Analog Circuits With High-Gain Topologies Using a-GIZO TFTs on Glass

Display Technology, Journal of(2015)

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摘要
This paper presents analog building blocks that find potential applications in display panels. A buffer (source-follower), subtractor, adder, and high-gain amplifier, employing only n-type enhancement amorphous gallium-indium-zinc-oxide thin-film transistors (a-GIZO TFTs), were designed, simulated, fabricated, and characterized. Circuit simulations were carried out using a neural model developed in-house from the measured characteristics of the transistors. The adder-subtractor circuit presents a power consumption of 0.26 mW, and the amplifier presents a gain of 34 dB and a power consumption of 0.576 mW, with a load of 10 M Ω//16 pF. To the authors' knowledge, this is the highest gain reported so far for a single-stage amplifier with a-GIZO TFT technology.
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adders,amplifiers,display instrumentation,gallium compounds,indium compounds,thin film transistors,gainzno,tft technology,adder-subtractor circuit,analog circuit,capacitance 16 pf,display panel,gain 34 db,glass,high-gain amplifier,high-gain topology,n-type enhancement amorphous gallium-indium-zinc-oxide thin-film transistors,neural model,power 0.26 mw,power 0.576 mw,resistance 10 mohm,single-stage amplifier,source-follower,analog circuits,a-gizo tft,neural modeling,gain,layout
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