Skip to main content
Anonymized architectural visualization of the Capital Crest residential estate.Installed project

Denver, Colorado

Capital Crest

Residential estateStorage + generatorThree-phase

Completed project record. Approved technical facts and outcomes are preserved while property names and identifying details are withheld or generalized.

Project overview

Capital Crest

"Capital Crest" serves a 30,000-square-foot estate with two primary residential wings and an electrical infrastructure approaching commercial scale. The project required the battery system, generator, controls, three-phase service, and extensive residential loads to be treated as one operating system.

The completed design combines 318 kWh of battery storage with 144 kW of power capacity and a 200 kW standby generator. Approximately 250 loads are actively coordinated across the 1600A three-phase service. Battery equipment was integrated into garage and crawl-space areas to preserve usable space and the exterior character of the residence.

System profile

System profile

Battery storage
318 kWh
Power capacity
144 kW
Solar
Not included in scope
Generator
200 kW
Controlled loads
Approximately 250
Electrical service
1600A, three-phase
Backup scope
Whole home
Project stage
Installed project

System architecture

System architecture

  1. Utility + generator
  2. Controls
  3. Battery storage
  4. Managed estate loads

Technologies and considerations

Technologies and considerations

  • Battery storage
  • Generator integration
  • Three-phase distribution
  • Integrated load management
  • Equipment-location constraints

Technical details

Technical details

Wall-mounted battery cabinets and closed electrical panels in a dedicated equipment room.
01Battery equipment integration
Closed standby generator and adjacent microgrid control cabinets in a screened utility court.
02200 kW standby generator
Closed three-phase distribution equipment with orderly vertical conduit routing.
03Three-phase control and distribution

Outcome

Whole-estate resilience coordinating battery storage, standby generation, and approximately 250 managed loads across a 1600A three-phase service.

Your project

Planning a system with similar constraints?

Start with operating requirements, site conditions, technical scope, and delivery responsibility.

Discuss your project