| Battery: | LiFePO4 Battery | Warranty: | 2 Years |
|---|---|---|---|
| Waterproof: | IP65 | Lifespan: | 50000h |
| Charging Time: | 4-6 Hours | Working Time: | 12-16 Hrs |
| Highlight: | IP66 LED Solar Garden Light,Outdoor LED Solar Garden Light,Yard led solar street lights outdoor |
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Engineered with pressure-cast aluminum alloy, this solar-powered garden luminaire boasts exceptional structural integrity and impact resistance. The housing undergoes sophisticated electrostatic painting that creates a durable shield against oxidative damage and corrosive elements. This multi-layer finishing process ensures the fixture maintains its visual appeal while providing reliable protection from moisture, salt spray, and UV degradation.
The metallurgical composition of the aluminum framework offers superior heat dissipation characteristics, effectively regulating internal temperature during operation. The substantial weight distribution and reinforced base design provide excellent ground stability, preventing accidental displacement during severe weather conditions while ensuring consistent performance across seasonal transitions.
| Component Specification | Performance Metrics |
|---|---|
| Structural Framework | Pressure-Cast Aluminum Alloy |
| Surface Protection | Electrostatic Anti-Corrosion Coating |
| Photovoltaic Unit | High-Efficiency Monocrystalline Array |
| Energy Storage | Lithium Iron Phosphate (LiFePO4) Cell |
| Optical Assembly | Integrated Condensing Lens Array |
| Environmental Seal | IP66 Protection Grade |
| Operational Duration | 14-16 Hours Continuous |
| Weather Resilience | 72+ Hours Rainy Weather Operation |
| Control Intelligence | Photocell Auto-Detection System |
| Energy Harvesting | Smart Photovoltaic Conversion |
The illumination system incorporates an innovative condenser lens matrix that significantly enhances photometric performance through advanced light management. This unified optical assembly employs micro-prismatic structures that concentrate and redirect luminous flux, achieving 50% greater radiant intensity than conventional lighting systems.
The precision-engineered optical elements create a wide illumination pattern exceeding 160 degrees while maintaining exceptional uniformity across the entire beam spread. Manufactured from optical-grade acrylic with ultraviolet inhibitors, the lens assembly guarantees consistent light transmission and long-term clarity. This sophisticated optical engineering delivers expansive area coverage with eliminated hot-spots, making it ideal for security lighting, landscape illumination, and pathway lighting applications.
The energy system incorporates a cutting-edge Lithium Iron Phosphate (LiFePO4) battery renowned for its exceptional cycle life and operational safety. This advanced chemistry demonstrates superior thermal stability and depth-of-discharge tolerance, delivering consistent performance through 2000+ charge cycles while maintaining 80% original capacity.
The battery management system implements smart charging algorithms with temperature compensation and voltage regulation, ensuring optimal charging efficiency and extended service life. With its high energy density and minimal self-discharge rate, the power system provides reliable illumination through extended periods of limited sunlight, maintaining consistent brightness for more than three consecutive cloudy days without requiring manual intervention or maintenance.
The energy harvesting system utilizes premium monocrystalline photovoltaic technology that achieves exceptional power conversion efficiency through advanced cell architecture. These high-purity silicon cells feature passivated emitter and rear contact (PERC) technology that minimizes electron recombination, resulting in superior low-light performance and rapid charging capability.
The anti-reflective surface treatment and optimized grid-line pattern maximize photon capture while reducing energy loss, ensuring effective charging during dawn, dusk, and overcast conditions. The intelligent charge controller automatically adjusts charging parameters based on environmental conditions, while the precision photosensor enables fully autonomous operation – seamlessly transitioning between energy collection and illumination modes without requiring user intervention.
This integrated energy management system guarantees year-round reliability while eliminating electricity costs and complex installation requirements.