Design and experimental technology for 0.1-µm gate-length low-temperature operation FET's

G.A. Sai-Halasz, M.R. Wordeman, D. P. Kern, E. Ganin, S. A. Rishton, D.S. Zicherman, H. Schmid, M.R. Polcari, Hong Ng, P.J. Restle,

IEEE Electron Device Letters · 1987 · 135 citations · 9 references

Concepts

Abstract

The first device performance results are presented from experiments designed to assess FET technology feasibility in the 0.1-µm gate-length regime. Low-temperature device design considerations for these dimensions lead to a 0.15-V threshold and 0.6-V power supply, with a forward-biased substrate. Self-aligned and almost fully scaled devices and simple circuits were fabricated by direct-write electron-beam lithography at all levels, with gate lengths down to 0.07 µm. Measured device characteristics yielded over 750-mS/mm transconductance, which is the highest value obtained to date in Si FET's.

References

9