Examples of using Microelectronic components in English and their translations into German
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Quality and reliability of microelectronic components.
Interposers connect microelectronic components inside a much smaller space than traditional printed circuit boards.
We are designing nanosensors for microelectronic components.
Microelectronic components based on semiconductors are produced in a complex and multistage chain of repetitive manufacturing steps.
TargetSystem is for target preparation of microelectronic components.
In the semiconductor industry, microelectronic components are built up on the plane surface of a single crystal.
For more than 45 years,Bosch has been developing and manufacturing microelectronic components and systems;
The semiconductor industry produces microelectronic components and sub-assemblies and is thus part of the electronics industry.
The MCL is coordinating an EU project with17 partners aimed at integrating nanosensors into microelectronic components.
We specialise in the preparation of microelectronic components for further investigations by SEM, CT, SAM, AFM or light microscopy.
As a result, micro supercapacitors are increasingly used as energy-storage units for sensors andother microelectronic components.
Microsystem technologies and the integration of microelectronic components for innovative solutions in prevention, diagnosis and therapy.
Microdul AG, whose offices and production site are in Zurich, Switzerland,focuses on the development and manufacture of microelectronic components.
Technological progress continues to gather pace and microelectronic components lead to innovations in mechanical engineering and in the consumer goods industry.
Magnetic materials could play a key role in the future in the development of novel storage devices andmore efficient microelectronic components.
Dr. Patrick Waltereit: Almost all the well-known producers of microelectronic components in Europe are evaluating GaN-based transistors or integrated circuits.
Embedded Systems and Microelectronics: Analysis, architecture,design and implementation of software and hard-ware for embedded, microelectronic components and systems.
The prerequisites for future microelectronic components that are smaller, more powerful, and simultaneously more reliable are new materials and better technologies.
ZMD deals with the development and production of microelectronic components in Dresden, Saxony.
Recently, the MCL invested in state-of-the-art equipment for the characterisation of the three-dimensional structure anddamage behaviour of microelectronic components.
Such microelectronic components are being developed for optical data transmission in large data centers("Cloud Computing") and for new applications in medical technology and autonomous driving.
IC chip(Integrated Circuit)is an integrated circuit formed by a large number of microelectronic components placed on a plastic base to form a chip.
The R& D project, which is funded by AiF within its ZIM initiative, aims at developing a technology mix for the production of complex 3-D circuit boardstructures on textile substrates as basis for the integration of microelectronic components.
We characterise the mechanicalproperties of different materials used for the manufacturing of microelectronic components as well as simple and complex components. .
Core competencies lie in high-resolution non-destructive X-ray tomography for measurement of micro- and nanostructures as well as for non-destructive defect localization, micro- and nanomechanical testing in combination with electron, ion, and X-ray microscopy,and physical defect analysis for determination of damage and failure mechanisms in microelectronic components.
The electronics industry is characterised by rapid productiterations, mass-market dynamics and, of course, the tiny microelectronic components carrying data and power to every computer, smartphone, and appliance.
The Institute for Nano and Microelectronic Systems(INES)represents the design and characterization of nano and microelectronic components, circuits and systems in terms of teaching and research and provides the essential simulation and design tools necessary for the relevant applicable components, circuits and nano and micro systems.
It is used for tooling for aerospace composites, thermostat rods, for semiconductor lead frames, in thermostatic bi-metal strip,and for glass sealing applications in microelectronic components, vacuum devices and electric lamp bulbs.
But the»FMD-Space« is specifically aimed at potential founders andexisting start-ups who still have to complete their prototypes with microelectronic components in order to achieve a breakthrough, as well as SMEs who, with the help of the expertise and technologies within the FMD Institutes, would like to ignite the next stage of innovation for the next generation of ground-breaking innovations together with us.
Major transnational research networks and projects have been launched inareas such as“post-genomic” drug-targeting methods and nanometre-scale microelectronic components, as well as 55 programme networking actions on subjects such as food safety and rare diseases.