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www.froeling.com

 

P0220613_en

Energy systems

General

The following pages provide a general description of the most important components and sensor 

functions used in the systems.

Due to the wide range of programming options with the Lambdatronic S 3200, 

the sensor descriptions may vary for specific systems that have been adapted 

for customers.

1) Sensors

1.1) General sensors      

Technical specifications for the sensors listed above:

Resistance sensor type: 

 

KVT 20; approx. 2kΩ at 20°C

Maximum cable length:  

 

40m with shielded cable in the same building

Immersion sensor

e.g. as boiler-, DHW tank- or store-sensor

Collector sensor

for solar systems

Contact sensor

e.g. as return feed sensor or outfeed sensor

External sensor

for weather-activated heating circuit control

1.2) Room sensor FRA

Analogue room sensor (disengageable) with selector switch mode 

and adjusting wheel for temperature. 

Connection with influence    

Connection without influence  

of room temperature:  

 

of room temperature   

  

!

Technical specifictions:

Resistance sensor type: 

 

FRA; approx. 3,5kΩ at 20°C (switch set to automatic 

 

 

 

 

 

mode and rotating wheel in middle position)

Maximum cable length:  

 

40m with shielded cable in the same building

Summary of Contents for S1 Turbo

Page 1: ...www froeling com...

Page 2: ...1 General sensors 1 2 Room sensor FRA 2 Bus system 4 2 1 Heating circuit module 2 2 Hydraulic module 2 3 Room console RBG 3200 RBG 3200 Touch 2 4 Bus cable 3 Sensor functions for standard systems 5 3...

Page 3: ...length 40m with shielded cable in the same building Immersion sensor e g as boiler DHW tank or store sensor Collector sensor for solar systems Contact sensor e g as return feed sensor or outfeed senso...

Page 4: ...circuit pumps 2 analogue room sensors Bus connection to main control max 8 units can be used per system 2 pumps using max 6 sensors max 8 units can be used per system 1 hydraulic module with 3 immersi...

Page 5: ...ntegrated to the bypass reading from the lower edge of the floater There is no need to spend time determining settings using diagrams and other aids 4 1 Setting example Log wood boiler S4 15kW tempera...

Page 6: ...mum speed for the pump outlet in use must be set to 100 in the control Connection hydraulic module Connection core module Connect the outer cable L bn to the outer cable of the respective mains supply...

Page 7: ...le 7 Mischer 2 Mixer 2 Core module 8 Mischer 1 2 Mixer 3 18 on each heating circuit module max 2 heating circuits are available AO P1 AO P2 6 3AT Hydraulikmodul FRHYU 21 Bus 2 F hler 1 3 F hler 5 7 Ne...

Page 8: ...ting circuits are available Note With a return feed lift a motorised mixing valve up to 17 heating circuits are available using Note With a return feed lift using pump assemby FE up to 18 heating circ...

Page 9: ...ixing valve 1 Log wood combination boiler S1 Turbo S4 Turbo SP Dual Note S3200 Controller Layered tank Domestic hot water Cold water Pump 0 2 DHW tank Unicell NT S Pump assembly OE Temp sensor 0 3 Tem...

Page 10: ...3 Pump 0 2 Domestic hot water Cold water DHW tank Unicell NT S Pump assembly OE Note Controller SP3200 Return mixer module Return feed mixer Return mixer module Return sensor Core module Mains supply...

Page 11: ...arameter in menu SOLAR item SERVICE SOLAR SYSTEM to 1 WHICH SENSOR IS USED FOR THE SOLAR COLLECTOR to 0 6 and WHICH PUMP IS USED FOR THE SOLAR COLLECTOR to Pump 1 Controller S3200 since version 50 04...

Page 12: ...Pump 0 1 Note Please set parameter in menu SOLAR item SERVICE SOLAR SYSTEM to 3 item SOLAR HEAT METER WHICH SENSOR IS USED FOR HEAT METER FLOW TEMPERATURE to 1 4 Controller S3200 Temp sensor 0 1 Temp...

Page 13: ...in menu SOLAR item SERVICE SOLAR SYSTEM to 3 WHICH SENSOR IS USED FOR THE SOLAR COLLECTOR to 0 5 WHICH PUMP IS USED FOR THE SOLAR COLLECTOR to 0 2 WHICH PUMP IS USED FOR THE SOLAR ISOLATING VALVE to P...

Page 14: ...NSOR IS USED FOR THE SOLAR COLLECTOR to 0 5 WHICH PUMP IS USED FOR THE SOLAR COLLECTOR to 0 2 WHICH PUMP IS USED FOR THE SOLAR ISOLATING VALVE to Pump 1 WHICH SENSOR IS USED FOR THE STORAGE TANK REFER...

Page 15: ...he outlet temp of the Hygienic layered tank H2 Connections are represented schematically Domestic hot water Cold water Note Controller S3200 Temp sensor 0 3 Temp sensor 0 1 Temp sensor 0 2 RBG 3200 RB...

Page 16: ...1 Pump assembly FE Note Modul layered tank FW Connections are represented schematically Domestic hot water Cold water Note Controller S3200 Temp sensor 0 3 Temp sensor 0 1 Temp sensor 0 2 RBG 3200 RB...

Page 17: ...Oil gas boiler Oil operation Wood operation Pump 1 output live 230V during oil gas Pump 1 Layered tank Domestic hot water Cold water DHW tank Unicell NT S Note Controller S 3200 Temp sensor 0 1 Temp s...

Page 18: ...1 Oil gas boiler Pump assembly OE Layered tank Domestic hot water Cold water DHW tank Unicell NT S Note Controller S3200 Temp sensor 0 1 Temp sensor 0 2 Temp sensor 0 3 RBG 3200 RBG 3200 Touch Option...

Page 19: ...ion Pump 1 output live 230V during oil gas Pump 1 isolating valve Layered tank Domestic hot water Cold water DHW tank Unicell NT S Note Controller S3200 Temp sensor 0 1 Temp sensor 0 2 Temp sensor 0 3...

Page 20: ...NT S Mains supply 230V Hydraulic module Address 1 Temp sensor 1 1 Collector sensor Pump 1 1 Pump 0 1 Note Set parameter in menu SOLAR item SERVICE SOLAR SYSTEM to 3 WHICH SENSOR IS USED FOR BOTTOM DH...

Page 21: ...artridge Pump 1 Note Set parameter in menu SOLAR item SERVICE SOLAR SYSTEM to 3 WHICH SENSOR IS USED FOR THE STORAGE TANK REFERENCE to 0 6 Controller S3200 Temp sensor 0 4 Temp sensor 0 3 Temp sensor...

Page 22: ...s supply 230V Hydraulic module Pump 1 Solar heat exchanger Note Please set parameter in menu SOLAR item SERVICE WHICH PUMP IS USED FOR THE SOLAR COLLECTOR to Pump 1 WHICH PUMP IS USED FORTHE SOLAR ISO...

Page 23: ...2 Flow temp Sensor 2 Mot mixing valve1 Pump 0 1 Return sensor Core module Temp sensor 0 1 Temp sensor 0 2 Temp sensor 0 6 Temp sensor 0 2 Temp sensor 0 1 Temp sensor 0 1 Temp sensor 0 6 Temp sensor 0...

Page 24: ...ax 43 0 7248 606 600 GER Tel 49 0 89 927 926 0 Fax 49 0 89 927 926 219 E mail info froeling com Internet www froeling com Further technical details upon request We will be pleased to assist and advise...

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