Showing posts with label Radio. Show all posts
Showing posts with label Radio. Show all posts

Tuesday, December 18, 2007

The Seed Of Enterprise Mobility Celebrates 60 Years

TRANSISTORS REPLACE TUBES - On the right are submini tubes used in a Zenith Royal hearing aid. The 201 date code represents week 1, 1952. On the left are examples of Raytheon CK718 junction transistors used in the Zenith Royal “T” hearing aid, with 252 representing week 52, 1952. In less than one year transistors had replaced the dominant vacuum tube technology in hearing aids. Caption and Image Credit: GERMANIUM TRANSISTOR MUSEUM

The Seed Of Enterprise Mobility Celebrates 60 Years

The transistor, the beginning of the move from vacuum tubes in electronic circuits used to amplify an electronic signal, was born sixty years and a couple of days ago when three physicists from Bell Labs, through experiments, had the semiconductor they were looking for.

One would think that the earth would shake at such a breakthrough, but the news was received by the New York Times and placed at the bottom of page 46 in a regular column named “News Of Radio”. No banner headlines, no tickertape parade, and barely a mention in the nation’s newspaper of the day.

The move from tubes to solid state, allowed for a transition in manufacturing and thinking of applications for electronic circuits beyond just that for the reduction of power consumption and heat associated with the replacement of the vacuum tube, it lead to miniaturization and eventually integrated circuits that are at the core of computers today.

In 1952 Intermetall unveiled what was probably the first transistorized portable radio on the Düsseldorf Radio fair. /// The first commercial transistor radio, the Regency TR-1, was announced on October 18, 1954 by the Regency Division of Industrial Development Engineering Associates of Indianapolis, Indiana and put on sale in November of 1954. /// It cost $49.95 (the equivalent of roughly $364 in year-2006 dollars) and sold about 150,000 units. Raytheon and Zenith Electronics transistor radios soon followed and were priced even higher. Even the first Japanese imports (in 1957) were priced at $30 and above. Transistor radios did not achieve mass popularity until the early 1960s when prices of some models fell below $20, then below $10 as markets became flooded with radios from Hong Kong by the mid to late 1960s. Caption and Image Credit: Wikipedia

This Excerpted from Forbes Magazine -

The Transistor's Birthday

Fred Allen, Forbes Magazine - 12.15.07, 10:30 AM ET

Sixty years ago, on Dec. 16, 1947, three physicists at Bell Laboratories in Murray Hill, N.J., built the world's first transistor. William Shockley, John Bardeen and William Brattain had been looking for a semiconductor amplifier to take the place of the vacuum tubes that made radios and other electronics so impossibly bulky, hot and power hungry. They were so instantly certain they'd found their answer that they didn't speak a word of it to anyone for six months, until they could experiment further and apply for patents.

Then on June 30, 1948, they held a press conference in New York City. They showed the world not only a big model of a transistor but also a TV and a radio with transistors in place of the tubes. Nobody was talking about anything like computers yet, but it was a first look at the future we all live in.
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It sounded like a gimmick, and just too good to be true. The historian Robert Friedel quotes a Bell Labs engineer as saying, "The transistor in 1949 didn't seem like anything very revolutionary to me. It just seemed like another one of those crummy jobs that required one hell of a lot of overtime and a lot of guff from my wife." Only 20% of them worked. They were hard to manufacture. They required the design of new kinds of circuits. Even if they could eventually, theoretically, replace the vacuum tube, the tube worked well enough. How could they be worth the trouble?

But the technology kept improving. It got its first consumer application in December 1952 in a hearing aid, where it replaced one of three tubes and lowered battery costs. Then it took off. By 1954 the transistor was in 97% of hearing aids and sales of the devices were up 50%. That year the first transistor radio came out. It cost $49.95, the equivalent of $380 today.
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Revolutions can take time. We think of the information revolution as having changed our world in an instant. But it took two later breakthroughs, each a full decade apart, before the transistor could even begin its ascent to the pinnacle of its capability--so far.

