (2 pole) Inverse, 2 pole gate, invert open-close;
  • 'X'-Gate (1 pole /short press), 1 pole gate;
  • 'Z'-Gate (1 pole) Inverse, 1 pole gate, invert open-close;
  • 'V'-Valve (2 pole), 2 pole valve;
  • 'W'-Valve (2 pole) Inverse, 2 pole valve, invert open-close;
  • 'R'-Valve (1 pole), 1 pole valve,;
  • 'S'-Valve (1 pole) Inverse, 1 pole valve, invert open-close;
  • 'K'-Lock (short press);
  • 'N'-Lock (short press) Inverse;
  • 'P'-Blinds (2 pole);
  • 'O'-Blinds Inverse (2 pole), invert open-close;
  • 'F'-FanCoil. Group1 (Lamp Toggle). For fancoil speed control;
  • 'E'-FanCoil. Group2 (Lamp Toggle). For fancoil speed control;
  • 'Q'-FanCoil. Group3 (Lamp Toggle). For fancoil speed control;
  • 'U'-FanCoil. Group4 (Lamp Toggle). For fancoil speed control;
  • 'I'-FanCoil. Group5 (Lamp Toggle). For fancoil speed control;
  • '-'-none, nothing is connected.

Example: out='LLB-G-V-W-'

dm char[4] 98 ‘LLLL’ Each char is responsible for the type of a particular channel
  • ‘g’ – use like halogen dimer-lamp
  • ‘s’ – Soft Switch, lamp, when on/off power is supplied/deenergised smoothly (500msec)
  • ‘k’ – Switch, lamp, when on/off power is supplied/deenergised immediately
  • ‘l’ – LED Function, dimmable LED lamps
  • ‘v’ – linear Function of dimming
  • ‘-‘ – Channel disabled
  • ‘+’ – Regular channel

Example: dm=’skl-‘

def integer 0-250 11-14 100 The default brightness level in case of a power reset (1..250). Example: def=250
min integer 0-100 11-14 0 Minimum dimming level, example: min=10
max integer 0-100 11-14 100 Maximum dimming level, example max=95
start integer 0-100 11-14 0 The Start function is used for lamps that lack the minimal voltage to get turned on. If the set value is lower than the start value, the lamp is turned on at the start value and them the light is dimmed down to the set level. Example: start=60
force integer 0-100 11-14 10 Time duration of the starting value (measured in milliseconds). Example: force=20
runtime integer 0-60000 11-14 1000 Runtime is the speed of changing the brightness from ‘min’ to ‘max’ (measured in milliseconds). Example: runtime=1000
offset integer (+/- 0…39) 39-46 '0' sensor values offset; For example, offset is -3.8 :

Example: hw="offset='-3.8'"

io char[28] 98 io='KKKKKKKKKKKKKKKKKKKKKKKKKKKK' Each char is responsible for the type of a particular channel
  • '0' - led-dimmer
  • '1' - halogen-dimmer
  • '2' - linear-dimmer
  • '3'..'6' - RGB-3..6 channels
  • 'z' - WS2812B -string
  • 'e' - led-button inverse
  • 'd' - led-button
  • 'c' - button inverse
  • 'b' - button
  • 's' - switch
  • 'k' - contact inverse
  • 'h' - contact
  • 'l' - leak
  • 'n' - Neptun
  • 'v' - motion inverse
  • 'm' - motion
  • 'r' - thermo-resistor
  • 't' - DALLAS
  • '-' - none

Example: io='KKKKKKKKKKKKKKKKKKKKKKKKKKKK'

hw string 98 - hw="...", where
  • pwm_invert – PWM inverting [1, 0];
  • lbn_bright – brightness of led buttons, range (0 - 255);
  • f – by default PWM frequency is 1000, range (1 - 5000).

Example:

1hw="io='4---zdd----t--' pwm_invert=1 lbn_bright=255 f=1000"
Only for Metaforsa 3.plus
cfg string 98 9600/8N1 cfg='SPEED/BPS', where
  • SPEED – baud rate [1200..115200];
  • B – data length [7,8];
  • P – presence and type of parity bit [N(No parity),E(Even parity),O(Odd parity)];
  • S – stop bit length [1, 1.5 or 2].

Example:

1hw="cfg='9600/8N1'"
[Protocol] string 98 Protocol setting is described by protocol parameter. The following

protocols are supported:

  • 'modbus', Modbus protocol, at the end of redirection the checksum CRC16(Modbus) is added;
  • 'dmx', DMX protocol;
  • 'CO2' for connecting Larnitech CO2 sensors;
  • 'salda' for connecting Salda ventilation.

