Network Encryption Technology Changing the Future
What is Network
Encryption?
Network
Encryption is a network security process that uses network transfer layer
cryptographic services above the level of data link but below the level of
application. Network transmission capacities are Layers 3 and 4 of Open Systems
Interconnection (OSI), the layers for connectivity and for routing between the
two endpoints. Network encryption is invisible to the end user and is operated
by any other encryption process using existing network services and application
software. The data is only encoded during transit and exists on the hosts of
origin and destination as plain text.
Do networks need
encryption?
Encryption is an efficient and popular way to protect
network data. The process of encryption hides data or the content of a message
so that only through the corresponding decryption process the original
information can be recovered. Encryption and decryption are common cryptography
techniques - the scientific field behind secure communication.
There are many different processes of encryption and
decryption (called algorithms). Especially on the Internet, the details of
those algorithms are very difficult to keep secret. Cryptographers are aware of
this and design their algorithms to function even if their details are publicly
available. Most encryption algorithms provide protection through key use.
Global Network Encryption (2018-2024) | KBV Research |
Traditional
Transmission
Coaxial Cable
Coaxial cables are copper cables specifically designed to
block signal interference, with metal shields and other components. Cable TV
companies mainly use this to connect customer homes and companies to their
satellite antenna systems. A single, thicker wire includes a coaxial cable.
Many people who use this kind of cable claim that twisted pairs have a better
bend radius are much more flexible in their choice of network topology.
Twisted Pair Cable
Twisted pair cabling is a type of cable in which two
single-circuit conductors are twisted together in order to improve
electromagnetic compatibility. Experts say that twisted pair cables are often
used to prevent certain types of signal interference. In various types of
installations two different types of twisted pairs, unshielded twisted pairs
(UTP) shielded and twisted pairs (STP) are used. Cable STP can also contribute
to grounding. The STP cable also can provide grounding.
Radio waves &
Microwaves
Radio waves form part of the electromagnetic spectrum. They
do not need a medium to travel. An electric wave and a magnetic wave is
composed of a radio wave. The 2 waves move together, creating one another as
the wave goes through any medium, be it air, wire or what we call space.
Radiofrequency is a form of wireless electromagnetic transmission. RF signals
between 3 kHz and 300GHz are easily generated. Their property allows them to
penetrate objects and travel far distances in wireless communication.
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Network Encryption
Hardware
Risks and threats are increasing, and companies and other
essential infrastructure are constantly being hampered. Businesses around the
world are therefore always looking for economically viable and robust products
that enhance the security of the network and offer customers enhanced
experience. Hardware devices are vital for performing processing functions,
such as high speed and low latency, in the network encryption market and
provide robust safety. In addition, hardware components provide enhanced safety
against endpoints, networks and applications threats.
Emerging verticals
and Network Encryption Technology
- Telecom & IT
- Banking, Financial Services, and Insurance (BFSI)
- Media & Entertainment
- Government
To Sum Up
Network security has always been more important than users
know. Fallback, surveillance and filtering have always been available but were
invisible. Many application owners feel that their systems work on a pure IP
infrastructure, but there is nothing more to do with the truth that business
networks are highly structured. Today's network products feature a wide range
of one-point security solutions from simple authentication mechanisms to
comprehensive identity management. The bottom line is that, the Global Network
Encryption Market shows a high potential of rising at a CAGR of 11.4% over
the estimated period.
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