3.0 Commissioning of solar controller

3.1.4 Overview:Constructionof menu structure

The overview shows the whole menu structure. According to basic adjustment and system type some menu points may not be displayed.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Info

Program

Manualoperation

Basic setting

Current collector temperature

Maximum temperature

Pump1 off / on

Collector protection function

/ Collector1

storage cylinder1

 

off / on

Minimum collector temperature

Storage cylinder1

Pump2 / Valve1

Collector protection

/ Collector1

Td max (Td on)

off / on

temperature

Maximum collector temperature

Storage cylinder1

Heating / Cooling / Temperature

Re-cooling

/ Collector1

Td min (Td off)

differential controller

off / on

 

 

 

 

 

off / on

 

Current storage cylinder

Maximum temperature of

 

Re-cooling

temperature / storage1 at bottom

storage cylinder2

 

temperature

Minimum storage cylinder

Storage cylinder2

 

Tube collector

temperature / storage1 at bottom

Td max (Td on)

 

off / on

Maximum storage cylinder

Storage cylinder2

 

Yield estimation

temperature / storage1 at bottom

Td min (Td off)

 

off / on

Current storage cylinder temp /

Minimum

 

Glycol type

storage2 at bottom / collector 2

pump rotating speed in %

 

 

Minimum storage cylinder temp /

Start temperature

 

Glycol percentage

storage2 at bottom / collector 2

Heating / cooling

 

 

Maximum storage cylinder temp /

Hysteresis temperature

 

Volume flow

storage2 at bottom / collector 2

heating / cooling Td

 

 

Current collector

Temperature differential

 

Controlling time in

temperature - return line

controller:

 

seconds

 

Maximum temperature of the

 

 

 

heating target Tmax

 

 

Current temperature

Temperature differential

 

Storage cylinder priority

heating / cooling /

controller:

 

 

differential controller

Minimum temperature of the

 

 

heating source

heating source Tmin

 

 

Current temperature

Temperature differential

 

Frost protection

frost protection sensor /

controller:

 

off / on

differential controller heating

Hysteresis Tdmax

 

 

target / universal measuring

 

 

 

 

 

 

point T6

 

 

 

 

 

 

Operating hours pump1

Temperature differential

 

Frost protection sensor

 

controller:

 

assignment

 

Hysteresis Tdmin

 

 

Yield storage1

Timeframe start 1,2,3 for the

 

Frost protection:

 

independent controller,4 for the

 

start temperature

 

tube collector function

 

 

Operating hours pump2

Timeframe stop 1,2,3 for the

 

Independent controller

 

independent controller,4 for the

 

assignment: Cooling, heating,

 

tube collector function

 

temperature differential

 

 

 

 

 

 

controller

Yield storage2

Set time

 

Sensor assignment for the

 

 

 

 

 

 

independent controller

 

 

 

 

 

 

Select basic configuration

Potterton Solar - Solar Thermal Domestic Hot Water System

 

11

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Baxi Potterton Solar manual OverviewConstructionof menu structure, Info Program Manualoperation Basic setting

Solar specifications

Baxi Potterton Solar systems are designed to harness solar energy, transforming how we approach domestic heating and hot water. As one of the leading brands in renewable energy solutions, Baxi Potterton has integrated innovative technologies to offer efficient, eco-friendly products that meet modern energy needs.

One of the standout features of the Baxi Potterton Solar system is its ability to generate hot water using solar energy. The system employs solar thermal panels, which are ideally mounted on roofs, to capture sunlight and convert it into heat. This heat is then transferred to a water storage tank, providing households with an abundant supply of hot water for everyday use, significantly reducing reliance on traditional energy sources.

The technologies used in the Baxi Potterton Solar systems include advanced solar collectors, which are designed for maximum efficiency and performance. These collectors incorporate high-performance glazing and advanced insulation techniques, ensuring optimum temperature retention and minimal energy loss. The use of copper piping enhances thermal conductivity, allowing for rapid heat exchange, which is crucial for effective hot water production.

In addition to solar thermal systems, Baxi Potterton also emphasizes compatibility with existing heating solutions, such as combi-boilers and system boilers. This versatility means that homeowners can easily integrate solar technology into their current setups, enabling them to take full advantage of renewable energy without the need for substantial system overhauls.

Another significant characteristic of Baxi Potterton Solar solutions is their ease of installation and maintenance. The systems are designed with user-friendliness in mind, allowing for quick setup by qualified professionals. Moreover, regular maintenance is straightforward, ensuring the longevity of the system and reliability in performance.

Baxi Potterton is also committed to sustainability. By utilizing solar energy, the systems contribute to reducing carbon footprints and lower energy bills for consumers. The use of renewable energy aligns with global efforts to tackle climate change and promote energy efficiency.

In conclusion, Baxi Potterton Solar systems represent a shift towards greener energy solutions that cater to modern households' needs. With their innovative technology, compatibility with existing systems, and commitment to sustainability, these solar solutions offer an effective means to harness solar power for domestic heating and hot water, paving the way for a more sustainable future.