Transfer & transformer station
The ideal all-rounder for your reliable transformer station medium-voltage connection.
Online enquiry
Solar park station
The first purely solar park-internal transformer station.
Reliable for solar parks of any size.
Online enquiry
Transfer & transformer station
The ideal all-rounder for your reliable transformer station medium-voltage connection.
Online enquiry
Solar park station
The first purely solar park-internal transformer station. Reliable for solar parks of any size.
Online enquiry
kW
0
Intelligent energy distribution for large solar parks. The next generation of solar park-internal container stations.
Centralised switching technology for modern energy systems. Ideal for trade, industry and agriculture.
Production in Germany

Compatible with all German medium-voltage networks, arc fault certified for nationwide use.

Delivery time from 28 weeks

Faster implementation thanks to in-house production and semi-automated planning process.

Full flexibility & support

Customised configuration of transformer power, voltage levels and balance circuits according to project requirements.

Braunschweig solar farm station for stable feed-in and a medium-voltage system that can grow with demand

One Braunschweig Solar Park Station is more than just the technical transfer point between PV generation and the grid. In everyday operation, it determines whether feed-in runs stably, whether protection functions work reliably, and whether subsequent capacity increases can be implemented without unnecessary interventions in the existing structure. Precisely for this reason, the substation should not be planned merely for the initial state, but for the actual development of the site.

Many solar projects change over time. Additional module areas, extra inverters or a growing power demand often significantly shift the requirements for medium voltage. A Braunschweig Medium Voltage Substation therefore requires a technical logic that does not need to be rethought with every change. The crucial factor is a structure that works clearly today and can be expanded in an orderly fashion tomorrow.

When switching architecture, protection technology and documentation work together harmoniously from the outset, the benefit is immediately apparent during operation. Maintenance becomes more predictable, technical interventions can be better prepared and subsequent expansion steps cause significantly fewer friction points. This creates not merely a connecting solution, but a resilient infrastructure that keeps the site stable in the long term.

With Faber E-Tec the focus remains on a medium-voltage solution that is not only suitable for the short term, but is built as a permanent operational basis.

You can tell good ward planning later by the fact that it doesn't slow things down

With a Braunschweig Solar Park Station the internal layout is often more decisive than pure performance figures. When panels are sensibly organised, important components remain easily accessible and the protection technology has a logical layout, operations run noticeably smoother. Testing becomes more structured, maintenance windows are easier to plan and potential faults can be isolated more quickly.

This becomes noticeable very quickly, especially in projects with multiple expansion phases. If a proper reserve structure is missing, the substation quickly becomes a bottleneck when feed-in capacity is increased. By contrast, a medium-voltage side planned with foresight creates technical leeway without the need to constantly reorganise existing processes. That saves time, reduces subsequent effort and keeps the technology stable.

Good preparation saves costly rework later

Many delays do not occur at individual components, but at open interfaces. Grid requirements, feed-in capacity, protection concept, substation layout and commissioning must be brought together cleanly at an early stage. For a Braunschweig Solar Park Station this preliminary technical assessment is therefore a key success factor.

If the key data is robustly defined at an early stage, approvals become more stable and queries during the course of the project are significantly reduced. This not only relieves pressure on the schedule, but also improves the quality of the subsequent operational phase, as the station was already tailored to its actual use during the planning stage.

Transformer Container Line BG AVIF - Braunschweig Solar Farm Station
Transformer stations

for the safe mounting and operation of transformer and switching technology.

One Braunschweig transfer station has to prove itself during operation. In everyday use, it is not just correct connected loads that matter, but stable processes, clearly defined protection responses and a substation structure that permits maintenance and technical modifications without unnecessarily slowing down the site. Therefore, the substation should be planned in such a way that it remains clear and manageable even under real operating conditions.

That really pays off, especially on projects with development potential. A well-structured Braunschweig Solar Park Station remains robust even when additional power is added. This turns a transfer point into a viable medium-voltage base for long-term growth.

High operational reliability

Reliable in continuous operation.

Weather protection

Designed for outdoor use

Configurable

Customisable to project requirements.

Versatile in use

For industry and infrastructure.

Optimised for continuous operation

Stable and powerful.

Quick installation

Simply by crane.

Compact design

Space-saving and efficient.

Compatible with all German medium-voltage grids

Arc fault certified for use throughout Germany.

Standard-compliant design

We take over the engineering and obtain approval from the responsible energy supply company

Application areas for solar park stations in Braunschweig with a focus on grid injection, grid stability and expandable PV areas

Compact substations as a robust solution for sites with more than just feed-in

Not every location is a pure feed-in point. In many projects, PV generation, self-consumption and additional loads run in parallel within a joint energy concept. A compact medium-voltage solution is particularly well-suited for this because it brings together multiple energy flows in an organised structure while also making economical use of space.

Your advantage does not lie solely in the construction. A clearly structured compact substation also improves maintenance, testing and subsequent modifications, because the technology remains clear and central components can be accessed without major detours. This is particularly important where load profiles change over time or further system components are added.

Concrete transformer compact station and transfer station for photovoltaics, e-mobility, wind power and grid operators

Integrating PV, storage and e-mobility in Brunswick using a station-based approach

As soon as, in addition to PV generation E Mobility or storage technology plays a role, the requirements for the medium-voltage side are noticeably increasing. Infeed, charging capacity and load peaks must then be cleanly coordinated within a common medium-voltage structure. A well-conceived Braunschweig Medium Voltage Substation creates the right foundation for this.

