2021•Unpublished venueRequires access

Variability-Aware Characterization of Current Mirrors Based on Organic Thin-Film Transistors on Flexible Substrates

Aristeidis Nikolaou, Jakob Leise, Jakob Pruefer, Ute Zschieschang, Hagen Klauk, Ghader Darbandy, Benjamı́n Iñı́guez, Alexander Kloes

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Abstract

The variability of the electrical characteristics of current-mirror circuits based on organic thin-film transistors is analyzed using experimental data obtained from a large number of discrete transistors and from a large number of current mirrors fabricated on a flexible polymeric substrate. Depending on the channel length of the transistors (5 μm or 2 μm) and on whether the two transistors comprising the current mirror are biased simultaneously or separately, the drain-current mismatch of the current mirrors is as small as 1% and as large as 25%.

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What this paper is about

The variability of the electrical characteristics of current-mirror circuits based on organic thin-film transistors is analyzed using experimental data obtained from a large number of discrete transistors and from a large number of current mirrors fabricated on a flexible polymeric substrate. Depending on the channel length of the transistors (5 μm or 2 μm) and on whether the two transistors comprising the current mirror are biased simultaneously or separately, the drain-current mismatch of the current mirrors is as small as 1% and as large as 25%.

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Available abstract

The variability of the electrical characteristics of current-mirror circuits based on organic thin-film transistors is analyzed using experimental data obtained from a large number of discrete transistors and from a large number of current mirrors fabricated on a flexible polymeric substrate. Depending on the channel length of the transistors (5 μm or 2 μm) and on whether the two transistors comprising the current mirror are biased simultaneously or separately, the drain-current mismatch of the current mirrors is as small as 1% and as large as 25%.

Key concepts: Transistor, Current mirror, Materials science, Current (fluid), Optoelectronics, Thin-film transistor, Electronic circuit, Substrate (aquarium)

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