00Applications

Reference architectures, drawn to be argued with.

Four proven system topologies, the products that serve them, and a calculator to size the backup case. Every diagram here maps to a configuration the dispatch study can price.

01Microgrid

Smart microgrid

GRIDHT connectionSOLAR PVrooftop / groundDGstandbyCORE 2000BESS + EMSPLANT LOADprocess + HVACEV CHARGINGbufferedCRITICAL BUSride-throughEMS DISPATCH vs ToD
REFERENCE ARCHITECTURE · SMART MICROGRID

How it runs

Grid, solar and standby DG feed a common bus; the Core 2000 charges on solar surplus and cheap slots, then serves plant peaks, EV charging and the critical bus under EMS dispatch against your time-of-day tariff. When the grid drops, the critical bus rides through on stored energy while the DG starts.

KITProducts in this architecture

Core 2000 · Core 250 · Vault 5000 for larger sites

02Data centers

AI data-center backup

GRID Aprimary feedGRID B / DGalternate feedSTSstatic transferVAULT 5000N+1 blocksIT LOADAI data center≤ 20 ms
REFERENCE ARCHITECTURE · AI DATA-CENTER BACKUP

How it runs

Twin feeds land on a static transfer switch with Vault 5000 blocks behind it in N+1. On a feed failure, transfer completes in twenty milliseconds or less, inside the ride-through window of IT power supplies, and the vault carries the load until the alternate feed or DG takes over. Redundancy means a block can be in maintenance without touching the SLA.

KITProducts in this architecture

Vault 5000 · Core 2000 for edge rooms

03Charging

PV-ESS charging station

SOLAR PVcanopy arrayCORE 250 Hhybrid BESSGRIDconstrained feedDC FAST CHARGERSpeak from storageAC CHARGERSsteady from grid
REFERENCE ARCHITECTURE · PV-ESS CHARGING STATION

How it runs

A canopy array charges the Core 250 H through its hybrid conversion; DC fast chargers draw their peaks from storage while AC chargers run steadily from a constrained grid feed. The site delivers fast-charging power its grid connection could never supply directly. The buffer is the business model.

KITProducts in this architecture

Core 250 H · Core Mini for small sites · Vault 5000 at hub scale

04Cranes

Tower crane electrification

40–60 kVA DGor 20–40 kW gridSPIKE 270power bufferTOWERCRANE25 A steady462 A peaktrickle charge · top-up overnight
REFERENCE ARCHITECTURE · TOWER CRANE ELECTRIFICATION

How it runs

A small generator or a constrained site connection supplies a steady 25 A; the Spike amplifies it into the 462 A peaks a moment-class crane demands, trickle-charging between lifts and topping up overnight. The 250 kVA diesel set the crane used to need is gone, along with its fuel bill and its noise.

KITProducts in this architecture

Spike 135 / 270 · Power 250 × 2–3 above 462 A

05Backup sizing

Size the backup case

Capacity shown allows for ~93.8% one-way discharge efficiency, derived from the platform's 88% round-trip figure — a backup event only discharges, it doesn't also charge. Indicative only; contractual autonomy is sized in the study against your actual load schedule and transfer scheme.

OUTIndicative sizing

Usable energy required···
Suggested configuration···
Take this to a study

Your topology, priced by the study.

Send a single-line diagram with your data and the study returns the architecture with numbers attached.