Solar street lighting
Pole-mounted modules charging a battery through a controller, sized around luminaire wattage, run hours and the autonomy the tender asks for. The panel has to fit the pole bracket as well as the load.
Eighteen applications our modules are specified for, and the line that suits each one. If your job is not on this list, tell us the load and the surface and we will tell you honestly whether we are the right supplier.

Pole-mounted modules charging a battery through a controller, sized around luminaire wattage, run hours and the autonomy the tender asks for. The panel has to fit the pole bracket as well as the load.
Small kits built around a 12V battery, a few lights and a mobile charging point. Low wattage, high volume, and the module has to survive being handled by everyone in the supply chain.
Energiser fencing for farms and estates. Small modules, remote locations, no grid and no maintenance visits — so the module has to keep the battery topped up through the monsoon.
Surveillance poles and telecom sites that must not go dark. Sized around 24-hour load and several days of autonomy rather than around peak generation.
Standalone systems where there is no grid to connect to. Usually programme-funded, always documentation-heavy, and the modules have to be identical across hundreds of sites.
On-grid, off-grid or hybrid arrays on homes. Higher-wattage modules reduce the number of clamps, rails and cable runs, which is where rooftop labour cost actually sits.
Offices, factory sheds and warehouses running the load in daylight and exporting the surplus. Cost per watt installed decides the bid.
Grid-connected with a battery behind it. The array offsets the bill, the battery carries essential loads through a cut, and surplus can still be exported.
Standalone systems sized around daily load and days of autonomy, for sites with no grid or a grid that cannot be relied on.
Arrays sized around head, flow and the hours the pump has to run, not around a headline kW figure. Dust, heat and long cable runs all come into the sizing.
Schools, hospitals, campuses and government buildings, where documentation and warranty accountability carry as much weight as price.
Supply against a technical schedule, with datasheets, test reports and certificates prepared in-house for bid submission.
Curved fibreglass roofs that will not take a framed glass module, and a weight budget that will not take the glass either.
Cabin tops and decks, where the module has to follow a curve, stay light and stop being a trip hazard.
Architectural and industrial curved surfaces where the array has to sit on the curve, not on a frame built above it.
Profiled sheet roofs that cannot carry the point loads of a mounted glass array, or where penetrations are not permitted.
Kits that get packed, carried and unpacked repeatedly. Built to the dimensions of the case, not the other way round.
Structures with a load limit that a framed glass array would exceed. Frameless and lightweight is the only way the array happens at all.
Send the daily load, the surface and the site. Array, battery and controller sizing gets worked out with you — usually while your customer is still on the phone.
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