| Model No. | Watts | LED | Lumen Output | Solar Panel | Battery Type | Battery Capacity | Charging Time | Discharging Time | Controller | IP Grade |
|---|---|---|---|---|---|---|---|---|---|---|
| MFSL-S5F-BX020 | 20W | LED | 2000lm | 36W | LiFePO4 | 154 WH | 10 hours | 3 days | PWM | IP66 |
| MFSL-S5F-BX030 | 30W | LED | 3000lm | 36W | LiFePO4 | 230 WH | 10 hours | 3 days | PWM | IP66 |
| MFSL-S5F-BX040 | 40W | LED | 4000lm | 45W | LiFePO4 | 230 WH | 10 hours | 3 days | PWM | IP66 |
| MFSL-S5F-BX050 | 50W | LED | 5000lm | 60W | LiFePO4 | 307 WH | 10 hours | 3 days | PWM | IP66 |
| MFSL-S5F-BX060 | 60W | LED | 6000lm | 65W | LiFePO4 | 384 WH | 10 hours | 3 days | PWM | IP66 |
| MFSL-S5F-BX070 | 70W | LED | 7000lm | 90W | LiFePO4 | 461 WH | 10 hours | 3 days | PWM | IP66 |
| MFSL-S5F-BX080 | 80W | LED | 8000lm | 98W | LiFePO4 | 538 WH | 10 hours | 3 days | MPPT | IP66 |
| MFSL-S5F-BX090 | 90W | LED | 9000lm | 107W | LiFePO4 | 614 WH | 10 hours | 3 days | MPPT | IP66 |
| MFSL-S5F-BX0100 | 100W | LED | 10000lm | 120W | LiFePO4 | 614 WH | 10 hours | 3 days | MPPT | IP66 |
| MFSL-S5F-BX0110 | 110W | LED | 11000lm | 133W | LiFePO4 | 691 WH | 10 hours | 3 days | MPPT | IP66 |
| MFSL-S5F-BX0120 | 120W | LED | 12000lm | 160W | LiFePO4 | 768 WH | 10 hours | 3 days | MPPT | IP66 |
Solar energy is an inexhaustible, clean, pollution-free, and renewable green energy source. Solar power generation possesses unparalleled advantages over conventional energy sources in cleanliness, high safety, relative universality, resource adequacy, long lifespan, and maintenance-free operation. Photovoltaic energy is recognized as one of the most critical energy sources in the 21st century.
Solar street lights do not require cable laying, AC power supply, or ongoing electricity bills. Utilizing DC power supply and intelligent control, they offer excellent stability, long service life, high luminous efficiency, easy installation, advanced safety performance, energy conservation, environmental protection, and economic practicality. They are widely applied in urban main and secondary roads, residential areas, factories, tourist attractions, parking lots, and other public locations.
During the day, under the control of an intelligent controller, solar panels absorb sunlight and convert it into electrical energy. The panels charge the storage battery pack. At night, the battery pack discharges to provide power to the high-efficiency LED light source. The DC controller prevents damage to the battery pack due to overcharging or over-discharging, and includes features such as light control, time control, temperature compensation, lightning protection, and reverse polarity protection.
The solar street light system can ensure normal operation in cloudy and rainy weather for more than 15 days. The standard configuration consists of the LED light source (including drivers), solar panel, battery pack (including battery insulation box), intelligent controller, pole structures (including bases), and connecting wires.
Inclination Design: Optimized tilt angles are calculated depending on the geographical location to maximize solar radiation absorption over the year.
Wind Resistant Design: The structure is split into two wind-resistant design parts: the battery module bracket and the light pole. Tested upwind pressure limits allow components to withstand up to 2700Pa, keeping the module secure during high wind speeds (equivalent to a Category 10 typhoon, 27m/s) without damage. The structural connection is secured with heavy-duty bolt poles.
Advanced Surface Treatment: Utilizes electrostatic powder coating (FP professional architectural coatings) on a hot-dip galvanized base, matching strict AAMA2605 specifications. This ensures high self-cleaning, corrosion resistance, and weatherproofing in harsh climates.
Charging Trickle Protection: Once the battery reaches peak voltage, the controller automatically reduces the charging voltage by 1V to enter a trickle charge state. This prevents water loss, preserves capacity, and extends battery cycle life.
In solar power systems, battery performance directly impacts cycle life and operating costs. The energy storage gel battery utilizes optimized positive/negative electrode alloy formulations and active material ratios, rendering it highly suitable for cyclical charging and discharging. The expected normal service life spans from five to ten years.
Environmental Conditions for Use:
1. Altitude: ≤ 5000M