Examples of using Microelectronics in English and their translations into Ukrainian
{-}
-
Colloquial
-
Ecclesiastic
-
Computer
Vacuum Microelectronics".
Microelectronics/ Subsidiary.
The first steps in Microelectronics.
Microelectronics, Electronic Devices.
Main Development Microelectronics.
Microelectronics and Technology[DPA-MET] 5.
Coating technology in microelectronics;
Electronics, Microelectronics, Instrument Engineering.
Information Systems and Technologies Microelectronics.
Development- Microelectronics___«Carat» SRC.
Microelectronics and Computer Technology Corporation.
Institute for Design Problems in Microelectronics RAS.
The Microelectronics and Computer Technology Corporation.
Established in 2007, Leader Microelectronics(Huizhou) Co., Ltd.
In ARTEMIS already includes Airbus, Ericsson AB, Nokia and ST Microelectronics.
MEMS, electronics, and photonics(microelectronics and VLSI systems).
United Microelectronics Corporation: poor performance in the fourth quarter.
Because up until they were making microelectronics, music players and everything.
On Tuesday, Feb. 13,he was to hold a meeting on civilian microelectronics.
Radiation effects in microelectronics where ionizing effects on semiconductor devices are modeled.
Transistor- ubiquitous and important component in modern microelectronics.
Yes, microelectronics, telecommunications, optical electronics and computers are now integrated into information systems.
Graduated from Voronezh State Universityin the specialty"Physics of semiconductors and microelectronics".
Today while the workpiece thickness from a few micrometers(in microelectronics) to tens of centimeters or even meters(heavy engineering).
The term is normally used to refer to information and communications technologies based upon microelectronics.
After a year of negotiations, five companies related to the ICT and microelectronics sectors officially started collaborating with four research organisations on 19 December 2012.
GLOBALFOUNDRIES today announced that it has completed its acquisition of IBM's Microelectronics business.
These new materials can beeasily produced with equipment commonly used in the microelectronics industry and are vastly more tolerant of exposure to oxygen compared to standard semiconducting polymers.
It is a complex and dynamic discipline ranging from microelectronics through electromagnetism to high-power technology, from development of tomorrow's information technology to automation and instrumentation of complex industrial processes.
Today's chemical engineers are spearheading new developments in medicine, biotechnology, microelectronics, advanced materials, energy, consumer products, manufacturing, and environmental solutions.