Automatic Wire
Automatic Wire

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Volt Class
Volt Class

Buick Regal MI Owners Enjoy Best Sedan Award; GM Takes Best Rated Hybrid with Chevy Volt Too
Edmunds.com has named the top consumer-rated vehicles for 2011. General Motors took two categories with its Buick Regal MI vehicles and Chevrolet Volt.
DETROIT, M.I. – Buick Regal MI vehicles were rated along with dozens of other vehicles by consumers to determine the ‘Best' of 21 categories for coupes, convertibles, sedans, wagons, SUVs, minivan/vans, trucks and hybrids. Edmunds.com offers a list of winners as determined and rated by consumers.
General Motors owners should be excited to know the 2011 Buick Regal took top scoring in the Best Sedan between $20,000 and $30,000 while the Chevrolet Volt was named Best Hybrid according to top consumer reviews complied by Edmunds.com:
"The Volt has attracted a number of new buyers who have previously owned luxury vehicles or those who hadn't considered a GM vehicle in several years. Owners have previously had a BMW 5 Series and a Mercedes Benz S-Class, and one reader went as far as to say that he enjoyed his Volt better than his Ferrari."
Although the Chevrolet Volt has been shown to be a plug-in hybrid, Edmunds.com does not have a category for that specific type of vehicle, but with the "overwhelmingly positive" feedback, Edmunds.com added the Volt to the hybrid category as the best representation of consumer reviews.
There were very few complaints about the Chevrolet Volt such as not enough rear legroom and the front chin spoiler being too low, but nothing that would affect the overall positive light surrounding the Volt. Some reviews included being thrilled to only fill the tank one or two times a month while enjoying other features such as the "high-tech feel, quiet ride, European-style handling and the relatively seamless transition between electric propulsion and the engine's engagement."
Buick Regal MI owners may also be excited to hear their 2011 Buick Regal models have taken the top spot in its category. One owner told Edmunds.com that "it reminds me a lot of my BMW, but it is cheaper and a lot better equipped, even for the base model."
Most positive reviews included remarks about loving the styling, comfort, quality and quietness of the interior. Most reviewed Buick Regal MI vehicles were purchased with the standard 2.4L inline-4 engine, and most owners were pleased with the performance with one saying "this car delivers good all-around power," adding "you certainly can get a speeding ticket." One of the few complaints was the lack of an interior trunk release.
The other Detroit Three automakers took top spots in the following:
- Large Light-Duty Truck: 2011 Dodge Ram 1500
- Large Heavy-Duty Truck: 2011 Ford F-250 Super Duty
Last year, Ford Motor Corp had topped the list with the most named vehicles, but this year Audi took the most ranked with three vehicles.
MI Auto Times covers all Michigan automotive news all the time, featuring newly released vehicle recall information, relevant Michigan automaker news, vehicle ratings and comparisons, and everything else auto-related Michigan and world readers need to know.
About the Author
Got a hot tip? Send your news tips to news@miautotimes.com or connect with us on Facebook: www.facebook.com/MichiganAutoTimes.
[Source(s): Edmunds.com]
How many volts can kill a person?
hey
i need this for my law class...we are doing a mock trial where someone got electrecuted by a 8000 volt line and as a good attorney i am doing my research
and so i need to know how many volts can kill someone.
THANKS!!!
there is no such fixed voltage, as people struck by lightning have also survived
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Input Board
Input Board

TI DSP Evaluation Interface Board Reduced for Clearance
Toronto, Canada - GAO Embedded (www.GAOEmbedded.com) recommends its TI DSP evaluation interface board specially designed for high performance Digital Motion Control (DMC) systems. . This evaluation board is suitable for such applications as digital motor or machine control, packing mechanisms, UPS, VFC (Variable Frequency Control) and electrical control. It can also be used with a TM320F DSP chipset to implement customized control functions. The TMS320F2812 core and peripherals are designed for high performance digital motion control. This evaluation interface board, model IB2812, forms a complete digital servo motion control system when working in conjunction with MCK2812 L/HVD evaluation board.It offers 6 channels of PWM output, 8 channels of AD input and also provides special purpose chips with SPI interfaces to manage the nixie tube display and keys. Moreover, users can fully utilize any of the on-chip function pins, such as defining PWM, A/D, I/O and capture unit.
