Reduce operating cost and strengthen operational resilience with arrays and architectures engineered around production schedules, electrical infrastructure, and interconnection reality.
Factories and logistics hubs align daytime solar with load—strong for self-consumption—but face complex starting currents, shift changes, and strict isolation rules. Design must respect protection coordination and arc-flash risk, not only DC hardware counts.
Loads, interconnection, and export limits
We model self-consumption and export against tariff rules and utility limits. Where export is restricted, control strategies and storage are designed in from the start—not bolted on after procurement.
Electrical integration and infrastructure
Main switchboards, sub-mains, and dedicated feeders are chosen for clarity and maintainability. Fault levels, selectivity, and monitoring taps are documented so future upgrades never require reverse-engineering.
Executive summary
Industrial solar is not a residential layout stretched across a larger roof. Load shapes, harmonic environments, transformer limits, and process uptime requirements drive design choices that determine whether savings materialize and whether the system survives a decade of operations.
✓Why industrial sites demand a different playbook
✓Loads, interconnection, and export limits
✓Electrical integration and infrastructure
✓Construction on operating sites
Why industrial sites demand a different playbook
Factories and logistics hubs align daytime solar with load—strong for self-consumption—but face complex starting currents, shift changes, and strict isolation rules. Design must respect protection coordination and arc-flash risk, not only DC hardware counts.
Loads, interconnection, and export limits
We model self-consumption and export against tariff rules and utility limits. Where export is restricted, control strategies and storage are designed in from the start—not bolted on after procurement.
Electrical integration and infrastructure
Main switchboards, sub-mains, and dedicated feeders are chosen for clarity and maintainability. Fault levels, selectivity, and monitoring taps are documented so future upgrades never require reverse-engineering.
Construction on operating sites
Work is sequenced around production peaks, shift changes, and safety windows. Permits, hot work, and lifting plans follow your site authority—not generic contractor defaults.
Performance, warranties, and proof
We set realistic production expectations with clear uncertainty bands. Warranty paths for modules, inverters, and controls are defined up front so claims do not stall on paperwork.
Ready to move to the next phase?
Start with service pathways or review similar projects before technical scoping.