Inverter
Conversion of direct current into alternating current
For feeding into the public power grid, for self-sufficiency, for storage solutions: stable and long-lasting inverters with high efficiencies are our specialty. A photovoltaic inverter converts the direct current produced by the photovoltaic modules into grid-compatible alternating current.
Depending on the dimensions and location of the PV system, the specific inverters have different properties. The following always applies: The inverter must be professionally and appropriately aligned with the PV system.
Whether micro, string, battery or hybrid inverter? We have everything in our portfolio!
Microinverter
With this type of PV inverter, each PV module has its own inverter, which is connected directly to the respective PV module. Is preferably used for smaller dimensions or for systems with different orientations of the PV modules.
String inverter
Here, several PV modules are connected in series and form a strand (also called a string). A string inverter connects a whole series of interconnected photovoltaic modules to the public power grid. String inverters are suitable for both small households and large agricultural photovoltaic systems as they offer a good price-performance ratio.
Battery inverter
Battery inverters make it possible to combine a PV system with storage. This regulates intelligent charging and discharging of the battery.
Hybrid inverter
Hybrid inverters are a combination of photovoltaic and battery inverters, combining two devices into one, saving space and costs.
Here is an excerpt from our product portfolio, but this is not everything, we have significantly more manufacturers in our range. You can find out more by request.
We would be happy to create a module assignment plan with inverter design for your new PV system based on your location parameters. Simply fill out the contact form and we will get in touch with you as soon as possible. Of course you are also welcome to contact us by telephone.
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Reference projects
- Module design planning with geographical / specific annual yield, number of modules and PV generator output
- Inverter design and stringing planning
- Identification and delivery of suitable components
- Assembly and electrical work with partner company
Project in Lauf-Simonshofen 7,83 kWp inkl. Storage

Project in Ottensoos 11,75 kWp

Project in Ottensoos 6,53 kWp incl. Storage and Wallbox

Project Solar fence in Tyrol-Hochfilzen 6.53 kWp incl. Storage

Project in Weinzierlein 6,10 kWp incl. Storage and Wallbox
Project in Eckental 13,92 kWp inkl. Storage and Wallbox

Project in Röthenbach 13,92 kWp inkl. Storage

Project in Schwabach 11,88 kWp inkl. Storage and Wallbox

Project in Nuremberg 12,46 kWp inkl. Storage

Project in Nuremberg 6,53 kWp inkl. Storage
