Stress Management in Sub-90-nm Transistor Architecture

Reza Arghavani, Zhaohe Yuan, Nilesh P. Ingle, K. B. Jung, Martin Seamons, V. Banthia, K. Lilja, Pablo I. León, Gamani Karunasiri, Seok‐Jin Yoon,

IEEE Transactions on Electron Devices · 2004 · 41 citations · 11 references

Concepts

Abstract

This brief focuses on the physical characteristics of three dielectric films which can induce a significant degree of tensile or compressive stress in the channel of a sub-90-nm node MOS structure. Manufacturable and highly reliable oxide films have demonstrated, based on simulation, the ability to induce greater than 1.5-GPa tensile stress in the Si channel, when used as shallow trench isolation (STI) fill. Low-temperature blanket nitride films with a stress range of 2 GPa compressive to greater than 1.4 GPa tensile were also developed to enhance performance in both PMOS and NMOS devices. Combined with a tensile first interlayer dielectric film, the stress management and optimization of the above films can yield significant performance improvement without additional cost, or integration complexities.

References

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