Cell-Level Protection.
Every individual 314Ah LFP cell is monitored for voltage and temperature in real time — the earliest possible point to catch a deviation, before it can propagate to the pack.
Every deployment — Reserve, Aura, or Ultima — follows the same disciplined path from first conversation to permanent monitoring.
Our engineering team studies your load profile — peak demand, outage history, solar generation pattern — before recommending a system. The right answer depends entirely on how you actually use power, not a generic sizing chart.
We configure the system to your site — Aura, Aqua, or Ultima — specifying PCS, BMS, and EMS integration, cooling method, and enclosure rating for your environment.
Every system is built on 314Ah LFP cells with the same 3-Tiered BMS architecture, manufactured at our facility in Ghilot, Alwar district, Rajasthan — currently at 1+ GWh annual capacity, scaling toward a fully automated 6.5 GWh giga-facility.
On-site installation, grid tie-in, and full system testing — switchover speed, thermal behaviour, and fault isolation are all verified live, on your site, before we call it done.
Every deployed system is watched continuously — this is where the BMS does its quietest, most important work. More on that below.
A single BMS architecture runs underneath every system in the collection — Aura, Aqua, and Ultima alike. Three tiers, working together, so a fault at any level is caught before it becomes a failure.
Empowering you, through energy with intelligence.
Every individual 314Ah LFP cell is monitored for voltage and temperature in real time — the earliest possible point to catch a deviation, before it can propagate to the pack.
Cells are grouped, balanced, and thermally managed as packs — keeping every module operating within the same tight tolerance, which is what makes 8,000+ cycle life possible.
At the top level, the BMS coordinates fault isolation, grid interaction, and the <20ms switchover — the layer that decides, instantly, when and how the system responds.
The Unity EMS is what separates a battery from a storage system. Real-time dispatch, predictive optimisation, fire safety, and subsystem monitoring — all in one platform, built by us, running on every system we commission.

Speak with our engineering team to architect a solution for your specific load profile — proven specifications, not projections.