Solar Plate ®

Photovoltaic Structure
non-invasive

Solar Plate is a modular, non-invasive mounting system for photovoltaic ground systems designed to eliminate the need for drilling, drilling and invasive civil works. The system is based on a high density polyethylene (HDPE) structure that performs a double function: structural support of the system and ballast container.

The absence of excavations, concrete castings and mechanical fixings allows to transform the soil into a stable and reversible support surface, reducing the impact on the soil and simplifying the installation phases.

How it works

The structure is placed directly on the ground, without permanent drilling or anchoring

Stability is guaranteed through inert materials (jay or materials available on site), adaptable to site conditions

The system follows the natural inclination of the ground, reducing the leveling works

Allows efficient space management and optimization of the layout

Photovoltaic Structure
non-invasive

Solar Plate is a modular, non-invasive mounting system for photovoltaic ground systems designed to eliminate the need for drilling, drilling and invasive civil works.

The system is based on a high density polyethylene (HDPE) structure that performs a double function: structural support of the system and ballast container.

The absence of excavations, concrete castings and mechanical fixings allows to transform the soil into a stable and reversible support surface, reducing the impact on the soil and simplifying the installation phases.

How it works

Photovoltaic Structure
non-invasive

Solar Plate is a modular, non-invasive mounting system for photovoltaic ground systems designed to eliminate the need for drilling, drilling and invasive civil works. The system is based on a high density polyethylene (HDPE) structure that performs a double function: structural support of the system and ballast container.

The absence of excavations, concrete castings and mechanical fixings allows to transform the soil into a stable and reversible support surface, reducing the impact on the soil and simplifying the installation phases.
How it works

Photovoltaic Structure
non-invasive

Photovoltaic Structure
non-invasive

Solar Plate is a modular, non-invasive mounting system for photovoltaic ground systems designed to eliminate the need for drilling, drilling and invasive civil works. The system is based on a high density polyethylene (HDPE) structure that performs a double function: structural support of the system and ballast container.

The absence of excavations, concrete castings and mechanical fixings allows to transform the soil into a stable and reversible support surface, reducing the impact on the soil and simplifying the installation phases.
How it works

Learn more about the plate system

Learn more about
Plate system

Learn more about the plate system

Learn more about the plate system

Learn more about the plate system

Operational and economic advantages

The use of Lastro not only responds to geotechnical or environmental constraints, but represents a strategic choice for the overall optimization of the project.

Reduction of structural costs
The use of advanced technical polymers allows a competitive cost per kW compared to traditional metal carpentries.
Logistic efficiency
The low weight (15 kg empty) and vertical stackability reduce transport costs and simplify the management and handling on site.
Quick installation
Mounting requires no skilled labour or heavy machinery, with a significant reduction in installation times.
Operational continuity
The absence of civil works allows to operate even in weather conditions not ideal.
Reversibility of the installation
The system is completely removable, allowing soil restoration or future land enhancement.

Operational and economic advantages

The use of Lastro not only responds to geotechnical or environmental constraints, but represents a strategic choice for the overall optimization of the project.

Operational and economic advantages

The use of Lastro not only responds to geotechnical or environmental constraints, but represents a strategic choice for the overall optimization of the project.

Operational and economic advantages

The use of Lastro not only responds to geotechnical or environmental constraints, but represents a strategic choice for the overall optimization of the project.

Operational and economic advantages

The use of Lastro not only responds to geotechnical or environmental constraints, but represents a strategic choice for the overall optimization of the project.

Reduction of structural costs

The use of advanced technical polymers allows a competitive cost per kW compared to traditional metal carpentries.

Logistic efficiency

The low weight (15 kg empty) and vertical stackability reduce transport costs and simplify the management and handling on site.

Quick installation

Mounting requires no skilled labour or heavy machinery, with a significant reduction in installation times.

Operational continuity

The absence of civil works allows to operate even in weather conditions not ideal.

Reversibility of the installation

The system is completely removable, allowing soil restoration or future land enhancement.

Reduction of structural costs

The use of advanced technical polymers allows a competitive cost per kW compared to traditional metal carpentries.

Logistic efficiency

The low weight (15 kg empty) and vertical stackability reduce transport costs and simplify the management and handling on site.

Quick installation

Mounting requires no skilled labour or heavy machinery, with a significant reduction in installation times.

Operational continuity

The absence of civil works allows to operate even in weather conditions not ideal.

Reversibility of the installation

The system is completely removable, allowing soil restoration or future land enhancement.

Reduction of structural costs

The use of advanced technical polymers allows a competitive cost per kW compared to traditional metal carpentries.

Logistic efficiency

The low weight (15 kg empty) and vertical stackability reduce transport costs and simplify the management and handling on site.

Quick installation

Mounting requires no skilled labour or heavy machinery, with a significant reduction in installation times.

Operational continuity

The absence of civil works allows to operate even in weather conditions not ideal.

Reversibility of the installation

The system is completely removable, allowing soil restoration or future land enhancement.

Reduction of structural costs

The use of advanced technical polymers allows a competitive cost per kW compared to traditional metal carpentries.

Logistic efficiency

The low weight (15 kg empty) and vertical stackability reduce transport costs and simplify the management and handling on site.

Quick installation

Mounting requires no skilled labour or heavy machinery, with a significant reduction in installation times.

Operational continuity

The absence of civil works allows to operate even in weather conditions not ideal.

Reversibility of the installation

The system is completely removable, allowing soil restoration or future land enhancement.

Technical characteristics

Plate is designed to ensure structural stability and durability even in critical environmental conditions.

Material

High density polyethylene (HDPE)


Weight

Solar plate has a weight of
15 kg (empty)

Corrosion resistance

Guaranteed up to 35 years, even in highly corrosive environments (Class C5)

Production guarantee

Guaranteed 12 years against defects
Of manufacture

Wind holding

Tested in wind tunnel up to 50 m/s (180 km/h)

Regulatory compliance

Compliant with the main international technical regulations on structural safety

Technical characteristics

Plate is designed to ensure structural stability and durability even in extreme environmental conditions

Download the technical documentation of Lastro

Includes assembly specifications, wind resistance certifications and international study cases.

Download Documentation
Slab technique
Download Documentation
Slab technique
Download Documentation
Slab technique
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