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DTC 200

FIRŠT-ROTOTEHNIKA, s.p., Radegunda 54, SI-3330 Mozirje, Slovenija

tel. +386 3 898 35 00, fax. +386 3 898 35 35, e-mail: [email protected], http://www.rototehnika-sp.si

3.3 ELECTRIC CONNECTION

6(1)A, 250V

DTC 200 (4 sensors)

3. Heating the domestic hot water from two heating sources
(solar collectors, boilers, heat pump...) in one water tank - DTC
200 (4 sensors).

In this case of use is DTC200 in function of double differential
thermostat. It is used for heating the domestic hot water in one
water tanks from two heating sources (collector-boiler or col-
lectors east-west). Differential thermostat controls motorised
ball valves and pump for each heating circuit.

3.1 Basics

The thermostat enables setting two parameters:
1. Regulation of maximum temperature in hot water tanks from
10° to 90°C.
This temperature is defined by T2 and T4 sensors witch are
generally mounted in upper third of heat exchangers.
2. Regulation of temperature difference between primary heat-
ing source (T1) and exchanger (T2) from 0K to 15K.
3. Regulation of temperature difference between secondary
heating source (T3) and exchanger (T4) from 0K to 15K.

With these regulations you define how much the value of the
source temperature (collector, boiler...) should exceed the tem-
perature of water around the exchanger in hot water tank, that
the thermostat opens the valve and activates the pump.
The difference is set in relation to the volume of heat losses of
the system that depend on lengths of pipelines from source to
hot water tank and on pipeline insulation.

3.2 Operation

DTC 200 is double differential thermostat measures the tem-
perature of two heating sources (collectors, boilers,…) and of
two spots in user (hot water tank). Heating effect is provided,
when heating unit(heating element in hot water tank) exceeds
the temperature of the user for set difference.
When the temperature of the source exceeds the temperature
around the exchanger for set difference, the thermostat opens
the valve (EMV110..) and activates the pump.
Thermostat closes the valve and switch of pump, when tem-
perature difference is lower than pre-set value. Thermostat also
switches off a pump if pre-set temperature is reached in hot
water tank.
When pump operates for primary heating circuit (collectors),
operation of after-heating circuit is prevented. This assures
maximum energy savings during seasons and this also the
main role of solar systems.

For those applications you need four sensors. Two of them are
mounted into individual heating sources and two into upper
half of individual exchangers in hot water tank. T1 and T2 are
designed for primary (main) heating circuit which heats entire
quantity of water in hot water tank (lower exchanger), where T1
is a sensor of heating source (generally collectors) and T2 is a
sensor in lower part of hot water tank. T3 and T4 are designed
for additional, i.e. after-heating circuit which additionally heats
water in hot water tank (upper exchanger). T3 is a sensor of
heating source (generally boiler) and T4 is a sensor in upper
part of hot water tank.

Grounding wires should
be connected to special
terminal pins situated on
left side of terminal strips.

The thermostat is
designed for fixed

installation. When per-
forming electric installa-
tion, an element should be
inserted which enables at
least 3 mm separation of
thermostat from the mains
(switch or socket). Prior to
each intervention in the
thermostat, first disconnect
it from the mains.

Before each intervention in the thermostat first discon-
nect the main power!

TERMINAL 

CONNECTION 

1,2 

sensorT1 – primary heating source (collector,  solid    
                   fuel boiler, …) 

2,3 

sensor T2 –hot water tank  

4,5 

Sensor T3 – secondary heating source (boiler,…) 

4,6 

sensor T4 – secondary hot water tank 

11 N 

neutral 

12 

L - phase – pump for primary circuit  

13 N 

neutral 

14 

L - phase – pump for secondary circuit 

15 

L – phase mains 230V   , 50Hz 

16 

N – neutral mains 230V   , 50Hz 

 

 
 

 

 

 

Содержание DTC 200

Страница 1: ...se 2 DTC 200 3 sensors 5 2 1 Basics 2 2 Operation 2 3 Electrical connection 2 4 Examples of useji 3 DTC 200 4 tipala 7 3 1 Basics 3 2 Operation 3 3 Electrical connection 3 4 Examples of use WARNING In...

Страница 2: ...Outputs 2relayoutputs 230V 50Hz 6 1 A WorkingcontactSPST controlling the electric motor actuated ball valve and pump Inputs 4 sensors BSF1 PVC cable 1 5m long DHWT sensor KF silicon cable 2m long coll...

Страница 3: ...ad cables into the thermostat housing like as shown on the picture On one side lead the sensor cables and on the other the rest With two discharger screw the cables very tight to prevent the extractio...

Страница 4: ...water tank and on pipeline insulation SENSORS INSTALLATION T1 AND T3 SENSORS INSTALLATION IN TO SOLAR COLLECTORORBOILER Use KF sensors with silicon cable insulation RED colour Install it as immersion...

Страница 5: ...on in the thermostat first disconnect it from the mains Before each intervention in the thermostat first discon nect the main power ELECTRIC CONNECTION the thermostat opens the valve and activates the...

Страница 6: ...itary water with solid fuel boiler into one hot water tank with two exchangers Example 5 Heating hot water in two water tanks with solar collectors Example 6 Heating sanitary water with solid fuel boi...

Страница 7: ...n the temperature of the source exceeds the temperature around the exchanger for set difference the thermostat opens the valve EMV110 and activates the pump Thermostat closes the valve and switch of p...

Страница 8: ...or actuated ball valve EMV 110 series 602 502 12 2W Electric motor actuated ball valve EMV 110 series 602 502 Instead of the electric motor actuated ball valves 10 and 12 you can use non return valves...

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