Without proper planning, such concepts quickly come under pressure. Power sizing, protection structure and future expansion then fail to integrate smoothly. However, with a clearly structured medium-voltage architecture, these requirements can be bundled early on, ensuring the site remains stable and can grow in a controlled manner.

Illustration of an e-mobility station, developed for the reliable power supply of charging stations for electric vehicles. Ideal for setting up centralised and decentralised charging infrastructure. Compact stations

Solar park stations for Braunschweig with clear feed-in line and robust expansion logic

One Braunschweig Solar Park Station should be designed in such a way that it safely handles current feed-in capacity and future expansions do not become a structural issue. This requires medium-voltage planning in which switching logic, protection coordination and service access are not merely considered alongside one another, but are cleanly integrated. This is the only way to keep the substation comprehensible during operation and controllable during expansion phases.

If a station is tailored exclusively to the initial state, avoidable follow-up costs frequently arise later. Additional performance then leads to modifications, new adjustments and unnecessary interventions in ongoing processes. A deliberately planned reserve prevents precisely that and ensures that the location remains technically flexible.

This is particularly relevant for projects in Braunschweig if PV areas are being installed gradually or expanded at a later stage. A cleanly structured solar park substation creates the foundation to ensure that every new expansion phase is built on a reliable technical basis.

Solar park station for PV systems and photovoltaic transformer
NSHV Black Line AVIF - Solarparkstation Braunschweig
LVMD

for safe and reliable power distribution in electrical installations.

EPC solutions in Braunschweig with clear handovers instead of unnecessary friction

Planning and control, procurement, construction and assembly work

In medium-voltage solar projects, friction losses often arise where technical handovers and responsibilities are not managed cleanly. For a Braunschweig Solar Park Station therefore, a structured EPC process is a distinct advantage. If decisions are coordinated early and responsibilities remain clear, the entire project runs more smoothly.

A neatly organised EPC approach brings order to approvals, inspection points and technical interfaces. Queries are clarified earlier, the process remains more transparent and the handover to operations is better prepared. This noticeably reduces delay risks and improves the quality of execution.

Extensive project experience
Complete turnkey solutions
Technical excellence & quality assurance
A central point of contact
Minimised risk & deadline reliability
Integrated energy infrastructure

Technical quality from Germany for reliable solar park operation

In the medium-voltage sector, trust is built through technology that works day in, day out. A Braunschweig Solar Park Station must be clearly structured, easy to maintain, and stable even with later extensions. Precisely for this reason, well-thought-out station logic is more important than a short-term, fitting starting solution.

For operators, quality is primarily demonstrated in practice. When switching structure, protection technology, and documentation work together seamlessly, faults can be diagnosed faster and measures implemented more safely. This increases availability and significantly reduces ongoing maintenance effort.

With Faber E-Tec this focuses on a quality standard aimed at reliable solutions and a long-term viable medium-voltage infrastructure. For projects in Braunschweig, this creates a dependable foundation for feed-in, service and future development.

Opened FABER E-TEC compact transformer station with visible technology - solution for photovoltaics, grid/transfer and e-mobility
Compact transformer station from FABER E-TEC in the solar park at sunset - grid connection and transfer station for photovoltaics
Expertise, experience & production in Germany
Expertise & experience
Highest quality & reliability
Environmentally friendly technologies
Opened compact station with low-voltage main distribution board and switching technology from Faber E-Tec buy online
Transformer station for connecting a fast charging station to the grid - energy infrastructure for e-mobility in outdoor areas

Enquire with Solarparkstation Braunschweig and set up the medium-voltage planning properly from the start

Whether it is a new PV project, an expansion of existing feed-in capacity or the modernisation of an existing site: the quality in later operation is decided at the beginning. If feed-in capacity, area parameters, grid requirements and expansion targets are clearly defined early on, the Braunschweig Solar Park Station be planned precisely.

This reduces coordination effort, prevents later corrections, and creates a solution that remains stable even with growth. Structured advance planning ensures that technology, timelines, and later expansion steps fit together cleanly.

Those who grasp the technical framework early on not only achieve a better start but also establish a robust infrastructure for long-term plant operation.

Compact station Request a quote

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E-mobility made easy with us!

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The output per station describes the size of the transformer or the maximum output that is to be transmitted via the transformer substation. For PV or battery storage projects, this value is often based on the system output. For industrial, commercial or consumption systems, the output depends on the building's or facility's required electricity demand. If you do not know the value, we will be happy to assist you with the design.
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7200 KW Secure container offer

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Low-voltage main distribution board

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Frequently asked questions about the Brunswick solar farm substation
Find quick answers to frequently asked questions about our products & services.

The planned feed-in power, the available area, the desired voltage level and the planned expansion stage are important. In addition, information on the later development of the project helps to ensure that the station can be planned with a sensible reserve structure from the outset.

The decisive factor is a clear station logic instead of a pure initial design. If switch panels, protection technology and connection structure are properly prepared, additional power steps can be integrated in an organised manner. This keeps the system stable and makes subsequent conversions much easier.

Because it determines how the station reacts in the event of a fault and how selectively protective functions work. Proper protection coordination improves availability, reduces consequential risks and helps to localise faults more quickly. This is a key factor for smooth system operation.

It saves time and increases safety. Maintenance, troubleshooting and subsequent adjustments can be implemented much more efficiently if the protection parameters, switching logic and station structure are clearly documented. This is a major advantage, especially for growing projects.

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Compact station