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Solar Container

A container filled with solar panels

These panels are part of the ingenious folding system with which they can be pulled out of the container quickly and easily using the innovative solar rails and can be spread over a total length of 120m (60m per side). This results in a maximum possible solar area of ​​around 720m². This concept of two-sided unfolding allows shorter cable lengths between panels and the inverter and thus increases the efficiency of the energy generation.

 

 

120m

Unfolded panels lenght.

240

Number of PV modules

720m²

Surface area coverage

5h

Up to 5 hours of assembly time

140kWp

Up to power generating capability

 

 

 

Solarcontainer transport system

 

Fixed and secured transport with twist-lock system

The solar container is lifted using the corner corners in the roof frame. With these in the base frame, the module can be fixed and secured during transport using the twist-lock system.

Rail system assembly without drilling

The solar rail system consists of individual segments that are used during construction connected to the fixed, centrally arranged container floor. These can be laid quickly, regardless of the floor class and without drilling.

Robust, hot-dip galvanized steel construction

The robust, hot-dip galvanized steel construction of the rail system and themodule frame constructions Due to their own weight, they already offer sufficient protection against lifting or shifting due to wind loads.

Ballast stones for a stable rail system

For increased wind loads, appropriate ballast stones can be placed on the rail system without any problems and the system can thus be additionally secured. After predicting extreme weather conditions, such as high wind loads or snow, the entire module area can be folded up, secured on the central container floor and taken out of service within minutes.

The special container only functions as a transport, packaging and security unit for the largely pre-assembled photovoltaic system. In this way, the shell of the solar panels is completely unfolded. After the rail system and the conveyor unit have been installed, the container is practically no longer visible once the fully wired module frames have been extended. This property makes it possible for the container not to cast a shadow on the mobile photovoltaic system.

 

Purposes of the Solarcontainer

 

 

The areas of application and use cases are wide-ranging. This results in very general use cases such as:

 

    Energy Storage

    In order to be able to use the high PV output when there is limited sun exposure, the solar container can also be used in combination with an energy storage device.

    Power Generator

    Especially in completely self-sufficient applications, diesel aggregates are often used as power generators. These offer a reliable and constant power supply, and thanks to increasingly advanced systems, noise and exhaust emissions are kept within limits.

    Cooling

    Only the highest quality components are used in the mobile PV system and we carefully examine them in advance. The inverter used has an advanced cooling system, which ensures reliable operation with ideal energy generation even at high outside temperatures and direct sunlight. Our customers benefit from stable operation without having to take any further measures.

    The solar container can be used for short-term use at events, for longer use, for example over the summer months, or as a long-term solution. To cover the wide range of requirements, we make a fundamental distinction between an ON-grid system, which relies on an existing power grid, and an OFF-grid system, which forms its own grid completely independently.

    An ON-Grid system can be used for your own power supply with excess feed-in to the local power grid, or to support existing power grids, for example to reduce high diesel consumption or to cover high peaks. The ON-Grid system is used in combination with other energy generators and is suitable for use in private individuals, in agriculture, on construction sites, in hotels, in energy communities, in municipalities or even in industry. An OFF-Grid system generates its own island grid and is not dependent on a public power grid. It is mostly used for remote off-grid locations, in combination with energy storage and other generators. Possible locations are therefore remote villages, development and crisis areas, mining, venues or deployments in extreme weather events.


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