This comprehensive 320 kW grid-tie solar installation was designed to significantly offset the institution's energy dependence. Utilizing high-efficiency mono PERC modules, the system delivers reliable performance year-round, cutting electricity bills drastically.
Capacity: 320 kW
CO2 Reduction: ~300 Tons/Year
Completion: 45 Days
Off-Grid Power
60 kVA Off-Grid System
Critical Facility, Varanasi
Project Overview
Installed at a critical facility in Varanasi where grid fluctuations are common. This 60 kVA off-grid system integrates heavy-duty battery storage with intelligent Zenvo PCUs to ensure 100% uninterrupted power supply 24/7.
Capacity: 60 kVA
Battery Backup: 48 Hours
Grid Independence: 100%
Smart Lighting
Smart Street Lighting
University Campus
Project Overview
A complete overhaul of the campus lighting infrastructure. Zenvo deployed standalone, automated solar street lights equipped with motion sensors and high-lumen LEDs, ensuring student safety while cutting campus electricity costs to zero.
Units Installed: 150 Poles
Features: Auto Dusk-to-Dawn
Energy Saved: 100%
Industrial Solar
150 kW Hybrid System
Manufacturing Plant, Noida
Project Overview
Industrial hybrid system integrating both grid power and battery backup to manage peak loads. This implementation guarantees that factory operations and heavy machinery never halt during unpredictable local power outages.
Capacity: 150 kW
ROI Period: 3.5 Years
System Type: Hybrid Grid/Battery
Residential Solar
20 kW Grid-Tie System
Private Villa, New Delhi
Project Overview
A premium residential installation designed with sleek aesthetics to match the modern architecture of the villa. This system successfully transformed the property into a net-zero home, utilizing net-metering to export excess power.
Capacity: 20 kW
Bill Reduction: 95%
Benefit: Net-Metering Enabled
Commercial Rooftop
500 kW Rooftop Array
IT Park, Gurugram
Project Overview
A massive large-scale corporate deployment across multiple building rooftops. Features smart Zenvo monitoring integration and optimized tilt-angles to ensure maximum space utilization and peak power generation.