Sub-10 pA/V Transconductance Amplifier Using 0.9 V, 32 nm Carbon Nanotube Field Effect Transistor.
Shailendra Kumar TripathiAmit M. JoshiPublished in: J. Circuits Syst. Comput. (2022)
Keyphrases
- field effect transistors
- cmos technology
- high power
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- carbon nanotubes
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- steady state
- mathematical analysis
- schottky barrier
- dynamic range
- power consumption
- integrated circuit
- parallel processing
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- image sensor
- high speed
- power dissipation
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- carbon dioxide
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- metal oxide semiconductor
- database
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- markov chain
- real time