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Various Broadband Connection

Broadband, also known as broadband internet access, is a high data-transmission rate Internet connection that make use of two of the most popular consumer broadband technologies – cable modem and DSL. With any of these technologies, your Internet connection could easily transmit data faster than 56 kilobits per second (the highest speed of a traditional dial-up modem).

The popularity of broadband internet access radically increased in many countries starting 2000. These kinds of Internet access can surf hundred times faster than conventional dial-up modems, thus the name “high-speed Internet”.

Commercial broadband Internet commonly has 256 kilobit per second, which is about the slowest broadband speed for connections advertised worldwide. However, since there is no standard bitrate defined by the industry, the term “broadband” could imply also low-bitrate transmissions or others call “narrowband”. Consequently, some consumers turn out to be disappointed about the promised Internet speed of their connections.

The Technology Behind Broadband Internet Access

The most important assessment you have to make is the kind of broadband internet you want. There are various technologies behind broadband access and you should understand these technologies to fully appreciate this service. Things you have to think about include cost, speed requirements and your location, whether home or office. Since there are many choices for high-speed connections, you should be able to know how each one works and find out which service can benefit your work or lifestyle the most.

Some Internet service providers use multi-linking technologies that achieve a faster surfing speed by doubling the speed of dial-up modems. However, if you wish to subscribe to this feature, you should have two dial-up accounts, two telephone lines, two modems and the ISP provider for multilinking. This is the oldest kind of technology and was used way before DSL, cable broadband and other higher-speed connections were available.

The most common technologies for broadband in many countries are DSL and cable modems.

The most common broadband internet is Digital Subscriber Line (DSL). This technology works by using your phone lines to transmit digital signals directly, without having to convert to analog signals. DSL offer higher data rates and allows you to connect anytime without using your phone line, making it available for incoming calls. There are many kinds of DSL, but asymmetric digital subscriber line (ADSL) is probably the most popular for subscribers.

Cable is another type of broadband internet, which uses the fiber networks to give your cable television at home and use them for internet access. Meaning, you get to divide a given amount of bandwidth for a neighborhood. The limitation of cable internet is that some condominiums and buildings do not have cable installed. When this is the case, it could take time to install your internet subscription because building codes and other legal issues should first be done.

Satellite is the kind of broadband internet that is frequently recommended as an alternative for DSL. However, satellite internet is more expensive because you will need an antenna or a dish to receive data signals from the provider’s satellite.

Other new technologies, such as optical fiber and VDSL are now adding to consumer’s choice for higher-speed Internet connections. Although fiber-optic internet services are used lately, the technology had played a vital role in allowing consumers to connect to broadband Internet using a more cost-effective solution even over larger coverage.

The biggest challenge in broadband is to offer the service to customers in any area, even with low-population densities. Since setting up the broadband Internet access in a particular area could cause many thousands of dollars for equipment alone, many service providers do not have the network in some rural areas for fear that they will not recover the costs.

Although some local Internet providers provide these solutions, many have limitations and drawbacks. The most common problem for rural Internet providers is that these companies usually depend on the quality of local telephone companies.

In some locations that have no DSL or cable Internet, Wi-Fi networks serve their Internet needs. In other countries, high-speed mobile Internet access, such as HSDPA, EV-DO and stationary-broadband WiMax are used.

With today’s modern world where businesses and even home-based employees rely on the Internet for everyday communications and worldwide access, broadband and other high-speed technologies present consumers and businesses a expedient way to hook up to the net.

Regardless of what you choose, you can really see the difference of dial-up from broadband internet in terms of speed, reliability and performance once you plugged your computer on.

Mobile phone, history and technology

In recent years, handsfree systems, and car-mounted systems, have become commonplace to support mobile phone conversations in cars you must choose the best equipment with mobile phone plan. These systems are motivated in terms of traffic safety, in comparison to the mere use of handheld phones to make and receive calls while driving. The safety of mobile phoning whilst driving has become a central topic in the public debate and among legislators. It has been subject to legislation in many countries around the world (McEvoy et al., 2005). Despite legislations, observational studies reveal that phones are still being used in cars (McD Taylor, Bennet, Carter and Garewal, 2003; Johal, Napier, Britt-Compton and Marshall, 2005).

The fact that people talk while driving, and the safety problems this might infer, has received a significant amount of attention from researchers. As early as 1969, well before the widespread use of mobile phones, a psychological study aimed at understanding the effect telephoning had on driving, was published (Brown, Tickner and Simmonds, 1969). Drivers were given logical problems which they needed to respond to over a telephone connection, while driving a car. Since then, numerous studies using similar cognitive perspectives have been presented. (e.g. McKnight and McKnight, 1993; Manalavan, Samar, Schneider, Kiesler and Siewiorek, 2002; Alm and Nilsson, 1995; Fairclough, Ashby, Ross and Parkes, 1991; Reed and Green, 1999; Brookhuis, de Vries and de Waard,1991). The topic has been addressed using controlled experiments where the driver takes part in staged conversations. The studies support arguments that mobile phone use dramatically increases the cognitive load of the driver, which multiply the risks for accidents. The increase on drivers’ attention is either explained by the need to handle the phone device per se, or by the demand to handle the conversation.

However, we argue that these conclusions are based on theoretical and methodological assumptions that are questionable from a sociological approach. First, traffic safety and mobile phone use is approached from a cognitive perspective. We argue that safe driving is not only about the responsibility for the individual driver. Traffic is a social activity (Juhlin, 1999) where risks are handled in collaboration. Mobile phone talk is a social activity taking place in this context. Second, safety is not only a concept which draws upon traffic theory and research. It is of practical and everyday concern for drivers, and as such has to be investigated in real use situations. Third, the emphasis to control the data collection in earlier research has raised concerns about the validity of these experiments (Goodman, Tijerina, Bents and Wierwille, 1999). ”The relationship between the intelligence test Q&A dialogues and the content of normal cellular communication is unknown. […] A better understanding of the nature of actual cellular telephone communications in business and private calls is sorely needed.”

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