Power Your Farm
Without Blocking the Sun

Collsolar agrivoltaic grid modules let crops thrive beneath high-efficiency monocrystalline panels — curved, transparent, and purpose-built for the real conditions of working agricultural land.

100 W
Rated Power Per Module
36 V
System Output Voltage
625 MWh
Per Hectare Annually
10+
Year Service Lifespan
Collsolar agrivoltaic grid module — high resolution product view

A growing global market
ready for better technology

The global agrivoltaics market is projected to reach approximately $5.5 billion by 2026, with installed capacity of 18–20 GW. Europe alone is accelerating toward 6–8 GW of agrivoltaic installations, driven by regulatory frameworks that mandate dual-use land strategies.

$5.5B
Global Market, 2026

Agrivoltaics market size, growing at 10–12% CAGR through 2030 per consensus estimates. Broader-scope analyses project $57–182B by early 2030s.

18–20 GW
Installed Capacity

Worldwide agrivoltaic capacity in 2026. Europe accounts for approximately 6–8 GW across France, Italy, and Germany.

69%
Asia-Pacific Share

Asia-Pacific dominates global agrivoltaics revenue. Japan has 6,100+ approved sites (~4–5 GW), China has 500+ commercial-scale projects (3–4 GW).

6–8 GW
European Pipeline

France (~2–3 GW under APER Law mandate), Italy (~1.5–2 GW with PNRR grants), Germany (DIN SPEC 91434 standard with EEG tender bonuses).

Key drivers: Rising demand for dual-use land strategies across the EU, government renewable-energy incentives (France's APER Law Art. 54, Italy's PNRR, Germany's EEG 2023), climate-resilient farming imperatives, and continued decline in solar module costs. The intersection of agricultural policy and renewable energy mandates creates a structural tailwind for grille-pattern agrivoltaic modules that do not compromise crop yield.

Solar and agriculture,
finally working together

Traditional solar panels force a trade-off: energy or crops. Collsolar's patented grille-pattern photovoltaic design changes the equation. Light passes through the gaps between monocrystalline silicon strips, reaching the plants below while the panel surface generates electricity above.

Each 100 W module uses high-efficiency monocrystalline silicon cells. The grid-lattice structure achieves optimal light transmission — crops receive the full spectrum they need for photosynthesis, while the module captures surplus irradiance for power generation. This is genuine dual-use land: no compromise on crop yield, no sacrifice on energy output.

Light Transmission

High Light Transmission

Patented grille-pattern architecture allows sunlight to reach crops below. Plants receive the spectrum needed for photosynthesis while panels generate electricity from the remaining irradiance.

Cell Technology

Monocrystalline Silicon Cells

Premium single-crystal silicon delivers superior conversion efficiency and stable output across the full outdoor temperature range — from freezing winters to peak summer heat.

Structural Design

Curved Arc Surface

Aerodynamic curvature deflects wind rather than resisting it, and naturally sheds rain and debris. Reduced structural stress means longer service life with less maintenance.

Materials

Eco-Friendly PE Frame

UV-stabilized, high-temperature-resistant PET frame and housing. Fully recyclable, lightweight, and compliant with EU environmental directives for agricultural installations.

110W grille module application scenarios — vineyard, greenhouse, and open-field deployment configurations

100 W Grille Photovoltaic Module

Engineered for 36 V system output with monocrystalline silicon cells, UV-stable PET frame, and curved arc grille-pattern surface design. Validated for sustained outdoor agricultural use under IEC 61215 and IEC 61730 standards.

Collsolar 100W grille photovoltaic module — complete technical parameter specifications

All parameters measured under Standard Test Conditions (STC): irradiance 1000 W/m², cell temperature 25°C, AM 1.5 spectrum.

Collsolar agrivoltaic grid module — high resolution product view
Exploded view — component layer structure
Collsolar PET bracket — single-mold forming process design
PET bracket — single-mold forming process, lightweight and durable

The module architecture features a layered design with optimized internal circuitry for stable power output. The PET bracket is manufactured through a single-mold forming process — reducing weight, assembly steps, and labor cost while improving material consistency and structural integrity. Arc-shaped photovoltaic strips are arranged in a grille lattice that balances light transmission and power generation.

One hectare,
5,000 modules, 625 MWh/year

In a typical one-hectare vineyard deployment in southern France, 5,000 Collsolar 100 W grille modules connect through 25 three-phase 20 kWp / 1100 V string inverters. The DC side uses 1.5 mm² XLPE-insulated pure copper cabling rated for 1,500 V, with 4G data loggers enabling real-time monitoring via mobile app or desktop interface.

Each module produces approximately 125 kWh annually under southern French irradiance conditions. Across 5,000 modules, total annual generation reaches 625,000 kWh — sufficient to power irrigation pumps, grape presses, cooling systems, and bottling lines, transforming the vineyard into a net energy producer.

Modules per Hectare 5,000 units
Inverters 25 × 20 kWp three-phase (1100 V)
Annual Output 625,000 kWh
DC Cabling 12,000 m — XLPE 1.5 mm² copper (1500 V rated)
Data Monitoring 4G data logger with mobile & web dashboard
One hectare grid-connection system diagram
Grid-connection system diagram — DC combining & three-phase inverter layout

Purpose-built for working agricultural land

Collsolar modules integrate seamlessly into existing agricultural operations — without disrupting workflows, crop cycles, or land-use patterns. Lightweight and structurally efficient, they adapt to a wide range of farming environments.

Vineyards and wine estates with agrivoltaic modules

Vineyards & Wine Estates

Partial shading benefits grape quality in hot Mediterranean climates — reducing heat stress while generating power for presses, fermentation cooling, and bottling lines. Southern France, Italy, and Spain represent prime deployment regions.

Broad-acre farms and cropland with solar panels

Broad-Acre Farms & Cropland

Scale across hectares of wheat, corn, and vegetable fields. Grille modules allow full tractor access between rows, maintain normal planting patterns, and provide energy for irrigation pumps and processing facilities.

Horticulture and orchard operations with solar panels

Horticulture & Orchards

Protect delicate fruit trees and specialty crops from excessive solar exposure while running irrigation, climate control, and cold storage entirely on self-generated renewable power.

>