Czech-engineered systems for European industry

Building energy.
Engineered as
one system.

We design, supply, integrate, and support battery storage, PV generation, intelligent control, and resilient power architecture for commercial and industrial sites.

125 kWPower
261 kWhCapacity
LFPChemistry
125 kW / 261 kWh
Flagship Cabinet
LFP
Cell Chemistry
BMS + EMS
Integrated Control
Cabinet Multi-MWh
Modular Scale
Commercial Systems

Storage, solar, and resilient power.
One integrated platform.

SGE configures each system around the site's load profile, grid connection, operational priorities, and future expansion path.

Integrated ESS cabinet
Storage
ESS Cabinet
PV and storage integrated system
Hybrid
PV + Storage
Container battery storage
Scale
Container Systems
Cabinet · Available

125 kW / 261 kWh ESS

Single or parallel cabinet deployment. LFP chemistry, IP55 rated, active cooling. The standard unit.
PV + Storage · Available

Solar-Integrated Systems

Rooftop or ground-mount PV paired with on-site ESS. One control layer for generation, storage, and grid.
Grid + Backup · Available

Grid / Off-Grid / Hybrid

Grid-tied, islanded, or hybrid topology. Switching and isolation configured around critical loads and continuity requirements.
Container · Available

1–1.3 MWh Container

Containerised systems for larger sites. Industrial, infrastructure, and utility-adjacent applications.
Technology

Engineered for
continuous
commercial operation.

LFP cell chemistry. Integrated BMS and EMS. Active liquid cooling. Multi-layer safety architecture configured for commercial duty cycles.

Czech-manufactured platform. Partnership and production cooperation available across European markets.

125kW
Power Output
261kWh
Capacity
LFP
Cell Chemistry
IP55
Protection Class
ESS cabinet architecture — cells, BMS, cooling
System Architecture
— ESS Cabinet Platform
Core Product

Commercial & Industrial ESS Cabinet

125 kW power and 261 kWh capacity per unit. LFP chemistry. Active liquid cooling. Multi-layer protection. Integrated BMS/EMS with remote monitoring. Modular, stackable, and capable of parallel multi-MWh deployment.

Unified BMS/EMS

Real-time control of charge, discharge, load balancing, and grid interaction through one management layer.

Active Cooling

Liquid thermal management supports consistent cell temperature across changing load and ambient conditions.

Safety Architecture

Cell-level and system-level protection with gas detection, thermal monitoring, and fire-suppression architecture.

Parallel Scaling

Standardised cabinet-to-cabinet expansion from a single unit to multi-MWh configurations.
Commercial Value

Designed around
the site's operating
priorities.

System architecture is selected against the site's load, tariff structure, resilience requirements, and available generation.

Peak-load reduction

Discharge during peak windows. Lower maximum demand charges. Avoid penalty tariffs.

Backup continuity

Configure switching and isolation around the site's critical loads, continuity requirements, and grid conditions.

PV self-consumption

Store solar surplus for evening and overnight use. Reduce grid dependency. Maximise on-site generation value.

Phased expansion

Add capacity as demand grows. No system replacement — parallel cabinet scaling on a standardised platform.

Actual technical and commercial results depend on site data, grid conditions, operating strategy, and final system configuration.

Applications

Configured for
the site, not
the catalogue.

Each deployment is shaped by the building's load profile, grid connection, and operational context.

Commercial and industrial buildings
Commercial + Real Estate

Offices, Hotels & Campuses

Peak-load management, tenant energy services, backup continuity, and multi-storey PV integration.
Industrial + Logistics

Manufacturing & Warehousing

High-demand load smoothing, demand-charge reduction, process support, and phased capacity expansion.
Infrastructure + Public

Transport & Civic Buildings

Resilient power architecture for stations, airports, hospitals, schools, and other critical facilities.
Energy + Resilience

Generation Parks & Microgrids

Container-scale storage, renewable-generation smoothing, and grid-edge or island-capable configurations.
R&D Programme

Exploring wind generation
for the built environment.

SGE is studying rooftop wind concepts that could complement battery storage, photovoltaics, and intelligent control within future building energy systems.

Concept research — not offered as a commercial product
Illustrative rooftop wind concept studies Illustrative concept study
Engagement

From enquiry to
operating system.

A staged process that separates early technical exploration from commercial commitment.

Enquiry

Application context. Site conditions. Project scope and objectives.

Feasibility

Technical pre-assessment. Indicative system architecture, sizing, and commercial viability.

Site Analysis

Load profiling. Grid conditions. Spatial and structural constraints. Application-specific engineering.

Proposal

Architecture specification. Commercial model. Timeline, milestones, and project structure.

Delivery

Procurement, installation, commissioning. Handover with remote monitoring and ongoing support.
Contact

Request a
feasibility review.

Outline your site, energy requirements, and project objectives. SGE will respond with the next information needed for a preliminary technical assessment.

Confidential enquiry. No commitment required.
Response within two working days.
European markets. Partnership enquiries welcome.

Your information is used only to review and respond to this enquiry. See the privacy notice.