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Network Infrastructure Magazine | Wednesday, May 26, 2021
Hardwiring the devices to the router with Ethernet cables can boost speed, especially when streaming, gaming, or downloading files.
FREMONT, CA: Ethernet cables are everywhere. They are the workhorses of the wired network environment. These cables are critical when creating a home or business network or establishing internet connections. Ethernet is a means of connecting computers and other network devices in a physical space. This is often referred to as a local area network. The concept of an Ethernet network is that computers and other devices can share files and data efficiently. Here is more about the various types of Ethernet cables.
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Coaxial Cabling
A coaxial cable has a conductor that runs down the cable. The conductor is surrounded by insulation which is then surrounded by another carrying conductor shield, making this type of cable hinder external obstruction. This cable comes in two types – thinnet and thicknet. Each type has an increased transmission speed of 10 Mbps. Coaxial cables were previously utilized in computer networks but are now replaced by twisted pair cables.
Twisted-pair Cabling
The twisted room has four pairs of wires. These wires are twisted to each other to reduce crosstalk and external interference. This type of cabling is usual in current LANs. Twisted pair cables can be utilized for telephone and network cables. It comes in two types, UTP (Unshielded Twisted-Pair) and STP (Shielded Twisted-Pair). The difference between these is that the STP has an extra layer of protection to guard the data from external interference.
Fiber-optic Cabling
This type of cable leverages optical fibers to transmit data as the light signal. The cables have fiberglass strands protected by cladding material. The core part is wrapped in cladding; The cladding is wrapped in a buffer, and the buffer is wrapped in a jacket. Fiber optic cables are fully immune to EMI and RFI. This cable can transfer data over long distances at increased speed. It can transmit 40 km of data at 100Gbps. Fiber optic cables leverage light to transmit data. It reflects light from one point to another.
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