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Ethernet

technology Maturity 7-9

Wires help computers talk.

Ethernet connector.webp
Ethernet connector.webp
They send information fast. This helps us use the internet. It works in our homes. It is very helpful. Do you use a computer?
Ethernet Connection.jpg
Ethernet Connection.jpg

32 words

Wires help computers talk to each other.

Ethernet connector.webp
Ethernet connector.webp
These wires are called Ethernet. They send information very fast. This helps us use the internet at home.
Ethernet Connection.jpg
Ethernet Connection.jpg

Computers send data in small pieces. These pieces are like little envelopes. Each piece has an address on it. This tells the piece where to go.

Some wires are thick. Other wires are thin and easy to bend.

Network card.jpg
Network card.jpg
Some wires even look like telephone cords.

Ethernet is used in many places. It works in big offices and small homes. It helps computers work together. It is a very important tool for our world.

104 words

Ethernet is a way for computers to talk to each other.

Ethernet connector.webp
Ethernet connector.webp
It uses wires to send data through networks. These networks can be small, like in a home. They can also be very large.
Ethernet Connection.jpg
Ethernet Connection.jpg

When a computer sends data, it breaks it into small pieces. We call these pieces frames. Each frame has a source address and a destination address. This tells the frame where to go. Frames also have error-checking data. This helps the system find and fix broken pieces.

In the past, Ethernet used thick cables. Later, people used thinner cables that were easy to bend.

Network card.jpg
Network card.jpg
Today, many systems use fiber optic links or twisted pair wires.

Ethernet started in the 1970s at Xerox PARC. Robert Metcalfe and David Boggs helped create it. They used a method called CSMA/CD. This helps computers decide when to send data so they do not crash into each other.

Network switches.jpg
Network switches.jpg
Ethernet is very important. It helps carry the traffic that makes up the Internet.

169 words

Ethernet is a family of technologies used to connect computers.

Ethernet connector.webp
Ethernet connector.webp
These connections happen through wires in many types of networks. Some networks are small, called local area networks or LANs. Others are much larger, like metropolitan or wide area networks. Ethernet is a key part of how the Internet works. It helps carry the data traffic we use every day.
Ethernet Connection.jpg
Ethernet Connection.jpg
Because it is an open standard, many different companies can use it.

To send information, Ethernet uses a specific way of working. A computer takes a stream of data and breaks it into small pieces. These pieces are called frames. Each frame has a source address and a destination address. This tells the data exactly where to go. Frames also include error-checking data. This helps the system find and discard any damaged pieces.

SMSC LAN91C110 ethernet chip.jpg
SMSC LAN91C110 ethernet chip.jpg
This process ensures the information stays correct.

The idea for Ethernet grew from an older system called ALOHAnet. Norman Abramson designed ALOHAnet in the late 1960s for the University of Hawaii. In 1972, Robert Metcalfe and David Boggs adapted this idea. They worked at the Xerox Palo Alto Research Center, also known as Xerox PARC. They used a shared coaxial cable to connect ALTO computers. Their first successful run was on May 22, 1973.

10Base5transcievers.jpg
10Base5transcievers.jpg
Metcalfe named the concept "Ethernet" in a memo written at that time.

Ethernet has changed a lot since its early days. The first version, 10BASE5, used a very thick cable. Later, 10BASE2 used a thinner and more flexible cable.

Network card.jpg
Network card.jpg
Modern systems often use twisted pair or fiber optic links. In 1980, the DIX standard was published to help companies work together. This was a group including Digital Equipment Corporation, Intel, and Xerox. By 1983, the IEEE 802.3 standard was officially published.
An Intel 82574L Gigabit Ethernet NIC, PCI Express x1 card.jpg
An Intel 82574L Gigabit Ethernet NIC, PCI Express x1 card.jpg
This helped Ethernet become a global standard.

You can see Ethernet working in many places today. It is used in homes and in large industries. It works very well with wireless Wi-Fi technologies.

Network switches.jpg
Network switches.jpg
While Wi-Fi is wireless, Ethernet provides a steady wired path. Ethernet speeds have grown from the original rates to very fast speeds. These include Gigabit Ethernet and even Terabit Ethernet.
Coreswitch (2634205113).jpg
Coreswitch (2634205113).jpg
It is a reliable way to keep our digital world connected.

387 words

Ethernet is a fundamental family of wired networking technologies. It is used to connect computers in various environments. These environments include local area networks (LAN), metropolitan area networks (MAN), and wide area networks (WAN).

