Thursday, February 11, 2010


Periscope from the Amazon Kindle


I just want to clarify the title of this article. I am not implying that the chair that you see here on the left costs six million dollars, but uses a bionic leg to support your weight similar to that of the Six-Million Dollar Man.

The Leopard is under development by the Oki Electric Industry and the Okamura Corporation, and it is designed to rise up and meet your backside as you go and sit down. It will also rise up when you want to get up.

You might ask yourself why someone would make a chair like this. Perhaps someone feels a need to create comfort that is “akin to being held in someone’s arms”. It sounds to me like the inventor of this chair may have some dependency issues, but I’m all for any device that can make you more comfortable, especially if it is an office chair.Gadget Post
News on todays hottest electronic mobile gadgets
Samsung Upstage Accessories Order body glove, jabra, headset, faceplate, cases, and batteries. Also has cellular phone accessory for Nokia, Samsung, Nextel, Motorola, Sanyo, LG, Audiovox and more.

Periscope from the Amazon Kindle

Application Development Software India

This isn’t the first time we have reported on Amazon Kindle accessories, and I’m sure it won’t be the last. At first glance, you may think the Periscope is just a clip-on light, but it is many things, including a cover for the Kindle, notepad, and pen holder.

mobile watch

The cover itself is not genuine leather, but leatherette. There are some that would not like the cover, as it can make the not-so-mini Kindle even bigger. However, for those who like to take to notes as they read, you might as well have a notepad and pen holder.

Wall Water Fountains

As for the light itself, it uses two LEDs for illumination. Unfortunately, these two LEDs are not powered by what powers the Kindle, but three not included AAA batteries. These batteries are good for about 40 hours worth of power.

azon Kindle

Friday, February 5, 2010

car bodywork could used to power future cars

Winchester, UK - Researchers from Imperial College London and their European partners, including Volvo Car Corporation, are developing parts of a car's bodywork to enable it to double up as a battery source.

The researchers, which are part in a new Euros 3.4 million project, are developing a prototype material that can store and discharge electrical energy and which is also strong and lightweight enough to be used for car parts.

The material could be used in hybrid petrol/electric vehicles to make them lighter, more compact and more energy efficient, enabling drivers to travel for longer distances before needing to recharge their cars.

In addition, the researchers believe the material, which has been patented by Imperial, could potentially be used for the casings of many everyday objects such as mobile phones and computers, so that they would not need a separate battery. This would make such devices smaller, more lightweight and more portable.

The project co-ordinator, Dr Emile Greenhalgh, from the Department of Aeronautics at Imperial College London, said: “We are really excited about the potential of this new technology. We think the car of the future could be drawing power from its roof, its bonnet or even the door, thanks to our new composite material. Even the Sat Nav could be powered by its own casing. The future applications for this material don't stop there - you might have a mobile phone that is as thin as a credit card because it no longer needs a bulky battery, or a laptop that can draw energy from its casing so it can run for a longer time without recharging. We’re at the first stage of this project and there is a long way to go, but we think our composite material shows real promise.”

In the new project, the scientists are planning to develop the composite material so that it can be used to replace the metal flooring in the car boot, called the wheel well, which holds the spare wheel. Volvo is investigating the possibility of fitting this wheel well component into prototype cars for testing purposes. By replacing a metal wheel well with a composite equivalent could enable Volvo to reduce the number of batteries needed to power the electric motor and could lead to a 15 per cent reduction in the car's overall weight, which should improve the range of future hybrid cars.

The researchers say that the composite material that they are developing, which is made of carbon fibers and a polymer resin, will store and discharge large amounts of energy much more quickly than conventional batteries. In addition, the material does not use chemical processes, making it quicker to recharge than conventional batteries. Furthermore, this recharging process causes little degradation in the composite material, because it does not involve a chemical reaction, whereas conventional batteries degrade over time.

The material could be charged by plugging a hybrid car into household power supply. The researchers are also exploring other alternatives for charging it such as recycling energy created when a car brakes.

For the first stage of the project, the scientists are planning to further develop their composite material so that it can store more energy. The team will improve the material’s mechanical properties by growing carbon nanotubes on the surface of the carbon fibers, which should also increase the surface area of the material, which would improve its capacity to store more energy.

The research team is also planning to investigate the most effective method for manufacturing the composite material at an industrial level.

The three-year European Union funded project includes researchers from the Departments of Chemistry, Aeronautics and Chemical Engineering and Chemical Technology at Imperial College London. European academic and industrial partners include Swerea SICOMP, INASCO Hella, Chalmers, Advanced Composites Group, Nanocyl, Volvo Car Corporation, Bundesanstalt Fur Materialforschung undprufung, ETC Battery and Fuel Cells Sweden. >

How Electronics Gates Works?


If you have read the HowStuffWorks article on Boolean logic, then you know that digital devices depend on Boolean gates. You also know from that article that one way to implement gates involves relays. However, no modern computer uses relays -- it uses "chips."

What if you want to experiment with Boolean gates and chips? What if you would like to build your own digital devices? It turns out that it is not that difficult. In this article, you will see how you can experiment with all of the gates discussed in the Boolean logic article. We will talk about where you can get parts, how you can wire them together, and how you can see what they are doing. In the process, you will open the door to a whole new universe of technology.

Apple iPad

Welcome to the new Apple iPad. Unveiled in San Francisco, the iPad is designed for browsing the web, reading and sending email, seeing photos, watching videos, listening to music, playing games, and reading e-books, says Apple. It is powered by A4, Apple’s system-on-a-chip. Designed by Apple, the new A4 chip supports a battery life of up to 10 hours, claims Apple.

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