
A revolutionary new way to deploy solar power.
Utility-scale solar rollouts are still slowed down by construction-heavy deployment: thousands of individual parts, multiple trades, manual field assembly, and long site programmes. SOLAR WAVES changes that model with MegaWAVE — a factory-assembled, pre-wired 50 kW solar appliance manufactured in a controlled factory environment and designed for repeatable large-scale deployment. Each MegaWAVE is delivered to site, positioned on the selected support system, unfolded, connected, and switched on.
Delivered complete. Ready to deploy.
Each MegaWAVE is a complete 50 kW SOLAR WAVES appliance. The panels, aluminium frame, wiring routes, access paths, self-cleaning system, and transport geometry are designed as one integrated assembly. Instead of sending thousands of loose components to site, each MegaWAVE arrives factory-assembled, pre-wired, tested, and ready for rapid deployment. This turns solar deployment from field assembly into factory production — a better model for utility-scale rollouts where repeatability and delivery speed determine project economics.
See how it deploys →
Integrated before it ships.
SOLAR WAVES is not just a frame for solar panels. Each MegaWAVE is a factory-produced solar appliance with key operating systems integrated before delivery.
Cleaning, optional storage, wiring, structural connections, and transport preparation are handled inside the factory — reducing manual work on site and improving consistency before the MegaWAVE reaches the site.
SOLAR WAVES is designed for automated factory assembly. Precision aluminium extrusions slide together, panels interlock, and key mechanical and electrical interfaces are arranged for repeatable production instead of manual field assembly.
The MegaWAVE surface forms a watertight roof with integrated gutters, rainwater capture, filtration, storage, and automated spray cleaning. This reduces manual panel cleaning, water truck use, cleaning equipment, and long-term maintenance requirements.
Optional Battery-on-Board places energy storage inside the MegaWAVE structural framework instead of relying only on separate containerised battery systems. Storage can be integrated close to the panels, reducing cable distance, trenching, and supporting infrastructure.
Standardised above. Different footings below.
SOLAR WAVES is designed around a standard MegaWAVE appliance and multiple site-specific support systems.
The MegaWAVE remains standardised. What changes is the structure beneath it.
On open land, MegaWAVE can use a reusable ground support system. Over canals, it can use rail-mounted or cable-supported structures. On water, it can use floating supports. Over crops, it can be elevated. Over car parks, it can be installed above parking bays on an elevated support system. At EV charging sites, it can be integrated into a canopy support system with chargers, electrical equipment, lighting, signage, and optional storage.
This allows the same factory-produced MegaWAVE appliance to serve multiple deployment environments without redesigning the solar unit for every site — a major advantage for utility-scale developers planning repeatable rollouts across varied land, water, agricultural, parking, and infrastructure assets.
The MegaWAVE stays standardised.
The support system adapts to the site.
That reduces engineering complexity, shortens deployment time, and opens solar to locations where conventional systems are too slow, too labour-intensive, too land-hungry, or too difficult to install economically.

Over Canals
SOLAR WAVES turns canal corridors into dual-purpose energy infrastructure. Mounted above the water on rail-mounted or cable-supported systems, MegaWAVE generates clean power while helping reduce evaporation, preserve surrounding land, and maintain access for canal inspection and servicing.
The numbers behind one MegaWAVE.
Review the output, transport format, operating logic, and deployment characteristics of a single MegaWAVE appliance.

Talk to us about SOLAR WAVES.
Discuss site fit, pilot projects, deployment requirements, transport logistics, and support-system options with the SOLAR WAVES team.
