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Kseng
Kseng Aluminum Solar Carport Mounting System features a reinforced structural design with strategically positioned diagonal braces to create a stronger and more stable solar canopy.
Unlike simple beam-and-column carport structures, this system uses triangular bracing between the columns and main beams, helping distribute structural loads more effectively and improve overall frame rigidity.
Made primarily from 6005-T5 aluminum alloy, the system combines lightweight construction with an engineered bracing structure, providing a clean and streamlined solution for photovoltaic parking applications.
Strong structure. Lightweight material. Smarter solar parking.

The key structural feature of the Kseng solar carport is its reinforced diagonal bracing system.
The aluminum diagonal braces connect the columns and main beams to form stable triangular structural sections. This configuration helps reduce structural deformation and improves the rigidity of the carport frame under external loads.
Rather than relying solely on oversized horizontal beams, the structure uses geometry and triangulation to improve structural efficiency.
Triangular Structural Support
The diagonal members transform rectangular frame sections into triangular load-bearing units, creating a more rigid structural configuration.
Improved Frame Rigidity
The bracing system helps control lateral movement and structural deformation, contributing to a more stable overall canopy.
Efficient Load Distribution
Loads from the PV modules and roof structure are transferred through the beams, braces and columns toward the foundations.
Optimized Aluminum Structure
Because aluminum is lightweight compared with conventional steel, the reinforced bracing configuration provides an efficient way to increase structural rigidity without relying only on heavier profiles.

The structural concept behind the carport is simple but effective:
Beam + Column + Diagonal Brace = Triangular Structural Support
The diagonal braces create multiple triangular sections along the carport frame.
This helps the structure work as an integrated system rather than as a collection of independent beams and columns.
This structural configuration is particularly valuable for a large-area solar canopy where the frame needs to maintain stability while supporting a continuous PV roof.

The primary structure uses 6005-T5 aluminum alloy, providing a lightweight and corrosion-resistant solution for outdoor solar applications.
However, lightweight does not mean simply reducing material.
The design combines aluminum profiles with strategically positioned diagonal braces to achieve a balance between:
Structural rigidity
Material efficiency
Lightweight construction
Installation convenience
Long-term outdoor performance
The result is a solar carport structure that is light in material, strong in structural concept.
The reinforced diagonal bracing system is especially suitable for solar carports covering multiple parking spaces.
As the carport expands, multiple structural bays can be connected to create a continuous PV canopy.
The modular configuration allows the structure to be adapted to different:
Parking layouts
Span requirements
PV module sizes
Column spacing
Carport lengths
Project capacities
This makes the system suitable for both small parking canopies and larger commercial solar parking projects.
The primary structural components use 6005-T5 aluminum alloy, including:
Columns
Main beams
Cross beams
Diagonal braces
PV mounting rails
The aluminum extrusion structure provides a lightweight and modular solution for solar carport construction.
SUS304 stainless steel is used for selected fasteners and connection components.
The combination of aluminum structural profiles and stainless steel hardware provides a durable material solution for outdoor PV applications.
Triangular bracing improves the rigidity and stability of the overall frame.
The structural configuration creates a clear load path from the PV modules to the foundations.
6005-T5 aluminum reduces structural weight while supporting efficient transportation and installation.
Multiple structural bays can be combined to cover different parking layouts and project sizes.
Slim aluminum profiles and geometric bracing create a modern solar canopy.
Aluminum and SUS304 stainless steel components are selected for long-term outdoor solar applications.
Kseng Aluminum Solar Carport combines three functions into one structure:
Parking
Provides a covered area for vehicles.
Solar Generation
Creates an elevated platform for photovoltaic modules.
Structural Protection
The reinforced canopy structure provides a stable support system for the PV roof.
For commercial parking areas, the system can turn previously unused overhead space into a renewable energy asset.
Suitable for shopping centers, office buildings, hotels, business parks and commercial parking lots.
Ideal for industrial facilities with large parking areas and high on-site electricity demand.
The structure can be integrated with EV charging infrastructure to create a solar-powered parking and charging solution.
Suitable for homes, villas and residential communities requiring both vehicle protection and solar generation.
The modular multi-span configuration can be extended across larger parking areas for commercial and institutional projects.
The diagonal bracing system is not simply an aesthetic feature. It is an important part of the structural concept, helping create rigid triangular sections throughout the carport frame.
6005-T5 aluminum profiles provide a lightweight foundation for the structural system while maintaining a clean appearance.
The carport structure and PV mounting system are designed to work together as an integrated solar solution.
Standardized structural components allow the system to be configured for different parking layouts and project sizes.
As a solar mounting manufacturer, Kseng integrates structural engineering, aluminum profile technology and PV mounting expertise into a complete solar carport solution.
| Specification | Details |
|---|---|
| Product | Aluminum Solar Carport Mounting System |
| Structural Design | Reinforced Diagonal Bracing |
| Main Material | Aluminum 6005-T5 |
| Fastener Material | SUS304 Stainless Steel |
| Structure | Columns + Beams + Diagonal Braces + PV Rails |
| Foundation | Concrete Foundation |
| Standards | AS/NZS 1170, JISC8955-2017 and other applicable standards |
| Warranty | 10 Years |
| Service Life | 25 Years |
Final structural dimensions, profile selection, column spacing, foundation design and load requirements should be determined according to the specific project conditions and applicable local standards.
The key feature is its reinforced diagonal bracing structure. Diagonal aluminum braces connect the beams and columns to create triangular structural sections, improving the rigidity and stability of the overall carport frame.
Diagonal braces help stabilize the frame by creating triangular structural configurations. They can help control lateral movement and deformation while providing a more efficient structural solution.
No. Although the diagonal braces give the carport a distinctive geometric appearance, their primary purpose is structural. They form part of the load-bearing and stability system of the carport.
The primary structural components, including the diagonal braces, use 6005-T5 aluminum alloy.
Aluminum provides a lightweight and corrosion-resistant structural solution. The diagonal bracing system complements the lightweight aluminum profiles by improving frame rigidity through structural triangulation.
Yes. The modular structural design can be combined into multiple spans for larger commercial, industrial and institutional parking areas.
Yes. The system can be configured according to parking layout, PV module dimensions, column spacing, project size, site conditions and applicable structural requirements.
Yes. The solar carport can be integrated with EV charging infrastructure to create a combined solar generation, parking and charging solution.
The system is designed for installation on concrete foundations. Foundation dimensions and reinforcement should be determined based on site-specific structural and geotechnical requirements.
The provided product specification indicates a 10-year warranty and 25-year service life, subject to the applicable Kseng warranty terms and project conditions.
