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Global CD uniformity improvement using dose modulation and pattern correction of pattern density-dependent and position-dependent errors
Conference paper

Global CD uniformity improvement using dose modulation and pattern correction of pattern density-dependent and position-dependent errors

Chia-Jen Chen, Hsin-Chang Lee, Lee-Chih Yeh, Kai-Chung Liu, Ta-Cheng Lien, Yi-Chun Chuo, Hung-Chang Hsieh and Burn J. Lin
2004 Semiconductor Manufacturing Technology Workshop Proceedings, SMTW, pp.95-98
2004

Abstract

Aberration compensation and mask CD uniformity Dose assignment Fogging effect Loading effect Engineering (all)
The specification of mask global CD uniformity (GCDU) is ever tightening. There is no exception at the 65-nm node. Some of the key contributors affecting GCD non-uniformity is pattern-density effects such as fogging effect from the e-beam writer and macro loading effect from the etcher. In addition, the contributions from position-dependent effects are significant, and these contributions included resist developing, baking, as well as aberrations of the waferimaging lens. It is challenging to quantify these effects and even more so to correct them to improve the GCDU. Correction of the fogging and etch loading effects had been reported by various authors. In addition to correction for these effects, we are reporting the position-dependent effects in this paper. ©2004IEEE.

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