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2015 | OriginalPaper | Chapter

1. The Contribution of Dry Etching Technology to Progress in Semiconductor Integrated Circuits

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Abstract

Advances in the computer industry in recent years, as seen in the rapid commercialization of advanced information systems such as multimedia devices, is underpinned by various large-scale integration (LSI) devices such as microprocessors and memory. The LSI technology is advancing very rapidly, as shown in Fig. 1.1, with the device density doubling approximately every 2 years [1]. The transistor count in Fig. 1.1 refers to the number of transistors on each microprocessor chip, and this trend toward higher device density follows Moore’s law. Minimum feature sizes are shrunk approximately 30 % every 3 years, and logic devices and flash memory products, with 32-nm-level minimum feature sizes, were in volume production as of 2011. Some 28-nm production devices are also available as of this writing.

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Literature
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2.
go back to reference S. Okazaki, A. Suzuki, T. Ueno: Lithography Technology for Semiconductors, Beginner’s Books Series 29, Kogyo Chosakai Publishing Co., Ltd. (2003). S. Okazaki, A. Suzuki, T. Ueno: Lithography Technology for Semiconductors, Beginner’s Books Series 29, Kogyo Chosakai Publishing Co., Ltd. (2003).
3.
go back to reference S. Ramalingam, Q. Zhong, Y. Yamaguchi, and C. Lee: Proc. Symp. Dry Process, p139 (2004). S. Ramalingam, Q. Zhong, Y. Yamaguchi, and C. Lee: Proc. Symp. Dry Process, p139 (2004).
Metadata
Title
The Contribution of Dry Etching Technology to Progress in Semiconductor Integrated Circuits
Author
Kazuo Nojiri
Copyright Year
2015
DOI
https://doi.org/10.1007/978-3-319-10295-5_1