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Our Guyed Mast Tower offers customizable height and wind speed options to meet specific needs. Constructed from high-quality materials like Q235B, Q355B, and Q420B, it is hot-dip galvanized to ISO1461/ASTM A123 standards for durability. Designed to TIA/EIA-222G/H codes, it has a 30-year lifespan, 6000-ton monthly production capacity, and uses nuts & bolts of grades 4.8, 6.8, and 8.8.
Type | Guyed mast tower |
Height | Customized |
Wind speed | Customized |
Certificate | ISO9001 |
Surface treatment | Hot dip galvanized |
Materials | Q235B(equivalent to S235JR/A36) & Q355B(equivalent to S355JR/GR50) & Q420B (equivalent to GR60) |
Galvanized standard | ISO1461/ASTM A123 |
Design code | TIA/EIA-222G/H |
Production capacity | 6000tons/month |
Nuts & Bolts | 4.8, 6.8, 8.8 |
Lifetime | 30 year |
Our Guyed Mast Tower offers customizable height and wind speed options to meet specific needs. Constructed from high-quality materials like Q235B, Q355B, and Q420B, it is hot-dip galvanized to ISO1461/ASTM A123 standards for durability. Designed to TIA/EIA-222G/H codes, it has a 30-year lifespan, 6000-ton monthly production capacity, and uses nuts & bolts of grades 4.8, 6.8, and 8.8.
Type | Guyed mast tower |
Height | Customized |
Wind speed | Customized |
Certificate | ISO9001 |
Surface treatment | Hot dip galvanized |
Materials | Q235B(equivalent to S235JR/A36) & Q355B(equivalent to S355JR/GR50) & Q420B (equivalent to GR60) |
Galvanized standard | ISO1461/ASTM A123 |
Design code | TIA/EIA-222G/H |
Production capacity | 6000tons/month |
Nuts & Bolts | 4.8, 6.8, 8.8 |
Lifetime | 30 year |
Stability and Safety
Our Antenna Telecommunication Steel Guyed Mast Lattice Tower features a reinforced base designed to provide added security and stability. This ensures that the tower remains firmly anchored to the ground, even in adverse weather conditions. The reinforced base is engineered to withstand significant loads, providing a reliable foundation for your telecommunication infrastructure.
Durability and Corrosion Resistance
We employ an advanced hot-dip galvanization process to ISO1461/ASTM A123 standards, ensuring that our towers are highly resistant to corrosion. This process provides a durable coating that protects the tower from environmental elements, extending its lifespan and reducing maintenance costs. The advanced galvanization process ensures that the tower remains in optimal condition throughout its 30-year lifespan.
Minimizing Environmental Impact
Our towers are designed with noise reduction features to minimize the impact on the surrounding environment. The lattice structure of the tower helps to reduce wind noise, ensuring that the tower operates quietly and efficiently. This makes our towers suitable for installation in areas where noise levels are a consideration, such as near residential neighborhoods or in urban environments.
Stability and Safety
Our Antenna Telecommunication Steel Guyed Mast Lattice Tower features a reinforced base designed to provide added security and stability. This ensures that the tower remains firmly anchored to the ground, even in adverse weather conditions. The reinforced base is engineered to withstand significant loads, providing a reliable foundation for your telecommunication infrastructure.
Durability and Corrosion Resistance
We employ an advanced hot-dip galvanization process to ISO1461/ASTM A123 standards, ensuring that our towers are highly resistant to corrosion. This process provides a durable coating that protects the tower from environmental elements, extending its lifespan and reducing maintenance costs. The advanced galvanization process ensures that the tower remains in optimal condition throughout its 30-year lifespan.
Minimizing Environmental Impact
Our towers are designed with noise reduction features to minimize the impact on the surrounding environment. The lattice structure of the tower helps to reduce wind noise, ensuring that the tower operates quietly and efficiently. This makes our towers suitable for installation in areas where noise levels are a consideration, such as near residential neighborhoods or in urban environments.
Guyed towers are particularly well-suited for deployment in remote mountainous areas, river valleys, and other challenging terrains, where traditional self-supporting towers may face limitations. By employing a stayed-cable system, these towers achieve enhanced stability and can reach heights of 50-200 meters—addressing coverage needs that would otherwise be difficult or costly to mee
The guyed towers cost-effective design enables expansive network coverage across wide areas, making them an optimal solution for 4G/5G signal transmission in geographically demanding environments. The combination of structural adaptability, high load-bearing capacity, and economic efficiency ensures reliable connectivity while minimizing infrastructure investment.
The innovative stayed-cable system of guyed communication towers is specifically engineered to withstand significant conductor tension (from attached transmission lines) and extreme wind loads (including typhoon/cyclone conditions). Through strategically positioned high-tensile steel cables anchored at multiple angles, the structure dynamically redistributes mechanical stresses, maintaining tower stability
Guyed towers are particularly well-suited for deployment in remote mountainous areas, river valleys, and other challenging terrains, where traditional self-supporting towers may face limitations. By employing a stayed-cable system, these towers achieve enhanced stability and can reach heights of 50-200 meters—addressing coverage needs that would otherwise be difficult or costly to mee
The guyed towers cost-effective design enables expansive network coverage across wide areas, making them an optimal solution for 4G/5G signal transmission in geographically demanding environments. The combination of structural adaptability, high load-bearing capacity, and economic efficiency ensures reliable connectivity while minimizing infrastructure investment.
The innovative stayed-cable system of guyed communication towers is specifically engineered to withstand significant conductor tension (from attached transmission lines) and extreme wind loads (including typhoon/cyclone conditions). Through strategically positioned high-tensile steel cables anchored at multiple angles, the structure dynamically redistributes mechanical stresses, maintaining tower stability
Q1: How does the reinforced base of the tower ensure stability?
A: The reinforced base is designed to withstand significant loads and remain firmly anchored to the ground, even in adverse weather conditions, ensuring stability and safety.
Q2: What is the benefit of the advanced galvanization process used on the towers?
A: The advanced hot-dip galvanization process to ISO1461/ASTM A123 standards provides a durable coating that protects the tower from corrosion, extending its lifespan and reducing maintenance costs.
Q3: How do the noise reduction features of the towers work?
A: The lattice structure of the tower helps to reduce wind noise, ensuring quiet and efficient operation. This makes the towers suitable for areas where noise levels are a consideration, such as near residential neighborhoods.
Q1: How does the reinforced base of the tower ensure stability?
A: The reinforced base is designed to withstand significant loads and remain firmly anchored to the ground, even in adverse weather conditions, ensuring stability and safety.
Q2: What is the benefit of the advanced galvanization process used on the towers?
A: The advanced hot-dip galvanization process to ISO1461/ASTM A123 standards provides a durable coating that protects the tower from corrosion, extending its lifespan and reducing maintenance costs.
Q3: How do the noise reduction features of the towers work?
A: The lattice structure of the tower helps to reduce wind noise, ensuring quiet and efficient operation. This makes the towers suitable for areas where noise levels are a consideration, such as near residential neighborhoods.