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Showing posts with label High Speed Internet Service. Show all posts
Showing posts with label High Speed Internet Service. Show all posts

Thursday, December 20, 2007

High Speed Internet Service

High Speed Internet Service

INTRODUCTION

The Internet is a global network of computers.

There are many different types of computers on

the Internet – PCs, Macintoshes, and others – and

many of these computers are parts of smaller

networks, which are also just as varied. The Internet

is based upon a common language that

allows all these computers to talk to each other.

USES OF THE INTERNET

Companies, individuals, and institutions use the Internet in many ways. Companies use the Internet for electronic commerce, also called e-commerce, including advertising, selling, buying, distributing products, and providing customer service. In addition, companies use the Internet for business-to-business transactions, such as exchanging financial information and accessing complex databases. Businesses and institutions use the Internet for voice and video conferencing and other forms of communication that enable people to telecommute (work away from the office using a computer). The use of electronic mail (e-mail) speeds communication between companies, among coworkers, and among other individuals. Media and entertainment companies use the Internet for online news and weather services and to broadcast audio and video, including live radio and television programs. Online chat allows people to carry on discussions using written text. Instant messaging enables people to exchange text messages in real time. Scientists and scholars use the Internet to communicate with colleagues, perform research, distribute lecture notes and course materials to students, and publish papers and articles. Individuals use the Internet for communication, entertainment, finding information, and buying and selling goods and services.

The Internet can also be used to transfer telephone calls using an application known as IP-telephony. This application requires a special phone that digitizes voice and sends it over the Internet to a second IP telephone. Another application, known as the File Transfer Protocol (FTP), is used to download files from an Internet site to a user’s computer. The FTP application is often automatically invoked when a user downloads an updated version of a piece of software. Applications such as FTP have been integrated with the World Wide Web, making them transparent so that they run automatically without requiring users to open them. When a Web browser encounters a URL that begins with ftp:// it automatically uses FTP to access the item.


History of the Internet

At the beginning of the 1960s, an American researcher

had already developed the theoretical

basis for networking computers. Some years

later, the Advanced Research Projects Agency,

ARPA, a research institute of the American military,

developed such a computer network. In

October 1969, two computers in two scientific

institutes in the U.S. were connected with one

another.

After a few months, two more computers were

connected to this network, which was called the

ARPANet. In 1972 – when the network included

23 computers – electronic mail, or e-mail, was

developed. At the end of the 1970s, the discussion

groups called newsgroups came into existence.

Between the 1970s and 1983, the ARPANet was

connected to further networks. The large new

network that resulted from these connections was

called the Internet since it connected several

networks with one another. Also in this year, an

address system was established that allowed

computers on the Internet to have names rather

than the numbers by which they had previously

been identified.

Gradually, more and more countries connected to

the Internet, and by 1988, more than 50,000

computers were connected to this network. Until

this point, the Internet was used primarily by the

academic world. In 1989, an Englishman invented

web pages, that is, pages on the World

Wide Web. In 1993, a graphical web browser

was invented that allowed users to navigate easily

from one place to another on the Internet.

Thanks to this invention, more and more people

outside of the academic world began to use the

Internet – such as entrepreneurs the world over,

who set up web sites and used electronic mail.

At the beginning of the year 2000, there are more

than 200 million Internet users, and on the web

it’s possible to find information of every kind,

shopping opportunities, online games, old and

new friends – or you can take advantage of investment

and banking capabilities, hear music

and radio programs, see TV programs and films,

and much, much more.

BROADBAND

Computers store all information as binary numbers. The binary number system uses two binary digits, 0 and 1, which are called bits. The amount of data that a computer network can transfer in a certain amount of time is called the bandwidth of the network and is measured in kilobits per second (kbps) or megabits per second (mbps). A kilobit is 1 thousand bits; a megabit is 1 million bits. A dial-up telephone modem can transfer data at rates up to 56 kbps; DSL and cable modem connections are much faster and can transfer at several mbps. The Internet connections used by businesses often operate at 155 mbps, and connections between routers in the heart of the Internet may operate at rates from 2,488 to 9,953 mbps (9.953 gigabits per second) The terms wideband or broadband are used to characterize networks with high capacity and to distinguish them from narrowband networks, which have low capacity.

Higher-speed Internet transmission facilities, known as broadband, are also helping improve response times. Broadband technologies include Asymmetrical Digital Subscriber Line (ADSL), which works over telephone wiring, and cable modems, which work over cable TV wiring. Each technology allows data to flow from an Internet service provider to a user's computer hundreds of times faster than traditional dialup modems.

Tuesday, November 20, 2007

Internet service provider

Internet service provider

An Internet service provider (abbr. ISP, also called Internet access provider or IAP) is a business or organization that provides consumers or businesses access to the Internet and related services. In the past, most ISPs were run by the phone companies. Now, ISPs can be started by just about any individual or group with sufficient money and expertise. In addition to Internet access via various technologies such as dial-up and DSL, they may provide a combination of services including Internet transit, domain name registration and hosting, web hosting, and colocation.

