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Product Features:
With 400 pieces of LEDs that have 4000 lumens, Solar Flood Light 200w gives brighter illumination in your compound at night. This LED Solar Flood Light is a cool white color and can be used in the garden, garages, playing field, warehouses, driveways, terrace etc.
The 200W Solar Flood Light can be controlled by a remote. It has different lighting modes such as auto mode in which brightness can be auto adjusted to 50%, 20% and 10% modes, bright, dim modes and hourly brightness modes such as 2H, 4H and 6H modes.
Solar-powered:
The Solar 200W Flood Light works on a 5V/30W solar panel that has a backup of 12 hours (on auto mode) with a battery of 36000mAH 3.2V LiFePo4. It gets charged during the day time and lights up automatically in the night. With 5-7 hours of charging in the direct sun, 200 W Solar Flood Light gives you a backup upto 12hrs (Auto mode).
Boasting high module efficiency, this solar panel is engineered to deliver consistent and reliable energy performance. It features innovative multi busbar cells and anti-reflective glass, designed to maximise light absorption and optimise energy generation. These advancements ensure performance even in low-light conditions, making it a dependable choice for a variety of climates and environments. Its user-friendly installation process adds to its appeal, allowing you to integrate it into your energy setup with ease. Built to endure extreme conditions, this solar panel is a reliable solution for those seeking to enhance their renewable energy systems.
A 1 kW rooftop solar power plant is a grid-connected solar photovoltaic (PV) system that converts sunlight into electricity using solar panels mounted on a rooftop.
Capacity: 1 kW (1000 Watts)
Average generation: 4–5 units/day (120–150 units/month depending on sunlight)
Area required: Approx. 100 sq.ft (10 m²) of shadow-free roof space
System type:
On-grid: Connected to utility grid (no battery)
Site Survey & Feasibility Study
Measure rooftop area, orientation, and tilt angle.
Identify shadow-free zones.
Evaluate load pattern and electricity bill.
Check for structural strength of the roof.
Design & Engineering
Prepare a single line diagram (SLD).
Size the inverter and cable lengths.
Decide mounting type (tilt or flush).
Plan earthing and cable routing.
Procurement
Source BIS-certified solar panels, inverter, and BoS components.
Verify warranty (Panels: 25 years, Inverter: 5–10 years).
Assemble GI structure on the roof using chemical anchors or concrete blocks.
Ensure a tilt angle = latitude of location (approx. 20–30°) for maximum generation.
Structure must be aligned south-facing (in India).
Fix solar modules on the structure using SS clamps and bolts.
Check for uniform alignment and tight connections.
Connect module strings using MC4 connectors as per array design.
Route DC cables from modules to DCDB (via conduit).
From DCDB → Inverter → ACDB → Main Distribution Board (DB).
For on-grid systems, connect inverter AC output to grid supply through net meter.
Install three separate earth pits:
DC equipment earthing
AC equipment earthing
Lightning arrestor earthing
Use 25×3 mm copper strip or 8 SWG GI wire for interconnection.
Connect inverter communication (Wi-Fi/GPRS) for remote monitoring.
Label all cables and junction boxes for safety and clarity.
System Inspection
Verify mechanical installation, earthing, polarity, and torque.
Ensure insulation resistance test for DC cables.
Power-On Procedure
Turn on DC Isolator → AC Isolator → Inverter.
Observe inverter startup sequence and grid synchronization.
Performance Testing
Check open-circuit voltage (Voc) and short-circuit current (Isc).
Measure AC output and confirm expected generation.
Verify data logging and communication via app or portal.
Documentation
Prepare commissioning report, test results, and photographs.
Submit to DISCOM (if on-grid) for net-metering approval.
© 2026 Oorja Shakti
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