About Us
Shanghai Bodn Industrial Co., Ltd.
Shanghai Bodn Industrial Co., Ltd. was established in 2006. is a professional RF Coaxial Cable Manufacturer and RF Coaxial Cable 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.
Certificate Of Honor
  • Rohs Certificate
  • CE Declaration
  • Certificate of Registration
  • Rohs Certificate
  • Certificate of Compliance
  • Certificate of Registration
  • FCC Verification
Industry news
Message Feedback
Industry knowledge extension
How to choose a suitable RF Coaxial Cable type in different frequency ranges?

Selecting the appropriate RF coaxial cable type in different frequency ranges requires a deep understanding of each key parameter and how they affect signal transmission. Here are some more detailed recommendations designed to help you choose the most suitable type of RF coaxial cable for different frequency ranges:
First, the relationship between frequency range and attenuation is a core consideration when selecting coaxial cable. High-frequency signals are more susceptible to attenuation during transmission, so for high-frequency applications such as microwave communications or satellite communications, you need to choose coaxial cables with low attenuation characteristics. This usually involves the internal conductor material and structural design of the cable. High-quality conductor materials and reasonable structural design can effectively reduce attenuation.
Secondly, impedance matching is key to ensuring signal transmission efficiency. Coaxial cables are typically designed with an impedance of 50 ohms or 75 ohms, which have specific uses in different applications. For example, 50-ohm cables are commonly used in wireless communications and radar systems, while 75-ohm cables are commonly used for the transmission of television and video signals. Choosing the correct impedance cable can avoid signal reflection and distortion and ensure stable signal transmission.
Furthermore, shielding effectiveness is critical to reducing electromagnetic interference and radio frequency interference. High-frequency signals are more susceptible to the influence of the external electromagnetic environment, so for high-frequency applications, you need to choose coaxial cables with excellent shielding performance. This usually involves the shielding material and structural design of the cable. High-quality shielding materials and reasonable structural design can effectively isolate external interference.
Additionally, flexibility and durability are factors to consider when choosing coaxial cable. In some application scenarios, such as wiring in curved or narrow spaces, you need to choose cables with excellent flexibility; while in outdoor or harsh environments, you need to choose durable cables with waterproof, sunproof, wear-resistant, etc. .
Finally, cost, while an important consideration, should not be the only deciding factor. When choosing coaxial cables, you need to consider cost factors and choose a cable type with high cost performance while meeting performance requirements.
In summary, selecting the appropriate type of RF coaxial cable is a decision-making process that requires consideration of multiple factors. By gaining a deeper understanding of what each parameter is and how it affects signal transmission, you can make smarter choices to ensure stable and reliable signal transmission.