ISPs employ a range of technologies to enable consumers to connect to their network. For "home users", the most popular options include dial-up, DSL (typically ADSL), Broadband wireless access, Cable modem, and ISDN (typically BRI). For customers who have more demanding requirements, such as medium-to-large businesses, or other ISPs, DSL (often SHDSL or ADSL), Ethernet, Metro Ethernet, Gigabit Ethernet, Frame Relay, ISDN (BRI or PRI), ATM, satellite Internet access and SONET are more likely. With the increasing popularity of downloading music and online video and the general demand for faster page loads, higher bandwidth connections are becoming more popular.

Just as their customers pay them for Internet access, ISPs themselves pay upstream ISPs for Internet access. In the simplest case, a single connection is established to an upstream ISP using one of the technologies described above, and the ISP uses this connection to send or receive any data to or from parts of the Internet beyond its own network; in turn, the upstream ISP uses its own upstream connection, or connections to its other customers (usually other ISPs) to allow the data to travel from source to destination.

In reality, the situation is often more complicated. For example, ISPs with more than one point of presence (PoP) may have separate connections to an upstream ISP at multiple PoPs, or they may be customers of multiple upstream ISPs and have connections to each one at one or more of their PoPs. ISPs may engage in peering, where multiple ISPs interconnect with one another at a peering point or Internet exchange point (IX), allowing the routing of data between their networks, without charging one another for that data - data that would otherwise have passed through their upstream ISPs, incurring charges from the upstream ISP. ISPs that require no downstream and have only customers and/or peers, are called Tier 1 ISPs, indicating their status as ISPs at the top of the Internet hierarchy. Routers, switches, Internet routing protocols, and the expertise of network administrators all have a role to play in ensuring that data follows the best available route and that ISPs can "see" one another on the Internet.

Internet service providers in India

Tata Indicom, Sify, Airtel, Reliance, Asianet, Bsnl, etc

Monday, August 20, 2007

Broadband

Broadband

Broadband in telecommunications is a term that refers to a signaling method that includes or handles a relatively wide range of frequencies, which may be divided into channels or frequency bins. Broadband is always a relative term, understood according to its context. The wider the bandwidth, greater is the information carrying capacity. In radio, for example, a very narrow-band signal will carry Morse code; a broader band will carry speech; a still broader band is required to carry music without losing the high audio frequencies required for realistic sound reproduction. A television antenna described as "normal" may be capable of receiving a certain range of channels; one described as "broadband" will receive more channels. In data communications a modem will transmit a bandwidth of 64 kilobits per seconds (kbit/s) over a telephone line; over the same telephone line a bandwidth of several megabits per second can be handled by ADSL, which is described as broadband (relative to a modem over a telephone line, although much less than can be achieved over a fibre optic circuit, for example).

Broadband in data communications can refer to Broadband Networks or Broadband internet and may have the same meaning as above, so that data transmission over a fiber optic cable would be referred to as broadband as compared to a telephone modem operating at 600 bits per second.

However, broadband in data communications is frequently used in a more technical sense to refer to data transmission where multiple pieces of data are sent simultaneously to increase the effective rate of transmission, regardless of actual data rate. In network engineering this term is used for methods where two or more signals share a medium.[citation needed]

The various forms of Digital Subscriber Line (DSL) services are broadband in the sense that digital information is sent over a high-bandwidth channel above the baseband voice channel on a single pair of wires.[citation needed]

A baseband transmission sends one type of signal using a medium's full bandwidth, as in 100BASE-T Ethernet. Ethernet, however, is the common interface to broadband modems such as DSL data links, and has a high data rate itself, so is sometimes referred to as broadband. Ethernet provisioned over cable modem is a common alternative to DSL

The Broadband Revolution

The International Telecommunications Union recently issued a press release announcing with joy the release of “the first set of global standards for Internet Protocol TV (IPTV).” A key sentence:

A combination of voice, Internet and video services over a single broadband link and from a single provider is foreseen as the ultimate goal of the broadband revolution.

Those of you who lived through ‘What Is Broadband Good For?’ with me last summer (first post here) know that the word “broadband” is a pet bugaboo of mine. It’s a word that answers a lot of policy questions in a particular way. It connotes (and denotes) a speeded, managed “service” that happens to use the Internet Protocol but is ultimately completely within the discretionary control of the network provider. So when the ITU talks about “the broadband revolution,” they mean (I think) the rise of these speeded, managed “services” provided by telephone companies. And the stated goal—made express in this press release—is to combine “services” over single broadband links and “from” a single provider. Revolutionary! Remarkably similar to cable television with a cellphone overlay.

