Solar Garden Lights

  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
  •  
Order
Price
-
Discounts
Brand
Do filter

Solar garden lights are equipped with monocrystalline panels and LiFePO4 lithium batteries, providing 100% autonomous pedestrian zone illumination without electrical grid costs.


In expansive gardens, distant park alleys, and along the fences of private houses, it is often physically impossible or financially unjustified to construct complex underground electrical cable networks. Therefore, reliable autonomous solutions are required for the base illumination of the territory. The cheap solar bollards with weak batteries found on the market can only operate during sunny summer days and rapidly deteriorate under the influence of winter frost. Our autonomous solar garden lights utilize top-tier VIDEX engineering. They integrate highly sensitive monocrystalline solar photocells that effectively absorb light even on cloudy and heavily overcast days. The harvested energy is directed to industrial-grade LiFePO4 lithium iron phosphate batteries, which can endure up to 2000 deep discharge cycles and perform excellently in sub-zero temperatures.


Solar energy and autonomy technical specifications:

  • Monocrystalline energy conversion: High-efficiency panels charge the battery as rapidly as possible, ensuring full illumination for hours after sunset without requiring the complete presence of direct sunlight throughout the day.
  • Durable LiFePO4 batteries: The latest generation batteries are thermally stable and protected from swelling, retaining the vast majority of their electrical capacity even during harsh winter periods and severe night frosts.
  • Automatic twilight sensor: The intelligent control board constantly measures ambient light (Lux) levels and automatically activates the LED modules as soon as darkness falls, completely eliminating the need for manual intervention in device operation.

Establish an elegant and highly functional garden infrastructure that operates entirely independent of the power grid, providing an ecological and reliable solution that will significantly save your financial resources in the long term. For standard base illumination, you may also utilize outdoor and yard LED floodlights without sensor.



Q: Why are monocrystalline solar panels technologically superior to polycrystalline ones in outdoor solar lamps?

A: Monocrystalline silicon panels reach photovoltaic efficiency up to 22%, capable of generating current even on cloudy days. In the Baltic region, where solar intensity drops significantly in autumn and winter, a high conversion rate allows the battery to accumulate sufficient charge for the night cycle with a smaller panel surface area.


Q: What battery technologies ensure the operation of solar garden lamps at sub-zero temperatures?

A: LiFePO4 (lithium iron phosphate) cells, which maintain electrochemical stability, are becoming the standard in solar luminaires. Unlike older generation Ni-MH batteries, LiFePO4 cells have a low self-discharge rate and can provide over 2000 charging cycles even at operating temperatures down to -15°C.


Q: How do VIDEX solar garden lamps manage energy consumption during nighttime hours?

A: The microprocessor integrated into solar lamps uses an adaptive lighting algorithm with a built-in twilight sensor. The system automatically activates 100% brightness upon motion detection, but in a stationary state reduces luminous flux to a 15-20% background level, strictly conserving energy until dawn.


Q: What IP protection class is required for solar path lamps that are in direct contact with ground moisture?

A: Solar lamps installed at ground level require at least an IP65 protection class and a durable ABS plastic or aluminum housing. This prevents groundwater, meltwater, and lawn sprinkler splashes from penetrating the battery compartment and circuit board.


Q: How to properly position solar garden luminaires to ensure maximum photovoltaic charge?

A: The luminaire's photovoltaic element should face south without midday shading from trees, buildings, or fences. Even partial shade coverage reduces photon capture density by 20%, which can extend the spotlight or bollard battery charging time by 3-4 hours.