Energy storage available in Norway

Battery storage should be accessible.

Our goal is to keep LiFePO4 storage close to NOK 1,000 excluding VAT per nominal kWh. A complete 51.2 V / 314 Ah module stores 16.1 kWh and includes a JK 200 A BMS.

16.1 kWh LiFePO4 battery module with dimensions
16.1 kWhnominal energy
314 Ahcapacity
51.2 Vnominal voltage
JK 200 Asmart BMS
16S1Pcell configuration
CAN/RS485communication
19 999 NOKincluding VAT per module
Contact us
LiFePO4 battery modules installed in a rack

One module – a complete building block

16.1 kWh LiFePO4 with clear operating limits.

The module is designed for stationary energy storage. We configure recommended operating values and assess placement, protection, cabling, temperature and inverter compatibility for each installation.

  • 51.2 V nominal system
  • 314 Ah and approximately 16.1 kWh nominal energy
  • JK 200 A BMS with active balancing
  • CAN and RS485 communication
  • Charging must be blocked below +2 °C
  • High fault current requires qualified design and installation

Detailed product documentation is currently available in Norwegian. Open Norwegian product page.

From component to operating system

Battery, inverter, installation and automation.

Every building has a different load profile, solar installation and electrical system. We therefore assess the complete energy path rather than selling a universal plug-and-play package.

01

Battery modules

One or more 16.1 kWh modules with documented limits and recommended settings.

02

Hybrid inverter packages

When purchasing two or more battery modules, we can supply a compatible Deye hybrid inverter close to our cost price. We do not sell inverters separately.

03

Electrical installation

Alfa Omega is a registered electrical enterprise in Norway and can assess, install and document the fixed electrical work.

04

Energy automation

Local Solar Forecast and Home Assistant can use weather, expected solar production, load and battery status to support daily planning.

Energy automation under continuous development

Forecast first. Control only after verification.

Our deployments begin in observation or dry-run mode. Data sources, signs, limits and fallback behaviour are verified before control is enabled step by step. Software may be open source; our work is the engineering, installation, adaptation and follow-up around each real system.

  • Weather and local solar forecast
  • Load history and expected base load
  • Battery SOC, temperature and operating window
  • Electricity price and planned import or export
  • Heartbeat, safe fallback and remote follow-up

Important safety boundary

Do not charge LiFePO4 below +2 °C.

Batteries must be installed in a dry, frost-protected and suitable environment. The BMS is a final protection layer, not a substitute for correct placement, temperature control, fuses, disconnects and qualified electrical work.

In-house professional competence

Designed and followed up by an electrical and automation engineer.

Bjørn Tore Hovland has experience from solar installations, battery banks, electrical contracting, industrial electrical management, railway power systems and teaching electrical engineering. He holds a master’s degree in railway engineering from NTNU and teaches electrical engineering, energy production and distribution.

  • Registered Norwegian electrical enterprise
  • Electro and automation engineering
  • Real reference installations and test systems
  • Individual commissioning and follow-up
Bjørn Tore Hovland

Start with the actual installation

Tell us about your energy system.

Include your existing inverter, solar array, grid type, desired capacity, location and possible battery placement. We can then assess batteries, inverter, electrical installation and automation.

Contracts, formal documentation and detailed technical pages are currently prepared in Norwegian. We can discuss your project in English.

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