DocumentCode :
723086
Title :
Programmable e-textile composite Circuit
Author :
Varga, Matija ; Munzenrieder, Niko ; Vogt, Christian ; Troster, Gerhard
Author_Institution :
Inst. for Electron., Swiss Fed. Inst. of Technol., Zürich, Switzerland
fYear :
2015
fDate :
26-29 May 2015
Firstpage :
678
Lastpage :
684
Abstract :
Due to the desirable mechanical properties (e.g. bendability) of flexible electronics and sensors, there has been an increased effort to bring them in the fields of flexible displays and smart textiles. The challenge of developing an integration principle for flexible electronic systems with multiple sensors and circuits still remains. In this paper, we show a novel integration approach that creates a composite of flexible electronics and woven textile with conductive fibers (etextile). The goal is to develop a programmable textile that can be used to configure a flexible system, e.g. turn on/off sensors or dynamically route signals. The main components of the programmable textile (SRAM cells and multiplexers) are fabricated on a 50 μm thick freestanding polyimide foil using amorphous-Indium-Gallium-Zinc-Oxide as a semiconductor and packaged in 7 mm × 7 mm encapsulated electronic components. These components are then interconnected using two layers of e-textile that form a grid of orthogonal 280 μm thick Ag/Cu fibers with a pitch of 750 μm. A simulation is used to verify the circuit design and simulate the working principle of the programmable textile (a look-up table).
Keywords :
SRAM chips; amorphous semiconductors; copper alloys; flexible electronics; gallium compounds; indium compounds; integrated circuit interconnections; multiplexing equipment; silver alloys; table lookup; textiles; Ag-Cu; Ag-Cu fibers; InGaZnO; SRAM cells; amorphous-indium-gallium-zinc-oxide; conductive fibers; encapsulated electronic components; flexible displays; flexible electronics; flexible sensors; freestanding polyimide foil; layer interconnection; look-up table; mechanical properties; multiplexers; programmable e-textile composite circuit; size 280 mum; size 50 mum; smart textiles; woven textile; Flexible electronics; Integrated circuit interconnections; Multiplexing; SRAM cells; Substrates; Textiles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronic Components and Technology Conference (ECTC) , 2015 IEEE 65th
Conference_Location :
San Diego, CA
Type :
conf
DOI :
10.1109/ECTC.2015.7159665
Filename :
7159665
Link To Document :
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