Visit http://www.GAOEmbedded.com for more information or to purchase this product online.
For any sales inquires please contact:
1-877 585-9555 ext. 601 - Toll Free (USA & Canada)
1-416 292-0038 ext. 601 - All Other Areas
sales@gaoembedded.com
About GAO Embedded
GAO Embedded (www.GAOEmbedded.com) is a leading provider of embedded development tools that serve the needs of electronic professionals internationally.
Toronto, Canada - GAO Embedded (www.GAOEmbedded.com) recommends its TI DSP evaluation interface board specially designed for high performance Digital Motion Control (DMC) systems. . This evaluation board is suitable for such applications as digital motor or machine control, packing mechanisms, UPS, VFC (Variable Frequency Control) and electrical control. It can also be used with a TM320F DSP chipset to implement customized control functions. The TMS320F2812 core and peripherals are designed for high performance digital motion control. This evaluation interface board, model IB2812, forms a complete digital servo motion control system when working in conjunction with MCK2812 L/HVD evaluation board.It offers 6 channels of PWM output, 8 channels of AD input and also provides special purpose chips with SPI interfaces to manage the nixie tube display and keys. Moreover, users can fully utilize any of the on-chip function pins, such as defining PWM, A/D, I/O and capture unit.
Visit http://www.GAOEmbedded.com for more information or to purchase this product online.
For any sales inquires please contact:
1-877 585-9555 ext. 601 - Toll Free (USA & Canada)
1-416 292-0038 ext. 601 - All Other Areas
sales@gaoembedded.com
About GAO Embedded
GAO Embedded (www.GAOEmbedded.com) is a leading provider of embedded development tools that serve the needs of electronic professionals internationally.
About the Author
About GAO Embedded
GAO Embedded (www.GAOEmbedded.com) is a leading provider of embedded development tools that serve the needs of electronic professionals internationally.
I just installed a new video card, and now my on board sound input do not wort, it says No Audio Device? helpe
Did you disable the wrong onboard device when you installed the new video card? Most newer motherboards have both onboard audio and video chips. You may have disabled both of them. They should be clearly labled in the bios setup.
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Power Distribution Block
Power Distribution Block

Proposed Planning of Wireless Power Transmission Demonstration
I. INTRODUCTION
In our present electricity generation system we waste more than half of its resources. Especially the transmission and distribution losses are the main concern of the present power technology. Much of this power is wasted during transmission from power plant generators to the consumer. The resistance of the wire used in the electrical grid distribution system causes a loss of 26-30% of the energy generated. This loss implies that our present system of electrical distribution is only 70-74% efficient. We have to think of alternate state - of - art technology to transmit and distribute the electricity. Now- a- days global scenario has been changed a lot and there are tremendous development in every field. If we don’t keep pace with the development of new power technology we have to face a decreasing trend in the development of power sector. The transmission of power without wires may be one noble alternative for electricity transmission.
William C. Brown, the leading authority on wireless power transmission technology, has loaned this demonstration unit to the Texas Space Grant Consortium to show how power can be transferred through free space by microwaves. A block diagram of the demonstration components is shown below. The primary components include a microwave source, a transmitting antenna, and a receiving rectenna.
Fig.1 Block of wireless power transmission
The microwave source consists of a microwave oven magnetron with electronics to control the output power. The output microwave power ranges from 50 W to 200 W at 2.45 GHz. A coaxial cable connects the output of the microwave source to a coax-to-waveguide adapter. This adapter is connected to a waveguide ferrite circulator which protects the microwave source from reflected power. The circulator is connected to a tuning waveguide section to match the waveguide impedance to the antenna input impedance.
The slotted waveguide antenna consists of 8 waveguide sections with 8 slots on each section. These 64 slots radiate the power uniformly through free space to the rectenna. The slotted waveguide antenna is ideal for power transmission because of its high aperture efficiency (> 95%) and high power handling capability.
