Energy communities and residential buildings
Platform to manage shared self-consumption: hourly monitoring, analysis of consumption and generation, dynamic sharing coefficients and dashboards for every neighbour.
We design and operate self-consumption systems, batteries, microgrids and power-electronics solutions that reduce costs, improve efficiency and prepare your installation for the energy transition.
We analyse your consumption data and propose clear technical and economic scenarios, with no commitment.
EASECHAIN™ integrates hardware, software and industrial electronics so that communities, buildings and industrial sites can leverage all their energy flexibility intelligently.
Platform to manage shared self-consumption: hourly monitoring, analysis of consumption and generation, dynamic sharing coefficients and dashboards for every neighbour.
Modular containers with renewable generation and hybrid storage (batteries and hydrogen), operating in DC or AC and controlled to shave peaks and enable flexibility services.
Edge/Cloud architecture to coordinate multiple PV plants, batteries and controllable loads. MPC algorithms, demand and generation forecasting, and secure connection with grid operators for flexibility services.
Design and validation of DC/DC and AC/DC converters, battery BMS and embedded firmware. From schematic and simulation to first prototypes and lab tests with HIL.
Designed for neighbours’ communities, cooperatives and small municipalities that want to go beyond “just installing PV panels” and need a clear tool to see, share and optimise energy on a day-to-day basis.
We start by bringing order to the data and giving visibility to all participants; from there, we open the door to new energy services when it truly makes sense.
Modular units with storage, renewables and local intelligence to reduce peaks, stabilise critical processes and enable new energy models based on flexibility. AC or DC architectures depending on the application, with the option of interconnecting several containers and adding modular electronics designed by VoltEdge.
We configure the AC/DC architecture, modular electronics and storage based on your real load curves and critical processes.
Example configuration of a 100–500 kWh containerised system (mockup).
We don’t stop at slides. We design, implement and test power-electronics equipment focused on real use cases: storage, e-mobility, fast charging, auxiliary systems, and more.
Tell us what you need (voltage, power, topology, constraints) and we’ll prepare a technical proposal with clear milestones: specifications, design, prototype and tests.
Our approach combines data analysis, power engineering and day-to-day operation. This way we avoid “paper projects” and focus on solutions that work in the real context of your community, building or industrial plant.
We start from your hourly profiles (Datadis, SCADA, meters) and how you really use energy. We identify patterns, peaks, self-consumption gaps and flexibility opportunities.
We propose realistic configurations of PV, batteries, electronics and control, with clear scenarios for investment, savings, returns and risks so that you can decide with confidence.
We support commissioning, integration with your network and ongoing operation. EASECHAIN™ monitors, detects deviations and allows fine tuning of the system over time.
Some examples of how we apply our technology in very different situations: from neighbours’ communities to industrial plants and innovation pilots.
We collaborate with companies, public bodies and innovation programmes to bring advanced power electronics and energy management to real projects.
We take part in competitive projects combining storage, power electronics, advanced control and digitalisation of distributed energy resources (DER). We bring research to the field: real pilots, real data.
VoltEdge is a technology-based company born as a spin-off from the University of Seville with the mission of bringing advanced power electronics and energy-management solutions into real-world communities, buildings and industrial sites.
We combine engineering, research and field deployment. We design solutions based on real consumption data, manufacture prototypes in our laboratory and accompany each client throughout the entire life cycle of the installation.
Whether you're a neighbour, a building manager, a hotel operator or an industrial company, we can analyse your consumption data and propose a clear technical–economic scenario.