Ethernet connector.webp
Ethernet connector.webp
Because it is an open standard, many different manufacturers can build equipment that works together. This openness has made Ethernet a key technology for the modern Internet. It carries much of the Internet Protocol traffic used globally today.
Ethernet Connection.jpg
Ethernet Connection.jpg

To move data, Ethernet systems use a specific communication process. A continuous stream of data is divided into smaller pieces called frames. Each frame contains a source address and a destination address. This ensures the data reaches the correct recipient. Frames also include error-checking data to protect the information. If a frame is damaged, the system can detect and discard it.

SMSC LAN91C110 ethernet chip.jpg
SMSC LAN91C110 ethernet chip.jpg
Often, higher-layer protocols will then trigger a retransmission of the lost frame.

The logic of Ethernet is based on a method called Carrier-Sense Multiple Access/Collision Detection, or CSMA/CD. This concept evolved from an earlier radio network called ALOHAnet. Designed by Norman Abramson in the late 1960s, ALOHAnet was used at the University of Hawaii. In ALOHAnet, a sender would resend a message after a random wait if it was not received. Ethernet improved this by requiring a sender to listen to the channel first. The sender checks if the channel is in use before transmitting. This helps prevent data collisions on the shared medium.

Ethernet has undergone many physical transformations over the decades. The original version, known as 10BASE5, used a thick coaxial cable. This was later replaced by 10BASE2, which used a thinner and more flexible coaxial cable.

10Base5transcievers.jpg
10Base5transcievers.jpg
Modern Ethernet typically utilizes twisted pair cabling or fiber optic links. These modern connections often work alongside network switches to manage traffic.
Network switches.jpg
Network switches.jpg
Switches allow for multiple simultaneous data transmission paths. This is a significant upgrade from the older shared communication channels. In 1993, the introduction of full-duplex mode potentially doubled transmission rates.

The history of Ethernet is a story of competition and cooperation. In 1972, Robert Metcalfe and David Boggs adapted ALOHAnet for coaxial cables at Xerox PARC. Their first successful run occurred on May 22, 1973, at a rate of 2.94 Mbps. Metcalfe chose the name "Ethernet" to suggest it could run over any medium. Later, Metcalfe, Gordon Bell, and David Liddle pushed for standardization. They convinced Digital Equipment Corporation, Intel, and Xerox to create the DIX standard.

Network card.jpg
Network card.jpg
This collaboration resulted in the Ethernet Blue Book in 1980. By 1983, the IEEE 802.3 standard was officially published, making Ethernet a global open standard.

Market competition helped drive the technology into homes and offices. In 1979, Metcalfe founded 3Com to sell Ethernet adapters for personal computers. 3Com's EtherLink adapter was a major success because it used VLSI semiconductor technology. This allowed most functions to fit on a single chip, lowering the price to $950.

An Intel 82574L Gigabit Ethernet NIC, PCI Express x1 card.jpg
An Intel 82574L Gigabit Ethernet NIC, PCI Express x1 card.jpg
While IBM supported its own Token Ring protocol, 3Com's adapter worked on IBM PCs. This helped Ethernet expand rapidly as IBM shipped 200,000 units a month by 1982. Later, Novell's sale of its NE2000 network interface cards helped drive prices down even further.

Ethernet continues to evolve to meet the demand for higher speeds. Data rates have increased significantly since the early 10 Mbps days. In the 1990s, Fast Ethernet emerged to provide 100 Mbps speeds.

Coreswitch (2634205113).jpg
Coreswitch (2634205113).jpg
Since 1999, the technology has reached even higher levels. These include Gigabit Ethernet, 10 Gigabit Ethernet, and 100 Gigabit Ethernet. Engineers are even working on Terabit Ethernet. This constant growth ensures that Ethernet remains a vital part of our digital infrastructure. It connects everything from small home setups to massive industrial systems.

629 words
🖼️ Images & Media (11)
Ethernet connector.webp
File:Apple Ethernet Symbol.svg
Apple Ethernet Symbol.svg
File:PC_Network.svg
PC_Network.svg
File:Accton-etherpocket-sp-parallel-port-ethernet-adapter.jpg
Accton-etherpocket-sp-parallel-port-ethern...
File:An Intel 82574L Gigabit Ethernet NIC, PCI Express x1 card.jpg
An Intel 82574L Gigabit Ethernet NIC, PCI...
File:10Base5transcievers.jpg
10Base5transcievers.jpg
File:Network card.jpg
Network card.jpg
File:Network switches.jpg
Network switches.jpg
File:Coreswitch (2634205113).jpg
Coreswitch (2634205113).jpg
File:Ethernet Connection.jpg
Ethernet Connection.jpg
File:SMSC LAN91C110 ethernet chip.jpg
SMSC LAN91C110 ethernet chip.jpg
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