microelectronics - meaning and definition. What is microelectronics
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What (who) is microelectronics - definition

SUBFIELD OF ELECTRONICS
Microminiaturisation; Microelectronic; Micro-electronics; Microelectronic Engineering; Micro-miniaturization; Micro electronics

microelectronics         
Note: The form 'microelectronic' is used as a modifier.
Microelectronics is the branch of electronics that deals with miniature electronic circuits.
N-UNCOUNT
microelectronics         
¦ plural noun [usu. treated as sing.] the design, manufacture, and use of microchips and microcircuits.
Derivatives
microelectronic adjective
Microelectronics         
Microelectronics is a subfield of electronics. As the name suggests, microelectronics relates to the study and manufacture (or microfabrication) of very small electronic designs and components.

Wikipedia

Microelectronics

Microelectronics is a subfield of electronics. As the name suggests, microelectronics relates to the study and manufacture (or microfabrication) of very small electronic designs and components. Usually, but not always, this means micrometre-scale or smaller. These devices are typically made from semiconductor materials. Many components of normal electronic design are available in a microelectronic equivalent. These include transistors, capacitors, inductors, resistors, diodes and (naturally) insulators and conductors can all be found in microelectronic devices. Unique wiring techniques such as wire bonding are also often used in microelectronics because of the unusually small size of the components, leads and pads. This technique requires specialized equipment and is expensive.

Digital integrated circuits (ICs) consist of billions of transistors, resistors, diodes, and capacitors. Analog circuits commonly contain resistors and capacitors as well. Inductors are used in some high frequency analog circuits, but tend to occupy larger chip area due to their lower reactance at low frequencies. Gyrators can replace them in many applications.

As techniques have improved, the scale of microelectronic components has continued to decrease. At smaller scales, the relative impact of intrinsic circuit properties such as interconnections may become more significant. These are called parasitic effects, and the goal of the microelectronics design engineer is to find ways to compensate for or to minimize these effects, while delivering smaller, faster, and cheaper devices.

Today, microelectronics design is largely aided by Electronic Design Automation software.

Examples of use of microelectronics
1. The LSI Logic development centre will be located in the DSO Microelectronics Innovation Centre.
2. United Microelectronics Corp. was the most active stock by volume, rising 0.52 percent.
3. DARPA conducts research in almost every field –– biology, microelectronics, satellites, unmanned cars and aircraft.
4. Whatever the case, the news hit fellow technology company Wolfson Microelectronics, down 20p to 4'0p.
5. Wireless technology group CSR fell 65p to 1082p, while Wolfson Microelectronics was '.25p lower at 402.75p.