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TDMA CONTROL 601/701:
8
Published 07/2007
the first to the second lower thermal store temperature sen-
sor.
Setting the hysteresis is described under Optional Function
Cooling.
Switch over temperature:
30...90 °C
The required switch over temperature can be set here.
Optional Function Twin Thermal Store Balancing: When
the second lower thermal store sensor temperature is lower
than that of the first, the „twin thermal store“ function is
activated. This activates a three way valve so that the heat
flow is diverted to another thermal store, and simultane-
ously switches from the first to the second lower thermal
store sensor. The hysteresis of 2K is set in the factory.
Optional Function Swimming Pool: When the upper ther-
mal store sensor registers the preset switch over tempera-
ture, the „swimming pool“ function is activated. This
switches off the solar pump and switches on the swimming
pool pump and diverts the heat flow to the swimming pool,
and simultaneously switches from the lower thermal store
sensor to the second sensor.
Setting the switch over temperature and the hysteresis is
described under Optional Function Twin Thermal Store
Prioritizing.
Swimming Pool Max:
0...50 °C
The maximum swimming pool temperature can regulated
via the second thermal store temperature sensor.
Thermal Store Maximum Temperature:
On occassions (e.g. while on holiday, to protect the system
components) it is a good idea to set the maximum allow-
able thermal store temperature to lower than 90 °C. The
cooling temperature must also be set to be lower than the
thermal store maximum allowable temperature, so that the
collector doesn’t idle.
Thermal Store Maximum:
50...90 °C
When the upper thermal store sensor reaches the preset
temperature, the solar pump will switch off.
Cooling, Twin Thermals Store and Swimming Pool Regulating: Input - Function -
Output
Input
Function
Upper thermal store sensor
(part of delivery package)
Thermal store maximum,
Cooling, Twin Thermal
Store, Swimming Pool
Second lower thermal store
sensor
(Art. N
o
. RE 046)
Twin thermal store, Swim-
ming pool
Input: Cooling, Twin Thermal Store or Swimming Pool
2.3.4 Solar Circuit Frost Protection
The „frost protection“ function allows active safeguarding
against freezing. When the frost protection sensor meas-
ures less than 5 °C the solar pump switches on, and it
switches off again when the temperature rises to 9 °C. It is
only sensible to use this frost protection function with
evacuated tube collectors using pure water (no antifreeze)
in the solar circuit. It is possible to set the pump running
time.
2.3.5 Yield Measurement (Performance Input Data)
Main Menu 12:34
Performance Inputs
The solar yield is determined from the temperature differ-
ence between the yield sensors on the heat exchanger in-
flow and outflows and the flow volume. Alternatively, the
flow volume can be input as a fixed value to avoid having
a flow volume meter. However, this can mean that the re-
sulting yield measurement can have an error of up to 50%
at any time because the viscosity of the heat carrier is
highly temperature dependent.
Antifreeze type:
Propylene / Ethylene
Antifreeze proportion
0...80 %
These two settings are used to determine the viscosity and
heat capacity of the heat carrier. These parameters are
dependent on temperature, the water/antifreeze propor-
tion and the type of antifreeze used: Propylene- Glycol:
Tyfocor L, Tyfocor LS, Antifrogen L, Reinsol Liquid P- NF;
Ethylene-Glycol: Tyfocor, Antifrogen N.
Consolar supplies Tyfocor LS (Art. N
o
. KR 130/135), and
when using this antifreeze the regulator input value for the
antifreeze proportion should be 40 %.
Flow Volume Meter:
0...1 Liter / Impulse
If a flow meter is connected, the impulse rate of the meter
must be input in order to enable automatic calculation of
the flow volume. The impulse rate to input into the regula-
tor for the Consolar supplied flow volume meter (Art.-N
o
.
RE096) is 0.026 l/Impuls.
Solar Through Flow:
0...20 l/ min
If a flow volume meter is connected the through flow must
be set at 0 l/min here.
If no flow meter is connected then the determined solar
through flow (e.g. determined using a Tacosetter) must be
input and set here.
Solar Operating Hours: Return to
0?
8


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