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Forschungsstelle
EU FRP
Projektnummer
03.0233
Projekttitel
SHIFT: Smart high-integration flex technologies
Projekttitel Englisch
SHIFT: Smart high-integration flex technologies

Texte zu diesem Projekt

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Erfasste Texte


KategorieText
Schlüsselwörter
(Englisch)
Electronic Engineering; Materials Technology; Information Technology
Alternative Projektnummern
(Englisch)
EU project number: 507745
Forschungsprogramme
(Englisch)
EU-programme: 6. Frame Research Programme - 1.2 Communications technologies
Kurzbeschreibung
(Englisch)
See abstract
Abstract
(Englisch)
The objective of the project is the development of smart, high-integration, mechanically flexible electronic systems, for a wide variety of applications. 'Smart' means that the flexible multilayer laminate has embedded components, and that the different flex layers in the multilayer structure can have different functions, meaning that it might be necessary to combine layers of different base material in the laminate. Compactness of the resulting circuit will be boosted in two ways: by using the third dimension for electronic component integration (not only on front and back side, but potentially on every conductive layer) and by drastically increasing the wiring density through the introduction of new flex manufacturing and lamination techniques. Innovative technologies to be developed in SHIFT include:
- a new, cheap flex laminate technology, based on a process for electroless Cu deposition on polyimide
- a new lamination technology, based on interconnection by solid state diffusion
- component embedding technologies: resistors, capacitors, RF components and ultrathin (20 micron) chips
- assembly technologies on embedded multilayer flex
The rationale of the project is that in order to realise the 'ambient intelligence' vision, more and more electronics systems
will accompany the citizen. For these systems there is a trend towards increased functionality, compactness, wearibility and reduced weight. The system may not hamper the mobility of the human carrier. Flexible electronics systems take the shape of the object onto or into which they are placed and may become quasi non-noticeable to the user. Compared to their rigid board counterparts they show a drastic increase of comfort for the user, and therefore the trend ,is starting al1Q will become only stronger towards the use of 'smart' comfortable mechanically flexible electronic systems. The aim of SHIFT is precisely to develop enabling technologies for such complex flexible electronic systems.
Datenbankreferenzen
(Englisch)
Swiss Database: Euro-DB of the
State Secretariat for Education and Research
Hallwylstrasse 4
CH-3003 Berne, Switzerland
Tel. +41 31 322 74 82
Swiss Project-Number: 03.0233