Between 1958 and 1959 two men working independently, Jack Kilby at Texas Instruments (nyse:
TXN - news - people ) and Robert Noyce at Fairchild Semiconductor (nyse: FCS - news - people ), figured out how to combine a sequence of transistors on a single wafer of silicon crystal. Now true miniaturization and mass production would begin to be possible.
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Today a single advanced microprocessor can contain 1.7 billion transistors, and the transistors can be as small as 200 billionths of a meter. The numbers become dizzying. Gordon Moore, who quantified the effect of all those devices with his Moore's Law, estimates that every year "we make transistors amounting to a one followed by 17 zeros. ... We make about one transistor for every ant on earth these days--every year."

There's something satisfying about being able to trace back that truly ubiquitous, transformative technology, which we carry with us everywhere in numerous places on, and sometimes inside, our bodies. It runs almost everything in our lives that isn't strictly mechanical--to trace all that back to three men in a research office in 1947. It would be even more satisfying if those three men could have possibly envisioned what would grow out of their work. But that was no more possible than it is for us to see today what nanotechnology and whatever grows out of it will bring us 60 years from now. The only thing we can be sure of us is that the revolution isn't over. Hard as it is to fathom, it's only just begun.
Reference Here>>

Imagine, a cellphone built upon a vacuum technology platform! One would probably need a wheelbarrow and two assistants.

Sunday, April 22, 2007

Global Positioning “Goes To Ground”

How the client works: 1) Wireless device receives signals from Wi-Fi sites in range 2) Skyhook software compares these signals to its database of geographically known locations 3) Location data is used to direct safety services, provide driving directions and local information etc. Image Credit: Skyhook Wireless

Global Positioning “Goes To Ground”

In a “complex technology made simple” scenario, one does not need specialized GPS Satellites and the systems that pick up their signals in order to determine a specific location in most cities in the United States.

All one needs is a computer (or Wi-Fi PDA phone), some software that detects and factors in known Wi-Fi hot spots and … BINGO, wherever one goes, there one is here on the Oblate Spheriod.

This from Skyhook Wireless Inc. website -


At a time when the number of mobile devices is increasing into the billions, the connectivity and processing power of these devices is also increasing greatly. This is providing business with productivity gains and enabling consumers greater freedom in how they interact. Additionally, adoption of 802.11 (Wi-Fi) technology by consumers and industry has proceeded more quickly than the most aggressive predictions. Today, more than 10 million Wi-Fi access points have been deployed in both public and private networks resulting in a ubiquitous cloud of radio signals in the metropolitan areas of the United States.
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Skyhook Wireless provides a software-only positioning system that leverages a nationwide database of known Wi-Fi access points to calculate the precise location of any Wi-Fi enabled device.

The demand for location-based services has been stifled by the lack of an affordable and reliable positioning system for highly populated areas of the country. The Wi-Fi Positioning System from Skyhook Wireless brings accurate positioning capabilities in real world situations to tens of millions of existing devices.


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Technology

The Wi-Fi Positioning System (WPS) from Skyhook Wireless is the first outdoor positioning network to utilize Wi-Fi rather than GPS or cell tower systems to determine location. Building on the explosive growth of Wi-Fi, WPS includes a nationwide network of access points used to accurately pinpoint a user’s position.

WPS is designed for the millions of laptop, tablet PC, PDA and Smartphone owners that have Wi-Fi capabilities and would like to generate driving directions, utilize proximity systems, implement vehicle/asset tracking and communicate location information to friends and coworkers. With WPS, users can easily take advantage of location-based services that are already widely available, without having to purchase additional hardware.


WPS can also complement other location technology, because unlike traditional systems, WPS has no line of sight requirements, is accurate to within twenty meters and can be used indoors or outdoors to determine location in seconds. WPS is compatible with 802.11 devices, integrates with all GPS designed applications and covers metro areas of the United States.
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Location Client

The WPS Location Client contains intelligence, which when coupled with the Location Database, calculates a precise location. The client works by scanning the airwaves for 802.11 signals then comparing observed access points against a known database of access point locations. The client features a patent-pending location algorithm that calculates real-time position, speed, and heading. The client also includes advanced filtering and database optimization techniques to continually improve the overall system. WPS can operate on any device that supports 802.11. It can be configured to operate like a virtual GPS device so that any GPS enabled application can begin to use WPS immediately. The client also includes an SDK to allow third party application developers to more tightly integrate location capabilities into their location-based service.