I’m not going to say “I told you so,” but this is why the AT&T/BellSouth merger conditions a year ago were not unmixed great news. I said at the time (so I guess I am saying I told you so) that AT&T’s promise as part of that merger to keep its “wireline broadband Internet access service” neutral didn’t actually cover its planned IPTV service, which it calls its “AT&T Yahoo! High Speed Internet U-verse Enabled” service. That won’t be neutral—ever—unless things change rather dramatically in this country. I think consumers will be offered “internet” as *part* of their subscription to IPTV, IPTV will definitely affect “bandwidth management,” and “internet” won’t be what we thought it was.

Saturday, January 20, 2007

High Speed Internet Service

High Speed Internet Service

INTRODUCTION

The Internet is a global network of computers.

There are many different types of computers on

the Internet – PCs, Macintoshes, and others – and

many of these computers are parts of smaller

networks, which are also just as varied. The Internet

is based upon a common language that

allows all these computers to talk to each other.

USES OF THE INTERNET

Companies, individuals, and institutions use the Internet in many ways. Companies use the Internet for electronic commerce, also called e-commerce, including advertising, selling, buying, distributing products, and providing customer service. In addition, companies use the Internet for business-to-business transactions, such as exchanging financial information and accessing complex databases. Businesses and institutions use the Internet for voice and video conferencing and other forms of communication that enable people to telecommute (work away from the office using a computer). The use of electronic mail (e-mail) speeds communication between companies, among coworkers, and among other individuals. Media and entertainment companies use the Internet for online news and weather services and to broadcast audio and video, including live radio and television programs. Online chat allows people to carry on discussions using written text. Instant messaging enables people to exchange text messages in real time. Scientists and scholars use the Internet to communicate with colleagues, perform research, distribute lecture notes and course materials to students, and publish papers and articles. Individuals use the Internet for communication, entertainment, finding information, and buying and selling goods and services.

The Internet can also be used to transfer telephone calls using an application known as IP-telephony. This application requires a special phone that digitizes voice and sends it over the Internet to a second IP telephone. Another application, known as the File Transfer Protocol (FTP), is used to download files from an Internet site to a user’s computer. The FTP application is often automatically invoked when a user downloads an updated version of a piece of software. Applications such as FTP have been integrated with the World Wide Web, making them transparent so that they run automatically without requiring users to open them. When a Web browser encounters a URL that begins with ftp:// it automatically uses FTP to access the item.


History of the Internet

At the beginning of the 1960s, an American researcher

had already developed the theoretical

basis for networking computers. Some years

later, the Advanced Research Projects Agency,

ARPA, a research institute of the American military,

developed such a computer network. In

October 1969, two computers in two scientific

institutes in the U.S. were connected with one

another.

After a few months, two more computers were

connected to this network, which was called the

ARPANet. In 1972 – when the network included

23 computers – electronic mail, or e-mail, was

developed. At the end of the 1970s, the discussion

groups called newsgroups came into existence.

Between the 1970s and 1983, the ARPANet was

connected to further networks. The large new

network that resulted from these connections was

called the Internet since it connected several

networks with one another. Also in this year, an

address system was established that allowed

computers on the Internet to have names rather

than the numbers by which they had previously

been identified.

Gradually, more and more countries connected to

the Internet, and by 1988, more than 50,000

computers were connected to this network. Until

this point, the Internet was used primarily by the

academic world. In 1989, an Englishman invented

web pages, that is, pages on the World

Wide Web. In 1993, a graphical web browser

was invented that allowed users to navigate easily

from one place to another on the Internet.

Thanks to this invention, more and more people

outside of the academic world began to use the

Internet – such as entrepreneurs the world over,

who set up web sites and used electronic mail.

At the beginning of the year 2000, there are more

than 200 million Internet users, and on the web

it’s possible to find information of every kind,

shopping opportunities, online games, old and

new friends – or you can take advantage of investment

and banking capabilities, hear music

and radio programs, see TV programs and films,

and much, much more.

BROADBAND

Computers store all information as binary numbers. The binary number system uses two binary digits, 0 and 1, which are called bits. The amount of data that a computer network can transfer in a certain amount of time is called the bandwidth of the network and is measured in kilobits per second (kbps) or megabits per second (mbps). A kilobit is 1 thousand bits; a megabit is 1 million bits. A dial-up telephone modem can transfer data at rates up to 56 kbps; DSL and cable modem connections are much faster and can transfer at several mbps. The Internet connections used by businesses often operate at 155 mbps, and connections between routers in the heart of the Internet may operate at rates from 2,488 to 9,953 mbps (9.953 gigabits per second) The terms wideband or broadband are used to characterize networks with high capacity and to distinguish them from narrowband networks, which have low capacity.

Higher-speed Internet transmission facilities, known as broadband, are also helping improve response times. Broadband technologies include Asymmetrical Digital Subscriber Line (ADSL), which works over telephone wiring, and cable modems, which work over cable TV wiring. Each technology allows data to flow from an Internet service provider to a user's computer hundreds of times faster than traditional dialup modems.