ENERGY RESERVE WITH MEASURABLE RESOURCE

Energy storage systems and battery backup

Batteries, BMS, inverters, and backup panels for homes, businesses, and critical equipment.

MAIN RESULT

A storage device is selected simultaneously according to energy, power, resource, and operating conditions. We show expected hours of operation and allowable loads for several scenarios.

PRACTICAL SCENARIO

How the solution helps in a real-world situation

When the network is disconnected, the entire facility is not powered. The backup receives connectivity, server, security, and the selected technological line. The system reports the remaining energy and shuts down less important groups until critical discharge.

WHERE THE RESULT IS LOST

The problem is rarely located in a single device

We check the project, installation, settings, power, data, and maintenance as a single chain.

01

Compare batteries by ampere-hour only

02

Do not take into account the discharge power and inrush currents

03

BMS and inverter are not compatible

04

The battery is installed without proper ventilation, temperature, and protection

SCOPE OF WORK

What we design and inspect

Work boundaries and acceptance criteria are recorded before equipment purchase

  1. 01

    Counting Energy and Peak Power

  2. 02

    Choosing chemistry and allowable depth of discharge

  3. 03

    Designing BMS, protection, and backup groups

  4. 04

    Conducting an autonomy and recovery test

HANDOVER TO THE CLIENT

What remains with the owner of the system

BEFORE ORDER

Questions: energy storage

Short answers to questions that affect the composition, cost, and reliability of the solution.

01What is the difference between kW and kWh?

A kilowatt shows the power the system can deliver now, and a kilowatt-hour shows how much energy is stored. Both parameters are important for backup.

02Why can’t it be calculated only by battery capacity?

Part of the capacity is unavailable due to allowable depth of discharge, losses, temperature, and reserve. In addition, the battery must withstand the required power.

03Which battery chemistry is best?

It depends on temperature, cycles, power, location, and budget. LiFePO4 is often convenient for cyclical operation, but the specific system is evaluated together with the BMS and inverter.

04Can I add batteries later?

If the manufacturer and architecture allow expansion. Batteries of different ages and conditions cannot be combined without verification and an agreed scheme.

05Where to place the drive?

In a dry controlled room with an acceptable temperature, maintenance access, and provided protection. Requirements depend on the capacity and type of equipment.

06How to check real autonomy?

By test disconnection under an agreed load. We record transition, power, discharge, notifications, and proper network restoration.

ENGINEERING CONSULTATION

Let's discuss: energy storage

Send the city, facility purpose, photos or plan and the current problem. Let's determine the initial data for a accurate proposal.

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