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Mechanically Flexible and High-Performance CMOS Logic Circuits

Authors :
Kuniharu Takei
Takayuki Arie
Seiji Akita
Wataru Honda
Source :
Scientific Reports
Publication Year :
2015

Abstract

Low-power flexible logic circuits are key components required by the next generation of flexible electronic devices. For stable device operation, such components require a high degree of mechanical flexibility and reliability. Here, the mechanical properties of low-power flexible complementary metal–oxide–semiconductor (CMOS) logic circuits including inverter, NAND and NOR are investigated. To fabricate CMOS circuits on flexible polyimide substrates, carbon nanotube (CNT) network films are used for p-type transistors, whereas amorphous InGaZnO films are used for the n-type transistors. The power consumption and voltage gain of CMOS inverters are Vin = 0 V (Vin = 5 V) and >45, respectively. Importantly, bending of the substrate is not found to cause significant changes in the device characteristics. This is also observed to be the case for more complex flexible NAND and NOR logic circuits for bending states with a curvature radius of 2.6 mm. The mechanical stability of these CMOS logic circuits makes them ideal candidates for use in flexible integrated devices.

Details

ISSN :
20452322
Volume :
5
Database :
OpenAIRE
Journal :
Scientific reports
Accession number :
edsair.doi.dedup.....7d410bde0bdfde923a17ef7a52c22af3