Title :
Non-Linear Process Model for CMP-APC
Author :
Morisawa, Toshihiro ; Kobayashi, Hiromichi ; Takeda, Yukio
Author_Institution :
Production Eng. & Res. Lab., Hitachi, Ltd., Yokohama, Japan
Abstract :
For Si dioxide-film CMP process in semiconductor manufacturing, which requires high precision, run-to-run control has been developed. The run-to-run control is a kind of repetitive control to adjust polishing time at every start of work in a work sequence. This control is based on a process model, which expresses the relation between polishing time and polished thickness. The model is non-linear for Si dioxide-film CMP with Ceria slurry and it contains many parameters. However the parameters must be determined by product type. Therefore, a modeling method of nonlinear process models is developed for multi-product high-volume manufacturing. In this method, model is determined by selecting the optimum combination of arbitrary terms, whose parameter values satisfy constraints of non-linear polishing process. The result shows that the model can be selected using more than 10 samples. Calculated polishing time achieves high precision in film-thickness after CMP. The standard deviation of film-thickness after CMP is less than 1% of target film-thickness.
Keywords :
chemical mechanical polishing; nonlinear control systems; process control; semiconductor device manufacture; slurries; statistical analysis; CMP-APC; Ceria slurry; Si dioxide-film CMP process; advanced process control; chemical-mechanical processing; film-thickness; multiproduct high-volume manufacturing; nonlinear polishing process; nonlinear process model; polished thickness; polishing time; repetitive control; run-to-run control; semiconductor manufacturing; standard deviation; work sequence; Fitting; Process control; Semiconductor device modeling; Silicon; Slurries; Surface treatment;
Conference_Titel :
Management and Service Science (MASS), 2011 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-6579-8
DOI :
10.1109/ICMSS.2011.5999338