An engineering partner, not a box supplier.

About

An engineering partner, not a box supplier.

We design and integrate battery energy storage around real site behaviour: measured load curves, operating constraints and the economics that follow from them.

Who we are

We size storage from the duty cycle first, then choose the hardware.

Summerlab delivers battery energy storage systems for industrial, commercial and infrastructure sites that need resilience, peak management and controlled energy costs. We work from measured demand, tariff structure, generation assets and runtime requirements rather than generic cabinet tables.

The result is a system architecture that matches the actual operating profile of the site — from compact all-in-one cabinets to multi-megawatt container plants.

We combine Tier-1 LFP cells, liquid thermal management, layered fire protection and energy management logic that integrates with the equipment already on site. The proposal is built to be technically defensible and commercially usable.

How we work

A four-step delivery process built around technical fit.

Each stage follows the logic of the site rather than a fixed package.

Measure the load

We start with interval consumption, tariff logic, existing PV or genset assets and the operational constraints the site actually has.

Model the duty cycle

Charge and discharge behaviour, required autonomy, export limits and resilience scenarios are translated into a usable operating profile.

Select the platform

Only then do we set power, capacity, PCS topology, thermal design and control strategy against the expected revenue and savings stack.

Deliver and integrate

Documentation, commissioning, controls integration and operator handover are planned so the storage behaves like part of the site, not a standalone box.

Who we serve

Storage projects for sites where unstable power has a cost.

Manufacturing and processing

Logistics and distribution

Commercial real estate

Data and telecom infrastructure

Agriculture and cold storage

Microgrids and utility-adjacent assets

If the load can be measured, it can be modelled. We work where resilience, peak shaving, load shifting or hybrid generation control have to translate into an operating case the owner can act on.

Bring the site data. We will shape the right system around it.

Share the load pattern, tariff structure and generation assets already on site. We will return a storage concept sized for the real duty cycle.

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