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3.7 DESCRIPTION OF PARAMETERS
[Π100]Maximum fan output – the highest fan output possible
[n 40]Minimum fan output – the lowest fan output possible
[Πh 5]Ratio of changing the fan rotations – this parameter influences the fan rotations, if the
adjusted boiler temperature is going to be achieved in a short time. For example, if the value 4 is
set, the fan will work at full output [Π100] (if the function of flue gas temperature control is not
active), up to 4 degrees before achieving the required boiler temperature. Then, by every
increase of the boiler temperature for 1 °C, the fan rotations are gradually decreased until the
minimum fan output is reached [n 40].
[Πr 0]Automatic regulation of changing the fan rotations – the fan rotations are increased /
decreased by setting this parameter within the range of 0 10 to ensure the required boiler
temperature. If this parameter is set to „- -“, the rotations are not controlled and the fan works at
full output according to the parameter [Π100]. Setting the parameter within the range of 0 10
relates to the time period (in minutes), during which are the fan rotations gradually increased
from the parameter of the minimum fan rotations [n 40] up to the parameter [r 100]. This
ensures the fluent heat-up of boiler.
[Πn 5]Frequency of exhaust fan blow-through – this frequency defines, how often the fan is
started to the full output [Π100] to take the flue gas out from the boiler, if the fan was stopped
due to the boiler temperature achieved.
[Πu 6]Duration of exhaust fan blow-through – during this period must the fan exhaust the
flue gas following the parameter [Πn 5].
[r 100]Fan output by ignition this parameter defines the fan output by boiler heat-up. If the
parameter " Πr " is set to [Πr 0], then this parameter is not available.
[rh 5] Hysteresis of boiler stop by ignition – defines, how many degrees before reaching the
required boiler temperature will be the heat-up phase finished or (if the flue gas temperature
sensor is connected), how many degrees before reaching the required flue gas temperature are
relevant to stop the heat-up phase. After deactivation of the heat-up phase there is a casual
operating mode.
[P 30]Temperature to start the circuit pump if there is not D.H.W. tank in the system [ur 0] or
it is in the mode [ur 2], then the parameter defines the boiler temperature for starting the circuit
pump of the heating system. If the parameter is set to „- -“, then too low temperature does not
influence the operation of the circuit pump. Anyway, the pump is always started, when the
boiler temperature exceeds the parameter [H 85] of the maximum boiler temperature.
If there is accumulation tank in the system (parameter [ur 4]), then this parameter defines the
temperature measured in the accumulation tank by which is the circuit pump of the heating
system started.
[Ph 2]Hysteresis of circuit pump – defines the temperature difference under which must the
boiler temperature or temperature in the accumulation tank decrease in comparison with the
temperature defined by the parameter
[P 30] to stop the circuit pump.
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