Impact of the Metal-Gate Material Properties in FinFET (Versus FD-SOI MOSFET) on High-kappa/Metal Gate Work-Function Variation

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초록

The 3-D technology computer-aided design simulations were performed with four metal-gate materials (i.e., titanium nitride, tungsten nitride, tantalum nitride, and molybdenum nitride) to quantitatively estimate the magnitude of work-function variation (WFV)-induced threshold-voltage variation (WFV-induced sigma-V-TH) in high-x/metal-gate (HK/MG) MOSFETs [e.g., fin-shaped field-effect transistor (FinFET) and fully depleted silicon-oninsulator MOSFETs]. We found that the extended gate area effect in FinFETs extensively varied depending on the gate materials used. In order to substantially suppress the WFV-induced sigma-V-TH in HK/MG complementary metal-oxide-semiconductor technology, a new metal-gate material with the following characteristics should be developed: 1) higher standard deviation of probability for all grains and 2) lower standard deviation of WF values for all grains.

키워드

Characterizationcomplementary metal-oxide-semiconductor (CMOS)fin-shaped field-effect transistor (FinFET)fully depleted silicon-on-insulator (FD-SOI)gate materialMOSFETratio of average grain size to gate area (RGG)variabilitywork-function variation (WFV)
제목
Impact of the Metal-Gate Material Properties in FinFET (Versus FD-SOI MOSFET) on High-kappa/Metal Gate Work-Function Variation
저자
Nam, HyohyunShin, ChanghwanPark, Jung-Dong
DOI
10.1109/TED.2018.2872586
발행일
2018-11
유형
Article
저널명
IEEE Transactions on Electron Devices
65
11
페이지
4780 ~ 4785