On-grid solar
Lowest-cost electricity savings- During a power cut
- Normally switches off during a grid failure.
- Best suited to
- Reliable grid and strong daytime use
- Know before choosing
- No backup during an outage
SOLAR SOLUTIONS
QUICK SOLUTION FINDER
This is an initial guide, not a final system design. Ekam’s engineers will validate your load, site and utility requirements.
CHOOSE THE RIGHT ARCHITECTURE
The right choice depends on grid reliability, backup expectations and operating priorities. Capacity comes after the objective is clear.
Important: A normal on-grid system does not supply power during a grid outage. Backup requires a correctly designed hybrid or battery-supported system.
PLAN YOUR SYSTEM
Illustrative starting ranges only. Final capacity depends on annual consumption, daytime load, roof feasibility and applicable utility regulations.
Often considered for homes, depending on bill, sanctioned load and usable roof.
A common planning range for shops, offices and smaller commercial facilities.
Commercial and industrial systems require interval load and detailed engineering.
Actual space varies with module dimensions, setbacks, access, shade, orientation and structure. Generation, savings, payback and installation time are site-specific.
GET AN INITIAL SAVINGS ESTIMATE →12 months of bills or interval data
Photos, shade and basic drawings
Sanctioned load and connection details
Savings, backup and target timeline
Use quick or seasonal electricity data to estimate system size, generation and savings.
OPEN SOLAR SAVINGS CALCULATOR →Select essential appliances and estimate battery capacity, inverter size and backup duration.
OPEN BATTERY CALCULATOR →WHAT A COMPLETE SYSTEM INCLUDES
Final makes, models, ratings and warranties are confirmed in the approved proposal.
Selected for output, reliability and project requirements.
Matched to system architecture, load profile and expansion needs.
Designed around the roof, wind conditions, access and corrosion risk.
DC and AC protection, cabling, earthing and lightning considerations.
Visibility into generation, status and performance.
Battery capacity designed around essential loads and backup hours.
ASSESSMENT TO COMMISSIONING
Utility eligibility, net-metering requirements and timelines vary by location and connection type. These are checked during feasibility and supported within the agreed project scope.
Bills, goals and site constraints
Roof, structure, electrical feasibility and utility route
Capacity, equipment, generation and proposal
Applications, installation, inspection and testing
Handover, monitoring, maintenance and performance review
PROVEN IN THE FIELD
Project takeaway: Engineered for a power-intensive manufacturing environment.
650 kW rooftop solar EXPLORE →Industrial · Kurali, PunjabProject takeaway: Large-scale rooftop capacity supporting long-term energy cost reduction.
1 MW rooftop solar EXPLORE →Healthcare manufacturing · Dera Bassi, PunjabProject takeaway: Clean generation integrated at an operating manufacturing facility.
850 kW rooftop solar EXPLORE →SOLAR QUESTIONS
A standard on-grid system normally switches off for safety. Continued power requires a correctly designed hybrid or battery-supported system for selected loads.
SOLAR ENQUIRY
Share the essentials for a site-specific discussion. Start on WhatsApp, or email bills, drawings and other documents directly to our team.