Example:

1hw="cfg='9600/8N1' modbus"
echo on; off 98 'off' For settings check out and testing echo parameter can be used. Module

echo-reply can be turned on or off with the help of this parameter.Echo parameter value:

  • 'off'
  • 'on'

Example:

1hw="cfg='9600/8N1' echo='off'"
 1		<item addr="349:1" auto-period="600" cfgid="197" name="Lamp 1" type="lamp"/>
 2		<item addr="349:2" auto-period="600" cfgid="197" name="Lamp 2" type="lamp"/>
 3		<item addr="349:3" auto-period="600" cfgid="197" name="Lamp 3" type="lamp"/>
 4		<item addr="349:4" auto-period="600" cfgid="197" name="Lamp 4" type="lamp"/>
 5		<item addr="349:5" auto-period="600" cfgid="197" name="Lamp 5" type="lamp"/>
 6		<item addr="349:6" cfgid="197" name="Radiator" temperature-lag="0.2" type="valve-heating">
 7			<automation name="Eco" temperature-level="16"/>
 8			<automation name="Comfort" temperature-level="22"/>
 9			<automation name="Hot" temperature-level="25"/>
10		</item>
11		<item addr="349:7" cfgid="197" name="Radiator" temperature-lag="0.2" type="valve-heating">
12			<automation name="Eco" temperature-level="16"/>
13			<automation name="Comfort" temperature-level="22"/>
14			<automation name="Hot" temperature-level="25"/>
15		</item>
16		<item addr="349:8" cfgid="197" name="Radiator" temperature-lag="0.2" type="valve-heating">
17			<automation name="Eco" temperature-level="16"/>
18			<automation name="Comfort" temperature-level="22"/>
19			<automation name="Hot" temperature-level="25"/>
20		</item>
21		<item addr="349:9" cfgid="197" name="Jalousie" sub-type="120" type="jalousie"/>
22		<item addr="349:11" auto-period="600" cfgid="197" name="Dimmer 1" type="dimmer-lamp"/>
23		<item addr="349:12" auto-period="600" cfgid="197" name="Dimmer 2" type="dimmer-lamp"/>
24		<item addr="349:13" auto-period="600" cfgid="197" name="Dimmer 3" type="dimmer-lamp"/>
25		<item addr="349:14" auto-period="600" cfgid="197" name="Dimmer 4" type="dimmer-lamp"/>
26		<item addr="349:16" cfgid="197" name="Door 1" type="door-sensor"/>
27		<item addr="349:17" cfgid="197" name="Door 2" type="door-sensor"/>
28		<item addr="349:18" cfgid="197" name="Door 3" type="door-sensor"/>
29		<item addr="349:19" cfgid="197" name="Door 4" type="door-sensor"/>
30		<item addr="349:20" cfgid="197" name="Door 5" type="door-sensor"/>
31		<item addr="349:21" cfgid="197" name="Door 6" type="door-sensor"/>
32		<item addr="349:22" cfgid="197" name="Door 7" type="door-sensor"/>
33		<item addr="349:23" cfgid="197" name="Door 8" type="door-sensor"/>
34		<item addr="349:24" cfgid="197" name="Door 9" type="door-sensor"/>
35		<item addr="349:25" cfgid="197" name="Door 10" type="door-sensor"/>
36		<item addr="349:26" cfgid="197" name="Door 11" type="door-sensor"/>
37		<item addr="349:27" cfgid="197" name="Door 12" type="door-sensor"/>
38		<item addr="349:28" cfgid="197" name="Door 13" type="door-sensor"/>
39		<item addr="349:29" cfgid="197" name="Door 14" type="door-sensor"/>
40		<item addr="349:30" cfgid="197" name="Door 15" type="door-sensor"/>
41		<item addr="349:31" cfgid="197" name="Door 16" type="door-sensor"/>
42		<item addr="349:32" cfgid="197" name="Door 17" type="door-sensor"/>
43		<item addr="349:33" cfgid="197" name="Door 18" type="door-sensor"/>
44		<item addr="349:34" cfgid="197" name="Door 19" type="door-sensor"/>
45		<item addr="349:35" cfgid="197" name="Door 20" type="door-sensor"/>
46		<item addr="349:36" cfgid="197" name="Door 21" type="door-sensor"/>
47		<item addr="349:37" cfgid="197" name="Door 22" type="door-sensor"/>
48		<item addr="349:38" cfgid="197" name="Door 23" type="door-sensor"/>
49		<item addr="349:39" cfgid="197" name="Door 24" type="door-sensor"/>
50		<item addr="349:40" cfgid="197" name="Door 24" type="door-sensor"/>
51		<item addr="349:41" cfgid="197" name="Door 25" type="door-sensor"/>
52		<item addr="349:43" cfgid="197" name="IR receiver" type="ir-receiver"/>
53		<item addr="349:44" cfgid="197" name="RS485" type="com-port"/>
54		<item addr="349:90" cfgid="197" name="Current" system="yes" type="current-sensor"/>
55		<item addr="349:95" cfgid="197" name="Temperature" system="yes" type="temperature-sensor"/>
56		<item addr="349:96" cfgid="197" name="Temperature" system="yes" type="temperature-sensor"/>
57		<item addr="349:97" cfgid="197" name="Temperature" system="yes" type="temperature-sensor"/>
58		<item addr="349:98" cfgid="197" hw="out='LLLLLHHHB-' dm='LLLL' io='KKKKKKKKKKKKKKKKKKKKUKKKKKK-'" logic-ver="19" name="Temperature" sn="2533726919" system="yes" type="temperature-sensor"/>
59		<item addr="349:100" cfgid="197" name="RS232" type="com-port"/>