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Shanghai Bodn Industrial Co., Ltd.
Shanghai Bodn Industrial Co., Ltd. was established in 2006. is a professional Marine Antenna Manufacturer and Marine Antenna Factory, The company is located in Shanghai, China, and its production base is in Ningbo. Our company specializes in developing and producing various 300KHz----6G antennas. Produces high-performance ultra-low loss amplitude-stabilized and phase-stabilized RF coaxial cables, cable assemblies and other microwave interconnect products.
The company has a professional technical development team and high-precision testing instruments and equipment: German Rohde Schwarz network analyzers, spectrum analyzers, handheld high-precision wave rejection ratio meters, signal transmitters, and microwave test shielded chambers. Mechanical testing equipment includes high temperature +150 degrees, low temperature -60 degrees test chambers, anti-UV aging test chambers, tensile testers, salt spray testing machines, etc. Our products mainly include(Marine antennas),TV/DVB-T antennas, CB antennas, VHF and UHF antennas, FM/AM DAB car antennas, mobile phone LTE, 3G, 4G, 5G and other antenna accessories.
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  • Rohs Certificate
  • CE Declaration
  • Certificate of Registration
  • Rohs Certificate
  • Certificate of Compliance
  • Certificate of Registration
  • FCC Verification
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How to ensure the stability of Marine antenna in severe weather conditions such as strong winds and high waves?

In severe weather conditions such as strong winds and high waves, it is crucial to ensure the stability of the Marine antenna. Here are some key strategies and methods for enhancing the stability of marine antennas under these extreme conditions:
1. Strong and durable material selection:
The antenna housing and bracket are made of corrosion-resistant and wear-resistant materials to resist corrosion from marine environments such as salt spray, moisture and sea breeze.
Choose high-strength, lightweight metal materials or composite materials to reduce antenna weight while maintaining sufficient structural strength.
2. Optimize antenna design:
Design an antenna structure with low wind resistance and anti-vibration to reduce the impact of strong winds on the antenna.
Consider using flexible connectors and shock-absorbing devices to absorb and disperse vibration and impact caused by waves.
3. Reasonable installation location and method:
Choose a suitable installation location to avoid direct exposure of the antenna to strong winds and high waves.
Use sturdy brackets and bases to ensure the antenna is securely mounted on the vessel's structure.
Consider using multi-point fixing or rope fixing to increase the stability of the connection between the antenna and the ship structure.
4. Regular inspection and maintenance:
Inspect the antenna regularly to detect and repair potential damage or loose parts promptly.
After severe weather, perform special inspections and maintenance on antennas to ensure they are in good condition.
5. Consider using active stabilization systems:
For particularly important communication tasks or extreme weather conditions, active stabilization systems, such as gyro stabilizers or electronic stabilization systems, can be considered to adjust the direction and position of the antenna in real time to cope with the effects of strong winds and high waves.
By comprehensively applying the above strategies and methods, the stability of the Marine antenna in severe weather conditions such as strong winds and high waves can be effectively improved to ensure the continuity and reliability of communication. At the same time, with the continuous advancement of technology, new materials and design concepts will continue to emerge, providing more possibilities for improving the stability of Marine antennas.