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Low-Temperature (≤500 °C) Complementary Schottky Source/Drain FinFETs for 3D Sequential Integration. | LitMetric

In this work, low-temperature Schottky source/drain (S/D) MOSFETs are investigated as the top-tier devices for 3D sequential integration. Complementary Schottky S/D FinFETs are successfully fabricated with a maximum processing temperature of 500 °C. Through source/drain extension (SDE) engineering, competitive driving capability and switching properties are achieved in comparison to the conventional devices fabricated with a standard high-temperature (≥1000 °C) process flow. Schottky S/D PMOS exhibits an ON-state current () of 76.07 μA/μm and ON-state to OFF-state current ratio (/) of 7 × 10, and those for NMOS are 48.57 μA/μm and 1 × 10. The CMOS inverter shows a voltage gain of 18V/V, a noise margin for high () of 0.17 V and for low () of 0.43 V, with power consumption less than 0.9 μW at of 0.8 V. Full functionality of CMOS ring oscillators (RO) are further demonstrated.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9003556PMC
http://dx.doi.org/10.3390/nano12071218DOI Listing

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