Location Database

The Wi-Fi Positioning System features a location database that contains the world's most comprehensive listing of geo-located Wi-Fi access points. The Location Database is continuously updated with new regions of the country and with new data from existing coverage areas. Employing patent-pending techniques, the Location Database computes the precise location of each access point using hundreds of observed readings. The Database also determines the propagation characteristics for each access point based on its unique local environment. Each access point can perform differently depending on its location within a building, the position of other buildings on a street, the physical topography of the area and a host of other environmental variables. All of these factors are taken into consideration by the WPS location algorithms. With this level of sophistication, WPS is able to produce reliable and accurate readings throughout our coverage areas.

Device Centric

With the device centric model, the database and client are both installed on an individual device. The Location Database is compressed using a patent-pending algorithm resulting in a minimal storage requirement for the device. Positioning is calculated on the device and is then communicated to other applications (e.g. mapping) via a set of API's. With this model, no network connectivity is required which is preferable for many applications. Data on the device is refreshed on a regular basis and can be segmented (e.g. by city, state, region) based on individual customer needs.

Network Centric

With the network centric model the Location Database resides on the Skyhook Wireless servers and only the thin location client resides on the Wi-Fi enabled device. This configuration is optimal for toolbars or other applications that assume a network connection. The Skyhook server can communicate the location back to the client over the network or to another server based application such as a fleet monitoring system.


Coverage map by Google - Link
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System Requirements
· Skype version 1.2 and above
· Windows XP
· 802.11 adapter
· Call from Skyhook
Coverage area
Installation Instructions
· Download Skype E911 Plug-in
· Extract to a temporary directory
· Run setup.exe (make sure your Wi-Fi adapter is enabled during installation)
· The installation will also install the Skype COM API. Be sure to follow all the instructions
· The last screen will ask you to start the plug-in

How to Operate

By default the Skype E911 plug-in will be configured to start whenever Windows starts. You should see the target icon in the taskbar. When you place a call using Skype, the E911 plug-in will initiate once the receiver of the call has picked up the call. You will see a message from the taskbar letting you know that your current location has been calculated and sent to the other party. The other party on the call will receive a chat message (below) that includes the nearest street address to your current location plus a link to Google Maps to see your current location plotted on a map. The same process will occur when you receive a call as well.


Image Credit: Skyhook Wireless

Reference Here>>

At Symblogogy, we ask if Wi-Fi signals are good, why not other fixed position broadcast signals?

This excerpt from a press release issued by Boeing Engineering, Operations & Technology –

Boeing-Led Team Developing Surface Navigation Concept for DARPA
Boeing Press Release - ST. LOUIS, April 18, 2007

How would U.S. ground troops navigate precisely and effectively if signals from the Global Positioning System (GPS) were not available? Boeing [NYSE: BA] and an industry team are getting the chance to tackle that problem under a concept development contract awarded recently by the U.S. Defense Advanced Research Projects Agency (DARPA).

The objective of the Robust Surface Navigation (RSN) program is to develop technologies that can exploit various "signals of opportunity" -- electronic waves emanating from satellites, cell phone towers and even television transmission towers -- to provide precise location and navigation information to ground troops when GPS signals are being electronically jammed or blocked by natural or man-made obstacles, such as foliage or buildings.

"The challenge is to develop an integrated system that can use all available signals -- not just GPS -- to provide accurate navigation information through one small receiver, thereby eliminating the need for an expensive, fixed infrastructure," said Bart Ferrell, Boeing Phantom Works program manager for Precision Navigation Programs.

The Boeing-led Robust Surface Navigation team is beginning its 15-month Phase 1 concept development contract.
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