Scenario-based solution
The advancement of science and technology is limitless.
Compared to traditional antennas, dome-shaped lens antennas offer longer effective coverage distances and better signal quality within the coverage area, effectively reducing base station investment while providing high-quality voice and data services.
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Construction Plan: Expand 4.9G coverage to low-altitude areas by increasing the elevation angle
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Traditional antennas provide poor coverage in the middle sections of bridges, and it is difficult to install new base stations there, making it challenging to ensure signal quality. The Longboqiu lens antenna supports the construction of wireless communication networks on bridges, enabling full coverage along the entire bridge and delivering a high-quality network experience.
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Traditional antennas provide poor coverage in the middle sections of bridges, and it is difficult to install new base stations there, making it challenging to ensure signal quality. The Longboqiu lens antenna supports the construction of wireless communication networks on bridges, enabling full coverage along the entire bridge and delivering a high-quality network experience.
EXPLORE EAHiSON
Traditional antennas provide poor coverage in the middle sections of bridges, and it is difficult to install new base stations there, making it challenging to ensure signal quality. The Longboqiu lens antenna supports the construction of wireless communication networks on bridges, enabling full coverage along the entire bridge and delivering a high-quality network experience.
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Maoming has achieved “5G coverage across its entire coastal area,” which spans 182.1 km. Using a dual-band 5G network (900 MHz + 2.1 GHz), the city has deployed high-power RRUs and lens antennas at four coastal base stations—Yanjingling, Liantou Chaoyuan, Jueshan Fuling, and Lingmen Shanhou—to provide 5G coverage across the entire coastal area of Maoming.
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Traditional antennas provide poor coverage in the middle sections of bridges, and it is difficult to install new base stations there, making it challenging to ensure signal quality. The Longboqiu lens antenna supports the construction of wireless communication networks on bridges, enabling full coverage along the entire bridge and delivering a high-quality network experience.
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Product Solutions
Supports ultra-long-range coverage
Antenna
Metamaterials
Antenna Cover
Electromagnetic Skin
Single-beam antenna
Compact, lightweight, with wide bandwidth and excellent polarization characteristics
High gain, reaching up to 25 dBi in the 3.5G band
Compared to patch antennas, lens antennas with the same gain provide over 50% greater effective coverage distance
At the same gain, the vertical beamwidth is more than 2.5 times wider than that of patch antennas, facilitating deep coverage with strong signals p>
Particularly suitable for in-depth coverage in long, narrow areas, such as bridges, tunnels, and high-speed rail lines
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High-Speed Rail
Compared to traditional antennas, dome-shaped lens antennas offer longer effective coverage distances and better signal quality within the coverage area, effectively reducing base station investment while providing high-quality voice and data services.
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Bridges
Traditional antennas provide poor coverage in the middle sections of bridges, and it is difficult to install new base stations there, making it challenging to ensure signal quality. The Longboqiu lens antenna supports the construction of wireless communication networks on bridges, enabling full coverage along the entire bridge and delivering a high-quality network experience.
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High-speed
The construction and maintenance costs of base stations along expressways are high. By using Longboqiu lens antennas to alternate between open and closed stations, the number of base stations can be effectively reduced while ensuring continuous coverage, thereby lowering costs and improving efficiency.
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Single-beam antenna
Compact, lightweight, with wide bandwidth and excellent polarization characteristics
High gain, reaching up to 25 dBi in the 3.5G band
Compared to patch antennas, lens antennas with the same gain provide over 50% greater effective coverage distance
At the same gain, the vertical beamwidth is more than 2.5 times wider than that of patch antennas, facilitating deep coverage with strong signals p>
Particularly suitable for in-depth coverage in long, narrow areas, such as bridges, tunnels, and high-speed rail lines
Learn More
Single-beam antenna
Compact, lightweight, with wide bandwidth and excellent polarization characteristics
High gain, reaching up to 25 dBi in the 3.5G band
Compared to patch antennas, lens antennas with the same gain provide over 50% greater effective coverage distance
At the same gain, the vertical beamwidth is more than 2.5 times wider than that of patch antennas, facilitating deep coverage with strong signals p>
Particularly suitable for in-depth coverage in long, narrow areas, such as bridges, tunnels, and high-speed rail lines
Learn More
Single-beam antenna
Compact, lightweight, with wide bandwidth and excellent polarization characteristics
High gain, reaching up to 25 dBi in the 3.5G band
Compared to patch antennas, lens antennas with the same gain provide over 50% greater effective coverage distance
At the same gain, the vertical beamwidth is more than 2.5 times wider than that of patch antennas, facilitating deep coverage with strong signals p>
Particularly suitable for in-depth coverage in long, narrow areas, such as bridges, tunnels, and high-speed rail lines
Learn More