Model | Charging time | Lighting time | Solar panel | Lamp Body material | Waterproof rating |
T-GL0409 | 6hours:80% battery charge 8hours:90% battery charge | 10hours | Monocrystalline silicon 60*60mm 2V 0.3W
| ABS | IP65 |
T-S5306 | 6-8hours | 8-10hours | 5.5V 2W SIZE: 102*102mm | IP68 |
T-GL0403-V2 | 6-8hours | 8hours | Polycrystalline silicon Abrasive PET 83.8*83.8mm 5.5V 1W | ABS+PC | IP65 |
T-G0606-V2 | 6-8hours | 6-12hours | 5.5V 1.2W | ABS Plastic | IP44 |
Advantages of Solar column lights over Traditional Electrical Appliances
In terms of energy supply, Solar column lights rely on solar power generation, eliminating the need for external power grids and fully utilizing renewable energy. Traditional mains-powered post lights, however, depend on grid electricity, requiring connection to 220V mains and consuming non-renewable electrical energy. Regarding usage costs, solar post lights have a slightly higher initial purchase cost but incur no long-term electricity bills, leading to low usage costs. Traditional post lights, meanwhile, require continuous electricity bill payments and may involve initial electricity access fees if wiring construction is needed, resulting in higher long-term costs.
In terms of installation convenience, Solar column lights need no buried wiring or electrical connections—they can be directly fixed on posts or outdoor scenes, especially suitable for areas without grid coverage like courtyards and suburbs. Traditional post lights, however, require professional electricians for wiring and connection to home circuits, involving complex installation processes. In off-grid areas, additional cable laying incurs high costs. For maintenance, solar post lights only need regular cleaning of solar panels and battery replacement every 3-5 years, with no risk of circuit failures and low maintenance costs. Traditional post lights require regular inspection of circuit connections to avoid short circuits and leakage, and aging wires easily cause failures, leading to complex repairs.
In environmental friendliness, Solar column lights produce zero carbon emissions, consume no fossil fuels, and generate no electromagnetic radiation. If traditional post lights rely on thermal power generation, they emit carbon dioxide, exacerbating environmental pollution, and circuit operation may release electromagnetic radiation. In terms of safety, solar post lights use low-voltage DC power (typically below 12V), posing no risk of electric shock and suitable for outdoor wet environments. Traditional post lights use high-voltage AC power, carrying risks of leakage and short circuits that may cause fires, especially in humid conditions.
In flexibility, Solar column lights can be moved flexibly to adapt to temporary scenarios like courtyard renovations or camping. Traditional post lights are fixed in position, requiring rewiring for any changes and unable to meet temporary or mobile needs. For applicable scenarios, solar post lights suit lighting in courtyards, rural roads, and off-grid areas, while traditional post lights are limited to fixed scenes with urban grid coverage. Additionally, solar post lights operate independently of the grid, functioning as emergency lighting during power outages, whereas traditional post lights cannot work without grid power.
From a technological development perspective, solar post lights have continuously improved in battery life and stability with advancements in solar panel efficiency and lithium battery technology, leading to growing market penetration. Traditional post lights, as a conventional technology, have limited innovation space and are gradually being replaced by new energy products.

Model | Charging time | Lighting time | Solar panel | Lamp Body material | Waterproof rating |
T-GL0409 | 6hours:80% battery charge 8hours:90% battery charge | 10hours | Monocrystalline silicon 60*60mm 2V 0.3W
| ABS | IP65 |
T-S5306 | 6-8hours | 8-10hours | 5.5V 2W SIZE: 102*102mm | IP68 |
T-GL0403-V2 | 6-8hours | 8hours | Polycrystalline silicon Abrasive PET 83.8*83.8mm 5.5V 1W | ABS+PC | IP65 |
T-G0606-V2 | 6-8hours | 6-12hours | 5.5V 1.2W | ABS Plastic | IP44 |
Advantages of Solar column lights over Traditional Electrical Appliances
In terms of energy supply, Solar column lights rely on solar power generation, eliminating the need for external power grids and fully utilizing renewable energy. Traditional mains-powered post lights, however, depend on grid electricity, requiring connection to 220V mains and consuming non-renewable electrical energy. Regarding usage costs, solar post lights have a slightly higher initial purchase cost but incur no long-term electricity bills, leading to low usage costs. Traditional post lights, meanwhile, require continuous electricity bill payments and may involve initial electricity access fees if wiring construction is needed, resulting in higher long-term costs.
In terms of installation convenience, Solar column lights need no buried wiring or electrical connections—they can be directly fixed on posts or outdoor scenes, especially suitable for areas without grid coverage like courtyards and suburbs. Traditional post lights, however, require professional electricians for wiring and connection to home circuits, involving complex installation processes. In off-grid areas, additional cable laying incurs high costs. For maintenance, solar post lights only need regular cleaning of solar panels and battery replacement every 3-5 years, with no risk of circuit failures and low maintenance costs. Traditional post lights require regular inspection of circuit connections to avoid short circuits and leakage, and aging wires easily cause failures, leading to complex repairs.
In environmental friendliness, Solar column lights produce zero carbon emissions, consume no fossil fuels, and generate no electromagnetic radiation. If traditional post lights rely on thermal power generation, they emit carbon dioxide, exacerbating environmental pollution, and circuit operation may release electromagnetic radiation. In terms of safety, solar post lights use low-voltage DC power (typically below 12V), posing no risk of electric shock and suitable for outdoor wet environments. Traditional post lights use high-voltage AC power, carrying risks of leakage and short circuits that may cause fires, especially in humid conditions.
In flexibility, Solar column lights can be moved flexibly to adapt to temporary scenarios like courtyard renovations or camping. Traditional post lights are fixed in position, requiring rewiring for any changes and unable to meet temporary or mobile needs. For applicable scenarios, solar post lights suit lighting in courtyards, rural roads, and off-grid areas, while traditional post lights are limited to fixed scenes with urban grid coverage. Additionally, solar post lights operate independently of the grid, functioning as emergency lighting during power outages, whereas traditional post lights cannot work without grid power.
From a technological development perspective, solar post lights have continuously improved in battery life and stability with advancements in solar panel efficiency and lithium battery technology, leading to growing market penetration. Traditional post lights, as a conventional technology, have limited innovation space and are gradually being replaced by new energy products.
