Energy systems

Energy withoutcompromise.

Commercial solar, battery energy storage and standby generation — engineered against the facility's own load profile, interconnected to the utility and commissioned as one electrical system.

The argument

Three systems, one interface

Generation, storage and standby power all terminate on the same distribution equipment. Whoever owns that interface owns the outcome.

01

One electrical scope

Array, inverters, storage, generator, transfer scheme and the switchgear they all land on are engineered together. Split across trades, the interface between them is where projects fail.

02

Sized to the real load

System sizing starts from interval data and the facility's demand profile — not a roof area and a rule of thumb. That is what determines whether a battery pays for itself.

03

Interconnection handled

Utility application, protection settings, witness testing and permission to operate. The technical work is only finished when the meter agrees it is.

01Commercial Solar

Roof space that pays for itself.

Commercial rooftops and yards are usually the largest unused asset a facility owns. ZVRGE builds the electrical side of putting them to work — array through inverter, collection, interconnection and commissioning.

  • Rooftop arrays
  • Ground mount
  • Carport structures
  • Inverters
  • DC collection
  • AC collection
Aerial view of a distribution building with a rooftop solar array

02Energy Storage

Power on your terms, not the grid's.

Battery storage changes what a facility can do with its demand curve — ride through an outage, shave a peak, or firm up generation. ZVRGE installs the electrical infrastructure that makes it work.

  • Battery energy storage
  • MV collection
  • Transformers
  • Switchgear
  • Auxiliary power
  • Protection systems
Battery energy storage container beside a solar array

03Generators & Standby

The system you find out about at 2 a.m.

Backup power is bought once and judged once. ZVRGE installs generators, transfer switches and the distribution between them — then proves the whole sequence under load before anyone has to rely on it.

  • Standby generators
  • Automatic transfer switches
  • Paralleling gear
  • Emergency distribution
  • Fuel system coordination
  • Docking stations
Outdoor pad-mounted power equipment beside an industrial building

A battery is an electrical asset, not an appliance. It is designed, protected and commissioned like one.

How an energy project runs

From interval data to permission to operate

The sequence is the same whether the scope is a rooftop array, a storage enclosure or a standby plant.

  1. 01

    Load study

    Interval data, demand profile and the constraints of the existing service.

  2. 02

    System design

    Array, storage and standby sized together against that profile, not in isolation.

  3. 03

    Interconnection

    Utility application, protection review and the schedule that actually drives the job.

  4. 04

    Procurement

    Modules, inverters, enclosures and gear released against real lead times.

  5. 05

    Installation

    Racking, DC and AC collection, storage enclosures, generator pad and transfer equipment.

  6. 06

    Commissioning

    Functional testing, witness test, monitoring configured and permission to operate.

FAQ

Common questions

Yes — plenty of facilities need only one. The advantage of running them together is the shared electrical infrastructure: one service study, one set of protection settings and one commissioning effort instead of three.

Bring us the load profile.

Send the interval data, the roof or the pad, and what you are trying to solve. We will tell you what is worth building.

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