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Solar roof mounting system has become a solar panel mounting system that both suitable for pitched roof and flat roof. with unique innovative aluminum alloy rail. Z type clamp and rail connection technology. which enable fast, convenient to install solar panels and no need to process on site..in order to fit different roofs. we specailly designed different hooks. make orbit and roof installation more simple and fast. such as tile watts roof can choose stainless steel hook, iron tile roof can choose L-horn,flat roof can choose inclined support feet, etc

solar roof mounting systems Features:


Easy installation

Diversified Application

High accuracy

Good compatibility

Choice Quality

Maximum lifespan

Solar stent can parallel to roof,and also can be a certain angle withroof.

solar roof mounting systems Technical parameters

Installation Site: Pitched roof/Flat roof

Roof Cladding: Suitable for most types of cladding

Installation Angle: up to 60 degreesBuilding height: Up to 20 m

Wind Load: 40m/sSnow Load: 1.4KN/m2PV

Module: Framed

Module  Orientation: Horizontal or vertical

Module with: AnyStandard: AS/NZS 1170 and other international standards

Support Rail: Extrude aluminum

Color: Natural

Warranty: 10 years

Solar mount systems has developed generally used for open ground. Professional Design mountings make the installation easy and fast. solar mount systems has an excellent performance among the same products in solar panels mounting business, with reasonable design, high anti-wind, adjustable angles, using minimal material, lowest cost and easy installation.


Yes, that's right, almost all home roofs can be installed with solar energy systems, such as: flat roofs, sloping roofs, various tiles, and various color steel plates. Most of the photovoltaic modules on the market now have 60 cells, and the weight is about 20kg/block, so the general roof will not have much problem in terms of load-bearing. So what should you pay attention to before installing a photovoltaic power generation system on the roof?


Yes, that's right, almost all home roofs can be installed with solar mount systems, such as: flat roofs, sloping roofs, various tiles, and various color steel plates. Most of the photovoltaic modules on the market now have 60 cells, and the weight is about 20kg/block, so the general roof will not have much problem in terms of load-bearing. So what should you pay attention to before installing a photovoltaic power generation system on the roof?


If you plan to install the roof of home photovoltaic power generation, you must have your own property rights, such as the roof of your hometown or your own villa. If the house is rented, it is necessary to sign an agreement with the landlord to build a photovoltaic system.


The global energy crisis has promoted the rapid development of the new energy industry, and solar energy is the most important basic energy among all kinds of renewable energy. Therefore, as a solar power generation technology that converts solar radiation energy into electric energy, the photovoltaic industry is even more developed. Fast; in the old concept, the photovoltaic industry mainly includes the production chain of solar modules, and the production chain of electrical control components such as controllers and inverters.

The application advantages of solar mount systems in solar panel support go far beyond simple production and installation. The solar panels can also move flexibly according to the sun's rays and seasons. Just like when it was just installed, the slope of each solar panel can be adjusted by moving the fasteners, adjusting the slope to suit different angles of light, and tightening again to make the solar panel exactly fixed in the designated position.


In order to obtain the maximum power output of the entire photovoltaic power generation system, combined with the geography, climate and solar resource conditions of the construction site, the solar modules are fixed in a certain orientation, arrangement and spacing. The supporting structure is usually a steel structure and an aluminum alloy structure. Or a mix of both.


Challenges faced by solar photovoltaic support design, one of the most important features of the component assembly parts of any type of solar photovoltaic support design is weather resistance. The structure must be strong and reliable to withstand such external effects as atmospheric erosion, wind loads and other external effects. Safe and reliable installation, maximum use effect with minimum installation cost, almost maintenance-free, reliable maintenance, these are all important factors to be considered when making a choice. High wear resistant materials are used in the solution to resist wind snow loads and other corrosive effects. Comprehensive use of aluminum alloy anodizing, ultra-thick hot-dip galvanizing, stainless steel, anti-UV aging and other technical processes to ensure the service life of solar brackets and solar tracking.


The maximum wind resistance of the solar bracket is 216 km/h, and the maximum wind resistance of the solar tracking bracket is 150 km/h (greater than a typhoon of level 13). Compared with the traditional fixed bracket (the number of solar panels is the same), the new solar module bracket system represented by the solar single-axis tracking bracket and the solar dual-axis tracking bracket can greatly improve the power generation of the solar module. The power generation of the single-axis tracking bracket assembly can be increased by 25%, and the solar dual-axis bracket can even be increased by 40% to 60%.


Our support structures are strong and reliable to withstand such external effects as atmospheric erosion, wind loads and other external effects. It should have safe and reliable installation, be able to achieve maximum use effect with minimum installation cost, be almost maintenance-free, and have reliable maintenance. A good solar mount systems needs to consider the following factors:

(1) The strength of the material must withstand climatic factors for at least thirty years.

(2) It will not be affected in extreme bad weather such as snowstorm or typhoon.

(3) The bracket needs to be designed with groove rails to place wires and prevent electric shock.

(4) The electrical equipment should be installed in a non-environmental exposure and convenient for regular maintenance.

(5) It must be easy to install.

(6) The cost should be reasonable.

A high-quality bracket system must use computer simulation software to simulate extreme weather conditions to verify its design, and undergo rigorous mechanical properties testing, such as tensile strength and yield strength, to ensure product durability.

We can do all of the above.

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