CELLONICS

SEMINAR ON CELLONICS : Tired of slow modem connection? Cellonics Incorporated has developed a new technology that can stop this and other communication problems forever. The new modulation and demodulation technology is called Cellonics. In general, this technology allows modem speeds that are 1,000 times faster than the modems of the present. The development is based on how biological cells communicate between nonlinear dynamical systems and others (NDS). major telephone companies, carriers, will benefit from the incredible speed, simplicity and robustness of this new technology as well as individual users.
In today's technology, ASCII uses a combination of zeros and ones to show a single letter of the alphabet (Cellonics, 2001). Then, the data is sent through the cycle of radio frequency to your destination in which is then decoded. The original technology also uses carrier signals that they use hundreds of cycles before wave decoder can decide the bit value (Legard 2001), if the bit is a zero or one, to translate this into a single character.
Technology Cellonics occurred after studying the biological behavior of cells. The study showed that human cells respond to stimuli and produce waveforms, which consist of a continuous line of pulses separated by silence. Technology Cellonics found a way to emulate these pulse signals and apply them in the field of Communications (Legarda, 2001). Cellonics author takes a slow analog waveforms such as input and returns to produce predictable, high-speed pulse output, which encode digital information and sends on the channels of communication. Nonlinear Dynamic Systems (NDS) is the mathematical formulations are needed to simulate the responses of cells and has been used in the construction of Cellonics. Because the technology is not linear, the benefit may be higher than normal, but at the same time, the implementation is simple (Legarda, 2001).
This technology will be most advantageous for companies that make most of their work by remote control and the use of portable devices. Technology Cellonics these devices provide faster, better data for longer periods of time (Benefit, 2001). Cellonics also uses some discrete components, most of which are omitted or consume very little power. This reduces the number of board components in portable devices while dramatically reducing energy use, leading to a lower cost for the entire device. The non-portable products companies will benefit from the absence of machinery components and the company does not have to worry too much about the broken pieces.


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