Some nanotechnology firms are using carbon nano-tubes for the development of next-generation semiconductor devices. These devices include memory, logic, and other semiconductor products. In the field of memory, the latest achievement will be a high-density nonvolatile Random Access Memory {RAM}. The company's objective is to deliver a product that will replace all existing forms of memory, such as DRAM, SDRAM and flash memory, with this RAM serving as universal memory. The potential applications for the nonvolatile memory is developing are extensive and include the ability to enable instant-on computers and to replace the memory in devices such as cell phones, MP3 players, digital cameras, and PDAs, as well as applications in the networking arena. This RAM can be manufactured for both standalone and embedded memory applications.
The core technology contained in our memory chips is created by the use of arrays of atomic force probe tips to write, read, and record data bits on a continuous storage medium. Please reference below for a scanning electron microscope photo of one of our tips on the end of a cantilever. This tip has a radius of less than 25 nm when it comes in contact with the memory medium. A voltage is passed from the tip into the recording layer. This voltage changes the state of the memory medium. In the
The Nano-chips are assembled by wafer bonding a media wafer to a tip-array wafer. As seen in the drawing below, after the wafer bonding process, the Nano-chips will be diced and packaged. Writing, reading, and erasing are done while scanning the media platform in X and Y. This allows the tips to trace out a raster pattern across the media under each tip, similar to the raster scan pattern used by the electron beam in TVs.
* Manufacturing cost: Today Nanochip uses one micron semiconductor fabs to make our MEMs chips. This type of equipment was used over ten years ago for most semiconductor products. Therefore, the cost of building a MEMs fab to make our chips is in the tens of millions of dollars, unlike the several billion dollars needed to make a 70 nm and soon a 45 nm semiconductor fabrication facility. Furthermore, we can use the
* Interfaces: Nanochip will use standard interfaces so that our customers and the end users can use our products in all consumer electronic devices, laptop computers, and enterprise servers.
6 comments:
nice stuff.
kaha se mila ye.
hats off to you ravi......
r u sure that nano-chip technology is in market.......
{Anonymous} Actually by 2010, the technology in chips would be embeded and its probable but not sure. this will totally depend upon the rate at which research work is going on. Company's manufacturing this chips have given the approximation that by 2010 these chips would be available in the local market
Now this is something of our interest, i mean interest of all the young generation. Aisa hi kuchh aur batao yaar ki aur computer field mein kya hoga is technology se?
Thanks to nanochip technology as now the technology lovers can have something special and new. Thanks for the stuff.
well i would like to tell some interesting facts, its quite complicated network and each sensor gives it data to the nest corresponding node, it is used to tract the humidity, smoke, dust, pressure, temperature of the surrounding place where wireless is to be established....
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