Tuesday June 03, 2008,
08:15 am ET
Summers County, West Virginia, Jun. 03 /Chris McMillen/ --
The digital universe, and the way people connect to it, is changing. Small businesses, in
particular, are discovering new high-speed Internet and telecom options that are now
squarely within their budgets. Through a myriad of mergers and acquisitions, telecommunication
providers have greatly enhanced their integrated T1 products with features that businesses
can't live without, all while dropping the price to about half of what they were just
two years ago.
Adoption of new technologies take time, and dynamic integrated T1 service is no
different. Since the telephone service is regarded more as a utility than anything,
business pay very little attention to changes in the industry. Significant price
reductions and incentive packages need to be placed on their doorstep by proactive
consultants and telecom salespeople in order to grab their attention. However, once
the new technology begins becoming commonplace in the industry, momentum builds
and soon the new products become standard. Businesses soon see themselves at a
disadvantage to their piers if they don't adapt and keep up.
The irony of the new small business communications revolution is that it took so long
to gain traction. The whole idea of reclaiming inactive voice channels for data applications
is not new, and was introduced by many CLEC operators over five years ago. So why did
it take so long for SMB's to adopt the technology and make the change? One might argue
that the Internet bubble burst in 2000 shook many people's confidence in telecommunications,
one of the hardest hit industries. With so many telecoms going out of business, or merging
with other small players just to stay solvent, many customers took the "wait and see"
approach before making the decision to entrust their communications with a company not
associated with Ma Bell. Now that economic Darwinism has taken hold, the remaining companies
are attracting new customers who see the benefits of the new technology without the downside
risk of loosing service or not being able to get through to customer service in the pinch.
The West Virginia area is one place in particular where the analog to digital
revolution is gaining traction. One business owner we interviewed about
his recent decision to become a digital convert, Peter Anderson, explained
that "my biggest hindrance was my ignorance. Had I known that there was
a solution that would allow me to increase the number of voice lines,
get a full T1 (1.5 MB) of high-speed Internet, all for less than I was paying
for my POTS/DSL configuration, I would have made the move a long time ago."
Many others like Mr. Anderson are coming to the same conclusion.
According to a recent study conducted by PK Communications Telecom Brokers Inc., the average
cost of a POTS (plain old telephone service) line serviced by the Bells (AT&T, Verizon,
and Qwest) have changed very little over the 10 year span from 1996, the year the
Clinton Administration signed into law the Telecommunications Act, to 2006. The real
change in the industry came in the T-carrier class of products, where customers can
get up to 1.5 Mbps of bandwidth and 24 digital phone lines all in one package. Some
CLECs like XO, TelePacific, Nuvox, One Communications, and even Covad are now offering
rates well below the $550/month level, making the change seem like a no-brainer to
thousands of customers.
Prior to the advent of the "all digital" integrated T-1 in 2005, customers only had
one choice when it came to dedicated service: analog trunks (24 line bundles).
Not only where analog trunks expensive - the average cost ranging from $800 to
$1500 per month depending on the user's geographic proximity to the LECs point
of presence - they could not re-allocate unused voice channels to carry data.
Digital trunks, on the other hand, can reclaim voice lines not in use and put
them to work carrying high-speed data packets. That means users enjoy the full
1.5 Mbps of broadband when they are not on the phone.
Expect innovation to continue on its upward spiral as the CLECs continue to expand
their footprints as well as their customer bases. Barring any funny stuff from the FCC,
the CLECs will be here to stay. Sorry Ma Bell. Looking in the crystal ball of the future, it is clear that new an innovated services
being offered by the few super-CLECs remaining will drive innovation higher and prices
lower. New technology is being pressed to the forefront by lower prices that the mainstream
of small businesses everywhere can comfortably afford.
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Courtesy of ShopforT1.com
A type of high speed Internet connection that provides a great deal of bandwidth. Many businesses lease T1 lines to connect to the Internet, but because they are expensive and offer more bandwidth than most small businesses and homes need, they are not realistic solutions for small and low-demand Internet users.
A high-speed digital connection capable of transmitting data at a rate of approximately 1.5 million bits per second. A T1 line is typically used by small and medium-sized companies with heavy network traffic. It is large enough to send and receive very large text files, graphics, sounds, and databases instantaneously, and is the fastest speed commonly used to connect networks to the Internet. Sometimes referred to as a leased line, a T1 is basically too large and too expensive for individual home use.
The T-carrier system, introduced by the Bell system in the US in the 1960's, was the first successful system that supported digitalised voice transmission. The original transmission rate (1.544 Mbps) in the T1 line is in common use today in ISP (Internet Service Provider) connections to the Internet
The T1 (or T-1) carrier is the most commonly used digital line in the United States, Canada, and Japan. In these countries, it carries 24 pulse code modulation (PCM) signals using time-division multiplexing (TDM) at an overall rate of 1.544 million bits per second (Mbps). T1 lines use copper wire and span distances within and between major metropolitan areas. A T1 Outstate System has been developed for longer distances between cities.
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