Storage systems in Switzerland

Your energy independence.

Storage systems
Storage systems

Accumulate the energy you produce, use it when you want, creating your energy independence

Make the most of your photovoltaic system: with accumulators, the energy produced and not consumed can be used in the evening or when needed. At midday you want to turn on the oven and the washing machine? With the accumulator you can do it without drawing from the grid.

ENERGY SELF-SUFFICIENCY

Becoming independent.

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ECONOMIC SAVINGS

Taglia i costi in bolletta.

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The advantages
Morning

Minimal energy production, high energy consumption, the photovoltaic system starts to produce energy, but not enough to cover the morning consumption. A suitable battery provides the missing part with the energy stored the day before.

Day

High energy production, low consumption and intermittent. During the day, energy is accumulated when it is produced in excess, but it is also ready to supply it immediately as soon as consumption rises above production, without purchasing it from the grid. The excess is put into the grid and remunerated by AET or the local electricity company.

Evening

Low energy production and high consumption. Most family consumption is concentrated during the evening hours when the photovoltaic system does not produce. The Battery, depending on the installed power, will cover the energy needs with the energy accumulated during the day also giving the comfort of greater power available, even just to recharge an electric car completely free of charge.

SET offers its customers a turnkey service, carrying out all the authorization and incentive procedures without hidden costs.

FAQ
Photovoltaic
The energy produced thanks to the use of the photovoltaic system and not consumed directly by the connected users, can be stored or sold. In the first case, the energy produced is stored with storage solutions and used at any time of the day. In the second case, however, the excess energy produced is sold to your electricity supplier and paid at the market price by the Energy Services Manager. The advantages are therefore very simple.
SET employs professional sheet metal workers and structural engineers who are able to verify and possibly advise the client's existing structure, proposing concrete solutions to resolve any problems.
No.
Photovoltaic panels transform solar energy into electrical energy with a process similar to photosynthesis. The Solar Thermal system, on the other hand, transforms solar energy into thermal energy, used for the production of domestic hot water or for heating rooms.
SET will take care of the necessary paperwork.
Usually only a simple notification of the installation is necessary, but in some cases a building application is required (new buildings, specific municipal provisions, nucleus).
SET technicians will interface with the municipal technical offices to obtain the correct and fastest authorization.
If well designed and maintained over time (cleaning and periodic checks) on average, a photovoltaic system can produce with excellent yield for about 25 - 30 years. After that, revamping actions can be carried out by replacing only those components (the panels in general) that no longer offer efficient yield levels.
Scheduled maintenance, cleaning and guaranteed material both for duration and for atmospheric agents (hail, strong wind). SET is able to satisfy these needs through maintenance and material contracts with the best guarantees on the market.
The panels can get dirty due to dust, pollen, leaves, sand or other. In the case of panels with a frame, moss can also develop on the lower part over time. Dirt and vegetation cause reductions in yield: professional cleaning of the modules therefore allows you to optimize the performance of the system and extend its useful life.
Only demineralized or rain water should be used for cleaning, since ordinary tap water would leave limescale residues on the system. The use of aggressive detergents is not recommended.
SET provides a professional and economical cleaning service, evaluating the frequency of intervention based on the position of the system and its exposure to deteriorating agents.
The main components of a photovoltaic system are three: Substructure, Photovoltaic Modules and Inverter. The substructure is the mechanical component that allows the fixing and installation of the modules with the best exposure. The photovoltaic module is composed of photovoltaic cells that convert solar energy into electricity (direct current DC). The inverter allows you to connect all the photovoltaic modules together and convert the direct current into alternating current (AC) to be used in our homes or businesses.

Are you ready for a brighter future?

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