Solar LED floodlights provide 100% autonomous power through integrated lithium batteries, guaranteeing perimeter security in remote areas without an electrical grid connection.
Illuminating distant rural properties, forest roads, private driveways, and fenced territories is frequently hindered by the impossibility or exorbitant cost of laying underground electrical cables. Low-quality solar lamps equipped with cheap plastic panels and weak batteries can only function during the summer in Baltic climates, entirely failing to produce necessary light during dark autumn months. Our high-efficiency solar LED floodlights completely alter this situation by integrating heavy-duty monocrystalline photocells that efficiently convert solar energy even under heavy cloud cover. They utilize powerful, cold-resistant LiFePO4 lithium iron phosphate batteries that do not lose capacity in freezing temperatures. The entire system relies on proven VIDEX engineering solutions, ensuring a brilliant, reliable light beam every single night with absolutely zero electricity expenses.
Transform natural sunlight into reliable perimeter protection and completely eliminate all expenses related to lighting electricity consumption, creating a secure environment for both private and commercial purposes. For complete autonomy and design, we also recommend our solar garden lights.
A: The LiFePO4 chemistry guarantees up to 2000 charge cycles while maintaining capacity in low winter temperatures (down to -20°C). A separate 5V or 6V solar panel allows the floodlight to be placed in the shade while the panel itself is installed 3–5 meters away at an optimal southern solar angle.
A: The controller constantly analyzes the voltage from the solar panel, acting as a photosensor. The moment the voltage drops (dusk sets in), the system automatically switches to battery discharge and activates the light diodes without external intervention.
A: For maximum photon capture in autumn and spring, the solar panel must be directed strictly to the south at an angle of 35 to 45 degrees. Such geometry prevents snow accumulation on the glass surface and allows capturing sun rays under low-trajectory conditions.
A: The PWM (Pulse Width Modulation) controller in collaboration with the remote control allows physically reducing the lumen output (down to 50% or 25%). Such dimming reduces power consumption (mA), guaranteeing continuous lighting for 12–14 hours even on short and cloudy winter days.
A: The IP67 standard with a rubber O-ring physically isolates the direct current (DC) copper connection from rain and icing. This prevents capillary corrosion in the contacts, halting resistance increase and ensuring that 100% of the generated current reaches the battery.