Sixth generation of computers

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Technological advances are often quantified and identified by the "generation" terminology. Each year, improve the product development process, this is considered a generation. With each new generation of equipment, decreased footprint motherboard and silicon and the speed, power, power and memory increases.

Progression of teams

The teams have come a long way since the first generation for magnetic battery vacuum tubes circuits and memory. The team of first generation used programming language assembler or programming languages high-level executing instructions for the user. These early computers require a lot of electricity to operate and also generated much heat that it was difficult to move.

The second generation replaced vacuum tubes with transistors, which are a main component of today's microprocessors. Transistors were invented in 1947 at Bell Labs. These devices are preferable to vacuum tubes which emits a significant amount of heat and reduced processing times.

Transistors opened the door for faster processing. Recent microprocessors contain tens of millions of microscopic transistors. Without the transistor, we would not have the same level of power we have today.

The transistor was invented in 1947 but did not see widespread use in equipment until the end of the 1950s. The transistor was far superior to the vacuum tube. This allowed teams to be smaller, faster, cheaper, more efficient and more reliable than their first generation predecessors.

The third generation team involved integrated circuits. These circuits are often referred to as semiconductors, due to the substrate used to design the circuit. Semiconductor considerably increased the speed and efficiency of the team. Semiconductors also decreased the overall footprint of the team. As semiconductor packages are smaller, designers produce small portable and desktop computers. Chiropractors and minimalist designers were pleased with the reduction in size and weight.

The fourth generation marked the production of equipment that we know today. Microprocessors were introduced in this generation of computers. The team of speed of processing increased exponentially, as the "brain" of the complex calculations of team dominated. This generation of team allowed manufacturers to reduce price to provision of equipment for the common household. Equipment, however, were still not as profitable as they are today.

The fifth generation of team adds artificial intelligence team to improve the speed and efficiency of advanced computing and shown in the graphic. Game, robotics, neural networks, expert systems and natural language were all the capabilities of the team fifth generation.

Neural networks were particularly important in this generation of the team. The computer could imitate synapses real neuron in the human body. These complex mathematical models were handled with ease through the fifth generation computer. However, scientists still needed more power to perform the Advanced Robotics and other calculations of language.

The sixth generation of the team

Not only the technology improves, but the price decreases as technology improves. The sixth generation of the equipment provided to consumers the opportunity to have more power over a smaller space. The sixth generation also introduced speech recognition. Improved technology enables your computer to take dictation and recognize words. Teams have the ability to learn through a variety of advanced algorithms.

The use of nanotechnology is a feature of the teams sixth generation. This greatly increases the computer processing time and help consumers. Teams with multiple CPU can perform complex calculations and multitasking. When a single CPU can perform several tasks at the same time, this is considered multi-tasking.

When qubits or quantum bits processed in calculations, it is usually faster than conventional equipment. This technology works in conjunction with the processor and the computer's memory. Complex languages such as English, Chinese, French and Spanish are easily processed with the use of qubits bits or quantum. Teams can now understand and interpret numerous languages with new advanced technology available.

This new development will allow students and disabled talk command on the computer without touching the physical device. Voice recognition is also useful in laboratory clean rooms, rooms of surgical operations or even to use in service to the client. Voice recognition will significantly improve the ability of the scientist to create new technology.

Games controlled voice and write applications are easy with applications sixth generation. Avid players will see video games in incredible detail with life as a movement. Parallel processing enables faster speeds for video games. As the footprint of semiconductor becomes minor through the use of nanotechnology, the user has more flexibility in the use of the computer.

Conclusion

Sixth generation took advanced computing to a new level with voice recognition. Consumers can only imagine what will bring the seventh generation of equipment. Consumers will look forward to these new developments as they unfold.




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