A rectifying antenna called a rectenna receives the transmitted power and converts the microwave power to direct current (DC) power. This demonstration rectenna consists of 6 rows of dipoles antennas where 8 dipoles belong to each row. Each row is connected to a rectifying circuit which consists of low pass filters and a rectifier. The rectifier is a GaAs Schottky barrier diode that is impedance matched to the dipoles by a low pass filter. The 6 rectifying diodes are connected to light bulbs for indicating that the power is received. The light bulbs also dissipated the received power. This rectenna has a 25% collection and conversion efficiency, but rectennas have been tested with greater than 90% efficiency at 2.45 GHz.
II. THE TECHNOLOGIES AVAILABLE
In this remarkable discovery of the "True Wireless" and the principles upon which transmission and reception, even in the present day systems, are based, Dr. Nikola Tesla shows us that he is indeed the "Father of the Wireless." The most wellknown and famous Wardenclyffe Tower (Tesla Tower) was designed and constructed mainly for wireless transmission of electrical power, rather than telegraphy [1]. The most popular concept known is Tesla Theory in which it was firmly believed that Wardenclyffe (Fig.2) would permit wireless transmission and reception across large distances with negligible losses [2]. In spite of this he had made numerous experiments of high quality to validate his claim of possibility of wireless transmission of electricity (Fig.3). But this was an unfortunate incidence that people of that century was not in a position to recognize his splendid work otherwise today we may transmit electricity wirelessly and will convert our mother earth a wonderful adobe full of electricity.
Fig.2. The 187-foot Wardenclyffe Tower (Tesla Tower)
The modern ideas are dominated by microwave power transmission (MPT, Figure 3) called Solar power satellite to be built in high earth orbit to collect sunlight and convert that energy into microwaves, then beamed to a very large antenna on earth, the microwaves would be converted into conventional electrical power.
Fig.3. The basis for Tesla’s system for the wireless transmission of electrical
power[3].
III. MERITS, DEMERITS & ECONOMICS OF
WIRELESS TECHNOLOGIES
3.1 Merits
An electrical distribution system, based on this method would eliminate the need for an inefficient, costly, and capital intensive grid of cables, towers, and substations. The system would reduce the cost of electrical energy used by the consumer and rid the landscape of wires, cables, and transmission towers.
There are areas of the world where the need for electrical power exists, yet there is no method for delivering power. Africa is in need of power to run pumps to tap into the vast resources of water under the Sahara Desert. Rural areas, such as those in China, require the electrical power necessary to bring them into the 20th century and to equal standing with western nations. The wireless transmission will solve many of these problems The electrical energy can be economically transmitted without wires to any terrestrial distance, so there will be no transmission and distribution loss. More efficient energy distribution systems and sources are needed by both developed and under developed nations. In regards to the new systems, the market for wireless power transmission is enormous. It has the potential to become a multi-billion dollar per year market.
The increasing demand for electrical energy in industrial nations is well documented. If we include the demand of third world nations, pushed by their increasing rate of growth, we could expect an even Faster rise in the demand for electrical power in the near future. These systems can only meet these requirements with 90–94 %efficient transmission [3, 8].
High Transmission Integrity and Low Loss: - To transmit
wireless power to any distance without limit. It makes no difference what the distance is. The efficiency of the transmission can be as high as 96 or 97 per cent, and there are
practically no losses.
3.2. Demerits
Biological Impact: - One common criticism of the Tesla wireless power system is regarding its possible biological effects. Calculating the circulating reactive power, it was found that the frequency is very small and such a frequency is very biologically compatible [3, 8].
3.3.Economic Impact
The concept looks to be costly initially. The investment cost of Tesla Tower was $150,000 (1905). In terms of economic theory, many countries will benefit from this service. Only private, dispersed receiving stations will be needed. Just like television and radio, a single resonant energy receiver is required, which may eventually be built into appliances, so no power cord will be necessary! Monthly electric utility bills from old-fashioned, fossil-fuelled, lossprone electrified wire-grid delivery services will be optional, much like “cable TV” of today. In the 21st century, “Direct TV” is the rage, which is an exact parallel of Tesla’s “Direct Electricity.”
