CONTROLLO ZONE FZ4B
5.17 "ONE HOT WATER TANK"
Autoconfi guration:
Connection
Description
Pump neutral (RY7)
14
Pump phase (RY7)
16
NTC sensor (T2)
27
NTC sensor (T2)
28
Card SK connected
X15
Algorithm
a. DHW Setpoint = Hot water tank Setpoint (TSP26).
b. Zone card Heating Setpoint = Hot water tank Primary Setpoint (TSP23).
c. If T2 becomes lower than the DHW Setpoint minus the value of the Hot water tank Hysteresis parameter (TSP22), DHW mode starts.
The relay of card SK must be powered.
d. RY7 must be powered while the DHW mode is active.
e. The DHW mode ends when T2 becomes higher than the DHW Setpoint: the relay of card SK must be unpowered and RY7 must be unpowered after 2 minutes.
5.18 "ONE DIRECT ZONE AND ONE HOT WATER TANK – NO EXTERNAL SENSOR"
Autoconfi guration:
Connection
Description
Pump phase or Valve (RY1)
7
Pump neutral or Valve (RY1)
8
Pump neutral (RY7)
14
Pump phase (RY7)
16
On/Off Thermostat or Remote Control (RT1)
19
On/Off Thermostat or Remote Control (RT1)
20
NTC sensor (T2)
27
NTC sensor (T2)
28
Card SK connected
X15
5.18.1 On/Off Thermostat
The algorithm of Direct Zone1 remains the same as the confi guration: 5.1 "ONE Direct Zone – No External Sensor".
The algorithm of the Hot water tank remains the same as the confi guration: 5.17 "ONE Hot water tank".
What changes is:
a. DHW has priority over Heating: the Hot water tank Priority parameter (TSP25) is equal to 0.
During DHW mode, the algorithm of the Hot water tank has the highest priority.
During DHW mode, the zone request (if occurring) must be stopped without doing post-circulation. At the end of DHW mode, the zone request (if occurring) must
restart with the normal algorithm.
b. DHW does not have priority over Heating: the Hot water tank Priority parameter (TSP25) is equal to 1.
In case of simultaneous request, the Zone card Heating Setpoint is equal to the higher of the two: Zone1 Heating Setpoint and Hot water tank Primary Setpoint
(TSP23).
If the circuit (Heating or Hot water tank) that ends the request has the higher Setpoint, the Zone card Heating Setpoint must be immediately decreased until it is equal
to the Setpoint of the circuit (Heating or Hot water tank) still in request status.
If the circuit (Heating or Hot water tank) that starts the request has a higher Setpoint than the circuit already in request status, the Zone card Heating Setpoint must
be immediately increased until it is equal to the higher Setpoint of the circuit (Heating or Hot water tank) in request status.
c. Each zone has its own adjustment parameters.
d. Post-circulation time
During DHW mode, if the pump of the zone is doing post-circulation, the latter must be stopped. At the end of DHW mode, post-circulation must not restart.
5.18.2 Remote Control
The algorithm of Direct Zone1 remains the same as the confi guration: 5.1 "ONE Direct Zone – No External Sensor".
The algorithm of the Hot water tank remains the same as the confi guration: 5.17 "ONE Hot water tank".
What changes is:
a. DHW has priority over Heating: the Hot water tank Priority parameter (TSP25) is equal to 0.
During DHW mode, the algorithm of the Hot water tank has the highest priority.
During DHW mode, the zone request (if occurring) must be stopped without doing post-circulation. At the end of DHW mode, the zone request (if occurring) must
restart with the normal algorithm.
b. DHW does not have priority over Heating: the Hot water tank Priority parameter (TSP25) is equal to 1.
In case of simultaneous request, the Zone card Heating Setpoint is equal to the higher of the two: Zone1 Heating Setpoint and Hot water tank Primary Setpoint
(TSP23).
If the circuit (Heating or Hot water tank) that ends the request has the higher Setpoint, the Zone card Heating Setpoint must be immediately decreased until it is equal
to the Setpoint of the circuit (Heating or Hot water tank) still in request status.
92
Hot water tank
Hot water tank
Hot water tank probe
Hot water tank probe
Direct zone 1
Direct zone 1
Hot water tank
Hot water tank
Direct Zone 1
Direct Zone 1
Hot water tank probe
Hot water tank probe
EN