IV. ADDITIONAL REMARKS
Many concepts, research papers, patents are available on wireless transmission of electricity but most research work were carried out in isolation, so it needs a joint collaborative efforts to get a very useful results on this advanced technology on power transmission for the benefit of mankind globally in future. Whatever the future may bring, the universal application of these great principles is fully assured, though it may be long in coming. With the opening of the first power plant, incredulity will give way to wonderment, and this to ingratitude, as ever before.
The world is still not able to achieve the benefit of the God gifted potential of Dr N.Tesla. People neglected him and his good work. He deserved much better treatment from the tycoons of his age, than to spend the last 40 years of his life in abject poverty. However, he was too much of a gentleman to hold a grudge. Instead, regarding the magnifying transmitter, Tesla wrote in his autobiography, “I am unwilling to accord to some small-minded and jealous individuals the satisfaction of having thwarted my efforts. These men are to me nothing more than microbes of a nasty disease. My project was retarded by laws of nature. The world was not prepared for it. It was too far ahead of time. But the same laws will prevail in the end and make it a triumphal success.” [3, 8-9]. If this has had not been happened, then today we will be in a wonder world of plenty of power using the technology of wireless transmission of electricity.
V. CONCLUSION
The transmission of power without wires is not a theory or a mere possibility, it is now a reality. The electrical energy can be economically transmitted without wires to any terrestrial distance. Many researchers have established in numerous observations, experiments and measurements, qualitative and quantitative. Dr.N.Tesla is the pioneer of this invention. Wireless transmission of electricity have tremendous merits like high transmission integrity and Low Loss (90 – 97 % efficient) and can be transmitted to any where in the globe and eliminate the need for an inefficient, costly, and capital intensive grid of cables, towers, and substations. The system would reduce the cost of electrical energy used by the consumer and get rid of the landscape of wires, cables, and transmission towers. It has negligible demerits like reactive power which was found insignificant and biologically compatible.
REFERENCES
[1] Nikola Tesla, “The Transmission of Electrical Energy Without Wires as a Means for Furthering Peace,” Electrical World and Engineer. Jan. 7, p. 21, 1905.
[2] Nikola Tesla, My Inventions, Ben Johnston, Ed., Austin, Hart Brothers, p. 91,1982.
[3] Thomas F. Valone, “ Tesla’s Wireless Energy... For the 21st Century!!! One Step Beyond Direct TV!!!” Extra Ordinary Technology, 1, no. 4, Oct / Nov / Dec 2003.
[4] James O. McSpadden, “ Wireless Power Transmission Demonstration”, Texas A&M University, June, 1997.
[5] Thomas W. Benson , “ Wireless transmission of power now possible”, News Letter, pp1118 – 9, March , 1920.
[6] Charych Arthur (Setauket, NY), “ System and method for wireless electrical power transmission”, Patent No. 6,798,716, September 28, 2004.
[7] Joe T. Howell, et. al , “Advanced receiver / converter experiments for laser wireless power transmission”5th. Wireless transmission conference, pp 1-8, Garanda, Spain,2004.
[8] Nikola Tesla, “ The true wireless”, Electrical Experiments ,May, 1919.
[9] Toby Grotz,” Wireless transmission of power”, Courtesy of the Tesla BBS at 719 486-2775, August 28, 1990.
About the Author
Assistant professor in lord venkateswara engineering college.I am doing phd in sathyabama university, Tamil Nadu,India.
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US $13.42












































































































































































































































































































































